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Study on the Structure Optimization and the Operation Scheme Design of a Double-Tube Once-Through Steam Generator

机译:双管直通蒸汽发生器的结构优化及运行方案设计研究

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A double-tube once-through steam generator (DOTSG) consisting of an outer straight tube and an inner helical tube is studied in this work. First, the structure of the DOTSG is optimized by considering two different objective functions. The tube length and the total pressure drop are considered as the first and second objective functions, respectively. Because the DOTSG is divided into the subcooled, boiling, and superheated sections according to the different secondary fluid states, the pitches in the three sections are defined as the optimization variables. A multi-objective optimization model is established and solved by particle swarm optimization. The optimization pitch is small in the subcooled region and superheated region, and large in the boiling region. Considering the availability of the optimum structure at power levels below 100% full power, we propose a new operating scheme that can fix the boundaries between the three heat-transfer sections. The operation scheme is proposed on the basis of data for full power, and the operation parameters are calculated at low power level. The primary inlet and outlet temperatures, as well as flow rate and secondary outlet temperature are changed according to the operation procedure. Copyright (C) 2016, Published by Elsevier Korea LLC on behalf of Korean Nuclear Society.
机译:在这项工作中研究了由外直管和内螺旋管组成的双管直通蒸汽发生器(DOTSG)。首先,通过考虑两个不同的目标函数来优化DOTSG的结构。管长和总压降分别视为第一和第二目标函数。由于根据不同的二次流体状态将DOTSG分为过冷,沸腾和过热部分,因此将这三个部分中的螺距定义为优化变量。建立了多目标优化模型,并通过粒子群算法进行求解。优化间距在过冷区域和过热区域较小,而在沸腾区域较大。考虑到在低于100%全功率的功率水平下最佳结构的可用性,我们提出了一种新的操作方案,该方案可以确定三个传热段之间的边界。根据全功率数据提出了工作方案,并在低功率水平下计算了工作参数。主要入口和出口温度以及流量和次要出口温度会根据操作程序进行更改。版权所有(C)2016,由Elsevier Korea LLC代表韩国核协会出版。

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