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INVESTIGATION OF THE COMBINATION OF BYPASS SYSTEM AND OPC LOGIC FOR ORC SYSTEM STABILITY UNDER LOAD REDUCTION DISTURBANCE

机译:减少负荷扰动下旁路系统与OPC LOGIC结合用于ORC系统稳定性的研究

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Organic Rankine cycle (ORC) is recognized as a promising technology for converting the energy from low grade heat sources into electricity. From a general perspective, the ORC system mainly operates in island mode and also has a small scale power capacity. When this type of system sustains the disturbance of load reduction, the overpressure protection in drum boiler and overspeed protection in axial turbine are the two big challenges for ORC system's stability. In the present study, the configuration type by combining the bypass system and overspeed protection control (OPC) logic is proposed in ORC system for solving these problems. Firstly, the ORC unit model consisting of the drum boiler, boiler control system, axial turbine, bypass system, turbine control system and OPC logic is established. Then, the drawback and improvements of current OPC logic in China are carried out. Finally, the simulation of this configuration type of ORC system is investigated under load reduction disturbance. The results show that the proposed configuration of ORC system has excellent performance in purpose of power system stability. The axial turbine in the simulation model operates in constant pressure mode.
机译:有机朗肯循环(ORC)被公认为是一种将低级热源的能量转化为电能的有前途的技术。从总体上看,ORC系统主要以孤岛模式运行,并且还具有较小的功率容量。当此类系统承受负荷减少的干扰时,鼓式锅炉的超压保护和轴流式涡轮机的超速保护是ORC系统稳定性的两大挑战。在本研究中,在ORC系统中提出了将旁路系统和超速保护控制(OPC)逻辑相结合的配置类型,以解决这些问题。首先,建立了由汽包锅炉,锅炉控制系统,轴流式汽轮机,旁路系统,汽轮机控制系统和OPC逻辑组成的ORC单元模型。然后,对中国现有的OPC逻辑进行了弊端和改进。最后,在负载减少干扰下研究了这种配置类型的ORC系统的仿真。结果表明,所提出的ORC系统配置在电力系统稳定性方面具有优异的性能。仿真模型中的轴流涡轮机以恒定压力模式运行。

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