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SMALL PRESSURIZED WATER REACTOR (SPWR) SIMULATION PLATFORM DEVELOPMENT FOR ITS DESIGN VERIFICATION

机译:用于设计验证的小型加压水反应器(SPWR)仿真平台开发

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Small pressurized water reactors (SPWRs) are under development in the world. Lots of efforts have been made to the Research & Development. SPWR has its unique design features. The integral design is adopted. The reactor, coolant pump and steam generator are in the reactor vessel. The coolant inventory is large. Once-through steam generator is chosen. The pressurizer is also large in the volume. Because many years operation experiences of commercial PWRs, some old operation strategies may be modified or new strategies are derived for the new development. When the operation strategies are chosen, a simulation platform is needed to verify whether they are suitable for SPWRs. In this paper, an SPWR simulation platform is developed to verify the operation strategies of SPWR. The platform is developed based on an engineering simulator and Relap5 has been integrated in the simulator. Operation transient or accident scenarios can be simulated with the simulator. To improve the operation flexibility and implementation of control logics, the engineering simulator is couple with MATLAB/Simulink using shared memory technology. Shared memory is an efficient means of passing data between programs. The dynamic data exchange and simulation time synchronization methods are carefully treated. To verify the platform, an SPWR with its control system is modeled with the platform and the simulator. The thermal-hydraulic modeling of the SPWR is carried out using Relap5. The preliminary SPWR control system is designed with conditional proportional-integral-derivative (PID) controllers and implemented in MATLAB/Simulink. Abrupt load changes are simulated to evaluate the performance of the platform. The results obtained from two different platforms match well with each other. It is proved that the coupling is successfully and the platform can simulate the transient behavior of the SPWR with its control system.
机译:小型压水堆(SPWR)在世界范围内正在开发中。在研发方面已经做出了很多努力。 SPWR具有其独特的设计功能。采用整体设计。反应堆,冷却剂泵和蒸汽发生器位于反应堆容器中。冷却液库存很大。选择直流蒸汽发生器。增压器的体积也很大。由于商业压水堆的多年运行经验,可能会修改一些旧的运行策略或为新的发展推导新的策略。选择操作策略后,需要一个仿真平台来验证它们是否适合SPWR。本文开发了一个SPWR仿真平台,以验证SPWR的运行策略。该平台是基于工程仿真器开发的,并且Relap5已集成到仿真器中。可以使用模拟器来模拟操作瞬态或事故场景。为了提高操作的灵活性和控制逻辑的实现,工程仿真器使用共享内存技术与MATLAB / Simulink结合使用。共享内存是在程序之间传递数据的有效方法。动态数据交换和仿真时间同步方法已得到认真处理。为了验证平台,使用平台和模拟器对SPWR及其控制系统进行了建模。 SPWR的热工液压模型是使用Relap5进行的。初步的SPWR控制系统采用条件比例积分微分(PID)控制器进行设计,并在MATLAB / Simulink中实现。模拟突然的负载变化以评估平台的性能。从两个不同平台获得的结果相互匹配。证明了耦合成功,该平台可以通过其控制系统模拟SPWR的瞬态行为。

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