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首页> 外文期刊>Journal of Heat Transfer >Steady State Performance of a Single Phase Natural Circulation Loop With End Heat Exchangers
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Steady State Performance of a Single Phase Natural Circulation Loop With End Heat Exchangers

机译:带有末端热交换器的单相自然循环回路的稳态性能

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摘要

In the present investigation, the steady state performance of a rectangular single phase natural circulation loop (NCL) with end heat exchangers is studied. One-dimensional governing equations are considered in developing the mathematical model. Analytical expressions are derived for the circulation rate and temperature profile. However, the individual performance parameters are to be computed iteratively as the equations are strongly coupled. A suitable iterative procedure is given to evaluate the important loop parameters such as steady state flow rate, and riser and down-comer temperatures. Few special cases are discussed where analytical expressions for circulation rate and temperature distribution can be obtained directly without any iterative procedure. It is also shown that both the hot and cold end heat exchangers should have equal conductance (UA) for maximization of circulation rate. This feature of NCL is identical with heat power cycle and can be explained in light of equipartition principle.
机译:在本研究中,研究了带有端部热交换器的矩形单相自然循环回路(NCL)的稳态性能。在开发数学模型时考虑一维控制方程。导出了循环速率和温度曲线的解析表达式。但是,随着方程式的强耦合,各个性能参数将被迭代计算。给出了合适的迭代过程来评估重要的环路参数,例如稳态流量,上升和下降温度。很少讨论在没有任何迭代过程的情况下可以直接获得循环速率和温度分布的解析表达式的特殊情况。还显示出,热端热交换器和冷端热交换器都应具有相等的电导率(UA),以最大程度地提高循环速率。 NCL的这一特征与热力循环相同,并且可以根据均分原理进行解释。

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