螺旋盘管直通蒸汽发生器传热特性一维规范的开发

Maolong Liu, Zihan Xu, Yao Xiao, H. Gu
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摘要

螺旋盘管一次性蒸汽发生器(H-OTSG)是小型模块化反应堆(SMRs)中一次侧换热的关键设备。本研究开发了一维代码HTAC (H-OTSG thermohydraulic Analysis Code)来模拟H-OTSG的传热特性,为今后的实验研究做准备。H-OTSG由74个螺旋管组成,根据线圈直径分为10层。首先,采用本文作者提出的管侧热水力模型和采用直管束横流热水力模型的壳侧模型,建立了H-OTSG的一维代码;其次,在一维程序中建立了10根不同盘管曲率比的倾斜直管,分别模拟了10层螺旋管束和H-OTSG壳侧具有垂直环空的模型。进一步对节点数进行敏感性研究,每个管道和环空99个节点足够精细。第三,仿真结果表明,一维代码可用于预测H-OTSG在不同热功率下的稳态换热率。最后,进行了系统参数对H-OTSG换热率的敏感性分析,结果表明,降低管侧压力和提高壳侧进口温度可以提高H-OTSG的平均HTC。
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Development of a 1d Code for Heat Transfer Characteristics of Helical-Coiled Once-Through Steam Generators
The helical-coiled once-through steam generator (H-OTSG) is a key equipment in small modular reactor (SMRs) to be used in heat exchanging between primary side and secondary side. In this study, a 1D Code HTAC (H-OTSG Thermo-hydraulics Analysis Code) is developed to simulate the heat transfer characteristic of H-OTSG and used to prepare the experimental study in future. The H-OTSG is composed by 74 helical tubes which is divided into 10 layers according to the coil diameters. Firstly, a 1D code of H-OTSG is developed with the tube-side thermal-hydraulic model proposed by the present authors and the shell-side model using the thermal-hydraulic model of straight-tube bundle in cross flow. Secondly, 10 inclined straight pipes with different coil curvature ratio are stablished in the 1D code to respectively simulate the helical tube bundle of 10 layers and the shell-side of H-OTSG is model with a vertical annulus. Furthermore, the sensitivity study on the node number is conducted and 99 nodes for each pipe and annulus are fine enough. Thirdly, the simulated result shows the 1D code can used to predict the steady-state heat transfer rate of the H-OTSG under various thermal power. Finally, the sensitivity analysis of the system parameters on the heat transfer rate of H-OTSG is conducted, and the result shows the decrease of tube-side pressure and the increase of shell-side inlet temperature can rise the average HTC of H-OTSG.
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