首页> 外文会议>International Conference on Nuclear Engineering >EXPERIMENTAL STUDY OF THERMAL AND HYDRAULIC CHARACTERISTICS OF PRESSURIZER-TYPE HEATING CONTAINER DURING BLOWDOWN PROCESS
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EXPERIMENTAL STUDY OF THERMAL AND HYDRAULIC CHARACTERISTICS OF PRESSURIZER-TYPE HEATING CONTAINER DURING BLOWDOWN PROCESS

机译:排污过程中加压型加热容器热电液特性的实验研究

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Blowdown process is an important process in LOCA. Studying the internal thermal hydraulic characteristics of the pressurizer during LOCA blovvdown process can help to accurately analyze the process of the whole LOCA. which is of great significance to reduce the hazard of accidents and improve the safety of nuclear power plants. An experiment system of blowdown process under low pressure conditions is built, and it uses a pressure gauge and a differential pressure level gauge to measure the pressure and liquid level in the pressurizer-type heating container, and uses a thermocouple to measure the temperature in the pressurizer-type heating container at different heights and distances from the centerline. The changes of pressure, liquid level and temperature characteristics during the blovvdown process were obtained. The research results show that the higher the heating power, the greater the slope of pressure change in the heating container, and the pressure changes from negative to positive growth: The greater the heating power is. the faster the liquid level decreases, and the liquid level decreases sharply after the blowdown inflection point. The greater the heating power is. the greater the rate of temperature change, from negative growth to positive growth. The temperature change rate after the blowdown inflection point is reduced. As the height increases, the temperature inside the container first increases and then decreases; the further away from the container's centerline. the higher the measured temperature.
机译:排污过程是基因座的重要过程。研究LOCA Blovvdown工艺期间加压器的内部热液压特性有助于准确地分析整个基因座的过程。这对减少事故的危害以及提高核电厂安全性具有重要意义。建造了低压条件下排污过程的实验系统,采用压力表和压差水平计来测量加压型加热容器中的压力和液位,并使用热电偶测量温度加压器型加热容器在不同的高度和距离中心线的距离。获得了BlovVown方法期间的压力,液位和温度特性的变化。研究结果表明,加热功率越高,加热容器中的压力变化的斜率越大,压力从负变化到正生长:加热功率越大。液位降低越快,排污点后液位急剧下降。加热功率越大。温度变化率越大,从负增长到阳性生长。减少了排污点后的温度变化率。随着高度的增加,容器内的温度首先增加,然后减少;远离容器的中心线。测量温度越高。

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