Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Anti-floating deeply-buried water tank
The invention relates to the technical field of deeply-buried water tanks, in particular to an anti-floating deeply-buried water tank which comprises a water tank body and an anti-floating device. The anti-floating device comprises a communicating pipe horizontally arranged at the bottom of the water tank body, one end of the communicating pipe is communicated with the inner side space of the water tank body, and the other end of the communicating pipe is communicated with the outer side space of the water tank body. A piston is arranged in the communicating pipe and used for blocking the end, communicating with the outer side space of the water tank body, of the communicating pipe. One end of the piston is connected with a first spring, and the piston axially moves along the communicating pipe under the action of the pressure difference between the inner side and the outer side of the water tank body and drives the first spring to stretch and contract; and when F deeply buried water tank + F water-F floating is equal to M, the piston axially moves to the water replenishing point along the communicating pipe, and is communicated with a water supply device to automatically replenish water to the inner side space of the water tank body, so that the pressure in the water tank is automatically adjusted, and the water tank is prevented from floating to cause damage.
本申请涉及深埋水罐技术领域,特别涉及一种抗浮式深埋水罐,包括水罐罐体、抗浮装置;抗浮装置包括在水罐罐体底部水平设置的联通管,联通管一端与水罐罐体内侧空间联通,另一端与水罐罐体外侧空间联通;联通管内设置有活塞,用于封堵联通管与水罐罐体外侧空间联通的一端;活塞一端连接有第一弹簧,活塞在水罐罐体内、外两侧压差作用下,沿联通管轴向移动,并带动第一弹簧伸展、收缩;联通管中设置有补水点,当F深埋水罐+F水‑F浮=M时,活塞沿联通管轴向移动至补水点,并连通供水装置,对水罐罐体内侧空间进行自动补水,以实现对水罐内压力的自动调节,进而防止水罐上浮而造成损坏。
Anti-floating deeply-buried water tank
The invention relates to the technical field of deeply-buried water tanks, in particular to an anti-floating deeply-buried water tank which comprises a water tank body and an anti-floating device. The anti-floating device comprises a communicating pipe horizontally arranged at the bottom of the water tank body, one end of the communicating pipe is communicated with the inner side space of the water tank body, and the other end of the communicating pipe is communicated with the outer side space of the water tank body. A piston is arranged in the communicating pipe and used for blocking the end, communicating with the outer side space of the water tank body, of the communicating pipe. One end of the piston is connected with a first spring, and the piston axially moves along the communicating pipe under the action of the pressure difference between the inner side and the outer side of the water tank body and drives the first spring to stretch and contract; and when F deeply buried water tank + F water-F floating is equal to M, the piston axially moves to the water replenishing point along the communicating pipe, and is communicated with a water supply device to automatically replenish water to the inner side space of the water tank body, so that the pressure in the water tank is automatically adjusted, and the water tank is prevented from floating to cause damage.
本申请涉及深埋水罐技术领域,特别涉及一种抗浮式深埋水罐,包括水罐罐体、抗浮装置;抗浮装置包括在水罐罐体底部水平设置的联通管,联通管一端与水罐罐体内侧空间联通,另一端与水罐罐体外侧空间联通;联通管内设置有活塞,用于封堵联通管与水罐罐体外侧空间联通的一端;活塞一端连接有第一弹簧,活塞在水罐罐体内、外两侧压差作用下,沿联通管轴向移动,并带动第一弹簧伸展、收缩;联通管中设置有补水点,当F深埋水罐+F水‑F浮=M时,活塞沿联通管轴向移动至补水点,并连通供水装置,对水罐罐体内侧空间进行自动补水,以实现对水罐内压力的自动调节,进而防止水罐上浮而造成损坏。
Anti-floating deeply-buried water tank
一种抗浮式深埋水罐
CHENG XIANGANG (Autor:in) / ZHANG LUFAN (Autor:in) / YAN DONGSHENG (Autor:in) / LI YUANCHUN (Autor:in) / XU SHIHUI (Autor:in) / WU PENG (Autor:in) / FU LIANG (Autor:in) / WANG DAYONG (Autor:in) / SHI HONGKE (Autor:in) / JIANG ZHENGKAI (Autor:in)
10.10.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E03F
SEWERS
,
Abwasserkanäle
Construction method of deeply-buried water platform bored piles
Europäisches Patentamt | 2020
|Foundation Engineering in Deeply Buried Karst
British Library Conference Proceedings | 1989
|Analysis of Deeply Buried Flexible Pipes
British Library Online Contents | 2003
|