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Study of Performance Characteristics of a Triple Duty Valve using CFD

机译:使用CFD研究三重阀的性能特征

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A triple duty valve is used to control the functions such as on-off, throttling and non-return on the discharge side of hydronic pump systems. In this paper, computational fluid dynamic techniques are used to simulate the 2 inch triple duty valve performance characteristics for various stroke lengths with uniform outgoing velocity. The performance characteristics such as flow coefficient and pressure loss coefficient for triple duty valve are calculated for different stroke lengths (8 mm, 12 mm and 20 mm) through simulation. Numerical simulation is conducted to study effect of various Reynolds number and valve openings on the performance characteristics of triple duty valve. The permanent pressure loss coefficient and its dependence on Reynolds number is computed and analyzed respectively so that the recovery of pressure after passage through valve could be quantitatively understood. The comparison of flow pattern at different stroke length is investigated. Pressure drop across the triple duty valve and formation of vortex flow after the valve section have been discussed. Magnitude of flow coefficient, pressure loss coefficient and permanent pressure loss coefficient calculated through numerical analysis are compared with the experimental results. Furthermore, this study can be used for the evaluation of performance characteristics of triple duty valve at different sizes.
机译:三重阀用于控制液压泵系统排放侧的断开,节流和不返回的功能。在本文中,计算流体动力学技术用于模拟具有均匀输出速度的各种行程长度的2英寸三倍阀性能特性。通过仿真计算三芯阀的流量系数和压力损失系数的性能特征,例如不同的行程长度(8mm,12mm和20mm)计算。进行数值模拟,以研究各种雷诺数和阀门开口对三芯阀性能特性的影响。分别计算和分析永久性压力损失系数及其对雷诺数的依赖性,使得可以定量地理解通过阀门通过阀后的压力恢复。研究了不同行程长度处的流动模式的比较。探讨阀门后三级阀的压降和涡流流动的形成。将通过数值分析计算的流量系数,压力损失系数和永久压力损失系数与实验结果进行比较。此外,该研究可用于评估不同尺寸的三联阀的性能特征。

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