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Development of a Dynamic Model and Control System for Load-Following Studies of Supercritical Pulverized Coal Power Plants

机译:超临界粉煤电厂负荷跟踪研究动态模型与控制系统的开发

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Traditional energy production plants are increasingly forced to cycle their load and operate under low-load conditions in response to growth in intermittent renewable generation. A plant-wide dynamic model of a supercritical pulverized coal (SCPC) power plant has been developed in the Aspen Plus Dynamics? (APD) software environment and the impact of advanced control strategies on the transient responses of the key variables to load-following operation and disturbances can be studied. Models of various key unit operations, such as the steam turbine, are developed in Aspen Custom Modeler? (ACM) and integrated in the APD environment. A coordinated control system (CCS) is developed above the regulatory control layer. Three control configurations are evaluated for the control of the main steam; the reheat steam temperature is also controlled. For studying servo control performance of the CCS, the load is decreased from 100% to 40% at a ramp rate of 3% load per min. The impact of a disturbance due to a change in the coal feed composition is also studied. The CCS is found to yield satisfactory performance for both servo control and disturbance rejection.
机译:为了响应间歇性可再生能源发电的增长,传统的能源生产工厂越来越多地被迫循环负载并在低负载条件下运行。在Aspen Plus Dynamics中已经开发了超临界粉煤(SCPC)发电厂的全厂动态模型。 (APD)软件环境和高级控制策略对关键变量对负载跟随操作和干扰的瞬态响应的影响可以得到研究。在Aspen Custom Modeler中开发了各种关键单元操作的模型,例如蒸汽轮机? (ACM)并集成在APD环境中。在监管控制层之上开发了一个协调控制系统(CCS)。评估了三种控制配置用于主蒸汽的控制。再热蒸汽温度也受到控制。为了研究CCS的伺服控制性能,负载以每分钟3%的负载速率从100%降低到40%。还研究了由于进煤成分的变化而引起的干扰的影响。发现CCS在伺服控制和干扰抑制方面均具有令人满意的性能。

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