A New Method of Integrating the RELAP5 to the RINSIM Simulation Platform

Chao Tan, V. Quiroga, Z. Fu, Zhengquan Xie
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Abstract

This paper introduces a method to control the calculation progress of the RELAP5 codes and integrate them with other codes by interacting boundary data (such as general tables, TDVs and TDJs) at each step. This work is basically finished with the support of the RINSIM simulation platform. The paper gives a brief introduction on RINSIM that how it controls the codes progress, sends the codes control commands, shares the values of different codes’ common blocks or modules. However, the work can’t be done by just using the RINSIM, it also needs to modify RELAP5 codes. With the codes’ modification of commands responding, data reading/writing interface, data interacting interface, time step control and so on, we can build interface subroutines to integrate codes onto the RINSIM. At the end, the paper gives out the result of a transient calculation with an advanced PWR model. Compared to some old integration method, the new method has far more strong stability. And the result shows that the integration progress of the code does not obviously affect the calculation accuracy, but definitely extends the application fields because of the multiple functions supplied by the RINSIM.
RELAP5与RINSIM仿真平台集成的一种新方法
本文介绍了一种控制RELAP5码的计算进度,并在每一步通过交互边界数据(如通用表、tdv和tdj)与其他码相结合的方法。在RINSIM仿真平台的支持下,本工作基本完成。本文简要介绍了RINSIM是如何控制代码进度,发送代码控制命令,共享不同代码的公共块或模块的值的。然而,仅仅使用RINSIM并不能完成这项工作,它还需要修改RELAP5代码。通过对代码进行命令响应、数据读写接口、数据交互接口、时间步长控制等方面的修改,可以构建接口子程序,将代码集成到RINSIM上。最后给出了采用先进的压水堆模型进行暂态计算的结果。与一些旧的积分方法相比,新方法的稳定性要强得多。结果表明,代码的集成进度对计算精度没有明显影响,但由于RINSIM提供了多种功能,无疑扩展了应用领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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