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Cost effectiveness of decentralized energy supply systems taking solar and wind utilization plants into account

机译:兼顾太阳能和风能发电厂的分散式能源供应系统的成本效益

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In this article, results are presented of annual simulations of a decentralized (regional) plant for the power and heat supply of a residential complex. This complex consists of four houses with 40 flats all in all. The annual power consumption of the complex is 157 MWh and the heat requirement is 325 MWh. The concrete dynamics of the energy demands over the year is taken into consideration. The energy supply system is composed of a power-controlled combined heat and power (CHP) plant (55 kW), a photovoltaic plant (PV array or PV plant) array for power generation as well as a field of solar thermal collectors with a short-term accumulator for water heating and a long-term accumulator for supplying heat for domestic heating purposes. Simulation results demonstrate that synergetic effects result from the combination of a CHP plant with wind power and PV plants of varying sizes, which have an effect on the cost effectiveness of the plant as a whole with the different dynamics of energy sources (wind and solar energies) and of the consumption of power and heat being the decisive factors. The power deficits of wind power and PV plants are compensated through the application of a natural gas-operated CHP plant. In almost all variants, the demand for fossil energy carriers is distinctly less than in conventional energy supply plants.
机译:在本文中,给出了分散式(区域性)工厂为住宅区供电和供热的年度模拟结果。这个建筑群由四栋房屋组成,总共有40套公寓。该综合体的年功耗为157 MWh,热量需求为325 MWh。考虑一年中能源需求的具体动态。能源供应系统由功率控制的热电联产(CHP)装置(55 kW),用于发电的光伏装置(PV阵列或PV装置)阵列以及较短的太阳能集热器领域组成用于热水的长期蓄热器和用于家庭供热的长期蓄热器。仿真结果表明,具有不同规模的风电和热电联产的热电联产电厂产生了协同效应,在不同能源来源(风能和太阳能)的情况下,对整个电厂的成本效益产生了影响)和功率和热量的消耗是决定性因素。通过使用天然气运行的热电联产电厂,可以弥补风能和光伏电站的电力不足。在几乎所有变体中,对化石能源载体的需求明显少于传统能源供应厂。

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