首页> 外文会议>International Symposium on Fluid Machinery and Fluid Engineering >THE THEORETICAL STUDY AND PARAMETER OPTIMIZATION OF TWO-STAGE AIR VALVE FOR PREVENTION OF WATER HAMMER IN THE LONG SUPPLY PIPE
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THE THEORETICAL STUDY AND PARAMETER OPTIMIZATION OF TWO-STAGE AIR VALVE FOR PREVENTION OF WATER HAMMER IN THE LONG SUPPLY PIPE

机译:两级空气阀的理论研究与参数优化,防止水锤在长供应管中

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The location of two-stage air valve is usually installed in accordance with the experience and the related parameters are determined through repeated trial since the commercial software of water hammer calculation does not open the background. In this paper, the long-distance water pipeline was simulated using C++ programming to analyze suddenly pump stop event and genetic algorithm was adopted to optimize the parameters of air valve. Firstly, the boundary condition of the air valve and the theoretical calculation of the installation location had been established. Then, engineering examples under three conditions were programmed, which included (1) no protective measures after stopping the pump; (2) installation of the two-stage butterfly valve; (3) the installation of a two-stage butterfly valve and air valve joint protection. Finally, the optimal close process of the two-stage butterfly valve and the best intake and exhaust coefficient of the air valve were obtained by genetic algorithm. The results showed that: a two-stage valve installed can reduce the maximum positive and reverse speed control of pumps, while reasonable installation of air valve can effectively alleviate the negative phenomena. The location of the air valve was reliable on the basis of pressure judgment method(method two)or theoretical formula(method three). The maximum pressure in the pipeline was reduced with the increase of the area ratio of air valve μ when 0.1 ≤ μ ≤ 0.3 and was firstly decreased then increased with the increase of critical pressure P_(cr). The results of after optimization and optimization of pre-computed are compared to indicate that the optimized parameters can be better for protection of water hammer, overcoming the deficiencies of commercial software.
机译:两级空气阀的位置通常根据经验安装,并且通过重复试验确定相关参数,因为水锤计算的商业软件不打开背景。在本文中,使用C ++编程模拟了长途水管道,以分析突然泵停止事件和遗传算法通过优化空气阀的参数。首先,已经建立了空气阀的边界条件和安装位置的理论计算。然后,编程了三种条件下的工程实例,其中包括(1)停止泵后没有保护措施; (2)安装两级蝶阀; (3)安装两级蝶阀和空气阀接头保护。最后,通过遗传算法获得了两级蝶阀的最佳关闭过程和空气阀的最佳进气量和排气系数。结果表明:安装了两级阀门,可以降低泵的最大正和反速控制,而空气阀的合理安装可以有效地缓解负现象。基于压力判断方法(方法两)或理论公式(方法三),空气阀的位置是可靠的。随着空气阀μ≤0.3的增加,管道中的最大压力随着空气阀μ的面积比而减小,然后随着临界压力P_(CR)的增加而增加,然后增加。比较预先计算优化和优化后的结果表明优化的参数可以更好地保护水锤,克服商业软件的缺陷。

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