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Hydrodynamic Monitor and Analysis during the Closing of the Closure Gap of Qingcaosha Reservoir

机译:清新储层封闭差距结束时的流体动力监测与分析

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When the large width closure gap need to be completed under the condition of rapid flow and limited construction period, gap closure work becomes one of the most difficult construction part of all the whole Qingcaosha reservoir dike project. Considering the huge engineering quantity and complex hydrology of such engineering during construction phase, the real-time monitor, analysis and prediction of the hydrology are implemented. With numerical analysis of the closure gap under the design tide process, the model results show that the rising flow of the closure gap is more rapid than the ebb flow, and the maximum current speed caused by water level difference between the internal and external is mostly located at top slope corners of the gap protection layer. From the result of observation and calculation, the local maximum current speed was about 4.0m/s and experienced a short time due to small tidal range, which is suitable for construction. To sum up, it is feasible and helpful to combine the real-time observation with numerical analysis to ensure the safety in construction during the closing of the closure gap.
机译:当在快速流动和有限的施工期的情况下需要完成大的宽度闭合间隙时,间隙闭合工作成为所有全整个清刊水库堤防项目中最困难的建筑部分之一。考虑到施工阶段期间这种工程的巨大的工程量和复杂水文,实施了水文的实时监测,分析和预测。通过对设计潮流过程下的闭合间隙的数值分析,模型结果表明,闭合间隙的上升流量比橡胶流量更快,内部和外部水位差异导致的最大电流速度位于间隙保护层的顶部斜角。从观察和计算的结果来看,局部最大电流速度约为4.0m / s,并且由于小的潮汐范围而经历了短时间,适用于施工。总而言之,将实时观察与数值分析结合起来是可行和有用的,以确保在关闭闭合间隙时施工安全。

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