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Anti-flood wall with fusiform baffle plates

A flood control wall and shuttle-shaped technology, applied in flood control panels, buildings, door/window protection devices, etc., can solve problems such as threats to people's lives and property, lack of time to organize personnel to prevent floods and blockages, column instability, etc., to reduce transportation costs. and transportation difficulty, avoiding instability or even falling off, and improving the overall anti-seepage ability.

Pending Publication Date: 2021-07-30
NORTH CHINA UNIV OF WATER RESOURCES & ELECTRIC POWER
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Heavy rainfall caused traffic interruptions, power outages, and heavy rains and abnormally high rainfall have sounded the alarm for our country's flood control work. At present, sandbags and wooden boards are used to block the influx of rainwater in traditional flood control methods. It is too late to find sandbags and other flood control items, and it is too late to organize personnel to prevent floods and blockages, which threatens the safety of people's lives and property, and even brings huge property losses and casualties. Especially for urban underground space projects, flood backflow seriously threatens underground The safety of low-lying areas such as garages and subways; at present, urban flood control devices mostly use flood control walls for flood control. However, most of the flood control walls are linear structures. When arranging, the column and the baffle must be kept in an absolute straight line. In an emergency, the installation of the column and the baffle will easily deviate, resulting in the failure of the column and the baffle to be installed together, so that there will be a gap in the flood wall. During the installation, the column must be in a pre-tightened state on the foundation, so that the baffle can be assembled into the adjacent column, and then the column is tightened and locked downwards, and the baffle is compressed and sealed, but the column exists in the pre-tightened state. Instable, even falling off; and when the flood control wall is in use, if the partial baffle of the flood control wall is damaged, since the flood control wall is integrated, it is necessary to disassemble multiple sets of columns and replace the damaged baffle. Time-consuming and labor-intensive, and affect the flood control effect of the flood wall

Method used

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  • Anti-flood wall with fusiform baffle plates
  • Anti-flood wall with fusiform baffle plates
  • Anti-flood wall with fusiform baffle plates

Examples

Experimental program
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Effect test

Embodiment 1

[0042] Example 1, when the columns and baffles in the existing flood wall are installed, they must be arranged alternately forward in a straight line, and the linearity between the columns and the baffles needs to be ensured. The installation of the baffle is prone to offset, resulting in the failure of the column and the baffle to be installed together, resulting in gaps in the flood wall, and when the baffle is installed, the column must be in a pre-tightened state on the foundation before the baffle can be assembled into the adjacent column, and then tighten the column downward to lock the baffle, but the column is unstable in the pre-tightened state, and even falls off; when the flood wall is in use, if the flood wall If the partial baffle is damaged, it is necessary to dismantle multiple groups of columns at the same time to replace the damaged baffle, which is time-consuming and laborious, and the efficiency is low.

[0043] In view of the above problems, the present emb...

Embodiment 2

[0048] Embodiment 2, a flood control wall with shuttle-shaped baffles in this embodiment will be described centering on the differences from Embodiment 1.

[0049] In this example, if Figure 19-20 As shown, the front side and the rear side of the compression seat 6 are fixed with an oblique guide plate 19, and the oblique guide plate 19 is arranged obliquely from high to low from the upstream surface to the back water surface of the compression seat 6, and the waterproof baffle 1 is assembled to the fixed Behind the column 3, the top of the waterproof baffle 1 is fixed with an oblique spacer 18 corresponding to the oblique guide plate 19. The top of the oblique spacer 18 matches and fits the bottom of the oblique guide plate 19. 12 Press and fix the waterproof baffle 1, so that when the waterproof baffle 1 is squeezed and driven, the waterproof baffle 1 drives the oblique pad 18, so that the oblique pad 18 moves along the oblique guide plate 19, and at the same time The plat...

Embodiment 3

[0050] Embodiment 3, a flood control wall with shuttle-shaped baffles in this embodiment will be described centering on the differences from Embodiment 1.

[0051] In this embodiment, the outer end of the adjustment swing rod 8 is fixed with a hook, and the waterproof baffle 1 is fixed with a buckle corresponding to the hook, and the outer end of the adjustment swing rod 8 can be fixed in the buckle through the hook. It avoids the situation that the adjusting pendulum 8 may fall off from the card seat 9, and the use is more stable and reliable.

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Abstract

The invention relates to the technical field of flood control facilities, in particular to an anti-flood wall with fusiform baffle plates used on hard soil foundations such as underground garages and subway entrances. The anti-flood wall comprises fixing columns, wherein each fixing column is of an I-shaped structure, the waterproof baffle plates are arranged in the fixing columns, an adjusting and pressing assembly is arranged at the inner side of the upstream face of the fixing column, and a pressing seat is clamped and sleeved on the top of the fixing column. A plurality of fixing columns can be directly installed and fixed in a linear mode, the fixing columns are locked and fixed to the foundation, then, the flood prevention baffle plates are assembled into the adjacent fixing columns, the anti-flood baffle plates are pressed and sealed through the pressing seats, and the building of the anti-flood wall is completed. The building efficiency of the anti-flood wall is greatly improved.

Description

Technical field: [0001] The invention relates to the technical field of flood control facilities, in particular to a shuttle-shaped baffle flood control wall used on hard soil foundations such as underground garages and subway entrances. Background technique: [0002] In recent years, with the gradual expansion of the city scale, the phenomenon of urban waterlogging has become increasingly serious. Heavy rainfall caused traffic interruptions, power outages, and heavy rains and abnormally high rainfall have sounded the alarm for our country's flood control work. At present, sandbags and wooden boards are used to block the influx of rainwater in traditional flood control methods. It is too late to find sandbags and other flood control items, and it is too late to organize personnel to prevent floods and blockages, which threatens the safety of people's lives and property, and even brings huge property losses and casualties. Especially for urban underground space projects, floo...

Claims

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Application Information

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IPC IPC(8): E06B9/00
CPCE06B9/00E06B2009/007Y02A10/11
Inventor 曹震陈娜丁泽霖朱轩毅王馨莹李永超张记正张舒媛
Owner NORTH CHINA UNIV OF WATER RESOURCES & ELECTRIC POWER
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