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SIMULATION OF A HIGH-TEMPERATURE MODULAR REACTOR (HTMR) FOR POWER AND COAL-TO-LIQUID FUEL - COGENERATION PLANT

机译:电力和煤制液燃料热电厂高温模块化反应器(HTMR)的模拟

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Traditionally nuclear reactor power plants have been optimized for electrical power generation only. In the light of the ever-rising cost of ever-dwindling fossil fuel resources as well the global polluting effects and consequences of their usage, the use of nuclear energy for process heating is becoming increasingly attractive. In this study the use of a so-called cogeneration plant in which a nuclear reactor energy source is simulated using basic equations for the simultaneous production of superheated steam for electrical power generation and process heat, is considered and analyzed. A novel heat pipe heat exchanger is used to generate superheated steam for the process heat which is, in this case, a coal-to-liquid process (CTL). Natural circulation of sodium, via a thermo-syphon, is used in the heat pipe heat exchanger to transfer heat from the hot stream to the cold. The superheated steam for power generation is generated in a separate once-through helical coil steam generator. A 750 °C, 7 MPa helium cooled high-temperature modular reactor (HTMR) has been considered to simultaneously provide steam at 540 °C, 13.5 MPa for the power unit and steam at 430 °C, 4 MPa for a CTL production plant. The simulation and dynamic control of such a cogeneration plant is considered. In particular, a theoretical model of the plant will be simulated with the aim of predicting the transient and dynamic behavior of the HTMR in order to provide guideline for the control of the plant under various operating conditions. It was found that the simulation model captured the behavior of the plant reasonably well and it is recommended that it could be used in the detailed design of plant control strategies. It was also found that using a 1500 MW-thermal HTMR the South African contribution to global pollution can be reduced by 1.58%.
机译:传统上,核反应堆电厂仅针对发电进行了优化。鉴于日益减少的化石燃料资源的成本不断上升,以及全球污染影响及其使用的后果,将核能用于过程加热变得越来越有吸引力。在这项研究中,考虑并分析了所谓的热电联产电厂的使用,在该电厂中,使用基本方程式模拟了核反应堆能源,以同时产生用于发电和过程热量的过热蒸汽。一种新颖的热管热交换器用于产生过热蒸汽,以产生过程热,在这种情况下,即为煤制油过程(CTL)。钠通过热虹吸管的自然循环被用于热管热交换器中,以将热量从热流传递到冷流。用于发电的过热蒸汽在单独的直通螺旋盘管蒸汽发生器中产生。已经考虑使用750°C,7 MPa的氦冷却的高温模块化反应器(HTMR)同时为动力装置提供540°C,13.5 MPa的蒸汽和430°C,4 MPa的CTL生产装置的蒸汽。考虑了这种热电联产工厂的仿真和动态控制。特别是,将模拟工厂的理论模型,以预测HTMR的瞬态和动态行为,从而为在各种操作条件下控制工厂提供指导。结果发现,仿真模型可以很好地捕获工厂的行为,建议将其用于工厂控制策略的详细设计中。还发现,使用1500兆瓦热HTMR,南非对全球污染的贡献可以减少1.58%。

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