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Comparative investigation of drum-type and once-through heat recovery steam generator during start-up

机译:鼓式和直流式余热锅炉启动过程的比较研究

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This study investigates the impact of the design of a heat recovery steam generator (HRSG) on its dynamic behaviour under the boundary condition of a gas turbine start-up. For that purpose, a validated HRSG model with three pressure stages and reheater section is modified by replacing the once-through evaporator in the high pressure circuit with a natural circulation evaporator, including the associated control circuits. Both models are designed to supply equal steam mass flows with equal steam parameters (temperature, pressure) at full load, which enables a balanced assessment of the two technologies. After an extensive description of the modelling approach and its practical realisation, detailed simulation results for start-up procedures from warm and hot initial conditions are presented. Differences in the transient behaviour of the HRSGs are highlighted and discussed. In industrial practice, frequent startups cause increased material fatigue, which in turn has an adverse effect on the operating lifetime of a power plant. Hence, the present work is complemented by an analysis of the temperature gradients in the most critical components with respect to thermal stress. Results generally show similar responses of the high pressure systems to gas turbine start-up with the exception of accelerated pressure build-up in the once-through evaporator. Greater temperature deviations are observed in the natural-circulation HRSG across the wall of the high-pressure drum. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究调查了热回收蒸汽发生器(HRSG)的设计对其在燃气轮机启动边界条件下的动态行为的影响。为此,通过用自然循环蒸发器(包括相关的控制回路)代替高压回路中的直流蒸发器,来修改具有三个压力级和再热器部分的经过验证的HRSG模型。两种型号均设计为在满负荷条件下提供相等的蒸汽质量流量和相等的蒸汽参数(温度,压力),从而可以平衡评估这两种技术。在对建模方法及其实际实现进行了广泛的描述之后,给出了在温暖和炎热的初始条件下启动程序的详细仿真结果。重点介绍并讨论了HRSG瞬态行为的差异。在工业实践中,频繁的启动会导致材料疲劳加剧,进而对发电厂的使用寿命产生不利影响。因此,通过对最关键的组件相对于热应力的温度梯度分析来补充当前的工作。结果通常表明,高压系统对燃气轮机启动具有类似的响应,只是在直流蒸发器中加速了压力积累。在高压鼓壁上的自然循环HRSG中观察到更大的温度偏差。 (C)2015 Elsevier Ltd.保留所有权利。

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