水闸
结束语(心理学)
计算流体力学
唤醒
GSM演进的增强数据速率
摩擦系数
干扰
压力系数
流量系数
机械
梁(结构)
岩土工程
材料科学
海洋工程
地质学
环境科学
结构工程
工程类
机械工程
物理
复合材料
电信
考古
喷嘴
经济
市场经济
历史
热力学
作者
Chuanming Sheng,Fang Liu,Chao Ma,Jijian Lian,Bin Ma
标识
DOI:10.1080/00221686.2023.2239746
摘要
The problem of sluice gate jamming in moving water occurs frequently in engineering practice. In this study, the reason for gate jamming is investigated by using computational fluid dynamics and verified by model tests with variable friction coefficients. The results show that the gate geometry is reasonable and the downpull force of the sluice gate can be fully utilized. Due to being submerged in water for many years, high friction coefficient is the main reason for the non-closure of a sluice gate. The permissible friction coefficient is related to the submerged weight, available areas of panel and beam, and water level difference. Decreasing the guide vane opening and lowering the water level difference to decrease the average pressure head are feasible ways to promote the gate closure in an emergency. Adding a convex bottom edge and dividing the whole gate into two sections to increase the permissible friction coefficient are effective ways to achieve complete closure in the modification stage.
科研通智能强力驱动
Strongly Powered by AbleSci AI