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HYDROGEN CONCENTRATION MEASURING SYSTEM DESIGNED FOR SEVERE ACCIDENTS IN CONTAINMENT

机译:专为容器中严重事故而设计的氢气浓度测量系统

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Extensively released hydrogen due to zirconium-water reaction during severe accidents in containment of pressurized water reactor raises explosion crisis. Since the containment is the last barrier for fatal irradiation species, efficient measures should be implemented to restrain the hydrogen. Hence, hydrogen elimination and monitor devices are wildly applied to address this issue. Detection of hydrogen once has been conducted by a traditional hydrogen concentration measuring system with sampling devices and hydrogen sensors that located outside the containment. This arrangement, however, is a compromise between actual requirements for hydrogen measuring device and absence of favorable hydrogen sensors which could be applied in the harsh environment under severe accidents. Most recently, R&D of hydrogen concentration measuring system with in-situ hydrogen sensor has attracted increasing attention. Mitsubishi Heavy Industries, Ltd is focusing their job on an electrochemical hydrogen sensor based on solid state electrolyte. Besides, AREVA has developed a system depending on thermal conductivity detector associated with catalytic combustion sensor which requires external power supply to heat the assembly. In PERIC, we have developed a hydrogen concentration measuring system with in-situ hydrogen sensor which can be set in accident confident area. The hydrogen sensor is originally based on catalytic recombination of hydrogen and oxygen. Generally, catalyst prepared using noble metals such as platinum and palladium is scientifically loaded in the hydrogen sensor to serve as hydrogen sensitive material. On the event of severe accidents, mixture of hydrogen and air can spontaneously diffuse into the hydrogen sensor, where, part of the mixture is involved in a chemical exothermic reaction on the catalyst to generate water and heat. Generally, an increased concentration of hydrogen will raise relatively higher reaction temperature of the hydrogen sensor. The hydrogen concentration related temperature of the hydrogen sensor is detected using steel armored thermocouple. Besides, environmental temperature and pressure in the containment are also acquired to assist calculation. All the data are transferred to a signal processing cabinet, which, performs the calculation and indication functions using programmable logic controller and digital display device, respectively. There is no organic material, mechanical moving and power consumption part in the hydrogen sensor and thermocouple. The system indicated reliable performance in simulated containment under condition of high temperature, pressure, steam, and etc. The hydrogen concentration measuring system illustrated excellent endurance to poisoning species such as iodine and aerosol. Furthermore, the hydrogen sensor also suggested high resistance to irradiation. The system can survive a severe earthquake, and its seismic certification toward to safety shutdown earthquake is class I. Over 80 systems so far have be applied in pressurized water reactor in China and or Pakistan. The latest model is designed according to requirements of CAP 1400.
机译:在压水堆安全壳内发生严重事故期间,由于锆与水的反应而大量释放的氢气引发了爆炸危机。由于安全壳是致命辐射物种的最后障碍,因此应采取有效措施限制氢。因此,氢消除和监测装置被广泛应用于解决这个问题。氢气的检测曾经是由传统的氢气浓度测量系统进行的,该系统具有位于安全壳外部的采样装置和氢气传感器。然而,这种布置是在对氢测量装置的实际要求与不存在有利的氢传感器之间的折衷,所述氢传感器可以在严重事故下的恶劣环境中使用。最近,带有原位氢传感器的氢浓度测量系统的研发引起了越来越多的关注。三菱重工有限公司将其工作重点放在基于固态电解质的电化学氢传感器上。此外,AREVA还开发了一种系统,该系统依赖于与催化燃烧传感器相关联的热导检测器,该系统需要外部电源来加热组件。在PERIC中,我们开发了带有原位氢传感器的氢浓度测量系统,该系统可以设置在事故危险区域。氢传感器最初基于氢和氧的催化复合。通常,使用诸如铂和钯的贵金属制备的催化剂被科学地装载在氢传感器中以用作氢敏感材料。发生严重事故时,氢气和空气的混合物会自发扩散到氢气传感器中,在氢气传感器中,部分混合物会参与催化剂的化学放热反应,从而产生水和热量。通常,增加的氢气浓度将提高氢气传感器的相对较高的反应温度。使用钢铠装热电偶检测氢传感器中与氢浓度有关的温度。此外,还需要获取安全壳内的环境温度和压力以帮助计算。所有数据都被传送到信号处理柜,该信号处理柜分别使用可编程逻辑控制器和数字显示设备执行计算和指示功能。氢传感器和热电偶中没有有机材料,机械运动和功耗部分。该系统在高温,高压,蒸汽等条件下的模拟密闭环境中显示出可靠的性能。氢气浓度测量系统对碘和气溶胶等中毒物种具有出色的耐受性。此外,氢传感器还建议具有较高的耐辐照性。该系统可以经受住严重的地震,其针对安全关闭地震的地震认证为I级。迄今为止,中国和/或巴基斯坦的压水堆已应用了80多个系统。最新型号是根据CAP 1400的要求设计的。

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