首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Performance Test of the Air-Cooled Finned-Tube Supercritical CO2 Sink Heat Exchanger
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Performance Test of the Air-Cooled Finned-Tube Supercritical CO2 Sink Heat Exchanger

机译:风冷翅片管超临界CO2水槽热交换器的性能试验

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This technical paper presents results of an air-cooled supercritical CO2 (sCO(2)) finned-tube sink heat exchanger (HX) performance test comprising wide range of variable parameters (26-166 degrees C, 7-10 MPa, 0.1-0.32 kg/s). The measurement covered both supercritical and subcritical pressures including transition of pseudocritical region in the last stages of the sink HX. The test was performed in a newly built sCO(2) experimental loop which was constructed within Sustainable Energy (SUSEN) project at Research Centre Rez (CVR). The experimental setup along with the boundary conditions are described in detail; hence, the gained data set can be used for benchmarking of system thermal hydraulic codes. Such benchmarking was performed on the open source Modelica-based code ClaRa. Both steady-state and transient thermal hydraulic analyses were performed using the simulation environment DYMOLA 2018 on a state of the art PC. The results of calculated averaged overall heat transfer coefficients (using Gnielinski correlation for sCO(2) and IPPE or VDI for the air) and experimentally determined values shows reasonably low error of + 25% and - 10%. Hence, using the correlations for the estimation o f the heat transfer in the sink HX with a similar design and similar conditions gives a fair error and thus is recommended.
机译:本文介绍了一种空气冷却超临界CO2的结果(SCO(2))翅片管槽热交换器(HX)性能测试,包括宽范围的可变参数(26-166℃,7-10MPa,0.1-0.32 kg / s)。超临界和亚临界压力的测量包括在水槽HX的最后阶段中的伪穴位区域的转变。该试验在新建的SCO(2)实验回路中进行,该循环在研究中心REZ(CVR)的可持续能量(Susen)项目中构建。详细描述了实验设置以及边界条件;因此,获得的数据集可用于系统热液压码的基准测试。在基于开源的基于Modelica的代码Clara上进行了这种基准测试。使用稳态和瞬态的热液压分析,使用仿真环境DYMOLA 2018对现有技术的PC。计算平均总传热系数的结果(使用用于SCO(2)和IPPE或VDI的Gnielinski相关性)和实验确定的值显示出合理低的误差±25%和-10%。因此,使用具有类似设计和类似条件的水槽HX中的热传递的相关性提供了相当误差,因此建议使用。

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