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COMPUTATIONAL HEAT TRANSFER IN HEAT EXCHANGER ANALYSIS AND DESIGN

机译:换热分析与设计中的计算换热

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摘要

Rapid development of computer capacity and advances in numerical solution methods for the governing equations of fluid flow and heat transfer have enabled CFD (computational fluid dynamics) methods to gradually become useful tools in research and development, engineering design and analysis of heat transfer equipment. However, turbulence modelling still presents a problem as accurate and reliable predictions of flow separation, reattachment, impingement and recirculating flow fields are requested. For heat exchangers both laminar and turbulent flow fields are of significance and in addition the geometries are complex, of small dimensions sometimes and tabulators or enhanced surfaces are applied. Still the demands on computers are strong as analysis of full scale equipment requires a huge amount of grid points and the computation times are long. The present paper concerns current CFD methods for thermal problems in analysis and design of heat exchangers. Application examples are presented and associated problems and limitations are discussed.
机译:计算机能力的飞速发展以及流体流动和传热控制方程的数值解法的发展使CFD(计算流体动力学)方法逐渐成为研究,开发,工程设计和传热设备分析的有用工具。但是,湍流建模仍然存在问题,因为需要对流分离,重新附着,撞击和再循环流场进行准确而可靠的预测。对于热交换器来说,层流和湍流场都是重要的,此外,几何形状复杂,尺寸有时很小,并且使用制表机或增强表面。由于对大型设备的分析需要大量的网格点并且计算时间很长,因此对计算机的需求仍然很高。本文涉及用于热交换器分析和设计中的热问题的当前CFD方法。给出了应用示例,并讨论了相关的问题和局限性。

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