Experimental液态金属冷却剂用微波反射雷达液位计的研究

V. Melnikov, T. Bokova, V. V. Ivanov, A. Marov, Natalia A. Lobaeva, A. S. Kvashennikov, P. Bokov, N. Volkov
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引用次数: 0

摘要

本文介绍了解决金属液冷堆装置杂槽内冷却剂液位测量问题的工作成果,主要是一次冷却剂自由液位的整体布置。液态金属冷却剂(LMC)的极端参数和运行条件限制了相关测量手段和方法的选择。传统的测量手段实际上是不合适的;因此,测量HLMC水平是一项复杂的技术任务。在此基础上,他们提出并描述了一种结合可靠性、准确性和易用性的最有前途的脉冲微波反射测量方法。实验研究结果表明,根据该方法工作的液位计在接近自然状态下测量控制罐中铅铋冷却剂的液位是有效的。对结果的分析证实了用这种方法控制各种金属熔体水平的可能性,并应用于HLMC反应堆厂。根据所提出的方法工作的液位测量装置,可以实时控制储罐中各种金属的熔体液位,而无需移动液位计敏感元件的各个部分,同时保持电路的密封性。本装置适用于各种核电厂、加速器控制系统、研究堆和有液态金属冷却剂的实验设施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental study of using microwave reflex-radar level gauges for liquid metal coolants
The article presents the results of work aimed at solving the problem of measuring the coolant level in miscellaneous tanks of liquid-metal-cooled reactor plants, mainly of an integral layout with a free level of the primary coolant. The choice of relevant measuring means and methods is limited by the extreme parameters of the liquid metal coolant (LMC) and operating conditions. Traditional measuring means are practically unsuitable; therefore, measuring the HLMC level is a complex technical task. Based on this review, they propose and describe a method of pulsed microwave reflectometry as the most promising in terms of combining the characteristics of reliability, accuracy and ease of use. The results of the experimental study demonstrated the efficiency of the level gauge, which worked according to this method, for measuring the level of lead-bismuth coolant in the control tank under conditions close to natural ones. An analysis of the results confirmed the possibility of using this method to control the level of melts of various metals as applied to HLMC reactor plants. Using the device for measuring the level, which works according to the proposed method, it is possible to control the level of melt of various metals in tanks in real time without the need to move various parts of the sensitive element of the level gauge while maintaining the tightness of the circuit. This device is applicable for various nuclear power plants, accelerator-controlled systems, research reactors and experimental facilities with liquid metal coolants.
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