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Experimental studies into the performance of the lead coolant axial pump wet ends to justify main circulation pumps for the HMLC reactor plant circuits

机译:铅冷却液轴向泵湿端的实验研究,以证明HMLC反应堆厂电路的主循环泵

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The paper presents the results of the studies to justify the design solutions for the main circulation pumps of the heavy liquid-metal cooled reactor plant circuits. A substantial difference has been shown in the performance of pumps for the heavy liquid-metal coolant transfer. The studies have confirmed the qualitative difference in the cavitation performance of coolants, the state of the gases and vapors they contain, the influence of supply and discharge devices, and the effects of the impeller blade section performance and geometry and the hub-tip ratio on the pump performance. The studies were performed based on NNSTU’s lead-cooled test facilities with the coolant temperature in a range of 440 to 550 °C and the coolant flow rate of up to 2000 t/h. The outer diameter of the impellers and the straightening devices was about 200 mm, and the thickness of the flat 08Kh18N10T-steel blades was 4.0 mm and that of the airfoil blades was up to 6.0 mm. The pump shaft speed changed in a stepped manner from 600 rpm to 1100 rpm after each 100 rpm. The studies were conducted to justify the engineering and design solutions for pumps as applied to conditions of small and medium plants with fast neutron lead cooled reactors currently under investigation at NNSTU (BRS-GPG). The experimental results can be recommended for use to design other HLMC transfer pumps.
机译:本文介绍了研究结果,以证明重型液体金属冷却反应器厂电路的主循环泵的设计解决方案。泵的泵用于重型液态金属冷却剂转移的性能方面已经显示了大量差异。这些研究证实了冷却剂的空化性能的定性差异,气体和蒸汽的状态,供应和放电装置的影响以及叶轮叶片部分性能和几何形状的影响以及轮毂尖峰比泵性能。本研究基于NNSTU的铅冷却试验设施,冷却剂温度在440至550℃的范围内,冷却剂流速高达2000吨/小时。叶轮和矫直装置的外径约为200mm,扁平的08k18n10t-钢叶片的厚度为4.0mm,翼型叶片的厚度高达6.0mm。泵轴速度在每100 rpm后从600 rpm到1100rpm以阶梯状方式变化。进行了研究,以证明应用于当前在NNSTU(BRS-GPG)的快速中子铅冷却反应器的中小植物条件的泵的工程和设计解决方案。可以建议使用实验结果来设计其他HLMC传输泵。

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