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Numerical calculation of air pressure changes in water filling and emptying process of pressured-pipeline with combined air valves

机译:组合式空气阀在压力管道充水和排空过程中气压变化的数值计算。

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In order to research on the water filling and emptying process of a pressured-pipeline in long distance, according to the characteristics for the pressured-pipeline in the long distance during the filling and emptying process, the strategies of sectional treatment and water filling and emptying in succession were adopted. For each segment of the pipe, a mathematical model was established with using the ideal gas equation according to the filling principle under the low flow rate in combination with the characteristics of inlet and exhaust gas of an air valve. On the basis of the definite positions of air valves and drain pipes, calculating the air pressure changes in different pipes according to the definite water filling discharge and different water emptying discharges. The calculated results indicate that in accordance with the principles of the low flow rate of water filling, the air pressure inside the pipe is not high. The greater the water emptying discharge, the lower the corresponding air pressure and the higher pipe risk. These computation results can provide safety assessment foundations for the pressured-pipeline filling and emptying process in the long distance.
机译:为了研究长距离压力管道的注水和排空过程,根据长距离压力管道的注水和排空过程的特点,进行分段处理和注水和排空的策略。陆续采用。对于管道的每个部分,在低流量下结合充气阀的进气和排气特性,根据填充原理,使用理想气体方程建立了数学模型。根据空气阀和排水管的确定位置,根据确定的注水排放量和不同的排空排放量,计算不同管道中的气压变化。计算结果表明,按照低注水量原理,管内气压不高。排空水量越大,相应的空气压力越低,管道风险也就越高。这些计算结果可为长距离压力管道的充填和排空过程提供安全评估基础。

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