Numerical Study of the Winter-Kennedy Method—A Sensitivity Analysis

机械 入口 流量(数学) 计算流体力学 螺旋(铁路) 流量系数 涡流 流量系数 灵敏度(控制系统) 环境科学 数学 物理 工程类 机械工程 数学分析 热力学 喷嘴 电子工程
作者
Binaya Baidar,J Nicolle,Chirag Trivedi,Michel J. Cervantes
出处
期刊:Journal of Fluids Engineering-transactions of The Asme [ASM International]
卷期号:140 (5) 被引量:6
标识
DOI:10.1115/1.4038662
摘要

The Winter-Kennedy (WK) method is commonly used in relative discharge measurement and to quantify efficiency step-up in hydropower refurbishment projects. The method utilizes the differential pressure between two taps located at a radial section of a spiral case, which is related to the discharge with the help of a coefficient and an exponent. Nearly a century old and widely used, the method has shown some discrepancies when the same coefficient is used after a plant upgrade. The reasons are often attributed to local flow changes. To study the change in flow behavior and its impact on the coefficient, a numerical model of a semi-spiral case (SC) has been developed and the numerical results are compared with experimental results. The simulations of the SC have been performed with different inlet boundary conditions. Comparison between an analytical formulation with the computational fluid dynamics (CFD) results shows that the flow inside an SC is highly three-dimensional (3D). The magnitude of the secondary flow is a function of the inlet boundary conditions. The secondary flow affects the vortex flow distribution and hence the coefficients. For the SC considered in this study, the most stable WK configurations are located toward the bottom from θ=30deg to 45deg after the curve of the SC begins, and on the top between two stay vanes.
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