首页> 外文会议>International conference on nuclear engineering >ON EXPERIMENTAL AND COMPUTATIONAL INVESTIGATION OF HEAT TRANSFER DETERIORATION AND HYDRAULIC RESISTANCE IN ANNULAR CHANNEL AND SCWR 3-ROD BUNDLE
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ON EXPERIMENTAL AND COMPUTATIONAL INVESTIGATION OF HEAT TRANSFER DETERIORATION AND HYDRAULIC RESISTANCE IN ANNULAR CHANNEL AND SCWR 3-ROD BUNDLE

机译:通道和SCWR 3杆束传热破坏和水力阻力的实验和计算研究

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The experiments on upward flow of supercritical water in a vertical annuli and 3-rod tight bundle simulator made of 485-mm heated-length tubes of 5.2-mm OD and 4.5-mm ID with four helical ribs of 0.6-mm height, 1-mm width, and axial 400-mm pitch are presented. Heat transfer and pressure drop under various operating conditions (inlet pressure and temperature, flow mass rate and heat flux) were investigated. Longitudinal wall temperature profiles made it possible to determine the place and flow thermal state of heat transfer deterioration (HTD) onset. Analysis of the obtained data (about 200 regimes) proved their good enough agreement with the correlations previously derived by the authors both for the heat flux rate (q/G)b of HTD beginning and for pressure drop in round tubes and annular channels. These correlations were updated to correct the results of their prediction. Computational fluid dynamics and its counterpart computational heat transfer were used for modeling the above-mentioned thermohydraulic processes studied in the first part of the work by finding the most adequate flow turbulence model and optimized domain meshing. The accepted model was benchmarked by some data on heat transfer and pressure drop in tubes and annular channels cooled by SCW.
机译:超临界水在垂直环空和三杆紧密束模拟器中的向上流动实验,该模拟器由外径为5.2毫米,内径为4.5毫米的485毫米加热长度管制成,带有四个0.6毫米高的螺旋肋,1-给出了毫米宽度和轴向400毫米间距。研究了各种工况(入口压力和温度,流量质量比和热通量)下的传热和压降。纵向壁温曲线使得确定传热恶化(HTD)发生的位置和流动热状态成为可能。对获得的数据(大约200种状态)的分析证明,它们与作者先前得出的有关HTD开始的热通量率(q / G)b以及圆管和环形通道中的压降的相关性足够好。这些相关性已更新,以更正其预测结果。计算流体动力学及其对应的计算传热用于通过找到最合适的流动湍流模型和优化的域网格化,对在工作的第一部分中研究的上述热工过程进行建模。接受的模型通过有关SCW冷却的管和环形通道中的传热和压降的一些数据进行了基准测试。

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