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Development and installation of control system for a test rig interconnecting a micro Gas Turbine, a Heat Pump and a PCM Storage system

机译:开发和安装用于将微型燃气轮机,热泵和PCM存储系统互连的试验台的控制系统

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The need to enhance flexibility on current power plant is linked to the strong penetration of non-dispatchable sources in the current energy network, which causes a dramatic need for ancillary services to sustain the grid operability. A framework including a micro Gas Turbine (mGT), a Heat Pump (HP) and a PCM Storage is considered to enhance plant flexibility while facing grid and price fluctuations during day operations. The system so composed is devoted to electrical energy production only. A proper use of the HP allows, for instance, to heat up the compressor intake temperature whilst the system is operating at minimum load. The system can then produce a lower amount of energy in order to be more competitive in the infra-day energy market. At the same time, the cold storage is charged and the stored energy can be later used to power up the system during the peak hours by cooling the compressor intake. This work presents then the installation of the control system devoted to the management and the control of such complex system. The test-bed is defined to test different operating conditions and to validate the operating framework of the whole compound.
机译:当前电厂中提高灵活性的需求与不可调度能源在当前能源网络中的强大渗透有关,这极大地需要辅助服务以维持电网的可操作性。包括微型燃气轮机(mGT),热泵(HP)和PCM存储的框架被认为可以提高工厂的灵活性,同时在日常运营中面临电网和价格波动的情况。如此构成的系统仅用于电能生产。例如,正确使用HP可以在系统以最小负载运行时加热压缩机进气温度。然后,该系统可以产生较少量的能量,以便在实时能源市场中更具竞争力。同时,对冷库进行充电,随后可以在高峰时段通过冷却压缩机进气口将存储的能量用于为系统供电。然后,这项工作介绍了专用于这种复杂系统的管理和控制的控制系统的安装。测试台的定义是为了测试不同的操作条件并验证整个化合物的操作框架。

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