CN104860254A - Device capable of accurately controlling water-taking level and water-drainage level - Google Patents
Device capable of accurately controlling water-taking level and water-drainage level Download PDFInfo
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- CN104860254A CN104860254A CN201510222957.5A CN201510222957A CN104860254A CN 104860254 A CN104860254 A CN 104860254A CN 201510222957 A CN201510222957 A CN 201510222957A CN 104860254 A CN104860254 A CN 104860254A
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Abstract
The invention relates to a device capable of accurately controlling a water-taking level and a water-drainage level, wherein a lower end of a water inlet pipeline is bent upwards to form a water inlet; a lower end of a water-drainage pipeline is bent upwards to form a water-drainage outlet; upper ends of the water inlet and water-drainage pipelines are communicated with each other through a U-shaped communication pipeline; a support fixation platform is mounted on an upper edge of a container; four through holes are opened on the support fixation platform; two adjustment threaded rods penetrate through two through holes among the four through holes; each of the adjustment threaded rods is provided with an adjustment nut; a pipeline assembly constituted by the water inlet and water-drainage pipelines and the communication pipeline is mounted on the support fixation platform through the other two through holes; and lower ends of the two adjustment threaded rods are respectively connected to the water-drainage outlet and the water inlet. According to the positions of the water-drainage outlet and the water inlet needed to be adjusted accurately, the height of the water level and the height of the water-taking level are controlled accurately; the device provided herein is a non-dynamic water-drainage device, so power is not needed during the using process; the water can be drained by only relying on weight and siphon actions; and the process of draining water won't be interrupted by the change of the water volume inside the container.
Description
Technical field
The present invention relates to a kind of device that accurately can control water intaking position and draining position, specifically one can fine adjustment intake and discharge port position as required, thus accurately control electrolyte level and the non-powered freeing arrangement realizing stratified pumping, belong to pumping gear technical field.
Background technology
Freeing arrangement be reactor or other anyly need the requisite parts of the device of draining.Traditional freeing arrangement mostly is non-powered device, is namely flowed out by fluid self gravitation.Device is generally adopt perforate on container cell wall and the mode of connecting tube and switch, limits water outlet height with position of opening, and then controls electrolyte level.Sometimes in order to the adjustment to liquid level can be realized, can at the perforate of differing heights many places and stringing.
There is following defect in traditional non-powered freeing arrangement:
1) many places perforate and stringing, make and install trouble, impact is practical and attractive in appearance, needs in addition to carry out leakproof work;
2) accurately can not control electrolyte level in using, several specific height (i.e. perforate height) can only be controlled roughly;
3) accurately stratified pumping cannot be realized as required in using, the water of current fluid level height can only be got;
4) complicated operation such as maintenance or replacing of pipeline fault (as blocked, breaking);
5) pipeline thickness can not be changed easily, or carry additionally newly-increased pipeline in desired location.
In some experiments with in producing, sometimes need the electrolyte level (namely regulating and controlling the height of discharge port) water intaking layer height (namely regulating and controlling the height of intake) being accurately set and controlling in container, and traditional freeing arrangement is difficult to meet this demand.
There is the device utilizing the siphonic process of pipeline to carry out provisional non-powered draining in some cases, but such device does not generally use as formal draining, because method also accurately cannot arrange drainage position for this reason, once liquid level arrives the position of container inside pipeline opening, air will enter pipeline, siphonic process interrupts, and needs manual activation again just can continue to use.
Summary of the invention
For prior art above shortcomings, the invention provides a kind of making, install simply, safeguard, change conveniently, and can fine adjustment intake and discharge port position as required, thus accurately control electrolyte level and the non-powered freeing arrangement realizing stratified pumping, to overcome the deficiency of existing drainage pattern.
To achieve these goals, the technical solution used in the present invention is as follows:
Accurately can be controlled to fetch water the device of position and draining position, comprise be positioned at container for intake inlet channel, be positioned at container outward for drainage pipeline, support fixed platform, scale graduation and two adjusting screw(rod)s of draining; Inlet channel and drainage pipeline are deformable flexible pipeline, inlet channel lower end is upwards U-shaped is bent to form water inlet, drainage pipeline lower end is upwards U-shaped is bent to form discharge port, drainage pipeline after bending is bottom all the time lower than the end in container, inlet channel after bending is bottom near container bottom, discharge port is higher than water inlet, and inlet channel upper end is communicated with by the U-shaped connecting pipe that Open Side Down with drainage pipeline upper end;
Described support fixed platform is arranged on edge on container, support in fixed platform and offer four vertical via holes, two adjusting screw(rod)s pass wherein two via holes, every root adjusting screw(rod) is provided with setting nut, and setting nut size is greater than the via size that adjusting screw(rod) passes and falls from via hole to prevent adjusting screw(rod); The mode that the pipeline assembly of inlet channel, drainage pipeline and connecting pipe composition passes other two via holes by pipeline is arranged in support fixed platform, and connecting pipe is positioned at and supports above fixed platform; The lower end of two adjusting screw(rod)s is connected with discharge port and water inlet respectively;
Described scale graduation is vertically fixed on and supports in fixed platform and between two adjusting screw(rod)s.
Preferably, described inlet channel, drainage pipeline and connecting pipe are by a flexible duct bending forming.
Further, the lower end of described two adjusting screw(rod)s is connected with discharge port and water inlet respectively by strut bar, and post upper is connected with adjusting screw(rod) lower end, and strut bar lower end is fixedly connected with corresponding discharge port or water inlet by attaching parts.
Described attaching parts is plastic solid fixed ring, and plastic solid fixed ring is band or nylon rope.
The T-type structure that described support fixed platform is made up of horizontal mounting plate and vertical supporting plate two parts, vertical supporting plate is provided with draw-in groove, edge is to make whole support fixed platform across container upper end and to fix for being connected on container for draw-in groove, and four vertical via holes are opened on horizontal mounting plate.
Compared with prior art, the present invention has following beneficial effect:
1, adopt this freeing arrangement, pipeline strides across container upper limb, and without the need to considering perforated container and leakproof, it makes, it is simple to install, and can freely carry additionally as required and dismantle.
2, can accurately adjust discharge port height as required, and then control height of liquid level inside container.
3, can accurately adjust water intaking layer height as required, realize stratified pumping.
4, the drainage pipeline of different thicknesses even can be changed or increase to follow-up maintenance and replacement operation conveniently, as required.
5, this device is non-powered freeing arrangement, without the need to power in use procedure, only carries out draining by gravity and siphon action; Its double-U-shaped design, makes the draining of this device can not interrupt because of water yield change in container, does not thus need to restart its siphonic process, once liquid level is higher than discharge port position, and can automatically from the outside draining of water intaking layer set.
Accompanying drawing explanation
The adjustable freeing arrangement front elevation of Fig. 1-the present invention.
The adjustable freeing arrangement lateral plan of Fig. 2-the present invention.
The adjustable freeing arrangement birds-eye view of Fig. 3-the present invention.
Fixed platform K-K section-drawing is supported in Fig. 4-Fig. 3.
In figure: 1-container; 2-supports fixed platform; 3-adjusting screw(rod); 3-1-screw head; 3-2-setting nut; 4-strut bar; 5-inlet channel; 5-1-water inlet; 6-attaching parts; 7-inlet channel bottom; 8-connecting pipe; 9-scale graduation; 10-drainage pipeline bottom; 11-drainage pipeline; 11-1-discharge port; 12-draw-in groove.
Detailed description of the invention
Below in conjunction with accompanying drawing, the invention will be further described.
See Fig. 1-Fig. 4, the present invention accurately can control the device of water intaking position and draining position, comprise be positioned at container 1 for intake inlet channel 5, be positioned at the outer drainage pipeline 11 for draining of container, support fixed platform 2, scale graduation 9 and two adjusting screw(rod)s 3, inlet channel 5 and drainage pipeline 11 are deformable flexible pipeline (as wired hose or bellows).Inlet channel lower end is upwards U-shaped is bent to form water inlet 5-1, drainage pipeline lower end is upwards U-shaped is bent to form discharge port 11-1, drainage pipeline after bending is bottom 10 all the time lower than the end in container, inlet channel after bending is bottom 7 near container bottom, discharge port 11-1 is higher than water inlet 5-1, and inlet channel 5 upper end is communicated with by the U-shaped connecting pipe 8 that Open Side Down with drainage pipeline 11 upper end.
Described support fixed platform 2 is arranged on edge on container 1, support in fixed platform and offer four vertical via holes, two adjusting screw(rod)s 3 pass wherein two via holes, every root adjusting screw(rod) 3 is provided with setting nut 3-2, setting nut 3-2 size is greater than the corresponding via size that adjusting screw(rod) passes and falls from via hole to prevent adjusting screw(rod), and every root adjusting screw(rod) 3 upper end is screw head 3-1.The mode that the pipeline assembly of inlet channel 5, drainage pipeline 11 and connecting pipe 8 composition passes other two via holes by pipeline is arranged in support fixed platform 2, and connecting pipe 8 is positioned at and supports above fixed platform 2; The lower end of two adjusting screw(rod)s 3 is connected with discharge port 11-1 and water inlet 5-1 respectively.
During actual design, the T-type structure that described support fixed platform is made up of horizontal mounting plate and vertical supporting plate two parts, vertical supporting plate is provided with draw-in groove 12, see Fig. 4, edge is to make whole support fixed platform across container upper end and to fix for being connected on container 1 for draw-in groove 12, and four vertical via holes are opened on horizontal mounting plate.
Described scale graduation 9 is vertically fixed on and supports in fixed platform 2 and between two adjusting screw(rod)s 3, play the effect that contrast scale realizes accurate adjustment when adjusting screw(rod) regulates and controls.
For convenience of processing, described inlet channel 5, drainage pipeline 11 and connecting pipe 8 are by a flexible duct bending forming.
The lower end of described two adjusting screw(rod)s 3 is connected with discharge port 11-1 and water inlet 5-1 respectively by strut bar 4, and strut bar 4 upper end is connected with adjusting screw(rod) 3 lower end, and strut bar 4 lower end is fixedly connected with corresponding discharge port 11-1 or water inlet 5-1 by attaching parts 6.Described attaching parts 6 is plastic solid fixed ring, and plastic solid fixed ring is band or nylon rope.
During concrete enforcement, deformable flexible duct selects internal diameter to be the wired hose of 12mm, and support fixed platform and use organism glass to make, scale graduation uses plastic flat ruler, adjusting screw(rod) uses nylon screw rod (anticorrosion) and corresponding nylon setting nut, and strut bar uses nylon plastic(s) rod.
Because two adjusting screw(rod)s are connected with pipeline, it is not suitable for rotating, because adjusting screw(rod) rotation can drive pipeline to rotate together.So when practical adjustments discharge port and water inlet height, being realize by turning the height of setting nut on adjusting screw(rod), regulating after putting in place, then setting nut is placed in support fixed platform.Because the lower end of adjusting screw(rod) is connected with discharge port and water inlet, therefore adjusting screw(rod) length under setting nut is shorter, corresponding discharge port and water inlet higher, otherwise lower.Regulated by contrast scale graduation, get final product the position of accurate adjustment intake and discharge port.
Inlet channel of the present invention is at the U-shaped curved shape of container inside, and its lowest part close to container bottom, and reserves certain surplus; Its top to be fixed by strut bar by adjusting screw(rod) and is controlled, and namely highest point is water intaking layer height.
Drainage pipeline of the present invention is at the U-shaped curved shape of outside of containers, and its lowest part lower than container bottom, and reserves certain surplus; Its top to be fixed by strut bar by adjusting screw(rod) and is controlled, and namely highest point is discharge port height.
During use, directly this device is added by the draw-in groove supported in fixed platform and hang on container.Use rubber pipette bulb from row of conduits mouth of a river draw air before draining first, make pipeline communication, siphonic process occurs afterwards.Along with the continuous inflow of water inlet, device continues draining for a long time, and does not interrupt because of change of level in container (even if liquid level is lower than drainage layer of setting).
This device is non-powered draining, and use procedure only carries out draining by gravity and siphon action, and drainage procedure can not interrupt because of change of level in adjustment intake, discharge port position and container; Install and make simply, safeguarding that replacing is convenient, can freely carrying additionally and dismounting, without the need to considering perforated container and leakproof.Support in fixed platform and settle one scale graduation, when rotating adjusting nut adjusts water intaking with drainage position, its scale can be contrasted and realize fine adjustment, thus accurately can adjust the position of discharge port and intake, accurately control the height of liquid level and water intaking layer.
Claims (5)
1. can accurately control to fetch water the device of position and draining position, it is characterized in that: comprise be positioned at container for intake inlet channel, be positioned at container outward for drainage pipeline, support fixed platform, scale graduation and two adjusting screw(rod)s of draining; Inlet channel and drainage pipeline are deformable flexible pipeline, inlet channel lower end is upwards U-shaped is bent to form water inlet, drainage pipeline lower end is upwards U-shaped is bent to form discharge port, drainage pipeline after bending is bottom all the time lower than the end in container, inlet channel after bending is bottom near container bottom, discharge port is higher than water inlet, and inlet channel upper end is communicated with by the U-shaped connecting pipe that Open Side Down with drainage pipeline upper end;
Described support fixed platform is arranged on edge on container, support in fixed platform and offer four vertical via holes, two adjusting screw(rod)s pass wherein two via holes, every root adjusting screw(rod) is provided with setting nut, and setting nut size is greater than the via size that adjusting screw(rod) passes and falls from via hole to prevent adjusting screw(rod); The mode that the pipeline assembly of inlet channel, drainage pipeline and connecting pipe composition passes other two via holes by pipeline is arranged in support fixed platform, and connecting pipe is positioned at and supports above fixed platform; The lower end of two adjusting screw(rod)s is connected with discharge port and water inlet respectively;
Described scale graduation is vertically fixed on and supports in fixed platform and between two adjusting screw(rod)s.
2. the device that accurately can control water intaking position and draining position according to claim 1, is characterized in that: described inlet channel, drainage pipeline and connecting pipe are by a flexible duct bending forming.
3. the device that accurately can control water intaking position and draining position according to claim 1, it is characterized in that: the lower end of described two adjusting screw(rod)s is connected with discharge port and water inlet respectively by strut bar, post upper is connected with adjusting screw(rod) lower end, and strut bar lower end is fixedly connected with corresponding discharge port or water inlet by attaching parts.
4. the device that accurately can control water intaking position and draining position according to claim 3, it is characterized in that: described attaching parts is plastic solid fixed ring, plastic solid fixed ring is band or nylon rope.
5. the device that accurately can control water intaking position and draining position according to claim 1, it is characterized in that: the T-type structure that described support fixed platform is made up of horizontal mounting plate and vertical supporting plate two parts, vertical supporting plate is provided with draw-in groove, edge is to make whole support fixed platform across container upper end and to fix for being connected on container for draw-in groove, and four vertical via holes are opened on horizontal mounting plate.
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CN201510222957.5A CN104860254B (en) | 2015-05-05 | 2015-05-05 | A kind of device for accurately controlling water intaking position and draining position |
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CN201510222957.5A CN104860254B (en) | 2015-05-05 | 2015-05-05 | A kind of device for accurately controlling water intaking position and draining position |
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CN104860254B CN104860254B (en) | 2017-07-21 |
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Citations (7)
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JP3987936B2 (en) * | 2004-02-20 | 2007-10-10 | 独立行政法人土木研究所 | Clogging prevention device for collecting pipe for groundwater drainage facility |
CN200997080Y (en) * | 2007-01-10 | 2007-12-26 | 张雨婷 | Overflow |
CN102312420A (en) * | 2011-07-04 | 2012-01-11 | 河海大学 | Siphon water level controller |
CN202187327U (en) * | 2011-07-04 | 2012-04-11 | 河海大学 | Water level controller for siphon drainage pipe |
CN102757007A (en) * | 2012-06-29 | 2012-10-31 | 浙江吉利汽车研究院有限公司杭州分公司 | Liquid filling device |
CN103058118A (en) * | 2011-10-18 | 2013-04-24 | 王朝民 | Automatic quantifying water supply device |
CN203382490U (en) * | 2013-04-28 | 2014-01-08 | 苏州北新矿棉板有限公司 | Material pulp liquid level control system |
-
2015
- 2015-05-05 CN CN201510222957.5A patent/CN104860254B/en not_active Expired - Fee Related
Patent Citations (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
JP3987936B2 (en) * | 2004-02-20 | 2007-10-10 | 独立行政法人土木研究所 | Clogging prevention device for collecting pipe for groundwater drainage facility |
CN200997080Y (en) * | 2007-01-10 | 2007-12-26 | 张雨婷 | Overflow |
CN102312420A (en) * | 2011-07-04 | 2012-01-11 | 河海大学 | Siphon water level controller |
CN202187327U (en) * | 2011-07-04 | 2012-04-11 | 河海大学 | Water level controller for siphon drainage pipe |
CN103058118A (en) * | 2011-10-18 | 2013-04-24 | 王朝民 | Automatic quantifying water supply device |
CN102757007A (en) * | 2012-06-29 | 2012-10-31 | 浙江吉利汽车研究院有限公司杭州分公司 | Liquid filling device |
CN203382490U (en) * | 2013-04-28 | 2014-01-08 | 苏州北新矿棉板有限公司 | Material pulp liquid level control system |
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Granted publication date: 20170721 Termination date: 20180505 |