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CONTROL STRATEGIES FOR VHTR GAS-TURBINE SYSTEM WITH DRY COOLING

机译:干式冷却的VHTR气体涡轮机系统的控制策略

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An original control strategy for very high temperature reactor (VHTR) gas-turbine system with dry cooling against ambient air temperature fluctuation was established in order to enable the freedom of site selection wherever desired without significant drawbacks on the performance. First, the operability of power conversion system and degradation of power generation efficiency were examined considering not only the thermodynamics but also the mechanical efficiency of compressor based on detailed performance map derived from experimental data. Second, control simulations for large ambient temperature fluctuations were conducted by system analysis code with the built-in control strategy. In addition, the sensitivity of power generation efficiency for typical steam cycle with dry cooling to ambient air temperature changes was assessed for the comparison. It was shown that the design goal can be effectively met simply by monitoring and controlling a few of key operating parameters such as reactor outlet temperature, primary coolant pressure. Furthermore, distinctive advantages of the VHTR gas-turbine system over nuclear power plant employing Rankine cycle was demonstrated when installing in inland area.
机译:建立了具有干燥冷却环境空气温度波动的非常高温反应器(VHTR)气涡轮机系统的原始控制策略,以便在无需显着缺点的情况下实现场地选择的自由度。首先,考虑了基于从实验数据的详细性能图,检查了电力转换系统的可操作性和发电效率的降低考虑了压缩机的机械效率。其次,通过具有内置控制策略的系统分析码进行了大环境温度波动的控制模拟。此外,评估了具有干燥冷却至环境空气温度变化的典型蒸汽循环的发电效率的敏感性。结果表明,通过监测和控制诸如电抗器出口温度,初级冷却剂压力的少数关键操作参数,可以简单地实现设计目标。此外,在内陆地区安装时,在采用兰宁循环的核电厂上的VHTR气体涡轮机系统的独特优势。

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