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Combined Solar Heat and Power System with a Latent Heat Storage - System Simulations for an Economic Assessment

机译:结合太阳能热电系统,具有潜热存储系统模拟的经济评估

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Decentralized solar combined heat and power (CHP) systems can be economically feasible, especially when they have a thermal storage. In such systems, heat provided by solar thermal collectors is used to generate electricity and useful heat for e.g. industrial processes. For the supply of energy in times without solar irradiation, a thermal storage can be integrated. In this work, the performance of a solar CHP system using an active latent heat storage with a screw heat exchanger is investigated. Annual yield calculations are conducted in order to calculate annual energy gains and, based on them; economic assumptions are used to calculated economic numbers in order to assess the system performance. The energy savings of a solar system, compared to a system with a fossil fuel supply, are calculated. Then the net present value and the dynamic payback are calculated with these savings, the initial investment costs and the operational costs. By interpretation and comparison of these economic numbers, an optimum system design in terms of solar field size and storage size was determined. It has been shown that the utilization of such systems can be economical in remote areas without gas and grid connection. Optimal storage design parameters in terms of the temperature differences in the heat exchanger and the storage capacity have been determined which can further increase the net present value of such system.
机译:分散的太阳能组合的热量和功率(CHP)系统可以在经济上可行,特别是当它们具有热储存时。在这种系统中,太阳能热收集器提供的热量用于产生电力和有用的热量。工业过程。为了在没有太阳照射的情况下供应能量,可以集成热存储器。在这项工作中,研究了使用具有螺杆热交换器的有源潜热存储器的太阳能CHP系统的性能。进行年产计算,以计算年度能源收益,并根据其计算;经济假设用于计算经济号,以评估系统性能。与具有化石燃料供应的系统相比,太阳系的节能。然后通过这些储蓄,初始投资成本和运营成本计算净现值和动态回报。通过解释和比较这些经济数字,确定了太阳能场大小和存储尺寸方面的最佳系统设计。已经表明,这种系统的利用可以在没有气体和网格连接的偏远地区经济。已经确定了热交换器中温度差异的最佳存储设计参数,其可以进一步增加这种系统的净现值。

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