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Advanced flow and temperature measurements in a forced convection molten salt test loop

机译:强制对流熔盐测试回路中的先进流动和温度测量

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The elevated temperatures and corrosive environment typical of molten salt reactors' operating conditions may pose challenges to flow and temperature measurements. Experimental measurements of these thermal-hydraulic parameters are paramount to advance the knowledge and understanding of the molten salts' behavior, and are necessary for the validation of system-level and computational fluid dynamics codes. An experimental test facility has been utilized to characterize the thermal-hydraulic behavior of typical molten salts under steady-state and transient, forced flow conditions, by employing innovative measurement methods. The use of the non-intrusive ultrasonic technology has been successfully deployed and validated within a wide range of flow conditions, at elevated temperatures (600 degrees C). Two-dimensional salt temperature fields have been reconstructed from the reading of a fine network of optical fiber distributed temperature sensors and thermocouple probes, providing information on the salt front transition velocity. The results obtained can be used to validate and advance specialized simulation codes. (C) 2021 Elsevier Ltd. All rights reserved.
机译:纯盐反应器操作条件的典型温度和腐蚀性环境典型可能对流动和温度测量构成挑战。这些热液压参数的实验测量是最重要的,以推进对熔融盐的行为的知识和理解,并且对于系统级和计算流体动力学码的验证是必要的。通过采用创新的测量方法,已经利用了一种实验测试设施来表征稳态和瞬态强制流动条件下典型熔盐的热液压行为。使用非侵入式超声波技术在宽范围内成功部署和验证,在升高的温度下(600℃)。已经从光纤分布式温度传感器和热电偶探针的精细网络读取了二维盐温场,提供有关盐前转换速度的信息。所获得的结果可用于验证和提前专业的仿真代码。 (c)2021 elestvier有限公司保留所有权利。

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