首页> 外文会议>Computational Technologies for Fluid/Thermal/Structural/Chemical Systems with Industrial Applications >DEVELOPEMENT OF ULTRASONIC TEMPERATURE SENSORS FOR ULTRA-HIGH TEMPERATURE MEASUREMENT IN NUCLEAR REACTOR VESSEL
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DEVELOPEMENT OF ULTRASONIC TEMPERATURE SENSORS FOR ULTRA-HIGH TEMPERATURE MEASUREMENT IN NUCLEAR REACTOR VESSEL

机译:用于核反应堆中超高温测量的超声温度传感器的开发

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The temperature measurement of a very high temperature core melt is of importance in LAVA(lower-plenum Arrested Vessel Attack) experiment in which gap formation between core melt and the reactor lower h ead, and the effect of the gap on thermal behavior are to be measured. The existing temperature measurement techniques have some problems, where the thermocouple, one of the contact methods, is restricted to under 2000°C, and the infrared thermometry, one of the non-contact methods, is unable to measure an internal temperature and very sensitive to the interference from reacted gases. So, in order to solve these problems, the delay time of ultrasonic wavelets due to high temperature is suggested. One of the key initial conditions t o be measured i n LAVA is the initial corium melt temperature. To measure it, the LAVA measurement group has developed several kinds of UTS's. As a first stage, a molten material temperature was measured up to 2314°C. Also, the optimization design of the UTS(ultrasonic temperature sensor) with persistence at the high temperature was suggested in this paper. And the utilization of the theory suggested in this paper and the efficiency of the developed system are certified by performing experiments.
机译:高温熔核温度的测量在LAVA(低气室阻滞容器攻击)实验中很重要,在该实验中,熔核与反应堆之间的间隙形成较低,并且间隙对热性能的影响要大。测量。现有的温度测量技术存在一些问题,其中接触方法之一的热电偶被限制在2000°C以下,非接触方法之一的红外测温法无法测量内部温度并且非常敏感受反应气体的干扰。因此,为了解决这些问题,建议了由于高温引起的超声波小波的延迟时间。在LAVA中要测量的关键初始条件之一是初始皮质熔体温度。为了进行测量,LAVA测量小组已经开发了几种UTS。作为第一步,测量的熔融材料温度最高为2314°C。此外,本文还提出了在高温下具有持久性的UTS(超声波温度传感器)的优化设计。通过实验证明了本文提出的理论的实用性和所开发系统的效率。

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