首页> 外文期刊>Journal of the Instrument Society of India: Proceedings of the national symposium on instrumentation >Modelling of Relative Height of Hydraulic Jump in Horizontal Prismatic Channel Using C Programming
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Modelling of Relative Height of Hydraulic Jump in Horizontal Prismatic Channel Using C Programming

机译:基于C程序的水平棱柱通道水力跳跃相对高度建模。

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摘要

Hydraulic jump is a phenomenon caused by change in stream regime from supercritical to sub - critical flow with considerable energy dissipation and rise in depth of flow. Hydraulic jump primarily serves as an energy dissipater to dissipate excess energy of flowing water downstream of hydraulic structures, such as spillway, sluice gates etc. This excess energy, if left unchecked, will have adverse effect on the banks and the bed. A review of literature has shown that earlier researcher have studied the hydraulic jump characteristics in terms of approach Froude number (Fr_1) only. In the present paper hydraulic jump in horizontal prismatic channel has been studied and analyzed considering the effect of both approach Froude number and incoming Reynolds number (Re_1). Empirical models for relative height of hydraulic jump based on experimental data using Buckingham π-theorem and C programming have been developed considering the effect of approach Froude number and incoming Reynolds number. The developed empirical computational model is validated using Bhutto (1987) data.
机译:水力跃变是由于流态从超临界流变为次临界流而引起的,这种现象具有相当大的能量耗散和流深增加。水力跃变主要用作消散水力结构下游水流(例如溢洪道,水闸等)的多余能量。如果不加以控制,这些多余能量将对堤岸和河床产生不利影响。文献综述表明,较早的研究人员仅根据进近弗洛德数(Fr_1)研究了水力跃变特性。在本文中,研究了水平棱柱形通道中的水力跃变,并考虑了进近弗洛德数和传入雷诺数(Re_1)的影响。考虑到进近弗洛德数和雷诺数的影响,基于白金汉π-定理和C程序的实验数据,建立了液压跳变相对高度的经验模型。使用Bhutto(1987)的数据验证了开发的经验计算模型。

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