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THEORETICAL ANALYSIS OF A NATURAL CIRCULATION SYSTEM UNDER ROLLING CONDITION BASED ON RELAP5/MOD3.3 CODE

机译:基于RELAP5 / MOD3.3代码的滚动条件下自然循环系统的理论分析

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Natural circulation is an important process for certain advanced reactor's main loop and passive heat removal systems. However, in marine conditions the thermo-hydraulic characteristics of natural circulation will change because of the ship motions such as inclination, rolling and heaving, which introduces extra body forces in to the system. In this paper, we conducted theoretical studies on the natural circulation behaviors in a symmetrical two-circuit loop under rolling conditions. A RELAP5/MOD3.3 code is developed based on the basic control equations and empirical formulas. Based on this code the natural circulation behavior under a larger range of rolling angle and period is also investigated. It is found that with the increase of rolling angle and decrease of rolling period, the magnitude of flow fluctuation increases. The fluctuation period of mass flow rate do not always consists with the rolling period under the comprehensive actions of complex body forces. Under the rolling with large angle and short period, the fluctuation period of flow rate is only half the rolling period.
机译:对于某些先进反应堆的主回路和被动排热系统,自然循环是重要的过程。但是,在海洋条件下,自然循环的热工液压特性会因船舶运动(例如倾斜,横摇和起伏)而发生变化,这会向系统中引入额外的车身力。在本文中,我们对对称的两回路回路在滚动条件下的自然循环行为进行了理论研究。基于基本控制方程和经验公式,开发了RELAP5 / MOD3.3代码。基于此代码,还研究了在较大的轧制角和轧制周期范围内的自然循环行为。发现随着轧制角的增加和轧制周期的减小,流动波动的幅度增大。在复杂的体力的综合作用下,质量流量的波动期并不总是与滚动期有关。在大角度短周期轧制的情况下,流量的波动周期仅为轧制周期的一半。

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