Optimal parameters of protection devices for controlling hydraulic transient using genetic algorithms

Mohammed Salah Alhwij, Wissam Nakhleh
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Abstract

Air valves and pressure vessels are among the most important protection devices used to protect the main pumping lines due to their reliability in controlling transient pressures. The proper and rational design of the water hammer protection devices ensures high efficiency in controlling the values of transient pressures. For this purpose, the genetic algorithm approach was adopted in the process of selecting the optimal parameters for both pressure vessels (size, orifice diameter) and air valve (orifice diameter of inlet and outlet, discharge coefficients of inlet and outlet) in addition to determining the type and location of the air valve. The performance of the proposed protection devices was verified by comparing three objective equations: (1) minimizing the cost of protection devices, (2) minimizing the difference between the maximum and minimum pressure, and (3) minimizing difference between the maximum and minimum pressure with a specific constraint on the budget of protection devices. The study results showed that selecting the optimal design parameters for pressure vessels and air valves helps control the cost of protection devices and transient pressure values.
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利用遗传算法优化控制液压瞬态的保护装置参数
空气阀和压力容器因其在控制瞬时压力方面的可靠性而成为用于保护主泵送管线的最重要的保护装置之一。正确合理地设计水锤保护装置可确保高效控制瞬时压力值。为此,除了确定空气阀的类型和位置外,还采用遗传算法为压力容器(尺寸、孔径)和空气阀(进出口孔径、进出口排气系数)选择最佳参数。通过比较以下三个目标方程,验证了所建议的保护装置的性能:(1) 保护装置成本最小化;(2) 最大压力与最小压力之差最小化;(3) 最大压力与最小压力之差最小化,并对保护装置的预算进行了特定限制。研究结果表明,选择压力容器和空气阀的最佳设计参数有助于控制保护装置的成本和瞬态压力值。
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