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Air-floatation box-type rainwater receiving matrix container with variable capacity

A receiving matrix and box-type technology, which is applied in the field of rainwater receiving matrix containers, can solve the problems of heavy weight, large volume, and small volume of the beehive skeleton, and achieve the effect of simple structure, large volume, and light weight

Inactive Publication Date: 2012-07-25
ANHUI DIDI WATER SAVING TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The existing beehive-type matrix containers in foreign countries need to support the surrounding and top weights. The beehive-type skeleton has a large weight and occupies a large volume, which makes the internal volume smaller and the cost is high.

Method used

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  • Air-floatation box-type rainwater receiving matrix container with variable capacity
  • Air-floatation box-type rainwater receiving matrix container with variable capacity
  • Air-floatation box-type rainwater receiving matrix container with variable capacity

Examples

Experimental program
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Effect test

Embodiment 1

[0029] Such as Figure 2-6 As shown: the air-floating box module 6 is a cube with a side length of 600mm. It is composed of two upper and lower bottom plates 1c and four side plates 1a tenoned with its four sides, and its inner cavity is tenoned with five middle plates 1b. The side plate 1a, the middle plate 1b, and the bottom plate 1c are grid plate structures, and the grids uniformly distributed on them are water permeable openings 5 ​​. The side plate 1a, the middle plate 1b and the bottom plate 1c are made of PVC material through blow molding, and the grid plate contains a closed air cavity 2, and the thickness of the grid plate is 20mm. Water permeable openings 5 ​​and tenon holes 3b are evenly arranged on the bottom plate 1c. Tenons 3a are provided at both ends of the longitudinal ribs of the side plate 1a, tenons 3a are provided at one end of the transverse ribs, and tenon holes 3b are provided at the other end for mutual socketing. Tenons 3a are provided at both ends...

Embodiment 2

[0031] Such as Figure 7-11 As shown: the air-floating box module 6 is a cube with a side length of 800 mm. It is required that multiple middle plates 1b are mortised and mortised in the inner cavity. The side plate 1a, the middle plate 1b and the bottom plate 1c are grid plate structures, and the uniformly distributed grids on them are used as permeable openings 5 ​​or as mortise holes 3b. The side plate 1a, the middle plate 1b and the bottom plate 1c are made of PVC material through blow molding, and the grid plate contains a closed air cavity 2, and the thickness of the grid plate is 30mm. Tenon holes 3b are evenly arranged on the bottom plate 1c. The two ends of the longitudinal ribs and transverse ribs of the side plate 1a and the middle plate 1b are used as the tenon 3a, and the notch between the two ends is used as the tenon joint notch 4.

[0032] The air-floating box module of the present invention is used as a frame to support the bearing weight, and the matrix is...

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Abstract

The invention relates to an air-floatation box-type rainwater receiving matrix container with variable capacity, which comprises a water inlet, a water outlet, an air vent, a pollution drainage port, and a plurality of box bodies placed inside an impermeable plastic layer, wherein the box body is an air-floatation box body module constituted by mortise jointing of a sideboard containing an air cavity, a middle board and a baseboard; one of the sideboard, the middle board and the baseboard is respectively provided with a permeable port. The air-floatation box body module is a cube constituted by an upper baseboard, a lower baseboard and four sideboards mortised with four sides of each baseboard; a plurality of middle boards are mortised in a cavity of the air-floatation box body module; the side length of the air-floatation box body module is 600-800 millimeters. The air-floatation box body module is used as a hollow framework, and the framework is floated upwards by buoyancy of water in a water injecting process, thereby reducing the weight of the framework itself and protecting a foundation from not influencing substructures and facilities around. Various matrixes can be spliced according to the landform so that large-area and small-area use capacities can be adapted. The air-floatation box-type rainwater receiving matrix container with variable capacity, provided by the invention is simple in structure, convenient in transportation and installation and low in cost, and is capable of optionally choosing the capacity.

Description

technical field [0001] The invention relates to a rainwater receiving matrix container, in particular to an air flotation box type rainwater receiving matrix container with variable capacity. Background technique [0002] The Chinese government pays more and more attention to water pollution, and the "Green Building" rewards and appraises water resource utilization as a higher score. As a carrier of pollutants, rainwater takes away pollutants and pollutes surrounding rivers. Therefore, rainwater is collected and utilized to cut off pollution sources at the source to achieve the purpose of water pollution control. At the same time, rainwater can be fully utilized to save water resources. [0003] At present, the domestic containers used for rainwater receiving are single structures with small capacity, which cannot meet the requirements of large-capacity rainwater reception, and it is inconvenient to adjust the required capacity. It is also limited by the surrounding building...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): E03F5/10
Inventor 赵定成
Owner ANHUI DIDI WATER SAVING TECH