Effect of Heat on Velocity and Heat Transfer Coefficient of the Fluid in a Pipe with a Laminar Flow

Madhav Poudel
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Abstract

The study of flow of liquids in a circular pipe has been studied for a long time. The theoretical and numerical analysis of viscous fluid is very important in the field of physics, engineering and even in medicine. In any fluid flow, the Napier-Stokes equation are very important to study the nature of flow. On the basis of Reynold number, the flow is either classified as laminar or turbulent. When the heat is supplied to a circular pipe with a liquid having laminar flow, the velocity, rate of flow of volume, temperature gradient, etc. are changed. This study aims to investigate the change in velocity, pressure drop, frictional factor and temperature distribution in the thermal layer across the liquid in the laminar flow. Various boundary conditions are assumed and the conservation of energy, momentum are also considered.
热对层流管内流体速度和换热系数的影响
液体在圆管内流动的研究已经进行了很长时间。粘性流体的理论和数值分析在物理、工程甚至医学领域都具有重要的意义。在任何流体流动中,Napier-Stokes方程对于研究流动的性质都是非常重要的。在雷诺数的基础上,将流动分为层流和湍流两类。当热量供给具有层流的液体的圆形管道时,速度、体积流量、温度梯度等都会发生变化。本研究旨在研究层流中横跨液体的热层中速度、压降、摩擦系数和温度分布的变化。假设了各种边界条件,并考虑了能量、动量守恒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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