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Design optimization analysis of a large electromagnetic pump for sodium coolant transportation in PGSFR

机译:PGSFR中钠冷却剂输送用大型电磁泵的设计优化分析

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摘要

An annular linear induction electromagnetic pump (ALIP) with a flow rate of 0.86 m(3)/s and a developed pressure of 3.6 bar is designed by conducting an optimization analysis of its geometrical, electromagnetic, and hydrodynamic variables. The purpose of the ALIP involves circulating liquid sodium in the intermediate heat transport system of the Prototype Generation-IV Sodium-cooled Fast Reactor (electric output: 150 MWe) that is currently under development in Korea. The efficiency and developed pressure of the ALIP are derived as a function of its design variables and include the core length, flow gap, number of poles, flow velocity, pole pitch, input frequency, and input current. In terms of electromagnetic variables that can be controlled during its operation, hydraulic efficiency is maximized at an input frequency of a few tens of Hertz. The P-Q characteristics of the optimized ALIP are analyzed and verified via a theoretical comparison with an extremely large ALIP. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过对其几何,电磁和流体动力变量进行优化分析,设计出流量为0.86 m(3)/ s,发展压力为3.6 bar的环形线性感应电磁泵(ALIP)。 ALIP的目的是在韩国目前正在开发的第四代原型钠冷却快堆(电力输出:150 MWe)的中间传热系统中循环液态钠。 ALIP的效率和产生的压力取决于其设计变量,包括铁心长度,流隙,磁极数,流速,磁极螺距,输入频率和输入电流。在其运行过程中可以控制的电磁变量方面,在几十赫兹的输入频率下,液压效率得以最大化。通过与超大型ALIP的理论比较,分析和验证了优化后的ALIP的P-Q特性。 (C)2018 Elsevier Ltd.保留所有权利。

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