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Analysis on the Rotary Inertial of the Primary Pump for China Advanced Research Reactor

机译:中国先进研究反应堆主泵旋转惯性分析。

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The rotary inertia of the reactor's primary pump is an important factor related to the reactor's safety under some accidental conditions. If the rotary inertia of the primary pump is big, that the pump's inertia time will be long and the coolant mass flow rate will decrease slowly. So it is helpful to remove the residual heat and enhance the safety of the reactor. On the other hand, a bigger rotary inertia increases the cost, and causes some other inconvenience. In this paper, our research object is China Advanced Research Reactor (CARR) which is under construction. Systemic mathematical and physical models were set up and a program was developed using FORTRAN language with GEAR numerical method to analyze the transient of CARR. The primary thermal-hydraulic parameters of the reactor core were obtained in case of loss of power accident under different rotary inertia of the pump. These parameters include the temperature of the coolant, the clad and the fuel, the maximal quality of the reactor core and MDNBR, etc. On the basis of the calculate result, it can be found that when the rotary inertia of the pump is largerthan 150 Kg•m~2 , all of the thermal parametersin loss of power accident meet the safety requirement. And if the rotary inertia of thepump is 450 Kg • m~2 which is the design valueof CARR, the delay shutdown time in loss of power accident must not exceed 20 seconds.
机译:在某些意外情况下,反应堆主泵的旋转惯性是与反应堆安全性相关的重要因素。如果主泵的转动惯量大,则泵的惯性时间会很长,而冷却剂质量流量会缓慢减小。因此,除去残余热量并提高反应堆的安全性是有帮助的。另一方面,较大的旋转惯性增加了成本,并带来了其他一些不便。在本文中,我们的研究对象是正在建设的中国先进研究堆(CARR)。建立了系统的数学和物理模型,并使用FORTRAN语言和GEAR数值方法开发了一个程序来分析CARR的瞬变。在不同的泵旋转惯量下发生断电事故的情况下,获得了反应堆堆芯的主要热工水力参数。这些参数包括冷却液,包层和燃料的温度,反应堆堆芯和MDNBR的最高质量等。根据计算结果可以发现,当泵的转动惯量较大时 大于150 Kg•m〜2,所有热参数 停电事故中符合安全要求。如果旋转惯性 泵为450 Kg•m〜2,这是设计值 在发生CARR的情况下,停电事故中的延迟关机时间不得超过20秒。

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