CN110002700A - A kind of resource utilization for mud of driving piles utilizes equipment and its working method - Google Patents
A kind of resource utilization for mud of driving piles utilizes equipment and its working method Download PDFInfo
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- CN110002700A CN110002700A CN201910218145.1A CN201910218145A CN110002700A CN 110002700 A CN110002700 A CN 110002700A CN 201910218145 A CN201910218145 A CN 201910218145A CN 110002700 A CN110002700 A CN 110002700A
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- thermal
- collecting tube
- mud
- wall
- plate
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F11/00—Treatment of sludge; Devices therefor
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- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F11/00—Treatment of sludge; Devices therefor
- C02F11/12—Treatment of sludge; Devices therefor by de-watering, drying or thickening
-
- C—CHEMISTRY; METALLURGY
- C02—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F—TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
- C02F2103/00—Nature of the water, waste water, sewage or sludge to be treated
- C02F2103/10—Nature of the water, waste water, sewage or sludge to be treated from quarries or from mining activities
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- Life Sciences & Earth Sciences (AREA)
- Hydrology & Water Resources (AREA)
- Engineering & Computer Science (AREA)
- Environmental & Geological Engineering (AREA)
- Water Supply & Treatment (AREA)
- Chemical & Material Sciences (AREA)
- Organic Chemistry (AREA)
- Drying Of Solid Materials (AREA)
- Treatment Of Sludge (AREA)
Abstract
The invention discloses a kind of resource utilizations for mud of driving piles to utilize equipment and its working method, including drying plate, mud storage tank and water tank, the drying plate includes the light penetrating panel of shell and its end face insertion installation, and the inside of the shell is fixed with the first glass tube with vacuum and the second glass tube with vacuum mutually to recline.In the present invention, the first glass tube with vacuum and the second glass tube with vacuum are internally provided in drying plate, thermal-collecting tube is connected with by sealing bearing at the both ends of thermal-collecting tube fixed hole, and upper junction plate and lower connecting plate are welded on the top of drying plate and bottom end, frame is scraped with what collector tube inner wall scraped by being fixed between upper junction plate and lower connecting plate, drying plate can absorb heat and heat to thermal-collecting tube in this way, and scraping frame can be paved and be scraped to slime water, it is convenient that slime water is recycled to be dehydrated slime water using thermal energy.
Description
Technical field
The present invention relates to pile driving equipment technical fields, and in particular to a kind of resource utilization for mud of driving piles is using setting
Standby and its working method.
Background technique
Mud is added water and stirred with clay.Collapse hole, suspension landwaste can be prevented using mud, safety passes through drifting sand layer
Deng.Correctly use mud, it is ensured that safety drilling.But it is excessive use mud, many difficulties can be brought to well-flushing,
And influence water yield.So having to thicken the soup or rush at any time according to different formation properties dilute when using mud.The property of mud
The indexs such as moisture, fineness (or residue), specific gravity (or density), mobility and thixotropy, the absorption slip rate of mud can be often referred to,
In Production of Ceramics Detection & Controling must be carried out to mud property.Clay and water are the base stocks for forming mud, and clay is
The most important component part of mud.In drilling engineering, mud is usually synonym with drilling fluid, be mainly used in petroleum,
In the drilling engineering operation of natural gas.It is usually to contain a large amount of suspended matter in mud, water, oil or the grease of jelly are mixed
Close object.Effect of the mud in drilling well be it is very big, people usually it be referred to as drilling well " blood ".
During piling, by into stake holes priming petock facilitate pile crown to cut soil, but with bore stake depth
Degree increases, and needs outward to discharge slime water, since soil particle cannot be repeated without nutritional ingredient, mud in slime water again
It utilizes, thus it is easily contaminated to bore the soil near stake, thus a kind of resource utilization for mud of driving piles is needed to utilize equipment.
Summary of the invention
In order to overcome above-mentioned technical problem, the purpose of the present invention is to provide a kind of recyclings for mud of driving piles to return
It receives and utilizes equipment and its working method, be internally provided with the first glass tube with vacuum and the second glass tube with vacuum in drying plate,
The both ends of thermal-collecting tube fixed hole are connected with thermal-collecting tube by sealing bearing, and are welded on the top of drying plate and bottom end
Upper junction plate and lower connecting plate scrape frame with what collector tube inner wall scraped by being fixed between upper junction plate and lower connecting plate, this
Sample drying plate can absorb heat and heat to thermal-collecting tube, and scraping frame can be paved and be scraped to slime water, thus sharp
Slime water is dehydrated with thermal energy, it is convenient that slime water is recycled;Arc is fixed in the bottom of thermal-collecting tube fixed hole
Plate is coated with specular layer in the intrados of arc panel, and heater strip is distributed in the surface S-shaped of specular layer, should
On the one hand kind structure can carry out concentration thermal-arrest to thermal-collecting tube by specular layer, on the other hand, by generating heater strip
Heat collect to thermal-collecting tube, make up amount of solar heat deficiency, the influence to thermal-collecting tube heating effect;In the top of upper junction plate position
It is fixed with condensation collecting board in thermal-collecting tube exit, while being connected with plastic foil between condensation collecting board and water tank, this kind
Structure can radiate to cold plate by cooling fin, thus by vapor carry out condensation collection and be oriented to catch basin and
It is collected by plastic foil, plays the role of saving water resource.
The purpose of the present invention can be achieved through the following technical solutions:
A kind of resource utilization for mud of driving piles utilizes equipment, including drying plate, mud storage tank and water tank, institute
The light penetrating panel that drying plate includes shell and its end face insertion installation is stated, the inside of the shell is fixed with first mutually to recline
Glass tube with vacuum and the second glass tube with vacuum, first glass tube with vacuum are placed equidistant with respect to the end face of the second glass tube with vacuum
There are multiple first semi-circular recesses, second glass tube with vacuum has been placed equidistant with multiple with respect to the end face of the first glass tube with vacuum
The second semi-circular recesses corresponding with the first semi-circular recesses;
The interior bottom of second semi-circular recesses is fixed with arc panel, and the intrados of the arc panel is coated with mirror-reflection
Layer, the surface of the specular layer is equipped with S-shaped distribution heater strip;
First semi-circular recesses and the second semi-circular recesses are spliced to form thermal-collecting tube fixed hole, and the thermal-collecting tube is solid
The both ends for determining through-hole are connected with thermal-collecting tube by sealing bearing;
The top and bottom end of the drying plate are respectively welded upper junction plate and lower connecting plate, the upper junction plate and lower company
The frame of scraping through thermal-arrest tube cavity is welded between fishplate bar, the bottom for scraping frame is fixed with the sword to recline with collector tube inner wall
Item, the end that multiple thermal-collecting tubes are located at outside drying plate are connected with the driven gear of intermeshing transmission, the drying plate
Outer wall is fixed with stepper motor, and the stepper motor is connected with by electric machine shaft driving and closes on a driven gear engaged transmission
Driving gear;
The back side of the drying plate is fixed with water tank, and the bottom surface of the water tank and dry back are welded with six
With the supporting leg of ground face contact, a pair of of the support column top braces welded in the top of the upper junction plate and water tank are fixed
There is a mud storage tank, the inner wall of the upper junction plate is welded with condensation collecting board, and the condensation collecting board includes and upper junction plate
The vertical cold plate of inner wall, the cold plate are welded with catch basin to inner face bottom, and the side wall of the catch basin is communicated with out
Water pipe, the outlet pipe are communicated with the hose being placed in water tank, and the cold plate has multiple heat dissipations to outside uniform welding
Piece, the bottom of the water tank, which is communicated with, multiple collecting board and extends to the grout outlet in corresponding thermal-collecting tube through condensation.
Be furthermore that: the height of the mud storage tank is greater than 60cm, and the mud storage top tank structure is apart from its top surface
Being fixed at 10-15cm has grid screen, and the mesh width of the grid screen is less than the internal diameter of grout outlet, is hindered by grid screen
Only bulk impurity causes to block to grout outlet.
Be furthermore that: the angle between the light penetrating panel and vertical plane of the drying plate is 30 °, can be convenient for mud in this way
Pulp-water slides downwards along the inner wall of thermal-collecting tube under the effect of gravity.
It is furthermore that: it is described to scrape the part that frame is located in thermal-collecting tube as spiral sheet body structure, and the rotation of the spiral sheet body
Gyration is 90 °, and this structure can carry out water conservancy diversion to the slime water in thermal-collecting tube.
Be furthermore that: in the adjacent position thermal-collecting tube to scrape frame symmetrical about the median plane of adjacent position thermal-collecting tube,
In this way during driven gear rotates, it is ensured that scrape frame and always scrape mud to the bottom interior wall center of thermal-collecting tube.
Be furthermore that: the length of the thermal-collecting tube is greater than 1m, prevents slime water not to be completely dried and is discharged out of thermal-collecting tube.
Be furthermore that: the outer wall of the thermal-collecting tube is coated with black pigment, absorbs heat convenient for thermal-collecting tube.
It is furthermore that: the collection when inner wall of the outlet pipe and the resource utilization of piling mud are placed using equipment level
The in-profile of sink least significant end is tangent, and the condensed water in catch basin is facilitated to be completely exhausted out out of catch basin.
Be furthermore that: the lower part of the condensation collecting board is connected with the plastics for being cylindrical in shape and extending to inside water tank
Film influences condensation effect after preventing condensation collecting board fever, prevents vapor from overflowing on the outside of condensation collecting board.
A kind of resource utilization for mud of driving piles utilizes equipment working method, which utilizes the tool of equipment
Body uses operating procedure are as follows:
Step 1: resource utilization is set up using the light penetrating panel of equipment towards sunlight direction, enables light-transmitting plate
Come into full contact with sunlight;
Step 2: the slime water that piling generates is delivered in mud storage tank by Pulp pump, is entered in slime water
During mud stores pot bottom, the impurity for being greater than grid screen in slime water was carried out by grid screen by grid screen
Filter;
Step 3: starting stepper motor, the driving gear being clamped by stepper motor motor shaft outer wall and thermal-arrest pipe outer wall
Engaged transmission between the driven gear of clamping drives the driven gear of adjacent locations to rotate, and driven gear and other driven tooths
There are meshing relations between wheel, when such driving gear rotates, are able to drive all thermal-collecting tube rotations, and pass through arc plate surface
Specular layer be capable of sunlight reflection and cover thermal-arrest pipe outer wall, to be heated to thermal-collecting tube;
Step 4: slime water is flowed into thermal-collecting tube by the grout outlet that mud stores pot bottom, and the thermal-collecting tube of rotation exists
Under the scraping effect for scraping frame, slime water is paved in the inner wall of thermal-collecting tube, the thermal-collecting tube of high temperature can to the slime water to pave into
Row heating, after slime water is heated, internal moisture is evaporated, and slime water becomes soil;
Step 5: becoming soil after slime water is dry, under the scraping effect for scraping the sword item being socketed outside frame, from thermal-collecting tube
Inner wall peels off, and the steam evaporated encounters and is cooled to drop by the cold plate after cooling fin cooling, under the effect of gravity,
It is pooled in catch basin and is collected along the inner wall of cold plate and plastic foil, the drop in catch basin is entered by flexible pipe drainage
It is collected in water tank, and after the liquid condensation adhered in plastic foil is agglomerating, it is slid under gravity along plastic foil
Enter in water tank;
Step 6: when the temperature of thermal-collecting tube is too low, being heated by heater strip, by heater strip thermal-collecting tube is fixed
Temperature in through-hole increases, so that the wall temperature of thermal-collecting tube be increased.
Beneficial effects of the present invention:
1, mating to be provided with drying plate, the first glass tube with vacuum and the second vacuum glass are internally provided in drying plate
Pipe, thermal-collecting tube fixed hole is provided between the first glass tube with vacuum and the second glass tube with vacuum, is then fixed in thermal-collecting tube
The both ends of through-hole are connected with thermal-collecting tube by sealing bearing, and the top of drying plate and bottom end be welded with upper junction plate and
Lower connecting plate is fixed between upper junction plate and lower connecting plate and scrapes frame with what collector tube inner wall scraped, and such drying plate can
It absorbs heat to heat thermal-collecting tube, and scraping frame can be paved and be scraped to slime water, thus using thermal energy by mud
Water is dehydrated, convenient to recycle to slime water;
2, it is fixed with arc panel in the bottom of thermal-collecting tube fixed hole, is coated with mirror-reflection in the intrados of arc panel
Layer, and heater strip is distributed in the surface S-shaped of specular layer, this kind of structure on the one hand can be by specular layer to collection
Heat pipe carries out concentration thermal-arrest, on the other hand, is collected by the heat for generating heater strip to thermal-collecting tube, makes up amount of solar heat not
Foot, the influence to thermal-collecting tube heating effect;
3, it is located at thermal-collecting tube exit on the top of upper junction plate and is fixed with condensation collecting board, condensation collecting board includes one
With the cold plate for being provide with thermal-collecting tube upper end outlet, in the fixed multiple cooling fins in the back side of cold plate, and the lower end of cold plate is arranged
There is catch basin, while being connected with plastic foil between condensation collecting board and water tank, this kind of structure can be by cooling fin to cold
Solidifying plate radiates, so that vapor is carried out condensation collection and is oriented to catch basin and is collected by plastic foil, plays
Save the effect of water resource.
Detailed description of the invention
The present invention will be further described below with reference to the drawings.
Fig. 1 is overall structure of the present invention;
Fig. 2 is the structural schematic diagram of drying plate in the present invention;
Fig. 3 is the sectional view of drying plate in the present invention;
Fig. 4 is the partial structural diagram of arc panel in the present invention;
Fig. 5 is the schematic diagram of internal structure of mud storage tank in the present invention;
Fig. 6 is the structural schematic diagram that collecting board is condensed in the present invention.
In figure: 1, lower connecting plate;2, driving gear;3, stepper motor;4, drying plate;41, light penetrating panel;42, first is true
Empty glass tube;421, the first semi-circular recesses;43, the second glass tube with vacuum;431, the second semi-circular recesses;44, arc panel;
441, specular layer;442, heater strip;45, thermal-collecting tube fixed hole;46, shell;5, upper junction plate;6, mud storage tank;
61, grid screen;7, grout outlet;8, collecting board is condensed;81, cooling fin;82, cold plate;83, catch basin;84, outlet pipe;9, soft
Pipe;10, support column;11, water tank;12, supporting leg;13, thermal-collecting tube;14, frame is scraped;15, sword item;16, driven gear;17, it moulds
Expect film.
Specific embodiment
Below in conjunction with the embodiment of the present invention, technical scheme in the embodiment of the invention is clearly and completely described,
Obviously, described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.Based in the present invention
Embodiment, all other embodiment obtained by those of ordinary skill in the art without making creative efforts, all
Belong to the scope of protection of the invention.
It please refers to shown in Fig. 1-6, a kind of resource utilization for mud of driving piles utilizes equipment, including drying plate 4, mud
Storage tank 6 and water tank 11, drying plate 4 include the light penetrating panel 41 of shell 46 and its end face insertion installation, the inside of shell 46
It is fixed with the first glass tube with vacuum 42 and the second glass tube with vacuum 43 mutually to recline, the first glass tube with vacuum 42 opposite second is true
The end face of empty glass tube 43 has been placed equidistant with multiple first semi-circular recesses 421, opposite first vacuum of the second glass tube with vacuum 43
The end face of glass tube 42 has been placed equidistant with multiple second semi-circular recesses 431 corresponding with the first semi-circular recesses 421;
The interior bottom of second semi-circular recesses 431 is fixed with arc panel 44, and the intrados of arc panel 44 is coated with mirror-reflection
Layer 441, the surface of specular layer 441 is equipped with S-shaped distribution heater strip 442;
First semi-circular recesses 421 and the second semi-circular recesses 431 are spliced to form thermal-collecting tube fixed hole 45, and thermal-collecting tube is solid
The both ends for determining through-hole 45 are connected with thermal-collecting tube 13 by sealing bearing;
The top and bottom end of drying plate 4 are respectively welded upper junction plate 5 and lower connecting plate 1, upper junction plate 5 and lower connecting plate
It is welded between 1 and scrapes frame 14 through 13 inner cavity of thermal-collecting tube, the bottom for scraping frame 14 is fixed with the sword to recline with 13 inner wall of thermal-collecting tube
Item 15, the end that multiple thermal-collecting tubes 13 are located at outside drying plate 4 are connected with the driven gear 16 of intermeshing transmission, drying plate 4
Outer wall is fixed with stepper motor 3, and stepper motor 3 is connected with by electric machine shaft driving and closes on 16 engaged transmission of a driven gear
Driving gear 2;
The back side of drying plate 4 is fixed with water tank 11, the bottom surface of water tank 11 and the welding of 4 back side of drying plate there are six with
10 top braces of a pair of of support column welded in the supporting leg 12 of ground face contact, the top of upper junction plate 5 and water tank 11 are solid
Surely have a mud storage tank 6, the inner wall of upper junction plate 5 is welded with condensation collecting board 8, condensation collecting board 8 include in upper junction plate 5
The vertical cold plate 82 of wall, cold plate 82 are welded with catch basin 83 to inner face bottom, and the side wall of catch basin 83 is communicated with water outlet
Pipe 84, outlet pipe 84 are communicated with the hose 9 being placed in water tank 11, and cold plate 82 has multiple cooling fins to outside uniform welding
81, the bottom of water tank 11, which is communicated with, multiple collecting board 8 and extends to the grout outlet 7 in corresponding thermal-collecting tube 13 through condensation.
The height of mud storage tank 6 is greater than 60cm, and 6 inner wall of mud storage tank is fixed at the 10-15cm of its top surface
There is grid screen 61, and the mesh width of grid screen 61 is less than the internal diameter of grout outlet 7, prevents bulk impurity to out by grid screen 61
Slurry pipe 7 causes to block, and the angle between the light penetrating panel 41 and vertical plane of drying plate 4 is 30 °, can exist in this way convenient for slime water
It is slid downwards under gravity along the inner wall of thermal-collecting tube 13, scraping the part that frame 14 is located in thermal-collecting tube 13 is spiral sheet body knot
Structure, and the rotation angle of the spiral sheet body is 90 °, this structure can carry out water conservancy diversion to the slime water in thermal-collecting tube 13, adjacent
Frame 14 is symmetrical about the median plane of adjacent position thermal-collecting tube 13 for scraping in position thermal-collecting tube 13, rotates in this way in driven gear 16
In the process, it is ensured that it scrapes frame 14 and always scrapes mud to the bottom interior wall center of thermal-collecting tube 13, the length of thermal-collecting tube 13 is greater than 1m,
It prevents from slime water not to be completely dried to be discharged out of thermal-collecting tube 13, the outer wall of thermal-collecting tube 13 is coated with black pigment, is convenient for thermal-collecting tube
83 least significant end of catch basin when 13 heat absorptions, the inner wall of outlet pipe 84 and the resource utilization of piling mud are placed using equipment level
In-profile is tangent, and the condensed water in catch basin 83 is facilitated to be completely exhausted out out of catch basin 83, the lower part connection of condensation collecting board 8
There is the plastic foil 17 for being cylindrical in shape and extending to inside water tank 11, after preventing condensation collecting board 8 from generating heat, influences condensation effect, prevent
Sealing steam overflows on the outside of condensation collecting board 8.
A kind of resource utilization for mud of driving piles utilizes equipment working method, which utilizes the tool of equipment
Body uses operating procedure are as follows:
Step 1: resource utilization is set up using the light penetrating panel 41 of equipment towards sunlight direction, enables light-transmitting plate 4
Enough come into full contact with sunlight;
Step 2: the slime water that piling generates is delivered in mud storage tank 6 by Pulp pump, is entered in slime water
During 6 bottom of mud storage tank, the impurity that 61 grid of grid screen is greater than in slime water is passed through by grid by grid screen 61
Net 61 is filtered;
Step 3: starting stepper motor 3, the driving gear 2 and thermal-collecting tube 13 being clamped by 3 motor shaft outer wall of stepper motor
Outer wall clamping driven gear 16 between engaged transmission drive adjacent locations driven gear 16 rotate, and driven gear 16 with
There are meshing relations between other driven gears 16, when such driving gear 2 rotates, are able to drive all thermal-collecting tubes 13 and rotate,
And it is capable of reflection and 13 outer wall of cover thermal-collecting tube of sunlight by the specular layer 441 on 44 surface of arc panel, thus right
Thermal-collecting tube 13 is heated;
Step 4: slime water is flowed into thermal-collecting tube 13 by the grout outlet 7 of 6 bottom of mud storage tank, the thermal-arrest of rotation
Pipe 13 paves slime water in the inner wall of thermal-collecting tube 13, the thermal-collecting tube 13 of high temperature can be to booth under the scraping effect for scraping frame 14
The slime water of paving is heated, and after slime water is heated, internal moisture is evaporated, and slime water becomes soil;
Step 5: becoming soil after slime water is dry, under the scraping effect for scraping the sword item 15 being socketed outside frame 14, from collection
13 inner wall of heat pipe peels off, and the steam evaporated encounters and is cooled to drop by the cold plate after 81 cooling of cooling fin, in weight
Under power effect, it is pooled in catch basin 83 and is collected along the inner wall of cold plate 82 and plastic foil 17, in catch basin 83
After drop is drained by hose 9 and is collected in water tank 11, and the liquid condensation adhered in plastic foil 17 is agglomerating, in gravity
Under the action of slid in water tank 11 along plastic foil 17;
Step 6: it when the temperature of thermal-collecting tube 13 is too low, is heated by heater strip 442, to collect by heater strip 442
Temperature in heat pipe fixed hole 45 increases, so that the wall temperature of thermal-collecting tube 13 be increased.
Beneficial effects of the present invention:
1, mating to be provided with drying plate 4, the first glass tube with vacuum 42 and the second vacuum glass are internally provided in drying plate 4
Glass pipe 43 is provided with thermal-collecting tube fixed hole 45 between the first glass tube with vacuum 42 and the second glass tube with vacuum 43, then exists
The both ends of thermal-collecting tube fixed hole 45 are connected with thermal-collecting tube 13 by sealing bearing, and on the top and bottom end of drying plate 4
It is welded with upper junction plate 5 and lower connecting plate 1, is fixed between upper junction plate 5 and lower connecting plate 1 and is scraped with 13 inner wall of thermal-collecting tube
Scrape frame 14, such drying plate 4 can absorb heat and heat to thermal-collecting tube 13, and slime water can be spread out by scraping frame 14
Paving and scraping, thus be dehydrated slime water using thermal energy, it is convenient that slime water is recycled;
2, it is fixed with arc panel 44 in the bottom of thermal-collecting tube fixed hole 45, is coated with mirror surface in the intrados of arc panel 44
Reflecting layer 441, and heater strip 442 is distributed in the surface S-shaped of specular layer 441, on the one hand this kind of structure can pass through
Specular layer 441 carries out concentration thermal-arrest to thermal-collecting tube 13, on the other hand, by the heat that generates heater strip 442 to thermal-arrest
Pipe 13 collects, and makes up amount of solar heat deficiency, the influence to 13 heating effect of thermal-collecting tube;
3, it is located at 13 exit of thermal-collecting tube on the top of upper junction plate 5 and is fixed with condensation collecting board 8, condensation collecting board 8 wraps
Include one be provide with the cold plate 82 of 13 upper end outlet of thermal-collecting tube, in the fixed multiple cooling fins 81 in the back side of cold plate 82, and cold
The lower end of solidifying plate 82 is provided with catch basin 83, while being connected with plastic foil 17, this kind between condensation collecting board 8 and water tank 11
Structure can radiate to cold plate 82 by cooling fin 81, so that vapor is carried out condensation collection and is oriented to catch basin
It 83 and is collected by plastic foil 17, plays the role of saving water resource.
Working principle: in use, resource utilization is set up using the light penetrating panel 41 of equipment towards sunlight direction, so that
Light-transmitting plate 4 can come into full contact with sunlight, then be delivered to the slime water that piling generates in mud storage tank 6 by Pulp pump,
During slime water enters mud 6 bottom of storage tank, 61 grid of grid screen will be greater than by grid screen 61 in slime water
Impurity be filtered by grid screen 61, then start stepper motor 3, pass through the master that 3 motor shaft outer wall of stepper motor is clamped
Engaged transmission between moving gear 2 and the driven gear 16 of 13 outer wall of thermal-collecting tube clamping drives the driven gear 16 of adjacent locations to revolve
Turn, and there are meshing relations between driven gear 16 and other driven gears 16, when such driving gear 2 rotates, are able to drive
All thermal-collecting tubes 13 rotate, and are capable of reflection and the cover collection of sunlight by the specular layer 441 on 44 surface of arc panel
13 outer wall of heat pipe, to heat to thermal-collecting tube 13, then slime water is flowed by the grout outlet 7 of 6 bottom of mud storage tank
Into thermal-collecting tube 13, the thermal-collecting tube 13 of rotation paves slime water in the inner wall of thermal-collecting tube 13 under the scraping effect for scraping frame 14,
The thermal-collecting tube 13 of high temperature can heat the slime water to pave, and after slime water is heated, internal moisture is evaporated, mud
Water becomes soil, under the scraping effect for scraping the sword item 15 being socketed outside frame 14, peels off from 13 inner wall of thermal-collecting tube, and the water of evaporation
Vapour, which is encountered, is cooled to drop by the cold plate after 81 cooling of cooling fin, under the effect of gravity, along cold plate 82 and
The inner wall of plastic foil 17 is pooled in catch basin 83 and is collected, and the drop in catch basin 83 is drained by hose 9 into water tank
It is collected in 11, and after the liquid condensation adhered in plastic foil 17 is agglomerating, it is slid under gravity along plastic foil 17
Enter in water tank 11, and when the temperature of thermal-collecting tube 13 is too low, it is heated by heater strip 442, to collect by heater strip 442
Temperature in heat pipe fixed hole 45 increases, so that the wall temperature of thermal-collecting tube 13 be increased.
In the description of this specification, the description of reference term " one embodiment ", " example ", " specific example " etc. means
Particular features, structures, materials, or characteristics described in conjunction with this embodiment or example are contained at least one implementation of the invention
In example or example.In the present specification, schematic expression of the above terms may not refer to the same embodiment or example.
Moreover, particular features, structures, materials, or characteristics described can be in any one or more of the embodiments or examples to close
Suitable mode combines.
Above content is only citing made for the present invention and explanation, affiliated those skilled in the art are to being retouched
The specific embodiment stated does various modifications or additions or is substituted in a similar manner, and without departing from invention or surpasses
More range defined in the claims, is within the scope of protection of the invention.
Claims (10)
1. a kind of resource utilization for mud of driving piles utilizes equipment, which is characterized in that stored including drying plate (4), mud
Tank (6) and water tank (11), the drying plate (4) include the light penetrating panel (41) of shell (46) and its end face insertion installation, institute
The inside for stating shell (46) is fixed with the first glass tube with vacuum (42) and the second glass tube with vacuum (43) mutually to recline, and described
One glass tube with vacuum (42) has been placed equidistant with multiple first semi-circular recesses with respect to the end face of the second glass tube with vacuum (43)
(421), second glass tube with vacuum (43) has been placed equidistant with multiple and first with respect to the end face of the first glass tube with vacuum (42)
Corresponding second semi-circular recesses (431) of semi-circular recesses (421);
The interior bottom of second semi-circular recesses (431) is fixed with arc panel (44), the intrados coating of the arc panel (44)
Have specular layer (441), the surface of the specular layer (441) is equipped with S-shaped distribution heater strip (442);
First semi-circular recesses (421) and the second semi-circular recesses (431) are spliced to form thermal-collecting tube fixed hole (45), institute
The both ends for stating thermal-collecting tube fixed hole (45) are connected with thermal-collecting tube (13) by sealing bearing;
The top and bottom end of the drying plate (4) are respectively welded upper junction plate (5) and lower connecting plate (1), the upper junction plate
(5) scraping frame (14) through thermal-collecting tube (13) inner cavity is welded between lower connecting plate (1), the bottom for scraping frame (14) is fixed
There is the sword item (15) to recline with thermal-collecting tube (13) inner wall, multiple thermal-collecting tubes (13) are located at the end clamping of drying plate (4) outside
The driven gear (16) for having intermeshing to be driven, the outer wall of the drying plate (4) are fixed with stepper motor (3), the stepping electricity
Machine (3) is connected with by electric machine shaft driving and closes on the driving gear (2) of driven gear (16) engaged transmission;
The back side of the drying plate (4) is fixed with water tank (11), the bottom surface and drying plate (4) back side of the water tank (11)
It is welded in the supporting leg (12) that there are six welding with ground face contact, the top of the upper junction plate (5) and water tank (11)
A pair of of support column (10) top braces are fixed with mud storage tank (6), and the inner wall of the upper junction plate (5) is welded with condensation and collects
Plate (8), the condensation collecting board (8) includes the cold plate vertical with upper junction plate (5) inner wall (82), the cold plate (82)
Inner face bottom is welded with catch basin (83), the side wall of the catch basin (83) is communicated with outlet pipe (84), the outlet pipe
(84) it is communicated with the hose (9) being placed in water tank (11), the cold plate (82) there are multiple heat dissipations to outside uniform welding
Piece (81), the bottom of the water tank (11), which is communicated with, multiple collecting board (8) and extends to corresponding thermal-collecting tube (13) through condensation
Interior grout outlet (7).
2. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
The height of mud storage tank (6) is greater than 60cm, and mud storage tank (6) inner wall is fixed at the 10-15cm of its top surface
Have grid screen (61), and the mesh width of the grid screen (61) is less than the internal diameter of grout outlet (7).
3. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
Angle between the light penetrating panel (41) and vertical plane of drying plate (4) is 30 °.
4. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
Scraping the part that frame (14) is located in thermal-collecting tube (13) is spiral sheet body structure, and the rotation angle of the spiral sheet body is 90 °.
5. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
In adjacent position thermal-collecting tube (13) to scrape frame (14) symmetrical about the median plane of adjacent position thermal-collecting tube (13).
6. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
The length of thermal-collecting tube (13) is greater than 1m.
7. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
The outer wall of thermal-collecting tube (13) is coated with black pigment.
8. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
Catch basin (83) least significant end is interior when the inner wall of outlet pipe (84) and the resource utilization of piling mud are placed using equipment level
Contouring is tangent.
9. a kind of resource utilization for mud of driving piles according to claim 1 utilizes equipment, which is characterized in that described
The lower part of condensation collecting board (8), which is connected with, is cylindrical in shape and extends to the internal plastic foil (17) of water tank (11).
10. a kind of resource utilization for mud of driving piles utilizes equipment working method, which is characterized in that resource utilization benefit
With the specifically used operating procedure of equipment are as follows:
Step 1: resource utilization is set up using the light penetrating panel (41) of equipment towards sunlight direction;
Step 2: the slime water that piling generates is delivered in mud storage tank (6) by Pulp pump, enters mud in slime water
When starching storage tank (6) bottom, impurity big in slime water is filtered by grid screen (61);
Step 3: starting stepper motor (3), the driving gear (2) and thermal-collecting tube being clamped by stepper motor (3) motor shaft outer wall
(13) engaged transmission between the driven gear (16) of outer wall clamping drives all thermal-collecting tube (13) rotations, passes through arc panel (44)
Reflection of the specular layer (441) on surface to sunlight, to be heated to thermal-collecting tube (13) outer wall;
Step 4: slime water is flowed into thermal-collecting tube (13) by grout outlet (7), and the thermal-collecting tube (13) of rotation is scraping frame (14)
Under scraping effect, slime water is paved in the inner wall of thermal-collecting tube (13), the thermal-collecting tube (13) of high temperature carries out the slime water to pave
Heating, so that the moisture in slime water is evaporated;
Step 5: becoming soil after slime water is dry, under the scraping effect of sword item (15), peels off from thermal-collecting tube (13) inner wall,
The steam of evaporation, which is encountered, is cooled to drop, under the effect of gravity, edge by the cold plate (82) after cooling fin (81) cooling
The inner wall of cold plate (82) and plastic foil (17) be pooled in catch basin (83) and be collected, then drawn by hose (9)
It flows into water tank (11) and is collected;
Step 6: it when the temperature of thermal-collecting tube (13) is too low, is heated by heater strip (442), is made by heater strip (442)
Temperature in thermal-collecting tube fixed hole (45) increases, so that the wall temperature of thermal-collecting tube (13) be increased.
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CN201910218145.1A CN110002700B (en) | 2019-03-21 | 2019-03-21 | Resource recycling equipment for piling mud and working method thereof |
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CN201910218145.1A CN110002700B (en) | 2019-03-21 | 2019-03-21 | Resource recycling equipment for piling mud and working method thereof |
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CN110002700B CN110002700B (en) | 2021-06-01 |
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Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
SU1187778A1 (en) * | 1984-04-24 | 1985-10-30 | Bukharskij Znak Pocheta G Ped | Solar drier for fruits and vegetables |
JPH0768107A (en) * | 1994-04-20 | 1995-03-14 | Ebara Infilco Co Ltd | Sludge filtering and concentrating device |
CN103512222A (en) * | 2013-09-16 | 2014-01-15 | 江苏金山环保工程集团有限公司 | Device for processing food waste or sludge in low-temperature evaporation mode through solar flat sheet membranes |
CN203513448U (en) * | 2013-08-28 | 2014-04-02 | 江苏金山环保科技股份有限公司 | Sludge or effluent drying treatment device |
CN207330706U (en) * | 2017-08-08 | 2018-05-08 | 高建峰 | Condensation water collection part and mud drying device |
CN108558173A (en) * | 2018-06-22 | 2018-09-21 | 高建峰 | Mud drying device and sludge drying system |
-
2019
- 2019-03-21 CN CN201910218145.1A patent/CN110002700B/en active Active
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
SU1187778A1 (en) * | 1984-04-24 | 1985-10-30 | Bukharskij Znak Pocheta G Ped | Solar drier for fruits and vegetables |
JPH0768107A (en) * | 1994-04-20 | 1995-03-14 | Ebara Infilco Co Ltd | Sludge filtering and concentrating device |
CN203513448U (en) * | 2013-08-28 | 2014-04-02 | 江苏金山环保科技股份有限公司 | Sludge or effluent drying treatment device |
CN103512222A (en) * | 2013-09-16 | 2014-01-15 | 江苏金山环保工程集团有限公司 | Device for processing food waste or sludge in low-temperature evaporation mode through solar flat sheet membranes |
CN207330706U (en) * | 2017-08-08 | 2018-05-08 | 高建峰 | Condensation water collection part and mud drying device |
CN108558173A (en) * | 2018-06-22 | 2018-09-21 | 高建峰 | Mud drying device and sludge drying system |
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