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    • 1. 发明申请
    • Joint heating system of gas combined cycle and solar power and dispatching method thereof
    • 气体联合循环和太阳能联合供热系统及其调度方法
    • US20130270353A1
    • 2013-10-17
    • US13809889
    • 2011-12-31
    • Hongyu LongKai WuYulong Yang
    • Hongyu LongKai WuYulong Yang
    • F24H9/20F24H4/00
    • F24H9/2007F02C3/28F02C6/18F24D15/04F24D19/1039F24D19/1048F24D2200/12F24H4/00F24H2240/00H02J3/381H02J3/383Y02B10/20Y02B10/70Y02B30/12Y02E10/563Y02E20/14
    • The present invention provides a joint heating system of gas combined cycle and solar power and a dispatching method thereof, the user adopts two ways of the hot water radiator and the heat pump to supply heat, wherein the hot water comes from the gas combined cycle units, the electric power comes from the combination of the gas combined cycle units and the solar power generation units, and after detecting the power supplying and power consumption of the user in a historical time period by the comprehensive dispatching and controlling device, a future time period is predicted, and then dispatching is processed on the basis, under the circumstances of ensuring fulfilling of electric power supply and heat supply, reducing of the heating hot water flow output is compensated by consuming electric power to heat, consuming electric power to heat can not only compensate the shortage of hot water heating, but also increases the load in power trough time; accordingly, solar power generation, and combined production of heat and power is synthesized, the output of the combined production of heat and power is adjusted according to the volatility of solar power generation, and further according to change of power consumption load of the user, based on continuous dispatching method of real-time detection and prediction, with equal detection period and adjustment period, an equivalent smooth output of solar power generation on the user side is realized.
    • 本发明提供一种气体联合循环和太阳能发电联合加热系统及其调度方法,用户采用热水散热器和热泵两种方式供热,其中热水来自气体联合循环装置 电力来自气体联合循环单元和太阳能发电单元的组合,并且在由综合调度和控制装置在历史时间段内检测到用户的供电和功耗之后,未来的时间段 在此基础上进行调度处理,在确保电力供热供热的情况下,通过消耗电力加热来补偿加热热水流量输出的减少,消耗电热不能 只补偿热水供热不足,同时也增加了供电时间的负荷; 因此,合成太阳能发电和热电联产,根据太阳能发电的波动调整热电联产产量,进一步根据用户的功耗负荷变化, 基于实时检测和预测的连续调度方法,具有相同的检测周期和调整周期,实现了用户端太阳能发电的相当平滑输出。