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Control strategies for transients of hydrogen production plant in VHTR cogeneration systems

机译:VHTR热电联产系统中制氢厂瞬态的控制策略

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Operability of Very High Temperature Reactor (VHTR) hydrogen cogeneration systems in response to abnormal transients initiated by the hydrogen production plant is one of the important concerns from economical and safety points of views. The abnormal events in the hydrogen production plant could initiate load changes and induce temperature variations in a primary cooling system. Excessive temperature increase in the primary cooling system would cause reactor scrams since the temperature increase in the primary cooling system is restricted in order to prevent undue thermal stresses from reactor structures. Also, temperature decrease has a potential propagation path for reactor scrams by reactivity insertions as a consequence of the reactivity feedbacks. Since suspensions of reactor operation and electricity generation should be avoided even in case of abnormal events in the hydrogen production plant from an economical point of view, an establishment of a control scheme against abnormal transients of hydrogen production plant is required for plant system design. In the present study, basic controls and their integration for the GTHTR300C, a VHTR cogeneration system designed by JAEA with a direct Brayton cycle power conversion unit and thermochemical Iodine-Sulfur process hydrogen production plant (IS hydrogen production plant), against abnormal transients of IS hydrogen production plant are presented. Transient simulations for selected load change events in the IS hydrogen production plants are performed by an original system analysis code which enables to evaluate major phenomena assumed in process heat exchangers of the IS hydrogen production plant. It is shown that abnormal load change events are successfully simulated by the system analysis code developed. The results demonstrated the technical feasibility of proposed controls for continuous operation of the reactor and power conversion unit against load change events in the IS hydrogen production plant.
机译:从经济和安全的角度来看,超高温反应堆(VHTR)氢气热电联产系统对制氢厂引发的异常瞬态的响应是重要的考虑因素之一。制氢厂中的异常事件可能会引发负荷变化并引起一次冷却系统中的温度变化。由于限制了主冷却系统中的温度升高以防止来自反应堆结构的不适当的热应力,因此主冷却系统中的过度温度升高会导致反应堆破裂。而且,由于反应性反馈,温度降低具有通过反应性插入而导致反应堆稀疏的潜在传播路径。从经济的角度来看,即使在制氢厂发生异常事件的情况下,也应避免反应堆运行和发电的中止,因此,对于电厂系统设计,需要建立针对制氢厂异常瞬变的控制方案。在本研究中,GTHTR300C是JAEA设计的VHTR热电联产系统的基本控件及其集成,该系统具有直接的布雷顿循环功率转换单元和热化学的碘硫制氢厂(IS制氢厂),用于防止IS的异常瞬变介绍了制氢装置。 IS氢气生产厂中选定的负荷变化事件的瞬态模拟是通过原始系统分析代码执行的,该代码可以评估IS氢气生产厂过程热交换器中假定的主要现象。结果表明,通过开发的系统分析代码可以成功模拟异常负载变化事件。结果证明了针对IS制氢厂中反应堆和功率转换装置连续运行以应对负载变化事件的拟议控制技术的可行性。

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