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Numerical analysis reliability control for a double-pipe heat exchanger with virtual entropy generation method

机译:虚拟熵产生法的双管换热器数值分析可靠性控制

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摘要

There are two primary laws including the first and second laws of thermodynamics that should be used to assess a process. Generally, only the first law of thermodynamics is investigated in numerical solutions, so it is possible to exist some numerical results that do not satisfy the second law of thermodynamics because of numerical errors. To achieve reliable numerical outcomes, it is better to apply two indexes of HEAT BALANCE ERROR and VIRTUAL ENTROPY GENERATION, which come from the second law of thermodynamics. In other words, an approach to develop computational fluid dynamics investigations is to take second law of thermodynamics into consideration. In this study, two different models including counterflow double-pipe heat exchanger and single-pipe with constant wall temperature are simulated in various cases with different efficiencies and temperature ratios. It is found that 46 cases of total 523 double-pipe models and 24 cases of total 402 simulations of single-pipe models had unacceptable results regarding to two mentioned criteria. The results revealed that it is less likely to gain unreliable results in smaller efficiency and lower inlet temperature for double-pipe heat exchanger and single-pipe respectively.
机译:有两个主要定律,包括热力学的第一定律和第二定律,应用于评估过程。通常,在数值解中只研究热力学的第一定律,因此由于数值误差,可能存在一些不满足热力学第二定律的数值结果。为了获得可靠的数值结果,最好应用来自热力学第二定律的热平衡误差和虚拟熵产生两个指标。换句话说,进行计算流体动力学研究的一种方法是考虑热力学的第二定律。在这项研究中,模拟了两种不同的模型,包括逆流双管换热器和壁温恒定的单管,它们在不同的情况下具有不同的效率和温度比。对于两个提到的标准,发现总共523个双管道模型中的46个案例和总共402个单管道模型中的24个案例的结果令人无法接受。结果表明,对于双管换热器和单管,效率较低,入口温度较低,不太可能获得不可靠的结果。

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