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Electric power peaking combined heat and power (CHP) waste heat recovery device and operation method thereof

机译:电峰热电联产余热回收装置及其运行方法

摘要

The invention relates to an electric peaking combined heat and power (CHP) waste heat recovery device and an operating method thereof. The device comprises an inner power plant portion and a heat exchange station portion, wherein the inner power plant portion comprises a heat exchanger, a waste heat recovery electric heat pump, an energy-storing electric heat pump, high/low temperature water storing tanks, a heating network heater, a valve and a circulating water pump; the heat exchange station portion mainly comprises high/low temperature water storing tanks, an electric heat pump, a heat exchanger, a valve and a circulating water pump; as for the operating method of the device, the device can operate in periods of an electrical load trough, an electrical load flat and an electrical load peak respectively through combination of different valve switches, the high temperature water storing tank is used for balancing the difference between system heat supply amount and heating load, the low temperature water storing tank is used for stabilizing steam exhaust waste heat recovery amount, thereby, the problem that the electricity generation peaking capacity is limited due to mutual coupling of electricity generation and heat supply in traditional operating modes of 'heat determines electricity' is solved, a CHP unit can participate in power grid load regulation, the power grid regulating capacity can be improved so as to deal with the condition of constantly increasing of electrical load trough-to-peak difference, and the absorptive capacity of a power grid for wind power generation can be improved so as to reduce phenomena of 'fan suspending'.
机译:电峰热电联产余热回收装置及其运行方法。该装置包括内部发电厂部分和热交换站部分,其中内部发电厂部分包括热交换器,废热回收电热泵,储能电热泵,高/低温储水箱,加热网加热器,阀和循环水泵;换热站部分主要包括高温/低温储水箱,电热泵,换热器,阀和循环水泵。该装置的操作方法,通过组合不同的阀门开关,可以分别在电负荷谷,电负荷平和电负荷高峰时期运行,采用高温储水箱平衡差在系统供热量与供热负荷之间,通过采用低温储水罐来稳定蒸汽废气余热回收量,从而传统上由于发电与供热相互耦合,发电高峰容量受到限制。解决了“热决定电”的运行方式,CHP机组可以参与电网负荷调节,可以提高电网调节能力,以应对电负荷峰谷差不断增大的情况;可以提高风力发电电网的吸收能力,减少现象“风扇悬挂”。

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