首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Explicit Solution to Predict the Temperature Distribution and Exit Temperatures in a Heat Exchanger Using Differential Transform Method
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Explicit Solution to Predict the Temperature Distribution and Exit Temperatures in a Heat Exchanger Using Differential Transform Method

机译:使用微分变换方法预测热交换器中温度分布和出口温度的显式解决方案

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摘要

In this paper, a simple mathematical model based on energy transfer between the hot and cold fluids in a singlepass cross-flow plate-type heat exchanger is considered and the governing equations are solved using the differential transform method (DTM). DTM transforms the governing equations and its boundary conditions into a set of recurrence relations with some algebraic equations. These relations are further reduced, and then from the inverse transform, the dependent variable (temperature distribution) is obtained as a series solution in explicit form. The temperature distribution and the exit temperatures inside a single-pass cross-flow heat exchanger under steady state are obtained successfully for a single channel. The results obtained are then compared with those derived from Laplace Adomian decomposition method, finite difference method and the effectiveness-NTU approach. The comparison of the solution byDTMwith other widely used industrial solutions is also shown, and themerits of the proposed method are presented. The predicted temperature distribution by theDTMis accurate, and it has excellent agreement with the effectiveness-NTU results and other wellknown published results.
机译:本文认为,考虑了一种基于热和冷流体中的热和冷流体之间的能量传递的简单数学模型,并使用差分变换方法(DTM)解决了控制方程。 DTM将控制方程及其边界条件转换为与一些代数方程的一组复发关系。这些关系进一步减少,然后从逆变换中,从属变量(温度分布)以明确形式获得串联解决方案。在稳定状态下成功地获得单通横流热交换器内的温度分布和出口温度以获得单个通道。然后将获得的结果与来自Laplace Adomian分解方法,有限差分法和有效性-NTU方法的结果进行比较。还示出了对其他广泛使用的产业溶液的解决方案的比较,提出了该方法的主题。通过TheDTMIS准确的预测温度分布,它与有效性-NTU结果和其他众人发表的结果非常愉快。

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