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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Transient response of a co-current heat exchanger to an inlet temperature variation with time using an analytical and numerical solution
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Transient response of a co-current heat exchanger to an inlet temperature variation with time using an analytical and numerical solution

机译:使用解析和数值解决方案的并流热交换器对入口温度随时间的瞬态响应

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摘要

In this article, we examine the transient response of a co-current double-pipe heat exchanger with respect to the inlet temperature change. For this investigation, a method whose main feature is analytical solution of the energy equation for one element of the heat exchanger is developed. The governing equations are linearized with respect to space and time in one element, and the temperature distribution for the element is obtained. Finally, the obtained temperature distribution for one element is utilized numerically for the whole length of the heat exchanger. Various boundary conditions (ramp, exponential, and sinusoidal) are applied, and the responses are investigated with respect to various parameters. A comparison of the results with data from previous studies shows that the method applied in this article is capable of predicting transient behavior accurately. In addition, because the energy equation is solved analytically, the present method has higher accuracy than those previously utilized, and the calculation time declines noticeably.
机译:在本文中,我们研究了并流双管换热器相对于入口温度变化的瞬态响应。为了进行这项研究,开发了一种方法的主要特征是对一个热交换器的能量方程进行解析。控制方程相对于一个元素中的空间和时间线性化,并获得该元素的温度分布。最后,将获得的一个元件的温度分布在数值上用于热交换器的整个长度。应用各种边界条件(斜坡,指数和正弦曲线),并针对各种参数研究响应。将结果与先前研究的数据进行比较,结果表明本文中使用的方法能够准确预测瞬态行为。另外,由于能量方程是解析求解的,因此本方法比以前使用的方法具有更高的精度,并且计算时间明显减少。

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