CN204626402U - A kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank - Google Patents
A kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank Download PDFInfo
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- CN204626402U CN204626402U CN201520054865.6U CN201520054865U CN204626402U CN 204626402 U CN204626402 U CN 204626402U CN 201520054865 U CN201520054865 U CN 201520054865U CN 204626402 U CN204626402 U CN 204626402U
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Abstract
A kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank, liquid storage tank design length of grade is 30 meters, the gradient of upper side slope (4) and slope (5) is 1: 2, top, slope arranges first order anchored platform (1), at the bottom of slope, (3) arrange second level anchored platform (2) to first order anchored platform (1) 1/2 place, and anchoring groove (6) is in the center in first order anchored platform (1) and second level anchored platform (2).The impervious barrier intermediate anchoring structure that the utility model is arranged, this structure construction is simple, good seepage-proof property, and quality easily controls; By increasing the gradient of side slope, not changing under the condition of building area, increase the volume of liquid storage tank; Setting up anchored platform can disperse strong brine in pond to the Action of Gravity Field of top, slope anchor structure, make domatic impervious barrier more firm, the sound assurance safety of super large liquid storage tank runtime.
Description
Technical field
The utility model relates to a kind of intermediate anchoring structure of long slope seepage control layer, and this structure is particularly useful for the long side slope of super large liquid storage tank.
Background technology
The volume of super large liquid storage tank reaches millions of cubic meter, generally deposit the strong brine of recirculated water, demineralized water and the various medicament added in industrial processes and generation, its composition is main based on organic matter and inorganic salts, and these pollutants have larger pollution risk to underground water.Liquid storage tank pond body is laid the impervious materials such as HDPE geomembrane can block strong brine and permeate downwards, but due to impervious material self and strong brine additional Action of Gravity Field for a long time, only establish on top, slope single-stage anchoring to be not enough to resist the stretching of impervious material in side slope and slippage, thus affect the anti-seepage effect of whole liquid storage tank.
In order to prevent the generation of above-mentioned situation, conventional design is the gradient to 1 reducing side slope: 3, increases the frictional force of impervious material and side slope basal plane, thus prevent the displacement of impervious barrier by slowing down side slope, but the method increase civil engineering and seepage control project amount, be unfavorable for cost-saving.According to the liquid storage tank gradient, length of grade and execution conditions, adopt the design of setting up intermediate anchor platform and increasing long grade of side slope, both the stability of impervious material in the long side slope of liquid storage tank and the reliabilities of antiseepage function such as HDPE geomembrane can be strengthened, the volume of liquid storage tank can be increased again, reduce construction costs.
Summary of the invention
The utility model has set forth a kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank, and this structure, on the basis of single-stage anchoring, sets up one-level anchored platform in long side slope centre position, increases the gradient of the upper and lower side slope of intermediate anchor platform simultaneously.
To achieve these goals, the technical solution adopted in the utility model is as follows:
A kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank, liquid storage tank design length of grade is 30 meters, the gradient of upper side slope (4) and slope (5) is 1: 2, on top, liquid storage tank slope, first order anchored platform (1) is set, at the bottom of slope, (3) arrange second level anchored platform (2) to first order anchored platform (1) 1/2 place, anchoring groove (6) is in the center in first order anchored platform (1) and second level anchored platform (2), anchoring groove (6) is by impervious barrier (7), packed layer (8) and HDPE geomembrane (9) composition, after anchoring groove (6) smooth compacting, carry out the laying of the whole slope seepage control layer (7) of liquid storage tank, plain concrete is built as packed layer (8) in anchoring groove (6), finally lay one deck HDPE geomembrane (9) at packed layer (8) upper surface, and weld with upper strata HDPE geomembrane (13) of impervious barrier (7), to prevent packed layer (8) by the corrosion of strong brine, and make whole liquid storage tank form a sealing complete structure.
Impervious barrier (7) is sodium bentonite pad (10), lower floor HDPE geomembrane (11), composite drainage network (12), upper strata HDPE geomembrane (13) from bottom to up successively.
Anchoring groove (6) is U-shaped ditch, after impervious barrier (7) and the complete docile of anchoring groove (6) inwall, builds plain concrete as packed layer (8) in anchoring groove (6).
HDPE geomembrane (9) is connected by extruding weldering with upper strata HDPE geomembrane (13).
Compared with prior art, the utility model has the advantage of:
The impervious barrier intermediate anchoring structure that the utility model is arranged, this structure construction is simple, good seepage-proof property, and quality easily controls; By increasing the gradient of side slope, not changing under the condition of building area, increase the volume of liquid storage tank; Setting up anchored platform can disperse strong brine in pond to the Action of Gravity Field of top, slope anchor structure, make domatic impervious barrier more firm, the sound assurance safety of super large liquid storage tank runtime.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the utility model is described in further detail:
Fig. 1 is a kind of intermediate anchoring structure schematic diagram for the long slope seepage control layer of super large liquid storage tank of the utility model;
Fig. 2 is the intermediate anchoring structure cross-sectional schematic of impervious barrier.
Wherein, 1. first order anchored platform, 2. second level anchored platform, 3. at the bottom of slope, 4. go up side slope, 5. slope, 6. anchoring groove, 7. impervious barrier, 8. packed layer, 9.HDPE geomembrane, 10. sodium bentonite pad, 11. lower floor HDPE geomembranes, 12. composite drainage networks, 13. upper strata HDPE geomembranes.
Detailed description of the invention
The technical problem solved to make the utility model clearly, below in conjunction with accompanying drawing, is further described the utility model.
A kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank as shown in Figure 1, on top, slope, first order anchored platform (1) is set, at the bottom of slope, (3) arrange second level anchored platform (2) to first order anchored platform (1) 1/2 place, first order anchored platform (1) and second level anchored platform (2) width are not less than 2m, the gradient of upper side slope (4) and slope (5) is 1: 2, center machine in first order anchored platform (1) and second level anchored platform (2) digs anchoring groove (6), impervious barrier (7) is set in anchoring groove (6) respectively, packed layer (8) and HDPE geomembrane (9), after anchoring groove (6) basal plane reaches designing requirement, anchoring groove (6) inner surface, domatic on liquid storage tank (4) and Caused by Sloping Surfaces (5) carry out the laying of impervious barrier (7) simultaneously, and then packed layer (8) and HDPE geomembrane (9) are set.
Impervious barrier (7) structure is followed successively by sodium bentonite pad (10), lower floor HDPE geomembrane (11), composite drainage network (12) and upper strata HDPE geomembrane (13) from bottom to top, and sodium bentonite pad (10) edge spreads swell soil powdery sealant and seals; Lower floor HDPE geomembrane (11) adopts manual site to lay and the welding of hot melt double track overlap joint, be laid on sodium bentonite pad (10), carry out welding test simultaneously, because super large liquid storage tank side slope is longer, in work progress, consider the characteristic of expanding with heat and contract with cold of the flexible barrier material such as lower floor HDPE geomembrane (11), a small amount of pre-allowance need be had at anchoring groove (6) and toe (3) place; Composite drainage network (12) is divided into three layers, and upper and lower top layer is geotextiles, and intermediate layer is web-roll core, and web-roll core is connected by colligation, and upper and lower top layer geotextiles adopts hot melt or suture way to connect.
The U-shaped ditch that anchoring groove (6) is 800mm × 800mm × 800mm, above upper strata HDPE geomembrane (13) in anchoring groove, placing intensity is that the plain concrete of C15 is as packed layer (8), plain concrete is built to full ditch, maintenance a couple of days.
HDPE geomembrane (9) is placed on packed layer (8), and HDPE geomembrane (9) and upper strata HDPE geomembrane (13) welding, make liquid storage tank form the film seepage control system of complete closure.
Above by most preferred embodiment detailed describe the utility model, the utility model is not limited to the above embodiment, any those skilled in the art, when not departing from technical solutions of the utility model, to any simple change made for any of the above embodiments, equivalent variations and modification, all still belong to the scope of technical solutions of the utility model.
Claims (4)
1. the intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank, it is characterized in that: liquid storage tank design length of grade is 30 meters, the gradient of upper side slope (4) and slope (5) is 1: 2, on top, liquid storage tank slope, first order anchored platform (1) is set, at the bottom of slope, (3) arrange second level anchored platform (2) to first order anchored platform (1) 1/2 place, anchoring groove (6) is in the center in first order anchored platform (1) and second level anchored platform (2), anchoring groove (6) is by impervious barrier (7), packed layer (8) and HDPE geomembrane (9) composition, after anchoring groove (6) smooth compacting, carry out the laying of the whole slope seepage control layer (7) of liquid storage tank, plain concrete is built as packed layer (8) in anchoring groove (6), finally lay one deck HDPE geomembrane (9) at packed layer (8) upper surface, and weld with upper strata HDPE geomembrane (13) of impervious barrier (7), to prevent packed layer (8) by the corrosion of strong brine, and make whole liquid storage tank form a sealing complete structure.
2. a kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank according to claim 1, is characterized in that: impervious barrier (7) is sodium bentonite pad (10), lower floor HDPE geomembrane (11), composite drainage network (12), upper strata HDPE geomembrane (13) from bottom to up successively.
3. a kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank according to claim 1, it is characterized in that: anchoring groove (6) is U-shaped ditch, after impervious barrier (7) and the complete docile of anchoring groove (6) inwall, build plain coagulation scholar in anchoring groove (6) as packed layer (8).
4. a kind of intermediate anchoring structure for the long slope seepage control layer of super large liquid storage tank according to claim 1, is characterized in that: HDPE geomembrane (9) is connected by extruding weldering with upper strata HDPE geomembrane (13).
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Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
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CN106345801A (en) * | 2016-11-18 | 2017-01-25 | 北京高能时代环境技术股份有限公司 | Dump leaching restoration system and restoration process of chromium pollution soil |
CN108457363A (en) * | 2018-02-02 | 2018-08-28 | 北京锄禾环保技术有限公司 | A kind of Collapsible Loess District agricultural water-storing device structure |
CN108755709A (en) * | 2018-06-05 | 2018-11-06 | 昆明理工大学 | A kind of open-pit slope antiseepage drainage system |
CN110804694A (en) * | 2019-11-15 | 2020-02-18 | 万宝矿产有限公司 | Biological heap leaching W solution ditch protection and leakage monitoring system |
CN114960707A (en) * | 2022-05-24 | 2022-08-30 | 浙江华东工程建设管理有限公司 | Inclined wall geomembrane earth rock cofferdam structure suitable for higher manger plate flood peak of geomembrane |
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2015
- 2015-01-27 CN CN201520054865.6U patent/CN204626402U/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106345801A (en) * | 2016-11-18 | 2017-01-25 | 北京高能时代环境技术股份有限公司 | Dump leaching restoration system and restoration process of chromium pollution soil |
CN108457363A (en) * | 2018-02-02 | 2018-08-28 | 北京锄禾环保技术有限公司 | A kind of Collapsible Loess District agricultural water-storing device structure |
CN108755709A (en) * | 2018-06-05 | 2018-11-06 | 昆明理工大学 | A kind of open-pit slope antiseepage drainage system |
CN110804694A (en) * | 2019-11-15 | 2020-02-18 | 万宝矿产有限公司 | Biological heap leaching W solution ditch protection and leakage monitoring system |
CN114960707A (en) * | 2022-05-24 | 2022-08-30 | 浙江华东工程建设管理有限公司 | Inclined wall geomembrane earth rock cofferdam structure suitable for higher manger plate flood peak of geomembrane |
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CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20150909 Termination date: 20170127 |