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Buried high-resistance large-flux drainage wave absorbing device convenient to maintain
The device comprises a maintenance cabin, a water inlet pipe, a water outlet pipe, a high-resistance wave absorbing mechanism and a secondary high-resistance linkage wave absorbing mechanism, a water inlet and a water outlet are formed in the maintenance cabin, the water inlet is located in the front end of the maintenance cabin, the water outlet is located in the lower portion of the maintenance cabin, and the secondary high-resistance linkage wave absorbing mechanism is located in the middle of the maintenance cabin. The high-resistance wave absorbing mechanism and the secondary high-resistance linkage wave absorbing mechanism are arranged in the maintenance cabin, the secondary high-resistance linkage wave absorbing mechanism is horizontally arranged at a water inlet of the maintenance cabin, the water inlet pipe is connected with the secondary high-resistance linkage wave absorbing mechanism, the high-resistance wave absorbing mechanism is vertically arranged at a water outlet of the maintenance cabin, and the water outlet pipe is connected with the high-resistance wave absorbing mechanism. The wave absorbing mechanism is used for eliminating shock waves, an existing wave absorbing mode of a diffusion chamber is replaced, the wave absorbing efficiency is effectively improved, the high-resistance wave absorbing mechanism and the secondary-high-resistance linkage wave absorbing mechanism are combined for wave absorbing, and both high resistance and large flux of the drainage wave absorbing device are achieved.
本发明公开了一种便于维护的地埋式高抗力大通量排水消波装置,包括维修舱、进水管、出水管、高抗力消波机构和次高抗力联动消波机构,维修舱上设有进水口和出水口,进水口位于维修舱的前端,出水口位于维修舱的下部,高抗力消波机构和次高抗力联动消波机构设在维修舱内,次高抗力联动消波机构水平设置在维修舱的进水口处,进水管与次高抗力联动消波机构连接,高抗力消波机构竖向设置在维修舱的出水口处,出水管与高抗力消波机构连接。采用消波机构对冲击波进行消除,代替了现有的扩散室的消波方式,有效提升了消波效率,并且通过高抗力消波机构和次高抗力联动消波机构联合进行消波,实现了排水消波装置的高抗力和大通量的兼顾。
Buried high-resistance large-flux drainage wave absorbing device convenient to maintain
The device comprises a maintenance cabin, a water inlet pipe, a water outlet pipe, a high-resistance wave absorbing mechanism and a secondary high-resistance linkage wave absorbing mechanism, a water inlet and a water outlet are formed in the maintenance cabin, the water inlet is located in the front end of the maintenance cabin, the water outlet is located in the lower portion of the maintenance cabin, and the secondary high-resistance linkage wave absorbing mechanism is located in the middle of the maintenance cabin. The high-resistance wave absorbing mechanism and the secondary high-resistance linkage wave absorbing mechanism are arranged in the maintenance cabin, the secondary high-resistance linkage wave absorbing mechanism is horizontally arranged at a water inlet of the maintenance cabin, the water inlet pipe is connected with the secondary high-resistance linkage wave absorbing mechanism, the high-resistance wave absorbing mechanism is vertically arranged at a water outlet of the maintenance cabin, and the water outlet pipe is connected with the high-resistance wave absorbing mechanism. The wave absorbing mechanism is used for eliminating shock waves, an existing wave absorbing mode of a diffusion chamber is replaced, the wave absorbing efficiency is effectively improved, the high-resistance wave absorbing mechanism and the secondary-high-resistance linkage wave absorbing mechanism are combined for wave absorbing, and both high resistance and large flux of the drainage wave absorbing device are achieved.
本发明公开了一种便于维护的地埋式高抗力大通量排水消波装置,包括维修舱、进水管、出水管、高抗力消波机构和次高抗力联动消波机构,维修舱上设有进水口和出水口,进水口位于维修舱的前端,出水口位于维修舱的下部,高抗力消波机构和次高抗力联动消波机构设在维修舱内,次高抗力联动消波机构水平设置在维修舱的进水口处,进水管与次高抗力联动消波机构连接,高抗力消波机构竖向设置在维修舱的出水口处,出水管与高抗力消波机构连接。采用消波机构对冲击波进行消除,代替了现有的扩散室的消波方式,有效提升了消波效率,并且通过高抗力消波机构和次高抗力联动消波机构联合进行消波,实现了排水消波装置的高抗力和大通量的兼顾。
Buried high-resistance large-flux drainage wave absorbing device convenient to maintain
一种便于维护的地埋式高抗力大通量排水消波装置
PENG FEI (Autor:in) / WANG JING (Autor:in) / LU YIDONG (Autor:in) / ZHAO HONGLIANG (Autor:in) / ZHANG RUILONG (Autor:in) / MA DEYUN (Autor:in) / LI JINGYUAN (Autor:in) / GAO XIAOMING (Autor:in) / WANG JIANKUN (Autor:in) / XING SHANPENG (Autor:in)
10.09.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E03F
SEWERS
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Abwasserkanäle
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