Stuart和Prandtl数对金刚石纳米流体在圆柱表面流动影响的研究

Yolanda Norasia
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引用次数: 1

摘要

流体流动问题可以通过应用数学建模来构建,并通过计算流体动力学(CFD)进行数值求解。使用无量纲变量、流函数和相似变量来简化牛顿定律和热力学定律的控制方程。这些方程由连续性方程、动量方程和能量方程组成。后向欧拉法对方程进行数值求解。结果表明,给定的Stuart数和Prandtl数的影响越小,流体的速度和温度就越高。含有水基液体的金刚石纳米流体比机油基流体运动速度更快,温度上升速度更快。这是由于水基流体的热物理热容大于发动机油的热物理热容。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of The Effect Stuart and Prandtl Numbers on Diamond Nano Fluid Flowing Through Cylindrical Surface
Fluid flow problems can be constructed using applied mathematical modeling and solved numerically using computational fluid dynamics (CFD). Nondimensional variables, stream functions, and similarity variables are used to simplify the governing equations from Newton's law, and thermodynamics law. These equations consist of continuity equations, momentum equations, and energy. Backward Euler method numerically solves the equations. The results show that the smaller the influence of the given Stuart number and Prandtl number, the fluid velocity and temperature will increase. Diamond nano fluid with water base fluid moves faster and experiences an increase in temperature faster than engine oil base fluid. this is due to the thermo-physical heat capacity of the water base fluid being greater than that of the engine oil.
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