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Thermo-hydraulic characteristics and second-law analysis of a single-phase natural circulation loop with end heat exchangers

机译:具有端换热器的单相自然循环回路的热液压特性和二级分析

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摘要

In this work, a three-dimensional transient numerical simulation of heat transfer characteristics in a single-phase natural circulation loop (SPNCL) with water as the working fluid in the loop and end heat exchangers is performed. A 3-D computational model of a SPNCL with end heat exchangers is developed. The second-law analysis for the SPNCL is presented and total entropy generation is given. Meanwhile, the transient response is obtained based on the finite difference method solving the one-dimensional momentum and energy equations. Firstly, a mesh dependence test and a model verification with the laminar correlation presented by Vijayan are conducted. Then the effects of driving temperature difference and heating or cooling fluid velocity on the thermos-hydraulic performance and dimensionless entropy generation number are investigated by fixing the cooling fluids temperature of 273K. Results show that a stable flow can be reached for all the cases. The formation of the stable natural circulation is the consequence of coupling between heating and cooling fluid. The time of quiescent state is relatively short due to the thermal asymmetry of the SPNCL. The mass flow rate and heat transfer rate at steady state increase with the increase of driving temperature difference and heating or cooling fluid velocity. It is obviously shown the internal heat transfer coefficient is mainly dependent on the driving temperature difference and increases with the increase of driving temperature difference. The thermal effectiveness and dimensionless entropy generation number also increase with the increase of driving temperature difference and heat transfer irreversibility is dominated in total irreversibility. Moreover, the time evolution of dimensionless mass flow rate shows a damped oscillation behavior.
机译:在这项工作中,进行单相自然循环回路(SPNCL)中的传热特性的三维瞬态数值模拟作为环和端部热交换器中的工作流体。开发了具有端部热交换器的SPNCL的三维计算模型。提出了SPNCL的第二法律分析,并给出了全熵生成。同时,基于求解一维动量方程的有限差分方法获得瞬态响应。首先,进行网格依赖性测试和Vijayan提出的层相关性的模型验证。然后通过将冷却流体温度为273k,研究了驱动温度差和加热或冷却流体速度对热水液压性能和无量纲熵生成数的影响。结果表明,所有情况都可以达到稳定的流动。稳定的自然循环的形成是加热和冷却液之间的结合的结果。由于SPNCL的热不对称,静态状态的时间相对较短。随着驱动温度差和加热或冷却流体速度的增加,质量流速和传热率在稳态增加。显然显示内部传热系数主要取决于驱动温差,随着驱动温差的增加而增加。随着驱动温差的增加,热量效能和无量纲熵产生数量也会增加,传热不可逆转性在总不可逆转性中占主导地位。此外,无量纲质量流量的时间进化显示了阻尼振荡行为。

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