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首页> 外文期刊>Journal of nuclear engineering and radiation science >Experimental Validation of ANSYS CFX for Transient Flows With Heat Transfer in a Tubular Heat Exchanger
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Experimental Validation of ANSYS CFX for Transient Flows With Heat Transfer in a Tubular Heat Exchanger

机译:管状热交换器中传热瞬态流动的ANSYS CFX的实验验证

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摘要

Within the European SESAME project, extensive experimental work was performed and complemented by the development, application, and validation activities of thermalhydraulic simulation tools for different scales. The TALL-3D experimental facility, operated by KTH Royal Institute of Technology in Stockholm, is designed for thermalhydraulic experiments with lead-bismuth eutectic (LBE) coolant at natural and forced circulation conditions. The heat generated in the primary TALL-3D circuit is transferred via a double-tube counter-flow heat exchanger (HX) to the secondary side, which is cooled by glycerol oil. Validation calculations with the coupled simulation code ATHLET-ANSYS CFX within the European THINS project showed that one of the major challenges for this one-dimensional-three-dimensional (1D-3D) simulation of the experimental facility lies in the calculation of the HX with ATHLET. This is due to the fact that glycerol oil properties are not yet available for ATHLET. In order to better understand the flow and heat transfer phenomena inside the HX, 3D stand-alone calculations with ANSYS CFX were carried out for the SESAME experiment TG03.S301.03. The data generated in this experimental run is challenging for validation of computational fluid dynamics (CFD) codes, because the test combines heat transfer between buoyancydriven LBE flow in the primary circuit and a turbulent oil flow in the secondary TALL-3D side. Moreover, the validation gets even more difficult for the CFD approach due to the fact that both coolants are nonunity Prandtl fluids, and this requires a careful modeling of the turbulent heat flux. In this paper, the TALL-3D HX behavior during test TG03.S301.03 is analyzed, and the results of the ANSYS CFX calculations are compared with measurements.
机译:在欧洲芝麻项目中,开展了大量实验工作,并辅之以针对不同规模的热工水力模拟工具的开发、应用和验证活动。位于斯德哥尔摩的KTH皇家理工学院(KTH Royal Institute of Technology)运营的TALL-3D实验设施是为铅铋共晶(LBE)冷却剂在自然和强制循环条件下进行热工水力实验而设计的。一级TALL-3D回路中产生的热量通过双管逆流式热交换器(HX)传递到二级侧,二级侧由甘油油冷却。在欧洲THINS项目中使用耦合模拟代码ATHLET-ANSYS CFX进行的验证计算表明,该实验设施的一维三维(1D-3D)模拟的主要挑战之一在于使用ATHLET计算HX。这是因为ATHLET尚未具备甘油油特性。为了更好地了解换热器内部的流动和传热现象,利用ANSYS CFX对SESAME实验TG03进行了三维独立计算。S301。03.本次实验运行中产生的数据对计算流体力学(CFD)代码的验证具有挑战性,因为该测试结合了一回路浮力驱动LBE流和二回路塔勒3D侧湍流油流之间的传热。此外,由于两种冷却剂都是不均匀的普朗特流体,CFD方法的验证变得更加困难,这需要对湍流热流进行仔细建模。本文研究了TG03试验过程中TALL-3D HX的行为。S301。03进行了分析,并将ANSYS CFX计算结果与测量结果进行了比较。

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