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Analysis of hot spots in boilers of organic Rankine cycle units during transient operation

机译:有机朗肯循环机组锅炉暂态运行中热点分析

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摘要

This paper is devoted to the investigation of critical dynamic events causing thermochemical decomposition of the working fluid in organic Rankine cycle power systems. The case study is the plant of an oil and gas platform where one of the three gas turbines is combined with an organic Rankine cycle unit to increase the overall energy conversion efficiency.\udThe dynamic model of the plant is coupled with a one-dimensional model of the once-through boiler fed by the exhaust thermal power of the gas turbine. The heat exchanger model uses a distributed cross-flow physical topology and local correlations for single- and two-phase heat transfer coefficients.\udThe results indicate that severe load changes (0.4–1.0 MW s−1) can lead to exceedance of the temperature limit of fluid decomposition for a period of 10 min. Ramp rates lower than 0.3 MW s−1 are acceptable considering the stability of the electric grid and fluid decomposition. It is demonstrated that the use of a spray attemperator can mitigate the problems of local overheating of the organic compound.\udAs a practical consequence, this paper provides guidelines for safe and reliable operation of organic Rankine cycle power modules on offshore installations.
机译:本文致力于研究导致有机朗肯循环动力系统中工作流体发生热化学分解的关键动态事件。案例研究是在一个石油和天然气平台的工厂中,其中三个燃气轮机之一与有机朗肯循环单元组合在一起以提高整体能量转换效率。\ ud工厂的动态模型与一维模型耦合燃气轮机的余热为直流锅炉供热。换热器模型使用分布式错流物理拓扑结构和单相和两相传热系数的局部相关性。\ ud结果表明,严重的负载变化(0.4–1.0 MW s-1)可能导致温度超过流体分解的极限时间为10分钟。考虑到电网的稳定性和流体分解,低于0.3 MW s-1的升温速率是可以接受的。事实证明,使用喷雾调温器可以减轻有机化合物局部过热的问题。\ ud实际的结果是,本文为在海上设施上安全可靠地运行有机朗肯循环功率模块提供了指南。

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