WO2022019404A1 - Cyclone-based hydro-crusher for water treatment - Google Patents

Cyclone-based hydro-crusher for water treatment Download PDF

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Publication number
WO2022019404A1
WO2022019404A1 PCT/KR2020/017942 KR2020017942W WO2022019404A1 WO 2022019404 A1 WO2022019404 A1 WO 2022019404A1 KR 2020017942 W KR2020017942 W KR 2020017942W WO 2022019404 A1 WO2022019404 A1 WO 2022019404A1
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WIPO (PCT)
Prior art keywords
cyclone
raw water
body part
hydrocrash
inner space
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PCT/KR2020/017942
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French (fr)
Korean (ko)
Inventor
김형오
김기범
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김형오
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Publication of WO2022019404A1 publication Critical patent/WO2022019404A1/en

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63JAUXILIARIES ON VESSELS
    • B63J4/00Arrangements of installations for treating ballast water, waste water, sewage, sludge, or refuse, or for preventing environmental pollution not otherwise provided for
    • B63J4/002Arrangements of installations for treating ballast water, waste water, sewage, sludge, or refuse, or for preventing environmental pollution not otherwise provided for for treating ballast water
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/02Construction of inlets by which the vortex flow is generated, e.g. tangential admission, the fluid flow being forced to follow a downward path by spirally wound bulkheads, or with slightly downwardly-directed tangential admission
    • B04C5/04Tangential inlets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/08Vortex chamber constructions
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B04CENTRIFUGAL APPARATUS OR MACHINES FOR CARRYING-OUT PHYSICAL OR CHEMICAL PROCESSES
    • B04CAPPARATUS USING FREE VORTEX FLOW, e.g. CYCLONES
    • B04C5/00Apparatus in which the axial direction of the vortex is reversed
    • B04C5/12Construction of the overflow ducting, e.g. diffusing or spiral exits
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B63SHIPS OR OTHER WATERBORNE VESSELS; RELATED EQUIPMENT
    • B63BSHIPS OR OTHER WATERBORNE VESSELS; EQUIPMENT FOR SHIPPING 
    • B63B13/00Conduits for emptying or ballasting; Self-bailing equipment; Scuppers
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/30Treatment of water, waste water, or sewage by irradiation
    • C02F1/32Treatment of water, waste water, or sewage by irradiation with ultraviolet light
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/38Treatment of water, waste water, or sewage by centrifugal separation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/46Treatment of water, waste water, or sewage by electrochemical methods
    • C02F1/461Treatment of water, waste water, or sewage by electrochemical methods by electrolysis
    • C02F1/467Treatment of water, waste water, or sewage by electrochemical methods by electrolysis by electrochemical disinfection; by electrooxydation or by electroreduction
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/66Treatment of water, waste water, or sewage by neutralisation; pH adjustment
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/72Treatment of water, waste water, or sewage by oxidation
    • C02F1/78Treatment of water, waste water, or sewage by oxidation with ozone
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2103/00Nature of the water, waste water, sewage or sludge to be treated
    • C02F2103/008Originating from marine vessels, ships and boats, e.g. bilge water or ballast water

Definitions

  • the present invention relates to a cyclone-based hydrocrash for water treatment and a water treatment system using the same.
  • a water treatment device for removing organisms contained in water, such as ballast water has been developed and used.
  • the present applicant discloses a hydrocrasher for ballast water treatment based on floating particles having a boost function in Korean Patent Application Laid-Open No. 10-2017-0132987 (published on December 5, 2017) (hereinafter, '987 Patent').
  • a ballast water treatment system using a ballast water treatment system.
  • This patent No. 987 discloses a technique for physically sterilizing ballast water using solid moving particles (eg, alumina, silicon carbide, ceramic beads, or silicon material), and prevents the loss of flowing particles.
  • a filter is used to prevent it. That is, in Patent No. 987, a mesh filter is used to prevent loss of flowing particles.
  • Patent No. 987 it is a technology that requires a backwashing operation for cleaning the filter, and this backwashing operation is often cumbersome and cannot be solved only by backwashing and requires replacement of the filter.
  • a cyclone-based hydrocrash for water treatment and a water treatment system using the same may be provided.
  • a body portion 4 having an interior space containing flowing particles; a raw water inlet operatively coupled to the body 4 to supply raw water to the inner space of the body 4; a cyclone part 5 located in the inner space of the body part 4; and a communication pipe (6) for communicating the body (4) and the cyclone part (5), and the raw water sterilized while turning in the internal space of the body part (4) is the cyclone part (5) through the communication pipe (6)
  • a cyclone-based hydrocrash can be provided that is introduced into the
  • FIG. 1 is a view for explaining a water treatment system using a cyclone-based hydrocrash according to an embodiment of the present invention.
  • FIGS. 2 and 3 are views for explaining a cyclone-based hydrocrasher according to an embodiment of the present invention.
  • 4 and 5 are views for explaining the raw water inlet of the cyclone-based hydrocrash according to an embodiment of the present invention.
  • FIG. 6 is a view for explaining a swapper according to an embodiment of the present invention.
  • First discharge pipe 12 Second discharge pipe M: Flowing particles
  • Embodiments described herein will be described with reference to cross-sectional and/or plan views, which are ideal illustrative views of the present invention.
  • terms such as first, second, etc. are used to describe various components, but these components should not be limited by these terms. These terms are only used to distinguish one component from another.
  • Embodiments described and illustrated herein also include complementary embodiments thereof.
  • the terms 'comprise' and/or 'comprising' do not exclude the presence or addition of one or more other components.
  • any component A and component B are operatively coupled to each other means that any component A and component B are directly or indirectly connected to each other (via one or more other components) so that an operation is performed. ) means that they are connected.
  • the expression 'treatment', 'death' or 'sterilization' of raw water or ballast water refers to killing or inactivating organisms (eg, zooplankton, phytoplankton) contained in raw water or ballast water. it means.
  • FIG. 1 is a view for explaining a water treatment system using a cyclone-based hydrocrash according to an embodiment of the present invention.
  • the water treatment system includes a raw water storage unit 100, a hydrocracker for water treatment (hereinafter, often referred to as a 'hydrocrasher') 200, a sterilization unit 300, It may include a storage unit 400 for storing the treated water, main pipes (L1, L2, L3), and one or more pumps (P1, P2).
  • raw water means water to be sterilized (meaning at least one of fresh water and sea water), and may be various types of water.
  • the present water treatment system will be described on the assumption that the raw water is ballast water.
  • raw water in the present invention is ballast water as an example, and may be applied to other types of raw water.
  • the raw water is ballast water
  • the raw water storage unit 100 is the sea chest 100
  • the storage unit 400 is a ballast water storage tank 400 for storing sterilized ballast water.
  • Sea chest (sea chest) (100) is a place for introducing seawater to be used as ballast water from the sea.
  • the ballast water introduced into the sea chest 100 is supplied to the hydrocrasher 200 through the ballast water main pipe L1 connected to the sea chest 100 .
  • the ballast water flowing in the ballast water main pipe (L1) may be pumped by the pump (P1) installed on the main pipe (L1) and provided to the hydrocrasher (200).
  • the hydrocrash 200 includes particles (hereinafter, 'flowing particles') that flow by the shape of the hydrocrasher, the flow velocity of ballast water, and a vortex flow generated by hydraulic pressure, and such
  • the flowing particles collide with each other and rub against each other while rotating by the vortex generated in the hydrocrash, and crush the shape.
  • living organisms included in ballast water collide with each other and are killed or deactivated by colliding with frictional moving particles.
  • the hydrocrasher 200 is configured such that the flowing particles of the self 200 do not flow out by the ballast water and continue to exist inside the self 200 .
  • the hydrocrasher 200 may be installed on the main pipe existing between the sea chest 100 and the ballast water storage tank 400 .
  • the main pipe provides a path through which ballast water can move from the sea chest 100 to the ballast water storage tank 400 .
  • the main pipe existing between the sea chest 100 and the hydrocrasher 200 is present between the main pipe L1, the hydrocrasher 200 and the sterilization unit 300 .
  • the main pipe (L2), the main pipe existing between the sterilization unit 300 and the ballast water storage tank 400 is referred to as a main pipe (L3).
  • Ballast water is pumped from the sea chest 100 by the pump P1 installed on the main pipe L1 and flows into the hydrocrash 200 .
  • the ballast water introduced into the hydrocrasher 200 is subjected to physical motions such as collision and friction with particles flowing by the shape of the hydrocrasher 200, the flow velocity of the ballast water, and a vortex flow generated by hydraulic pressure. After killing the living creatures included in the ballast water by the hydrocrash 200, it flows out to the outside.
  • the water treatment system according to the present embodiment may further include a sterilization unit 300 .
  • the sterilization unit 300 may be installed between the hydrocrasher 200 and the ballast water storage tank 400, and the ballast water discharged from the hydrocrasher 200 through the main pipe L2. provided and sterilized.
  • the sterilization unit 300 may sterilize the ballast water using ozone, UV, or electrolysis.
  • the sterilization unit 300 may be applied to the present embodiment as long as it is a device capable of sterilizing ballast water using any type of technology.
  • Korean Patent Application No. 2010-0035788 (application date: April 19, 2010, title of invention: ballast water sterilization apparatus for ships) describes a technique for sterilizing ballast water using ultraviolet rays.
  • the technology described in this Korean Patent Application No. is incorporated as a part of the present specification to the extent that it does not conflict with the present invention.
  • the sterilizing unit 300 may have the same configuration as the hydrocrash 200 according to an embodiment of the present invention.
  • the sterilization unit 300 improves the sterilization performance of the ballast water by performing an operation of sterilizing again after being first sterilized by the hydrocrasher 200 .
  • the sterilizing unit 300 sterilizes the ballast water together with the hydrocracker 200, so that the oxidizing agent that contributes to sterilization in the case of chemical sterilization than when sterilizing the ballast water by itself (300) without the hydrocracker 200 alone can be used less, which in turn makes it possible to downsize the components of ballast water and use less resources.
  • the sterilization unit 300 is a device for sterilizing ballast water using ozone, it is possible to sterilize the ballast water by using a relatively small amount of ozone.
  • the sterilizer 300 is a device for sterilizing ballast water using UV or electrolysis, it is possible to sterilize the ballast water by using relatively little electric power. Therefore, it is possible to miniaturize the component equipment.
  • the ballast water storage tank 400 stores the ballast water sterilized by the hydrocrash 200 and the sterilization unit 300 .
  • the ballast water stored in the ballast water storage tank 400 may be discharged to the outside through the pipe L4 connected to the ballast water storage tank 400 .
  • the sterilization unit 300 is discharged as it is, or after neutralization by inputting a neutralizing agent, depending on the type of method.
  • the sterilizer 300 sterilizes the ballast water using ozone
  • the ballast water stored in the ballast water storage tank 400 is neutralized by a neutralizing agent and discharged when discharged to the outside.
  • FIGS. 2 and 3 are views for explaining a cyclone-based hydrocrasher according to an embodiment of the present invention.
  • the hydrocrash according to an embodiment of the present invention can sterilize raw water.
  • the hydrocrash according to an embodiment of the present invention has an internal space (the same meaning as 'inside', and 'inside' and 'internal space' have the same meaning and will be used interchangeably)
  • a tubular body part 4 with an excitation, a cyclone part 5 capable of separating large particles from small particles by centrifugal force, and a communication pipe 6 for communicating the body part 4 and the communication pipe 6 are included.
  • the raw water sterilized while turning in the internal space of the body part 4 is introduced into the cyclone part 5 through the communication pipe 6 .
  • 'raw water' means water before sterilization, but if there is no real benefit of distinguishing whether to sterilize, for ease of explanation, 'raw water under sterilization' in the body part 4 or the communication pipe 6
  • the 'sterilized raw water' in the and cyclone section 5 is also often referred to as 'raw water'.
  • Flowing particles M are included in the internal space of the body 4, and the flowing particles M are often referred to as media, and in this specification, 'flowing particles' and 'media' are used interchangeably. .
  • the media (M) may be located anywhere inside the body portion (4). In order to increase the effect of killing organisms included in the raw water, the media (M) may be located inside the pressure chamber to be described later.
  • the cylindrical body portion 4 having an internal space has a structure in which raw water and the media M can be rotated efficiently.
  • the inner surface of the body portion 4 may have a circular cylindrical shape.
  • the shape of the inner surface of the body portion 4 according to the present invention is not necessarily limited to a circular shape.
  • the body part 4 has a cylindrical shape consisting of a lower part and an upper part, and the pressure chamber part 2 and the raw water inlet 1 through which raw water can be introduced are formed in the lower part of the body part 4 .
  • one side is called the upper side and the other side is called the lower part, and also the center (H_C) of the length (H_C) of the cyclone part 5 Based on H_OC), one side is called the upper side and the other side is called the lower side.
  • a higher side is referred to as an upper side
  • a lower side is referred to as a lower side, based on the Earth's gravity.
  • the communicating portion 6 is configured to communicate an arbitrary position of the upper portion of the body portion 4 and an arbitrary position of the upper half of the cyclone portion 5 or more with each other. That is, the communicating portion 6 communicates an upper portion higher than the center of the length of the body portion 4 and an upper portion higher than the center of the length of the cyclone portion 5 with each other.
  • the body part 4 and the raw water inlet 1 are operatively coupled to each other so that raw water is supplied to the inner space of the body part 4 .
  • the upper end of the body part 4 is blocked by the upper surface, the lower end is blocked by the bottom surface, and the swapper 3 is located on the inner side of the body 4 at a location spaced a certain distance from the lower end. are connected
  • the body part 4 is configured so that raw water or the media M does not leak to the outside.
  • the lower end of the body portion 4 and the raw water inlet 1 are operatively coupled to each other so that the raw water flows into the interior of the body portion 4 .
  • the pressure chamber part 2 is formed in the body part 4 , in particular, the lower part of the body part 4 .
  • the pressure chamber part 2 and the raw water inlet 1 are operatively coupled to each other so that raw water flowing into the raw water inlet 1 directly flows into the pressure chamber part 2 .
  • the raw water introduced into the raw water inlet (1) is pressured by the swirler (3) when proceeding to the upper portion of the body (4).
  • the space composed of the swirler 3, the bottom surface of the lower end, and the side surface of the body part 4 constitutes the pressure chamber part 2, and the raw water introduced through the raw water inlet 1 is directly the body part 4 ) does not move to the upper part, but turns and rises to the body part 4 through the swirler 3 while turning and rising inside the pressure chamber part 2 .
  • Swallower 3 has an efficient configuration in which the enemy can be swiveled.
  • the cyclone part 5 and the body part 4 are operatively coupled.
  • the cyclone part 5 is located in the inner space of the body part 4 .
  • the cyclone part 5 is coupled with the body part 4 so as to penetrate the upper end, the inner space, and the lower end of the body part 4 .
  • the upper end of the body portion 4 is blocked by an upper surface, through which the cyclone portion 5 passes through the inner space of the body portion 4, and the bottom surface of the lower end of the body portion 4 goes through
  • the outer surface and the upper surface of the cyclone are closely coupled so that raw water or the media (M) existing inside the body portion 4 does not leak to the outside. Even when the cyclone part 5 penetrates the bottom surface, the outer surface and the bottom surface of the cyclone are closely coupled so that raw water or the media (M) existing inside the body part 4 does not leak to the outside.
  • the shape of the cyclone part 5, specifically, the external shape of the cyclone part 5, has a circular structure so that raw water can rotate.
  • Swallower 3 is positioned inside the body portion 4, and the cyclone portion 5 also penetrates through the swirler 3 . That is, the cyclone part 5 is coupled to the body part 4 so as to penetrate the upper surface of the body part 4 , the swirler 3 of the internal space, the pressure chamber part 2 , and the bottom surface.
  • the cyclone part 5 penetrates through the center of the upper surface of the body part 4, the center of the swirler 3 of the inner space, the center of the pressure chamber part 2, and the center of the bottom surface. , is coupled to the body (4).
  • the cyclone part 5 since the cyclone part 5 is disposed in the center of the body part 4, the raw water introduced into the raw water inlet 1 rises while turning. With the additionally positioned Swallower 3, the enemy is able to turn more violently.
  • the cyclone unit 5 has a configuration such that the fluid (including at least one of raw water or the media M) rotates, for example, the cyclone unit 5 has a circular tube shape so that the fluid moves while rotating. , the diameter of the inlet of the tube is relatively larger than the diameter of the outlet, and the diameter of the tube gradually decreases from the inlet to the outlet. Accordingly, the body portion 8 of the cyclone portion 5 has a conical shape, and this conical body portion 8 is located in the center of the inner space of the body portion 4 of the hydrocrash.
  • the cyclone part 5 and the hydrocrasher are aligned so that the longitudinal direction of the cyclone part 5 and the longitudinal direction of the body part 4 of the hydrocrasher are parallel to each other, and at the same time, the central axis of the cyclone part 5 ( An imaginary axis passing through the center of the body portion of the cyclone portion 5 in the longitudinal direction of the cyclone portion 5) and the central axis of the body portion 4 of the hydrocrasher (the body portion in the longitudinal direction of the body portion 4) The imaginary axes passing through the center of 4) coincide with each other.
  • the raw water introduced into the raw water inlet (1) rises while turning inside the body (4).
  • the raw water goes through the swirler 3 while turning from the pressure chamber part 2 and rises while turning around the outer surface of the cyclone part 5, and all the raw water that rises is the communication pipe 6 ) is released as
  • the communication pipe 6 is a pipe connecting the inside of the body part 4 and the cyclone part 5, and provides a path through which raw water or the media (M) can be moved.
  • the raw water (including a part of the media M) that rotated while turning along the outer wall OS of the cyclone part 5 inside the body part 4 is It is moved to the upper part of the cyclone part (5) through the communication pipe (6).
  • the communicating pipe 6 communicates the upper part of the body part 4 and the upper part of the cyclone part 5, and the communicating pipe 6, the body part 4, and the cyclone part 5 are the raw water inlet ( The raw water introduced through 1) is sterilized while turning, and then is operatively coupled to each other so that it flows into the cyclone unit 5 only through the communication pipe 6 .
  • the upper part of the cyclone part 5 is configured to receive raw water (including a part of the media M) through the communication pipe 6 .
  • Raw water (including a part of the media (M)) flowing into the upper part of the cyclone unit 5 through the communication pipe 6 descends while turning, and the raw water descending while turning in this way is referred to as a 'downward swirl flow (9)' in this specification.
  • the descending swirl flow 9 mainly contains a material with a heavy specific gravity, and is descended and discharged while turning along the wall surface IS of the inner space of the cyclone unit 5 by centrifugal force. That is, the separation of substances with a heavy specific gravity contained in the raw water occurs, and the substances with a heavy specific gravity may contain relatively large animal and phytoplankton.
  • the wall surface IS of the inner space of the cyclone unit 5 is roughened.
  • the surface roughness of the wall surface IS of the inner space of the cyclone unit 5 is to be killed or deactivated when the animals and phytoplankton collide with the wall surface IS of the inner space of the cyclone unit 5 . It consists of a certain shape and size.
  • the relatively heavy copper and phytoplankton descending while turning along the wall surface (IS) of the inner space of the cyclone unit (5) turn along the wall surface (IS) of the inner space of the cyclone unit (5) and descend while turning on the surface It may be destroyed or deactivated while colliding with the wall (IS) with a large roughness. That is, in the inner space of the cyclone unit 5, the separation of substances with heavy specific gravity contained in raw water may occur, but also the death of relatively large animal and phytoplankton with heavy specific gravity may occur.
  • the ascending swirl flow 10 contains a material having a relatively light specific gravity, and ascends while turning along the inner center of the cyclone unit 5 and is discharged to the outside.
  • a discharge pipe is formed in the lower and upper portions of the cyclone unit 5 , and the discharge pipe formed in the lower part is called a first discharge pipe 11 , and the discharge pipe formed in the upper part is called a second discharge pipe 12 .
  • the place where the first discharge pipe 11 is formed is an arbitrary part after penetrating the bottom surface of the body part 4 in the lower part of the cyclone part 5, and the place where the second discharge pipe 12 is formed is any part after penetrating the upper surface of the body part 4 in the upper part of the cyclone part 5 .
  • the descending swirl flow 9 that descends while turning inside the cyclone unit 5 is discharged to the first discharge pipe 11, and the ascending swirl flow 10 that rises while turning at the center of the descending swirl flow 9 is discharged to the second discharge pipe (12).
  • the second discharge pipe 12 protrudes from the top of the cyclone part 5 downward by a first distance H_T, and the communication part 6 is a protruding portion of the second discharge pipe 12 .
  • the cyclone part 5 and the body part 4 at a higher position are connected to each other. This is to prevent the raw water (treated water) flowing into the cyclone unit 5 from the communication unit 6 from interfering with the upward swirling flow 10 .
  • the raw water (treated water) discharged through the first discharge pipe 11 may contain media (M) or dead bodies or solids of living things, but the raw water (treated water) discharged through the second discharge pipe 12 contains the media (M) It may not contain corpses or solids of living things. Therefore, the raw water discharged to the second discharge pipe 12 can be directly transferred to a post-treatment device (eg, a sterilization unit), and the treated water discharged to the first discharge pipe 11 is stored in a separate storage unit (not shown). ), only the media (M) can be selected and mixed with the raw water flowing into the raw water inlet.
  • a post-treatment device eg, a sterilization unit
  • the flowing particles (M) are solid particles (a, b) that are strong enough to sterilize organisms contained in raw water (eg, ballast water, but not limited thereto). , it can be composed of a mixture of particles of silicon material (c) to prevent wear of solid particles (a, b) with strong hardness and increase the coefficient of restitution, vortex motion is possible by
  • the flowing particles M may be mixed including at least one of alumina, silicon carbide, ceramic beads, and a silicon material.
  • This mixing is exemplary, and any particles with strong hardness are possible, and they are rotated by the raw water received through the raw water inlet 1, and alumina, silicon carbide, ceramic beads, Silicon materials collide with each other.
  • raw water is naturally sterilized in the process of passing between the flowing particles (M) causing friction with each other while turning.
  • the moving particles (M) have a weight and size enough to be moved (including rising) by raw water. This is because the flowing particles M collide with each other and thereby the raw water can be sterilized by having enough weight and size to be raised by raw water.
  • the hydrocrash 200 according to the present embodiment may further include a swapper 3 .
  • Swallower 3 may or may not be used in the present invention so that a person (hereinafter, 'person of ordinary skill') engaged in the technical field to which the present invention belongs (hereinafter referred to as 'the person skilled in the art') suits the field situation.
  • Swallower 3 is configured to swirl the raw water introduced through the raw water inlet 1, and may use a conventionally known configuration or develop and use a more effective configuration.
  • Raw water introduced through the raw water inlet 1 may be pressurized by the swirler 3 , whereby the space between the swirler 3 and the bottom surface may have a function as the pressure chamber part 2 . .
  • 4 and 5 are views for explaining the raw water inlet 1 of the cyclone-based hydrocrash according to an embodiment of the present invention.
  • the raw water inlet 1 may be positioned so that raw water flowing into the raw water inlet 1 flows in a direction toward the cyclone unit 5 which is the central axis of the inner space.
  • the raw water inlet 1 does not face the cyclone part 5, which is the central axis of the inner space, and the raw water is directed toward an axis that is slightly off the central axis (hereinafter, 'oblique It is possible to be positioned so as to flow in the direction '), and in this case, there is an effect that the turning force is improved than when it flows in the direction toward the central axis.
  • FIG. 6 is a view for explaining the swapper 3 according to an embodiment of the present invention.
  • the swapper 3 may have a plate shape having a predetermined thickness as a whole, and the shape of the inner surface of the body part 4 of the hydrocrasher It consists of a plate of a shape and size that can be easily attached to the For example, if the inner surface of the body portion 4 of the hydrocrasher is circular, the swirler 3 may also be configured in a circular plate shape.
  • the swapper 3 is closely coupled to the inner surface of the body portion 4 of the hydrocrasher, and is attached to the inner surface of the body portion 4 by conventionally well-known fastening means (nuts, screws, nails, ). can be combined.
  • the center of the swirler (3) is formed with an insertion hole (P) through which the cyclone part (5) can be inserted, and at the outer edge of the swirler (3)
  • a plurality of penetrating portions 31 having a shape to allow raw water to pass while turning are formed.
  • the shape and distance between the through portions 31 may be determined by conventionally well-known techniques.
  • the region 32 between the insertion hole P and the through portions 31 is blocked from passing raw water.
  • the swallower 3 is configured such that raw water existing in the pressure chamber part 2 can be moved only through the plurality of penetration parts 31 .

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  • Physical Water Treatments (AREA)

Abstract

A cyclone-based hydro-crusher for water treatment according to an embodiment disclosed herein comprises: a body part (4) having an inner space that includes moving particles; a raw water inlet (1) operatively coupled to the body part (4) in order to supply raw water to the inner space of the body part (4); a cyclone part (5) positioned in the inner space of the body part (4); and a communication pipe (6) communicating the body part (4) and the cyclone part (5). The raw water sterilized while whirling in the inner space of the body part (4) flows into the cyclone part (5) through the communication pipe (6). Accordingly, there is no loss of moving particles, and the raw water can be effectively sterilized without a separate source of power.

Description

수처리를 위한 사이클론 기반의 하이드로크래셔Cyclone-based hydrocrashers for water treatment
본 발명은 수처리를 위한 사이클론 기반의 하이드로크래셔 및 이를 이용한 수처리 시스템에 관한 것이다.The present invention relates to a cyclone-based hydrocrash for water treatment and a water treatment system using the same.
선박 평형수와 같이 물에 포함된 생물을 제거하기 위한 수처리 장치가 개발되어 사용되고 있다. 예를 들면, 본 출원인은 한국공개특허 10-2017-0132987(2017. 12. 5 공개)호(이하, '987호 특허')에 부스트 기능을 가진 유동 입자 기반의 선박 평형수 처리용 하이드로크래셔를 이용한 선박 평형수 처리 시스템을 개시하고 있다. A water treatment device for removing organisms contained in water, such as ballast water, has been developed and used. For example, the present applicant discloses a hydrocrasher for ballast water treatment based on floating particles having a boost function in Korean Patent Application Laid-Open No. 10-2017-0132987 (published on December 5, 2017) (hereinafter, '987 Patent'). Disclosed is a ballast water treatment system using a ballast water treatment system.
이러한 987호 특허에는 고체로 이루어진 유동 입자(예를 들면, 알루미나, 탄화규소, 세라믹비드, 또는 실리콘 소재)를 사용하여, 물리적으로 선박 평형수를 살균하는 기술을 개시하고 있고, 유동 입자의 손실을 막기 위해서 필터를 사용하고 있다. 즉, 987호 특허에서는 메쉬 형태의 필터를 사용하여 유동 입자의 손실을 방지하고자 한다. This patent No. 987 discloses a technique for physically sterilizing ballast water using solid moving particles (eg, alumina, silicon carbide, ceramic beads, or silicon material), and prevents the loss of flowing particles. A filter is used to prevent it. That is, in Patent No. 987, a mesh filter is used to prevent loss of flowing particles.
하지만, 987호 특허의 경우 필터의 세척을 위한 역세척 동작이 필요한 기술이며, 이러한 역세척 동작은 종종 번거롭고, 역세척 만으로 해소되지 않고 필터의 교환이 필요하다.However, in the case of Patent No. 987, it is a technology that requires a backwashing operation for cleaning the filter, and this backwashing operation is often cumbersome and cannot be solved only by backwashing and requires replacement of the filter.
본 발명의 하나 이상의 실시예에 따르면, 수처리를 위한 사이클론 기반의 하이드로크래셔 및 이를이용한 수 처리 시스템이 제공될 수 있다. According to one or more embodiments of the present invention, a cyclone-based hydrocrash for water treatment and a water treatment system using the same may be provided.
본 발명의 일 실시예에 따르면, 유동 입자를 포함하는 내부 공간을 가진 바디부(4); 바디부(4)의 내부 공간으로 원수를 공급하도록 바디부(4)와 동작적으로 결합된 원수 유입구; 바디부(4)의 내부 공간에 위치된 사이클론부(5); 및 바디부(4)와 사이클론부(5)를 연통시키는 연통관(6);을 포함하며, 바디부(4)의 내부 공간에서 선회하면서 살균된 원수는 연통관(6)을 통해서 사이클론부(5)로 유입되는 것인, 사이클론 기반의 하이드로크래셔가 제공될 수 있다.According to an embodiment of the present invention, a body portion 4 having an interior space containing flowing particles; a raw water inlet operatively coupled to the body 4 to supply raw water to the inner space of the body 4; a cyclone part 5 located in the inner space of the body part 4; and a communication pipe (6) for communicating the body (4) and the cyclone part (5), and the raw water sterilized while turning in the internal space of the body part (4) is the cyclone part (5) through the communication pipe (6) A cyclone-based hydrocrash can be provided that is introduced into the
본 발명의 하나 이상의 실시예에 따르면, 유동 입자들의 손실 없이, 원수에 포함된 생물에 충격을 가하여 사멸시키거나 비활성화 시킴으로써 물리적인 살균이 가능하도록 하는 효과가 있다.According to one or more embodiments of the present invention, there is an effect of enabling physical sterilization by applying an impact to the living organisms included in the raw water and killing or inactivating them without loss of flowing particles.
도 1은 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔를 이용한 수 처리 시스템을 설명하기 위한 도면이다.1 is a view for explaining a water treatment system using a cyclone-based hydrocrash according to an embodiment of the present invention.
도 2와 도 3은 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔를 설명하기 위한 도면들이다. 2 and 3 are views for explaining a cyclone-based hydrocrasher according to an embodiment of the present invention.
도 4와 도 5는 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔의 원수 유입구를 설명하기 위한 도면이다.4 and 5 are views for explaining the raw water inlet of the cyclone-based hydrocrash according to an embodiment of the present invention.
도 6은 본 발명의 일 실시예에 따른 스왈러를 설명하기 위한 도면이다. 6 is a view for explaining a swapper according to an embodiment of the present invention.
[부호의 설명][Explanation of code]
1: 원수 유입구 2: 압력 챔버부 3: 스왈러1: Raw water inlet 2: Pressure chamber part 3: Swallower
4: 바디부 5: 사이클론부 6: 연통관4: Body part 5: Cyclone part 6: Communication pipe
8: 사이클론부의 바디부 9: 하강 선회류 10: 상승 선회류8: body part of the cyclone part 9: descending swirl flow 10: ascending swirl flow
11: 제1배출관 12: 제2배출관 M: 유동 입자11: First discharge pipe 12: Second discharge pipe M: Flowing particles
100: 원수 저장부 200: 하이드로크래셔100: raw water storage unit 200: hydro crusher
300: 살균부 400: 처리수 저장부300: sterilization unit 400: treated water storage unit
이상의 본 발명의 목적들, 다른 목적들, 특징들 및 이점들은 첨부된 도면과 관련된 이하의 바람직한 실시예들을 통해서 쉽게 이해될 것이다. 그러나 본 발명은 여기서 설명되는 실시예들에 한정되지 않고 다른 형태로 구체화될 수도 있다. 오히려, 여기서 소개되는 실시예들은 개시된 내용이 철저하고 완전해질 수 있도록 그리고 당업자에게 본 발명의 사상이 충분히 전달될 수 있도록 하기 위해 제공되는 것이다.The above objects, other objects, features and advantages of the present invention will be easily understood through the following preferred embodiments in conjunction with the accompanying drawings. However, the present invention is not limited to the embodiments described herein and may be embodied in other forms. Rather, the embodiments introduced herein are provided so that the disclosed subject matter may be thorough and complete, and that the spirit of the present invention may be sufficiently conveyed to those skilled in the art.
본 명세서에서, 어떤 구성요소가 다른 구성요소 상에 있다고 언급되는 경우에 그것은 다른 구성요소 상에 직접 위치될 수 있거나 또는 그들 사이에 제3의 구성요소가 개재될 수도 있다는 것을 의미한다. 또한, 도면들에 있어서, 구성요소들의 두께는 기술적 내용의 효과적인 설명을 위해 과장된 것이다.In this specification, when a component is referred to as being on another component, it means that it may be directly positioned on the other component or a third component may be interposed therebetween. In addition, in the drawings, the thickness of the components is exaggerated for effective description of the technical content.
또한 본 명세서에서 구성요소간의 위치 관계를 설명하기 위해 사용되는 '상부(위)', '하부(아래)', '좌측’, '우측’, '전면', '후면' 등의 표현은 절대적 기준으로서의 방향이나 위치를 의미하지 않으며, 각 도면을 참조하여 본 발명을 설명할 때 해당 도면을 기준으로 설명의 편의를 위해 사용되는 상대적 표현이다. In addition, expressions such as 'top (top)', 'bottom (bottom)', 'left', 'right', 'front', 'rear' used to describe the positional relationship between components in this specification are absolute standards. It does not mean a direction or a position as , and is a relative expression used for convenience of description with reference to the drawings when the present invention is described with reference to the drawings.
본 명세서에서 기술하는 실시예들은 본 발명의 이상적인 예시도인 단면도 및/또는 평면도들을 참고하여 설명될 것이다. 본 명세서의 다양한 실시예들에서 제1, 제2 등의 용어가 다양한 구성요소들을 기술하기 위해서 사용되었지만, 이들 구성요소들이 이 같은 용어들에 의해서 한정되어서는 안된다. 이들 용어들은 단지 어느 구성요소를 다른 구성요소와 구별시키기 위해서 사용되었을 뿐이다. 여기에 설명되고 예시되는 실시예들은 그것의 상보적인 실시예들도 포함한다.Embodiments described herein will be described with reference to cross-sectional and/or plan views, which are ideal illustrative views of the present invention. In various embodiments of the present specification, terms such as first, second, etc. are used to describe various components, but these components should not be limited by these terms. These terms are only used to distinguish one component from another. Embodiments described and illustrated herein also include complementary embodiments thereof.
본 명세서에서 사용된 용어는 실시예들을 설명하기 위한 것이며 본 발명을 제한하고자 하는 것은 아니다. 본 명세서에서, 단수형은 문구에서 특별히 언급하지 않는 한 복수형도 포함한다. The terminology used herein is for the purpose of describing the embodiments and is not intended to limit the present invention. In this specification, the singular also includes the plural unless specifically stated otherwise in the phrase.
명세서에서 사용되는 '포함한다(comprise)' 및/또는 '포함하는(comprising)'은 언급된 구성요소는 하나 이상의 다른 구성요소의 존재 또는 추가를 배제하지 않는다.As used herein, the terms 'comprise' and/or 'comprising' do not exclude the presence or addition of one or more other components.
본원 명세서에서는 임의의 구성요소 A와 구성요소 B가 서로 동작적으로 결합되어 있다고 함은, 어떤 동작이 이루어지도록 임의의 구성요소 A와 구성요소 B가 서로 직접 또는 간접(하나 이상의 다른 구성요소를 매개로 하여) 결합되어 있는 것을 의미한다. In this specification, any component A and component B are operatively coupled to each other means that any component A and component B are directly or indirectly connected to each other (via one or more other components) so that an operation is performed. ) means that they are connected.
이하, 도면을 참조하여 본 발명을 상세히 설명하도록 한다. 아래의 특정 실시예들을 기술하는데 있어서, 여러 가지의 특정적인 내용들은 발명을 더 구체적으로 설명하고 이해를 돕기 위해 작성되었다. 하지만 본 발명을 이해할 수 있을 정도로 이 분야의 지식을 갖고 있는 독자는 이러한 여러 가지의 특정적인 내용들이 없어도 사용될 수 있다는 것을 인지할 수 있다. 어떤 경우에는, 발명을 기술하는 데 있어서 흔히 알려졌으면서 발명과 크게 관련 없는 부분들은 본 발명을 설명하는 데 있어 혼돈을 막기 위해 기술하지 않음을 미리 언급해 둔다.Hereinafter, the present invention will be described in detail with reference to the drawings. In describing the specific embodiments below, various specific contents have been prepared to more specifically describe the invention and help understanding. However, a reader having enough knowledge in this field to understand the present invention may recognize that it can be used without these various specific details. In some cases, it is mentioned in advance that parts which are commonly known and not largely related to the invention in describing the invention are not described in order to avoid confusion in describing the invention.
용어 Terms
본원 명세서에서, 원수 또는 선박 평형수를 '처리', '사멸' 또는 '살균'한다는 표현은 원수 또는 선박 평형수에 포함된 생물(예를 들면, 동물성 플랑크톤, 식물성 플랑크톤)을 죽이거나 비활성화 하는 것을 의미한다.In the present specification, the expression 'treatment', 'death' or 'sterilization' of raw water or ballast water refers to killing or inactivating organisms (eg, zooplankton, phytoplankton) contained in raw water or ballast water. it means.
도 1은 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔를 이용한 수 처리 시스템을 설명하기 위한 도면이다.1 is a view for explaining a water treatment system using a cyclone-based hydrocrash according to an embodiment of the present invention.
벽면(IS)참조하면, 본 실시예에 따른 수 처리 시스템은, 원수 저장부(100), 수처리용 하이드로크래서(이하,종종 '하이드로크래셔'라고 함)(200), 살균부(300), 처리수를 저장하는 저장부(400), 메인 배관(L1, L2, L3), 및 하나 이상의 펌프(P1, P2)를 포함할 수 있다. 본원 발명에서, 원수는 살균의 대상이 되는 물(민물과 바닷물 중 적어도 하나를 의미)을 의미하며, 다양한 종류의 물일 수 있다. 본 실시예에서, 원수가 선박 평형수인 경우를 가정하여 본 수처리 시스템을 설명하기로 한다.Referring to the wall IS, the water treatment system according to this embodiment includes a raw water storage unit 100, a hydrocracker for water treatment (hereinafter, often referred to as a 'hydrocrasher') 200, a sterilization unit 300, It may include a storage unit 400 for storing the treated water, main pipes (L1, L2, L3), and one or more pumps (P1, P2). In the present invention, raw water means water to be sterilized (meaning at least one of fresh water and sea water), and may be various types of water. In this embodiment, the present water treatment system will be described on the assumption that the raw water is ballast water.
본원 발명에서 원수가 선박 평형수인 것은 예시적인 것으로서, 다른 종류의 원수에도 적용될 수 있음은 물론이다. 이하에서는, 원수가 선박 평형수이고, 원수 저장부(100)는 씨체스트(100)이고, 저장부(400)는 살균된 선박 평형수를 저장하는 선박 평형수 저장 탱크(400)인 경우를 가정하여 본 실시예를 설명하기로 한다. It goes without saying that raw water in the present invention is ballast water as an example, and may be applied to other types of raw water. Hereinafter, it is assumed that the raw water is ballast water, the raw water storage unit 100 is the sea chest 100, and the storage unit 400 is a ballast water storage tank 400 for storing sterilized ballast water. Thus, the present embodiment will be described.
씨체스트(sea chest)(100)는 바다로부터 선박 평형수로 이용할 해수를 유입하는 곳이다. 씨체스트(100)에 유입된 선박 평형수는 씨체스트(100)에 연결된 선박 평형수 메인 배관(L1)을 통해 하이드로크래셔(200)로 공급된다. 여기서, 선박 평형수 메인 배관(L1)에 흐르는 선박 평형수는 메인 배관(L1) 상에 설치된 펌프(P1)에 의해 펌핑되어 하이드로크래셔(200)로 제공될 수 있다.Sea chest (sea chest) (100) is a place for introducing seawater to be used as ballast water from the sea. The ballast water introduced into the sea chest 100 is supplied to the hydrocrasher 200 through the ballast water main pipe L1 connected to the sea chest 100 . Here, the ballast water flowing in the ballast water main pipe (L1) may be pumped by the pump (P1) installed on the main pipe (L1) and provided to the hydrocrasher (200).
본 실시예에 따른 하이드로크래셔(200)는, 하이드로크래셔의 형상과 선박 평형수의 유속과 유압으로 발생되는 와류(vortex flow)에 의해 유동되는 입자(이하, '유동 입자')들을 구비하며, 그러한 유동 입자들은 하이드로크래셔 내에서 발생하는 와류에 의해 회전하면서 서로 충돌(collision)하고 마찰(friction)되며 형상물에 부딪친다(crush). 한편, 선박 평형수에 포함되어 있는 생물들은 서로 충돌, 마찰되는 유동입자와 충돌하면서 사멸 혹은 비활성화 된다. The hydrocrash 200 according to the present embodiment includes particles (hereinafter, 'flowing particles') that flow by the shape of the hydrocrasher, the flow velocity of ballast water, and a vortex flow generated by hydraulic pressure, and such The flowing particles collide with each other and rub against each other while rotating by the vortex generated in the hydrocrash, and crush the shape. On the other hand, living organisms included in ballast water collide with each other and are killed or deactivated by colliding with frictional moving particles.
본 발명의 일 실시예에 따른 하이드로크래셔(200)는, 자신(200)이 구비하고 있는 유동 입자들이 선박 평형수에 의해 외부로 유출되지 않고 자신(200)의 내부에 계속 존재하도록 구성되어 있다. The hydrocrasher 200 according to an embodiment of the present invention is configured such that the flowing particles of the self 200 do not flow out by the ballast water and continue to exist inside the self 200 .
본 발명의 일 실시예에 따르면, 하이드로크래셔(200)는, 씨체스트(100)와 선박 평형수 저장 탱크(400) 사이에 존재하는 메인 배관상에 설치될 수 있다. 여기서, 메인 배관은 선박 평형수가 씨체스트(100)로부터 선박 평형수 저장 탱크(400)까지 이동할 수 있는 경로를 제공한다. According to an embodiment of the present invention, the hydrocrasher 200 may be installed on the main pipe existing between the sea chest 100 and the ballast water storage tank 400 . Here, the main pipe provides a path through which ballast water can move from the sea chest 100 to the ballast water storage tank 400 .
본원 명세서에서, 본 발명의 설명의 목적을 위해서 씨체스트(100)와 하이드로크래셔(200) 사이에 존재하는 메인 배관을 메인 배관(L1), 하이드로크래셔(200)와 살균부(300) 사이에 존재하는 메인 배관(L2), 살균부(300)와 선박 평형수 저장 탱크(400) 사이에 존재하는 메인 배관을 메인 배관(L3)라고 부르기로 한다. In the present specification, for the purpose of describing the present invention, the main pipe existing between the sea chest 100 and the hydrocrasher 200 is present between the main pipe L1, the hydrocrasher 200 and the sterilization unit 300 . The main pipe (L2), the main pipe existing between the sterilization unit 300 and the ballast water storage tank 400 is referred to as a main pipe (L3).
메인 배관(L1) 상에 설치된 펌프(P1)에 의해 선박 평형수가 씨체스트(100)로부터 펌핑(Pumping)되어 하이드로크래셔(200)로 유입된다. Ballast water is pumped from the sea chest 100 by the pump P1 installed on the main pipe L1 and flows into the hydrocrash 200 .
하이드로크래셔(200)로 유입된 선박 평형수는 하이드로크래셔(200)의 형상과 선박 평형수의 유속과 유압으로 발생되는 와류(vortex flow)에 의해 유동되는 입자들과 충돌, 마찰 등의 물리적 운동에 의해 선박 평형수에 포함되어 있는 생물들을 사멸시킨 후 하이드로크래셔(200) 외부로 유출된다. The ballast water introduced into the hydrocrasher 200 is subjected to physical motions such as collision and friction with particles flowing by the shape of the hydrocrasher 200, the flow velocity of the ballast water, and a vortex flow generated by hydraulic pressure. After killing the living creatures included in the ballast water by the hydrocrash 200, it flows out to the outside.
하이드로크래셔(200)에 대한 보다 구체적인 설명은 도 2 내지 도 6를 참조하여 후술하기로 한다.A more detailed description of the hydrocrash 200 will be described later with reference to FIGS. 2 to 6 .
본 실시예에 따른 수 처리 시스템은, 살균부(300)를 더 포함할 수 있다. 본 실시예에서, 살균부(300)는 하이드로크래셔(200)와 선박 평형수 저장 탱크(400) 사이에 설치될 수 있고, 하이드로크래셔(200)로부터 배출된 선박 평형수를 메인 배관(L2)을 통해 제공 받아 살균한다. The water treatment system according to the present embodiment may further include a sterilization unit 300 . In the present embodiment, the sterilization unit 300 may be installed between the hydrocrasher 200 and the ballast water storage tank 400, and the ballast water discharged from the hydrocrasher 200 through the main pipe L2. provided and sterilized.
본 실시예에서, 살균부(300)는 오존, UV, 또는 전기 분해 등을 이용하여 선박 평형수를 살균할 수 있다. 살균부(300)는 어떠한 방식의 기술이던 선박 평형수를 살균할 수 있는 장치라면 본 실시예에 적용될 수 있다. In this embodiment, the sterilization unit 300 may sterilize the ballast water using ozone, UV, or electrolysis. The sterilization unit 300 may be applied to the present embodiment as long as it is a device capable of sterilizing ballast water using any type of technology.
예를 들면, 한국특허출원번호 2013-0107176호(출원일: 2013.09.06, 발명의 명칭: 오존을 이용한 발라스트수 살균시스템에서 TRO 농도 계측을 통한 오존 가스 농도 및 유량의 자동제어 장치와 방법)에는 오존을 이용하여 선박 평형수를 살균하는 기술이 기재되어 있다. 본 한국특허출원번호에 기재된 기술은 본원 발명과 서로 상충되지 않는 범위에서 본원 명세서의 일부로 결합된다.For example, in Korea Patent Application No. 2013-0107176 (application date: 2013.09.06, title of invention: apparatus and method for automatic control of ozone gas concentration and flow rate through TRO concentration measurement in ballast water sterilization system using ozone), ozone A technique for sterilizing ballast water using The technology described in this Korean Patent Application No. is incorporated as a part of the present specification to the extent that it does not conflict with the present invention.
다른 예를 들면, 한국특허출원번호 2010-0035788 호(출원일: 2010.04.19, 발명의 명칭: 선박의 평형수 살균장치)에는 자외선을 이용하여 선박 평형수를 살균하는 기술이 기재되어 있다. 본 한국특허출원번호에 기재된 기술은 본원 발명과 서로 상충되지 않는 범위에서 본원 명세서의 일부로 결합된다.For another example, Korean Patent Application No. 2010-0035788 (application date: April 19, 2010, title of invention: ballast water sterilization apparatus for ships) describes a technique for sterilizing ballast water using ultraviolet rays. The technology described in this Korean Patent Application No. is incorporated as a part of the present specification to the extent that it does not conflict with the present invention.
또 다른 예를 들면, 한국특허출원번호 2011-0067818호(출원일: 2011.07.08, 발명의 명칭: 전기분해 유닛을 이용한 선박의 발라스트 수 처리방법)에는 전기분해를 이용하여 선박 평형수를 살균하는 기술이 기재되어 있다. 본 한국특허출원번호에 기재된 기술은 본원 발명과 서로 상충되지 않는 범위에서 본원 명세서의 일부로 결합된다.As another example, in Korea Patent Application No. 2011-0067818 (application date: 2011.07.08, title of invention: method for treating ballast water of a ship using an electrolysis unit), a technology for sterilizing ballast water using electrolysis This is described. The technology described in this Korean Patent Application No. is incorporated as a part of the present specification to the extent that it does not conflict with the present invention.
또 다른 예를 들면, 살균부(300)는 본 발명의 일 실시예에 따른 하이드로크래셔(200)와 동일한 구성을 가질 수 있다. As another example, the sterilizing unit 300 may have the same configuration as the hydrocrash 200 according to an embodiment of the present invention.
이처럼, 살균부(300)는 하이드로크래셔(200)에 의해 1차적으로 살균된 후에, 다시 살균하는 동작을 수행함으로써, 선박 평형수에 대한 살균 성능을 향상시킨다. In this way, the sterilization unit 300 improves the sterilization performance of the ballast water by performing an operation of sterilizing again after being first sterilized by the hydrocrasher 200 .
나아가, 살균부(300)는 하이드로크래셔(200)와 함께 선박 평형수를 살균함으로써, 하이드로크래셔(200) 없이 자신(300) 혼자서 선박 평형수를 살균할 때보다 화학적 살균인 경우 살균에 기여 하는 산화제를 적게 사용해도 되며 이는 결국 선박 평형수의 구성 장비를 소형화 할 수 있으며 리소스(resource)를 적게 사용하게 된다.Furthermore, the sterilizing unit 300 sterilizes the ballast water together with the hydrocracker 200, so that the oxidizing agent that contributes to sterilization in the case of chemical sterilization than when sterilizing the ballast water by itself (300) without the hydrocracker 200 alone can be used less, which in turn makes it possible to downsize the components of ballast water and use less resources.
예를 들면, 살균부(300)가 오존을 이용하여 선박 평형수를 살균하는 장치인 경우에는, 오존의 량을 상대적으로 적게 사용하여 선박 평형수를 살균할 수 있다. 다른 예를 들면, 살균부(300)가 UV나 전기분해 방식을 사용하여 선박 평형수를 살균하는 장치인 경우에는, 전력을 상대적으로 적게 사용하여 선박 평형수를 살균할 수 있다. 따라서 구성 장비의 소형화가 가능하다.For example, when the sterilization unit 300 is a device for sterilizing ballast water using ozone, it is possible to sterilize the ballast water by using a relatively small amount of ozone. For another example, when the sterilizer 300 is a device for sterilizing ballast water using UV or electrolysis, it is possible to sterilize the ballast water by using relatively little electric power. Therefore, it is possible to miniaturize the component equipment.
본 실시예에 따른 선박 평형수 저장 탱크(400)는 하이드로크래셔(200) 및 살균부(300)에 의해 살균된 선박 평형수를 저장한다. 선박 평형수 저장 탱크(400)에 저장된 선박 평형수는 배출이 필요한 경우, 선박 평형수 저장 탱크(400)에 연결된 배관(L4)을 통해서 외부로 배출될 수 있다. 외부로 배출될 때, 살균부(300)가 어떠한 방식이냐에 따라서 그대로 배출되거나 또는 중화제를 투입하여 중화시킨 후에 배출한다. 예를 들면, 살균부(300)가 오존을 이용하여 선박 평형수를 살균한 경우에는, 선박 평형수 저장 탱크(400)에 저장된 선박 평형수는 외부로 배출될 때 중화제에 의해 중화되어 배출된다. 한국특허출원번호 2009-0023795호(출원일: 2009.03.20, 발명의 명칭: 선박평형수 중화장치 및 중화방법)에는 오존 가스를 중화시킨 후에 외부로 배출하는 기술이 기재되어 있다. 본 한국특허출원번호에 기재된 기술은 본원 발명과 서로 상충되지 않는 범위에서 본원 명세서의 일부로 결합된다.The ballast water storage tank 400 according to the present embodiment stores the ballast water sterilized by the hydrocrash 200 and the sterilization unit 300 . When the ballast water stored in the ballast water storage tank 400 needs to be discharged, it may be discharged to the outside through the pipe L4 connected to the ballast water storage tank 400 . When discharged to the outside, the sterilization unit 300 is discharged as it is, or after neutralization by inputting a neutralizing agent, depending on the type of method. For example, when the sterilizer 300 sterilizes the ballast water using ozone, the ballast water stored in the ballast water storage tank 400 is neutralized by a neutralizing agent and discharged when discharged to the outside. Korean Patent Application No. 2009-0023795 (application date: March 20, 2009, title of invention: Ballast Water Neutralization Device and Neutralization Method) describes a technique for neutralizing ozone gas and then discharging it to the outside. The technology described in this Korean Patent Application No. is incorporated as a part of the present specification to the extent that it does not conflict with the present invention.
도 2와 도 3은 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔를 설명하기 위한 도면들이다. 본 발명의 일 실시예에 따른 하이드로크래셔는 원수를 살균 처리할 수 있다. 2 and 3 are views for explaining a cyclone-based hydrocrasher according to an embodiment of the present invention. The hydrocrash according to an embodiment of the present invention can sterilize raw water.
도 2 및 도 3을 참조하면, 본 발명의 일 실시예에 따른 하이드로크래셔는 내부 공간('내부'와 같은 의미이며, '내부'와 '내부 공간'은 같은 의미로 서로 혼용하기로 한다)을 가진 통 형상의 바디부(4), 원심력에 의해 큰 입자와 작은 입자를 분리시킬 수 있는 사이클론부(5), 및 바디부(4)와 연통관(6)를 연통시키는 연통관(6)을 포함할 수 있다. 본 실시예에서, 바디부(4)의 내부 공간에서 선회하면서 살균된 원수는 연통관(6)을 통해서 사이클론부(5)로 유입된다.2 and 3, the hydrocrash according to an embodiment of the present invention has an internal space (the same meaning as 'inside', and 'inside' and 'internal space' have the same meaning and will be used interchangeably) A tubular body part 4 with an excitation, a cyclone part 5 capable of separating large particles from small particles by centrifugal force, and a communication pipe 6 for communicating the body part 4 and the communication pipe 6 are included. can In this embodiment, the raw water sterilized while turning in the internal space of the body part 4 is introduced into the cyclone part 5 through the communication pipe 6 .
본원 명세서에서, '원수'는 살균전의 물을 의미하지만, 살균여부에 대한 구별의 실익이 없을 경우에는, 설명의 용이를 위해서, 바디부(4)에서 '살균 중인 원수'나, 연통관(6)과 사이클론부(5)에 있는 '살균된 원수'도 종종 '원수'로 언급하기로 한다.In the present specification, 'raw water' means water before sterilization, but if there is no real benefit of distinguishing whether to sterilize, for ease of explanation, 'raw water under sterilization' in the body part 4 or the communication pipe 6 The 'sterilized raw water' in the and cyclone section 5 is also often referred to as 'raw water'.
바디부(4)의 내부 공간에는 유동 입자(M)들이 포함되며, 유동 입자(M)는 종종 메디아로도 호칭되기도 하며, 본원 명세서에서 '유동 입자들'과 '메디아'는 같은 의미로 사용된다.Flowing particles M are included in the internal space of the body 4, and the flowing particles M are often referred to as media, and in this specification, 'flowing particles' and 'media' are used interchangeably. .
후술하겠지만, 메디아(M)는 바디부(4)의 내부 어디에도 위치될 수 있다. 원수에 포함된 생물의 사멸 효과를 높이기 위해서, 후술하는 압력 챔버 내부에도 메디아(M)가 위치될 수 있다. As will be described later, the media (M) may be located anywhere inside the body portion (4). In order to increase the effect of killing organisms included in the raw water, the media (M) may be located inside the pressure chamber to be described later.
내부 공간을 가진 통 형상의 바디부(4)는 원수와 메디아(M)가 효율적으로 선회될 수 있는 구조를 가지는 것이 바람직하다. 예를 들면, 바디부(4)의 내부 표면이 원형의 통 형상일 수 있다. 하지만, 본원 발명에 따른 바디부(4)의 내부 표면의 형상이 반드시 원형에 한정될 필요는 없다. It is preferable that the cylindrical body portion 4 having an internal space has a structure in which raw water and the media M can be rotated efficiently. For example, the inner surface of the body portion 4 may have a circular cylindrical shape. However, the shape of the inner surface of the body portion 4 according to the present invention is not necessarily limited to a circular shape.
바디부(4)는 하부 및 상부로 이루어진 통 형상을 가지며, 바디부(4)의 하부에는 압력 챔버부(2)와 원수를 유입받을 수 있는 원수 유입구(1)가 형성되어 있다. The body part 4 has a cylindrical shape consisting of a lower part and an upper part, and the pressure chamber part 2 and the raw water inlet 1 through which raw water can be introduced are formed in the lower part of the body part 4 .
본 실시예에서, 바디부(4)의 길이(H_B)의 중앙(H_OB)을 기준으로, 한쪽은 상부이고 나머지 한쪽은 하부라고 하며, 또한, 사이클론부(5)의 길이(H_C)의 중앙(H_OC)을 기준으로 한쪽은 상부이고 나머지 한쪽은 하부라고 한다. 본원 명세서에서는, 지구의 중력을 기준으로 높은 쪽을 상부라고 하고, 낮은 쪽을 하부라고 부르기로 한다. In this embodiment, based on the center (H_OB) of the length (H_B) of the body part 4, one side is called the upper side and the other side is called the lower part, and also the center (H_C) of the length (H_C) of the cyclone part 5 Based on H_OC), one side is called the upper side and the other side is called the lower side. In the present specification, a higher side is referred to as an upper side, and a lower side is referred to as a lower side, based on the Earth's gravity.
본 실시예에서 연통부(6)는 바디부(4)의 상부의 임의의 위치와, 사이클론부(5)의 상부의 1/2 이상 되는 곳의 임의의 위치를 서로 연통시키도록 구성된다. 즉, 연통부(6)는 바디부(4)의 길이의 중앙보다 높은 상부와 사이클론부(5)의 길이의 중앙보다 높은 상부를 서로 연통시킨다.In the present embodiment, the communicating portion 6 is configured to communicate an arbitrary position of the upper portion of the body portion 4 and an arbitrary position of the upper half of the cyclone portion 5 or more with each other. That is, the communicating portion 6 communicates an upper portion higher than the center of the length of the body portion 4 and an upper portion higher than the center of the length of the cyclone portion 5 with each other.
바디부(4)와 원수 유입구(1)는 바디부(4)의 내부 공간으로 원수가 공급되도록 서로 동작적으로 결합되어 있다. The body part 4 and the raw water inlet 1 are operatively coupled to each other so that raw water is supplied to the inner space of the body part 4 .
바디부(4)의 상부 단부는 상부면에 의해 막혀있고, 하부 단부는 바닥면에 막혀 있고, 하부 단부로부터 일정 거리 이격된 위치에 스왈러(3)가 바디부(4)의 내부의 측면에 결합되어 있다. 바디부(4)는 원수나 메디아(M)가 외부로 누출되지 않도록 구성되어 있다. The upper end of the body part 4 is blocked by the upper surface, the lower end is blocked by the bottom surface, and the swapper 3 is located on the inner side of the body 4 at a location spaced a certain distance from the lower end. are connected The body part 4 is configured so that raw water or the media M does not leak to the outside.
본 실시예에서, 바디부(4)의 하부 단부와 원수 유입구(1)는, 원수가 바디부(4)의 내부로 유입되도록 서로 동작적으로 결합되어 있다. In this embodiment, the lower end of the body portion 4 and the raw water inlet 1 are operatively coupled to each other so that the raw water flows into the interior of the body portion 4 .
후술하겠지만, 바디부(4), 특히 바디부(4)의 하부에는 압력 챔버부(2)가 형성되어 있다. 원수 유입구(1)로 유입되는 원수는 압력 챔버부(2)로 바로 유입되도록, 압력 챔버부(2)와 원수 유입구(1)는 서로 동작적으로 결합되어 있다. As will be described later, the pressure chamber part 2 is formed in the body part 4 , in particular, the lower part of the body part 4 . The pressure chamber part 2 and the raw water inlet 1 are operatively coupled to each other so that raw water flowing into the raw water inlet 1 directly flows into the pressure chamber part 2 .
원수 유입구(1)로 유입된 원수는 바디부(4)의 상부로 진행할 때 스왈러(3)에 의해 압력을 받는다. 스왈러(3), 하부 단부의 바닥면, 및 바디부(4)의 측면으로 구성된 공간은 압력 챔버부(2)를 구성하며, 원수 유입구(1)를 통해서 유입된 원수는 바로 바디부(4)의 상부로 이동되는 것이 아니고 압력 챔버부(2)의 내부에서 선회 및 상승하면서 스왈러(3)를 통해서 바디부(4)로 선회 및 상승한다. 스왈러(3)는 원수가 선회될 수 있는 효율적인 구성을 가진다. The raw water introduced into the raw water inlet (1) is pressured by the swirler (3) when proceeding to the upper portion of the body (4). The space composed of the swirler 3, the bottom surface of the lower end, and the side surface of the body part 4 constitutes the pressure chamber part 2, and the raw water introduced through the raw water inlet 1 is directly the body part 4 ) does not move to the upper part, but turns and rises to the body part 4 through the swirler 3 while turning and rising inside the pressure chamber part 2 . Swallower 3 has an efficient configuration in which the enemy can be swiveled.
사이클론부(5)와 바디부(4)는 동작적으로 결합되어 있다. 본 실시예에서, 사이클론부(5)는 바디부(4)의 내부 공간에 위치된다. The cyclone part 5 and the body part 4 are operatively coupled. In this embodiment, the cyclone part 5 is located in the inner space of the body part 4 .
본 실시예에 따르면, 사이클론부(5)는 바디부(4)의 상부 단부, 내부 공간, 및 하부 단부를 관통하도록 바디부(4)와 결합되어 있다. 바디부(4)의 상부 단부는 상부면에 의해 막혀 있는데, 사이클론부(5)는 그러한 상부면을 관통하여 바디부(4)의 내부 공간을 지나고, 바디부(4)의 하부 단부의 바닥면을 관통한다. According to this embodiment, the cyclone part 5 is coupled with the body part 4 so as to penetrate the upper end, the inner space, and the lower end of the body part 4 . The upper end of the body portion 4 is blocked by an upper surface, through which the cyclone portion 5 passes through the inner space of the body portion 4, and the bottom surface of the lower end of the body portion 4 goes through
사이클론부(5)가 상부면을 관통할때, 바디부(4) 내부에 존재하는 원수나 메디아(M)가 외부로 누설되지 않도록, 사이클론의 외부면과 상부면은 긴밀하게 결합되어 있다. 사이클론부(5)가 바닥면을 관통할때에도, 바디부(4) 내부에 존재하는 원수나 메디아(M)가 외부로 누설되지 않도록, 사이클론의 외부면과 바닥면은 긴밀하게 결합되어 있다. When the cyclone unit 5 penetrates the upper surface, the outer surface and the upper surface of the cyclone are closely coupled so that raw water or the media (M) existing inside the body portion 4 does not leak to the outside. Even when the cyclone part 5 penetrates the bottom surface, the outer surface and the bottom surface of the cyclone are closely coupled so that raw water or the media (M) existing inside the body part 4 does not leak to the outside.
사이클론부(5)의 형상, 구체적으로는 사이클론부(5)의 외부의 형상은, 원수가 선회될 수 있도록 원형 구조이다.The shape of the cyclone part 5, specifically, the external shape of the cyclone part 5, has a circular structure so that raw water can rotate.
바디부(4)의 내부에는 스왈러(3)가 위치되어 있고, 사이클론부(5)는 스왈러(3)도 관통한다. 즉, 사이클론부(5)는 바디부(4)의 상부면, 내부 공간의 스왈러(3), 압력 챔버부(2), 및 바닥면을 관통하도록 바디부(4)와 결합되어 있다. Swallower 3 is positioned inside the body portion 4, and the cyclone portion 5 also penetrates through the swirler 3 . That is, the cyclone part 5 is coupled to the body part 4 so as to penetrate the upper surface of the body part 4 , the swirler 3 of the internal space, the pressure chamber part 2 , and the bottom surface.
본 실시예에서, 사이클론부(5)는 바디부(4)의 상부면의 중앙, 내부 공간의 스왈러(3)의 중앙, 압력 챔버부(2)의 중앙, 및 바닥면의 중앙을 관통하도록, 바디부(4)와 결합되어 있다. 이처럼, 사이클론부(5)가 바디부(4)의 중앙에 배치됨으로써, 원수 유입구(1)로 유입된 원수는 선회하면서 상승하게 된다. 스왈러(3)가 추가적으로 위치됨으로서, 원수는 더욱 격렬하게 선회할 수 있게 된다. In this embodiment, the cyclone part 5 penetrates through the center of the upper surface of the body part 4, the center of the swirler 3 of the inner space, the center of the pressure chamber part 2, and the center of the bottom surface. , is coupled to the body (4). As such, since the cyclone part 5 is disposed in the center of the body part 4, the raw water introduced into the raw water inlet 1 rises while turning. With the additionally positioned Swallower 3, the enemy is able to turn more violently.
사이클론부(5)는 유체(원수나 메디아(M)중 적어도 하나를 포함)가 선회되도록 하는 구성을 가지며, 예를 들면 사이클론부(5)는 유체가 선회하면서 이동하도록 원형 관의 형상을 가지되, 관의 입구의 직경이 출구의 직경보다 상대적으로 크고, 관의 직경은 관의 입구에서 출구로 가면서 점진적으로 작아진다. 따라서, 사이클론부(5)의 바디부(8)는 원뿔형의 형상을 가지며, 이러한 원뿔형의 바디부(8)는 하이드로크래셔의 바디부(4)의 내부 공간의 중앙에 위치된다.The cyclone unit 5 has a configuration such that the fluid (including at least one of raw water or the media M) rotates, for example, the cyclone unit 5 has a circular tube shape so that the fluid moves while rotating. , the diameter of the inlet of the tube is relatively larger than the diameter of the outlet, and the diameter of the tube gradually decreases from the inlet to the outlet. Accordingly, the body portion 8 of the cyclone portion 5 has a conical shape, and this conical body portion 8 is located in the center of the inner space of the body portion 4 of the hydrocrash.
즉, 사이클론부(5)과 하이드로크래셔는, 사이클론부(5)의 길이 방향과 하이드로크래셔의 바디부(4)의 길이 방향이 서로 평행하도록 정렬되어 있고, 동시에 사이클론부(5)의 중심축(사이클론부(5)의 길이 방향으로 사이클론부(5)의 바디부의 중심을 지나는 가상의 축)과, 하이드로크래셔의 바디부(4)의 중심축(바디부(4)의 길이 방향으로 바디부(4)의 중심을 지나는 가상의 축)은 서로 일치한다.That is, the cyclone part 5 and the hydrocrasher are aligned so that the longitudinal direction of the cyclone part 5 and the longitudinal direction of the body part 4 of the hydrocrasher are parallel to each other, and at the same time, the central axis of the cyclone part 5 ( An imaginary axis passing through the center of the body portion of the cyclone portion 5 in the longitudinal direction of the cyclone portion 5) and the central axis of the body portion 4 of the hydrocrasher (the body portion in the longitudinal direction of the body portion 4) The imaginary axes passing through the center of 4) coincide with each other.
원수 유입구(1)로 유입된 원수는 바디부(4) 내부에서 선회하면서 상승하게 된다. 상술한 바와 같이, 원수는 압력 챔버부(2)에서부터 선회되면서, 스왈러(3)를 경유하고, 사이클론부(5)의 외부면의 주위를 선회하면서 상승하게 되고, 상승한 원수는 모두 연통관(6)으로 배출된다. 연통관(6)은 바디부(4)의 내부와 사이클론부(5)를 연결하는 관으로서, 원수나 메디아(M)가 이동될 수 있는 경로를 제공한다. The raw water introduced into the raw water inlet (1) rises while turning inside the body (4). As described above, the raw water goes through the swirler 3 while turning from the pressure chamber part 2 and rises while turning around the outer surface of the cyclone part 5, and all the raw water that rises is the communication pipe 6 ) is released as The communication pipe 6 is a pipe connecting the inside of the body part 4 and the cyclone part 5, and provides a path through which raw water or the media (M) can be moved.
바디부(4)의 상부 단부는 상부면에 의해 막혀 있으므로, 바디부(4)의 내부에서 사이클론부(5)의 외벽(OS)을 따라 선회하면서 회전하던 원수(메디아(M) 일부 포함)는 연통관(6)을 통해서 사이클론부(5)의 상부로 이동된다. 본 실시예에서, 연통관(6)은 바디부(4)의 상부와 사이클론부(5)의 상부를 연통시키며, 연통관(6), 바디부(4), 및 사이클론부(5)는 원수 유입구(1)를 통해서 유입되는 원수가 선회되면서 살균된 후 연통관(6)을 통해서만 사이클론부(5)로 유입되도록 서로 동작적으로 결합된다.Since the upper end of the body part 4 is blocked by the upper surface, the raw water (including a part of the media M) that rotated while turning along the outer wall OS of the cyclone part 5 inside the body part 4 is It is moved to the upper part of the cyclone part (5) through the communication pipe (6). In this embodiment, the communicating pipe 6 communicates the upper part of the body part 4 and the upper part of the cyclone part 5, and the communicating pipe 6, the body part 4, and the cyclone part 5 are the raw water inlet ( The raw water introduced through 1) is sterilized while turning, and then is operatively coupled to each other so that it flows into the cyclone unit 5 only through the communication pipe 6 .
사이클론부(5)의 상부는 연통관(6)을 통해서 원수(메디아(M) 일부 포함)를 유입받도록 구성되어 있어 있다. 연통관(6)을 통해서 사이클론부(5)의 상부로 유입된 원수(메디아(M) 일부 포함)는 선회하면서 하강하며, 이렇게 선회하면서 하강하는 원수를 본원 명세서에서는 '하강 선회류(9)'라고 부르기로 한다. 하강 선회류(9)에는 주로 비중이 무거운 물질이 포함되어 있고, 원심력에 의해 사이클론부(5)의 내부 공간의 벽면(IS)을 따라 선회하면서 하강되어 배출된다. 즉, 원수에 포함된 비중이 무거운 물질의 분리가 일어나고, 비중이 무거운 물질에는 비교적 큰 동,식물 플랑크톤이 포함될 수 있다.The upper part of the cyclone part 5 is configured to receive raw water (including a part of the media M) through the communication pipe 6 . Raw water (including a part of the media (M)) flowing into the upper part of the cyclone unit 5 through the communication pipe 6 descends while turning, and the raw water descending while turning in this way is referred to as a 'downward swirl flow (9)' in this specification. to call The descending swirl flow 9 mainly contains a material with a heavy specific gravity, and is descended and discharged while turning along the wall surface IS of the inner space of the cyclone unit 5 by centrifugal force. That is, the separation of substances with a heavy specific gravity contained in the raw water occurs, and the substances with a heavy specific gravity may contain relatively large animal and phytoplankton.
본 실시예에서, 사이클론부(5)의 내부 공간의 벽면(IS)은 거칠기 처리가 되어 있다. 여기서, 사이클론부(5)의 내부 공간의 벽면(IS)의 표면 거칠기(surface roughness)는, 동, 식물 플랑크톤이 사이클론부(5)의 내부 공간의 벽면(IS)에 충돌할 때 사멸 또는 비활성될정도의 형상과 크기로 구성된다.In this embodiment, the wall surface IS of the inner space of the cyclone unit 5 is roughened. Here, the surface roughness of the wall surface IS of the inner space of the cyclone unit 5 is to be killed or deactivated when the animals and phytoplankton collide with the wall surface IS of the inner space of the cyclone unit 5 . It consists of a certain shape and size.
이처럼, 사이클론부(5)의 내부 공간의 벽면(IS)을 따라 선회하면서 하강되는 비교적 비중이 무거운 동, 식물 플랑크톤은 사이클론부(5)의 내부 공간의 벽면(IS)을 따라 선회, 하강하면서 표면 거칠기가 큰 벽면(IS)에 충돌하면서 사멸 혹은 비활성화될 수 있다. 즉, 사이클론부(5)의 내부 공간에서, 원수에 포함된 비중이 무거운 물질의 분리가 일어나기도 하지만 비중이 무거운, 비교적 큰 동,식물 플랑크톤의 사멸작용도 함께 일어날 수 있다. In this way, the relatively heavy copper and phytoplankton descending while turning along the wall surface (IS) of the inner space of the cyclone unit (5) turn along the wall surface (IS) of the inner space of the cyclone unit (5) and descend while turning on the surface It may be destroyed or deactivated while colliding with the wall (IS) with a large roughness. That is, in the inner space of the cyclone unit 5, the separation of substances with heavy specific gravity contained in raw water may occur, but also the death of relatively large animal and phytoplankton with heavy specific gravity may occur.
한편, 하강 선회류(9)의 중앙에는 상부로 선회하면서 상승하는 선회류가 있고, 이렇게 선회하면서 상승하는 원수를 본원 명세서에서는 '상승 선회류(10)'라고 부르기로 한다. 상승 선회류(10)는 상대적으로 비중이 가벼운 물질이 포함되어 있고, 사이클론부(5)의 내부 중앙을 따라서 선회하면서 상승하여 외부로 배출된다. On the other hand, in the center of the descending swirl flow 9, there is a swirl flow that rises while turning upward, and the raw water that rises while turning in this way will be referred to as an 'upturn swirl flow 10' in this specification. The ascending swirl flow 10 contains a material having a relatively light specific gravity, and ascends while turning along the inner center of the cyclone unit 5 and is discharged to the outside.
사이클론부(5)의 하부와 상부에는 각각 배출관이 형성되어 있고, 하부에 형성된 배출관은 제1배출관(11), 상부에 형성된 배출관은 제2배출관(12)으로 부르기로 한다. A discharge pipe is formed in the lower and upper portions of the cyclone unit 5 , and the discharge pipe formed in the lower part is called a first discharge pipe 11 , and the discharge pipe formed in the upper part is called a second discharge pipe 12 .
본 실시예에서, 제1배출관(11)이 형성된 곳은 사이클론부(5)의 하부에서 바디부(4)의 바닥면을 관통한 이후의 임의의 부분이고, 제2배출관(12)이 형성된 곳은 사이클론부(5)의 상부에서 바디부(4)의 상부면을 관통한 이후의 임의의 부분이다. In this embodiment, the place where the first discharge pipe 11 is formed is an arbitrary part after penetrating the bottom surface of the body part 4 in the lower part of the cyclone part 5, and the place where the second discharge pipe 12 is formed is any part after penetrating the upper surface of the body part 4 in the upper part of the cyclone part 5 .
상술한 사이클론부(5)의 내부에서 선회하면서 하강하는 하강 선회류(9)는 제1배출관(11)으로 배출되고, 하강 선회류(9)의 중앙에서 선회하면서 상승하는 상승 선회류(10)는 제2배출관(12)으로 배출된다. The descending swirl flow 9 that descends while turning inside the cyclone unit 5 is discharged to the first discharge pipe 11, and the ascending swirl flow 10 that rises while turning at the center of the descending swirl flow 9 is discharged to the second discharge pipe (12).
본 실시예에서, 제2배출관(12)은 사이클론부(5)의 최상부에서 하부 방향으로 제1거리(H_T)만큼 돌출되어 있고, 연통부(6)는 제2배출관(12)의 돌출된 부분보다 높은 위치의 사이클론부(5)와 바디부(4)를 연통시킨다. 이는, 연통부(6)로부터 사이클론부(5)로 유입되는 원수(처리수)가 상승 선회류(10)를 방해하지 않지 않도록 하기 위함이다.In this embodiment, the second discharge pipe 12 protrudes from the top of the cyclone part 5 downward by a first distance H_T, and the communication part 6 is a protruding portion of the second discharge pipe 12 . The cyclone part 5 and the body part 4 at a higher position are connected to each other. This is to prevent the raw water (treated water) flowing into the cyclone unit 5 from the communication unit 6 from interfering with the upward swirling flow 10 .
제1배출관(11)으로 배출되는 원수(처리수)에는 메디아(M)나 생물의 사체나 고형물이 섞여 있을 수 있지만, 제2배출관(12)으로 배출되는 원수(처리수)에는 메디아(M)나 생물의 사체나 고형물이 섞여 있지 않을 수 있다. 따라서, 제2배출관(12)으로 배출되는 원수는 후처리 장치(예를 들면, 살균부)로 바로 이송될 수 있고, 제1배출관(11)으로 배출되는 처리수는 별도의 저장부(미 도시)에서 메디아(M)만을 선별하여, 원수 주입구로 유입되는 원수에 혼합시킬 수 있다. The raw water (treated water) discharged through the first discharge pipe 11 may contain media (M) or dead bodies or solids of living things, but the raw water (treated water) discharged through the second discharge pipe 12 contains the media (M) It may not contain corpses or solids of living things. Therefore, the raw water discharged to the second discharge pipe 12 can be directly transferred to a post-treatment device (eg, a sterilization unit), and the treated water discharged to the first discharge pipe 11 is stored in a separate storage unit (not shown). ), only the media (M) can be selected and mixed with the raw water flowing into the raw water inlet.
본 실시예에 따른 유동 입자(M)들은, 원수(예를 들면, 선박 평형수일 수 있으나 이에 한정되는 것은 아님)에 포함된 생물을 살균 시킬 수 있을 정도로 경도가 강한 고체 입자들(a, b), 경도가 강한 고체 입자들(a, b)의 마모 방지와 반발 계수를 높이기 위한 실리콘 소재의 입자들(c)이 섞여 있는 혼합물로 구성될 수 있으며, 원수 유입구(1)를 통해 유입 받은 원수에 의해 와류 운동이 가능하다.The flowing particles (M) according to this embodiment are solid particles (a, b) that are strong enough to sterilize organisms contained in raw water (eg, ballast water, but not limited thereto). , it can be composed of a mixture of particles of silicon material (c) to prevent wear of solid particles (a, b) with strong hardness and increase the coefficient of restitution, vortex motion is possible by
예를 들면, 유동 입자(M)들은 알루미나, 탄화규소, 세라믹비드, 실리콘 소재 중 적어도 어느 하나를 포함하여 혼합되어 있을 수 있다. 이러한 혼합은 예시적인 것으로서, 경도가 강한 입자라면 어느 것이라도 가능하며, 원수 유입구(1)를 통해 유입 받은 원수에 의해 회전하게 되고, 유동 입자(M)들을 구성하는 알루미나, 탄화규소, 세라믹비드, 실리콘 소재들이 서로 충돌을 일으킨다. 한편, 원수는 선회하면서 서로 마찰을 일으키는 유동 입자(M)들 사이를 경유하는 과정에 자연스럽게 살균된다.For example, the flowing particles M may be mixed including at least one of alumina, silicon carbide, ceramic beads, and a silicon material. This mixing is exemplary, and any particles with strong hardness are possible, and they are rotated by the raw water received through the raw water inlet 1, and alumina, silicon carbide, ceramic beads, Silicon materials collide with each other. On the other hand, raw water is naturally sterilized in the process of passing between the flowing particles (M) causing friction with each other while turning.
한편, 유동 입자(M)들은 원수에 의해 이동(상승을 포함)될 수 있을 정도의 무게와 크기를 가지는 것이 바람직하다. 원수에 의해 상승될 수 있을 정도의 무게와 크기를 가져야, 유동 입자(M)들이 서로 부딪치게 되고 그에 의해 원수가 살균될 수 있기 때문이다.On the other hand, it is preferable that the moving particles (M) have a weight and size enough to be moved (including rising) by raw water. This is because the flowing particles M collide with each other and thereby the raw water can be sterilized by having enough weight and size to be raised by raw water.
상술한 바와 같이, 본 실시예에 따른 하이드로크래셔(200)는 스왈러(3)를 더 포함할 수 있다. 스왈러(3)는 본 발명이 속하는 기술분야에 종사하는 자(이하, '당업자')가 현장 상황에 맞도록 본 발명에 사용하거나 또는 사용하지 않을 수 있다. As described above, the hydrocrash 200 according to the present embodiment may further include a swapper 3 . Swallower 3 may or may not be used in the present invention so that a person (hereinafter, 'person of ordinary skill') engaged in the technical field to which the present invention belongs (hereinafter referred to as 'the person skilled in the art') suits the field situation.
스왈러(3)는 원수 유입구(1)를 통해 유입된 원수를 선회시키도록 구성되며, 종래의 알려진 구성을 사용하거나 또는 보다 효과적인 구성을 개발하여 사용할 수 있다. Swallower 3 is configured to swirl the raw water introduced through the raw water inlet 1, and may use a conventionally known configuration or develop and use a more effective configuration.
원수 유입구(1)를 통해 유입된 원수는 스왈러(3)에 의해 압력을 받을 수 있고, 이에 의해 스왈러(3)와 바닥면 사이의 공간은 압력 챔버부(2)로서의 기능을 가질 수 있다. Raw water introduced through the raw water inlet 1 may be pressurized by the swirler 3 , whereby the space between the swirler 3 and the bottom surface may have a function as the pressure chamber part 2 . .
도 4와 도 5는 본 발명의 일 실시예에 따른 사이클론 기반의 하이드로크래셔의 원수 유입구(1)를 설명하기 위한 도면이다.4 and 5 are views for explaining the raw water inlet 1 of the cyclone-based hydrocrash according to an embodiment of the present invention.
도 4를 참조하면, 원수 유입구(1)는 원수 유입구(1)로 유입되는 원수가 내부 공간의 중심축인 사이클론부(5)를 향한 방향으로 유입되도록 위치될 수 있다. 다르게는(alternatively), 도 5에 도시된 바와 같이 원수 유입구(1)는 원수가 내부 공간의 중심축인 사이클론부(5)를 향하지 않고, 중심축에서 조금이라도 벗어난 축을 향한 방향(이하, '비스듬한 방향')으로 유입되도록 위치되는 것이 가능하고, 이 경우 중심축을 향한 방향으로 유입될 때 보다 선회력이 향상되는 효과가 있다. Referring to FIG. 4 , the raw water inlet 1 may be positioned so that raw water flowing into the raw water inlet 1 flows in a direction toward the cyclone unit 5 which is the central axis of the inner space. Alternatively, as shown in FIG. 5 , the raw water inlet 1 does not face the cyclone part 5, which is the central axis of the inner space, and the raw water is directed toward an axis that is slightly off the central axis (hereinafter, 'oblique It is possible to be positioned so as to flow in the direction '), and in this case, there is an effect that the turning force is improved than when it flows in the direction toward the central axis.
도 6은 본 발명의 일 실시예에 따른 스왈러(3)를 설명하기 위한 도면이다. 6 is a view for explaining the swapper 3 according to an embodiment of the present invention.
도 6과 함께, 도 2와 도 3을 같이 참조하면, 스왈러(3)는 전체적으로 소정의 두께를 가진 판(plate) 형상을 가질 수 있고, 하이드로크래셔의 바디부(4)의 내부면의 형상에 용이하게 부착될 수 있는 형상과 크기의 판으로 구성된다. 예를 들면, 하이드로크래셔의 바디부(4)의 내부면이 원형이면, 스왈러(3)도 원형의 판 형상으로 구성될 수 있다. 스왈러(3)는 하이드로크래셔의 바디부(4)의 내부면과 밀접하게 결합되며, 종래 널리 알려진 체결수단(너트, 나사, 못,...)에 의해서 바디부(4)의 내부면에 결합될 수 있다. Referring to FIGS. 2 and 3 together with FIG. 6 , the swapper 3 may have a plate shape having a predetermined thickness as a whole, and the shape of the inner surface of the body part 4 of the hydrocrasher It consists of a plate of a shape and size that can be easily attached to the For example, if the inner surface of the body portion 4 of the hydrocrasher is circular, the swirler 3 may also be configured in a circular plate shape. The swapper 3 is closely coupled to the inner surface of the body portion 4 of the hydrocrasher, and is attached to the inner surface of the body portion 4 by conventionally well-known fastening means (nuts, screws, nails, ...). can be combined.
도 2, 도 3, 및 도 6을 참조하면, 스왈러(3)의 중앙은 사이클론부(5)가 삽입되어 관통될 수 있는 삽입구(P)가 형성되어 있고, 스왈러(3)의 외곽에는 원수가 선회되면서 통과되도록 하는 형상을 가진 복수의 관통부들(31)이 형성되어 있다. 이들 관통부들(31)의 형상과 상호간의 거리는 종래 널리 알려진 기술들에 의해 결정될 수 있다. 본 실시예에서, 삽입구(P)와 관통부들(31)의 사이의 영역(32)은 원수가 통과하지 못하도록 막혀 있다. Referring to Figures 2, 3, and 6, the center of the swirler (3) is formed with an insertion hole (P) through which the cyclone part (5) can be inserted, and at the outer edge of the swirler (3) A plurality of penetrating portions 31 having a shape to allow raw water to pass while turning are formed. The shape and distance between the through portions 31 may be determined by conventionally well-known techniques. In this embodiment, the region 32 between the insertion hole P and the through portions 31 is blocked from passing raw water.
따라서, 본 실시예에 따른 스왈러(3)는, 압력 챔버부(2)에 존재하던 원수가 복수의 관통부들(31)을 통해서만 이동될 수 있도록 구성된다. Accordingly, the swallower 3 according to the present embodiment is configured such that raw water existing in the pressure chamber part 2 can be moved only through the plurality of penetration parts 31 .
이와 같이 본 발명이 속하는 분야에서 통상의 지식을 가진 자라면 상술한 명세서의 기재로부터 다양한 수정 및 변형이 가능하다. 그러므로 본 발명의 범위는 설명된 실시예에 국한되어 정해져서는 아니 되며 후술하는 특허청구범위뿐 아니라 이 특허청구범위와 균등한 것들에 의해 정해져야 한다.As such, a person skilled in the art to which the present invention pertains can make various modifications and variations from the description of the above-described specification. Therefore, the scope of the present invention should not be limited to the described embodiments and should be defined by the following claims as well as the claims and equivalents.

Claims (10)

  1. 원수를 살균처리할 수 있는 사이클론 기반의 하이드로크래셔로서, As a cyclone-based hydrocracker that can sterilize raw water,
    유동 입자를 포함하는 내부 공간을 가진 바디부(4);a body portion 4 having an interior space containing flowing particles;
    바디부(4)의 내부 공간으로 원수를 공급하도록 바디부(4)와 동작적으로 결합된 원수 유입구(1);a raw water inlet (1) operatively coupled to the body (4) to supply raw water to the inner space of the body (4);
    바디부(4)의 내부 공간에 위치된 사이클론부(5); 및a cyclone part 5 located in the inner space of the body part 4; and
    바디부(4)와 사이클론부(5)를 연통시키는 연통관(6);을 포함하며, The body portion 4 and the communication tube 6 for communicating the cyclone portion 5; includes;
    바디부(4)의 내부 공간에서 선회하면서 살균된 원수는 연통관(6)을 통해서 사이클론부(5)로 유입되는 것인, 사이클론 기반의 하이드로크래셔.The sterilized raw water while turning in the internal space of the body (4) is introduced into the cyclone unit (5) through the communication pipe (6), a cyclone-based hydrocrash.
  2. 제1항에 있어서,According to claim 1,
    바디부(4)는 하부와 상부로 이루어진 통 형상을 가지며, 바디부(4)의 상부 단부는 상부면에 의해 막혀 있고, 바디부(4)의 하부의 단부는 바닥면에 의해 막혀 있으며, 원수가 바디부(4)의 내부로 유입되도록 바디부(4)의 하부 단부에 원수 유입구(1)가 동작적으로 결합된 것인, 사이클론 기반의 하이드로크래셔. The body portion 4 has a cylindrical shape consisting of a lower portion and an upper portion, the upper end of the body portion 4 is blocked by the upper surface, the lower end of the body portion 4 is blocked by the bottom surface, and the raw water The raw water inlet (1) is operatively coupled to the lower end of the body (4) so that it flows into the interior of the body (4), a cyclone-based hydrocrash.
  3. 제2항에 있어서,3. The method of claim 2,
    사이클론부(5)는 바디부(4)의 상부면, 바디부(4)의 내부 공간, 및 바디부(4)의 바닥면을 관통하도록 바디부(4)에 결합된 것인, 사이클론 기반의 하이드로크래셔.The cyclone part 5 is coupled to the body part 4 so as to penetrate the upper surface of the body part 4, the inner space of the body part 4, and the bottom surface of the body part 4, a cyclone-based hydrocrash.
  4. 제3항에 있어서, 4. The method of claim 3,
    원수 유입구(1)를 통해서 바디부(4)의 내부 공간에 유입된 원수는 선회하면서 살균된 후 연통관(6)을 통해서만 사이클론부(5)로 유입되도록 구성된 것인, 사이클론 기반의 하이드로크래셔.The raw water introduced into the internal space of the body part 4 through the raw water inlet 1 is sterilized while turning, and then is configured to flow into the cyclone part 5 only through the communication pipe 6, a cyclone-based hydrocracker.
  5. 제3항에 있어서, 4. The method of claim 3,
    바디부(4)에는 압력 챔버부(2)가 형성되어 있고, 원수 유입구(1)로 유입되는 원수는 압력 챔버부(2)로 바로 유입되도록, 압력 챔버부(2)와 원수 유입구(1)가 동작적으로 결합되어 있고, A pressure chamber part 2 is formed in the body part 4, and the pressure chamber part 2 and the raw water inlet 1 is operatively coupled,
    사이클론부(5)는, 또한 압력 챔버부(2)를 관통하는 것인, 사이클론 기반의 하이드로크래셔.Cyclone-based hydrocracker, the cyclone part (5) also passing through the pressure chamber part (2).
  6. 제3항에 있어서, 4. The method of claim 3,
    사이클론부(5)의 내부 공간의 벽면(IS)은 거칠기 처리가 되어 있는 것인, 사이클론 기반의 하이드로크래셔.The wall surface (IS) of the inner space of the cyclone unit (5) is a roughness treatment, a cyclone-based hydrocrash.
  7. 제5항에 있어서, 6. The method of claim 5,
    사이클론부(5)의 하부에는 배출관 - 제1배출관(11) - 이 형성되어 있고, 사이클론부(5)의 하부는 바디부(4)의 바닥면을 관통한 이후의 임의의 부분이고,A discharge pipe - the first discharge pipe 11 - is formed in the lower part of the cyclone part 5, and the lower part of the cyclone part 5 is an arbitrary part after penetrating the bottom surface of the body part 4,
    사이클론부(5)의 상부에는 배출관 - 제2배출관(12) - 이 형성되어 있고, 사이클론부(5)의 상부는 바디부(4)의 상부면을 관통한 이후의 임의의 부분인 것인, 사이클론 기반의 하이드로크래셔.The upper part of the cyclone part (5) is a discharge pipe - the second discharge pipe (12) - is formed, and the upper part of the cyclone part (5) is an arbitrary part after passing through the upper surface of the body part (4), Cyclone-based hydrocrash.
  8. 제3항에 있어서,4. The method of claim 3,
    연통부(6)는 바디부(4)의 높이의 1/2 이상 되는 곳의 임의의 위치와, 사이클론부(5)의 높이의 1/2 이상 되는 곳의 임의의 위치를 서로 연통시키는 것인, 사이클론 기반의 하이드로크래셔.The communicating part 6 communicates with each other any position where it is 1/2 or more of the height of the body part 4, and any position where it is 1/2 or more of the height of the cyclone part 5. , a cyclone-based hydrocrash.
  9. 제8항에 있어서, 9. The method of claim 8,
    제2배출관(12)은 사이클론부(5)의 최상부에서 하부 방향으로 제1거리만큼 돌출되어 있고, 연통부(6)는 제2배출관(12)의 돌출된 부분보다 높은 위치의 사이클론부(5)와 바디부(4)를 연통시키는 것인, 사이클론 기반의 하이드로크래셔.The second discharge pipe 12 protrudes by a first distance from the top of the cyclone part 5 downward, and the communication part 6 has a higher position than the protruding part of the second discharge pipe 12. The cyclone part 5 ) and the body portion (4) to communicate with, a cyclone-based hydrocrash.
  10. 제9항에 있어서,10. The method of claim 9,
    바디부(4)의 내부에는 스왈러(3)가 결합되어 있고, Inside the body part (4), the swapper (3) is coupled,
    스왈러(3), 바디부(4)의 내부, 및 바디부(4)의 바닥면은 압력 챔버부(2)를 형성하고, The swirler 3, the inside of the body 4, and the bottom surface of the body 4 form a pressure chamber part 2,
    원수 유입구(1)로 유입되는 원수는 압력 챔버부(2)로 바로 유입되도록, 압력 챔버부(2)와 원수 유입구(1)가 동작적으로 결합된 것인, 사이클론 기반의 하이드로크래셔.The pressure chamber part (2) and the raw water inlet (1) are operatively coupled so that the raw water flowing into the raw water inlet (1) flows directly into the pressure chamber part (2), a cyclone-based hydrocrasher.
PCT/KR2020/017942 2020-07-20 2020-12-09 Cyclone-based hydro-crusher for water treatment WO2022019404A1 (en)

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Citations (5)

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JP2012161728A (en) * 2011-02-04 2012-08-30 Toru Kitagawa Fluidized bed type antibacterial device
KR101618611B1 (en) * 2014-07-23 2016-05-09 삼성중공업 주식회사 Apparatus for separating hydrogen and system for treating ballast water having the same
KR101721249B1 (en) * 2015-02-03 2017-03-30 (주) 디아이엔바이로 Filter Device including UV Disinfection
KR20170131011A (en) * 2016-05-20 2017-11-29 김형오 Hydro-crusher with filter for water treatment using collision and friction between solid particles in vortex flow
KR101855226B1 (en) * 2017-01-20 2018-05-08 주식회사 에스엔 Dry reaction accelerator with increased cyclo-fluid mixing flow

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2012161728A (en) * 2011-02-04 2012-08-30 Toru Kitagawa Fluidized bed type antibacterial device
KR101618611B1 (en) * 2014-07-23 2016-05-09 삼성중공업 주식회사 Apparatus for separating hydrogen and system for treating ballast water having the same
KR101721249B1 (en) * 2015-02-03 2017-03-30 (주) 디아이엔바이로 Filter Device including UV Disinfection
KR20170131011A (en) * 2016-05-20 2017-11-29 김형오 Hydro-crusher with filter for water treatment using collision and friction between solid particles in vortex flow
KR101855226B1 (en) * 2017-01-20 2018-05-08 주식회사 에스엔 Dry reaction accelerator with increased cyclo-fluid mixing flow

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