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首页> 外文期刊>Nuclear engineering and technology >Comparative analysis of internal flow characteristics of LBE-cooled fast reactor main coolant pump with different structures under reverse rotation accident conditions
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Comparative analysis of internal flow characteristics of LBE-cooled fast reactor main coolant pump with different structures under reverse rotation accident conditions

机译:逆转事故条件下不同结构的LBE冷却快速反应器主冷却液内部流动特性的比较分析

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Lead alloy is used as coolant in Lead-based cooled Fast Reactor (LFR). The natural characteristics of lead alloy are combined with the simple structural design of LFR. This constitutes the inherent safety characteristics of LFR. The main work of this paper is to take the main coolant pump (MCP) in the lead-cooled fast reactor (LFR) as the research object, and to study the flow pattern distribution of the internal flow field under the reverse rotation pump condition, the reverse rotation positive-flow braking condition and the reverse rotation negative-flow braking condition. In this paper, the double-outlet volute type and the space guide vane are selected as the potential designs of the CLEAR-I MCP. In this paper, the CFD method is used to study the potential reverse accident of the MCP. It is found that the highest flow velocity in the impeller appears at the impeller outlet, and the Q-H curves of the two design programs basically coincide. The space guide vane type MCP has better hydraulic performance under the reverse rotation positive-flow condition, the Q-H curves of the two designs gradually separate with increasing flow rate, and the maximum flow velocity inside the space guide vane type MCP is obviously lower than that of the double-outlet volute type. For the reverse rotation test of MCP, only the condition of the forward rotating pump of the main coolant pump is tested and verified. For the simulation of the MCP in LBE medium, it proved that the turbulence model and basic settings selected in the simulation are reliable.
机译:铅合金用作铅基冷的快速反应器(LFR)中的冷却剂。铅合金的自然特性与LFR的简单结构设计相结合。这构成了LFR的固有安全特性。本文的主要工作是将主冷却液泵(MCP)作为研究对象作为研究对象,研究了反转泵条件下内部流场的流动模式分布,反向旋转正流动制动条件和反向旋转负流动制动条件。在本文中,选择双出口速度型和空间导向叶片作为透明IMCP的电位设计。在本文中,CFD方法用于研究MCP的潜在逆向事故。发现叶轮中的最高流速出现在叶轮出口处,并且两个设计程序的Q-H曲线基本上重合。空间导向叶片型MCP在反向旋转正流条件下具有更好的液压性能,两种设计的QH曲线随着流速的增加逐渐分离,并且空间导向叶片型MCP内的最大流速明显低于此双出口速度类型。对于MCP的反向旋转试验,仅测试主冷泵的前旋转泵的状况并验证。为了模拟LBE媒介中的MCP,证明了模拟中选择的湍流模型和基本设置是可靠的。

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