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Entropy Generation in Counter Flow Gas to Gas Heat Exchangers

机译:逆流气体到气体热交换器的熵产生

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Analysis of heat transfer and fluid flow thermodynamic irreversibilities is realized on an example of a counter flow double pipe heat exchanger utilizing turbulent air flow as a working fluid. During the process of mathematical model creation and for different working and constructing limitations, total thermodynamic irreversibility is studied. The present work proves that the irreversibility occurred due to unequal capacity flow rates (flow imbalance irreversibility). It is concluded that the heat exchanger should be operated at effectiveness,ε, greater than 0.5 and the well operating conditions will be achieved whenεapproaches one where low irreversibility is expected. A new equation is adopted to express the entropy generation numbers for imbalanced heat exchangers of similar design with smallest deviation from the exact value. The results obtained from the new equation are compared with the exact values and with those obtained by Bejan (Bejan, A., 1997, Advanced Engineering Thermodynamics, Wiley, New York).
机译:在利用湍流气流作为工作流体的逆流双管换热器的示例中,实现了对传热和流体流热力学不可逆性的分析。在数学模型创建过程中,针对不同的工作和构造限制,研究了总热力学不可逆性。目前的工作证明了不可逆性是由于容量流量不相等而引起的(流量不平衡不可逆性)。结论是,热交换器应以大于0.5的效率运行,当ε接近预期不可逆性较低的情况时,将达到良好的运行条件。采用新的方程式来表示相似设计的不平衡热交换器的熵产数,其与准确值的偏差最小。从新方程式中获得的结果与精确值进行比较,并与Bejan获得的结果进行比较(Bejan,A.,1997,Advanced Engineering Thermodynamics,Wiley,New York)。

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