A water hammer protection method for mine drainage system based on velocity adjustment of hydraulic control valve

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Abstract

Water hammer analysis is a fundamental work of pipeline systems design process for water distribution networks. The main characteristics for mine drainage system are the limited space and high cost of equipment and pipeline changing. In order to solve the protection problem of valve-closing water hammer for mine drainage system, a water hammer protection method for mine drainage system based on velocity adjustment of HCV (Hydraulic Control Valve) is proposed in this paper. The mathematic model of water hammer fluctuations is established based on the characteristic line method. Then, boundary conditions of water hammer controlling for mine drainage system are determined and its simplex model is established. The optimization adjustment strategy is solved from the mathematic model of multistage valve-closing. Taking a mine drainage system as an example, compared results between simulations and experiments show that the proposed method and the optimized valve-closing strategy are effective.

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APA

Kou, Y., Yang, J., & Kou, Z. (2016). A water hammer protection method for mine drainage system based on velocity adjustment of hydraulic control valve. Shock and Vibration, 2016. https://doi.org/10.1155/2016/2346025

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