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First simulation results for the hybridization of small solar power tower plants

机译:第一个仿真结果对小太阳能塔厂的杂交

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Solar thermal power is an emerging technology that provides clean electricity for the growing energy market. To the group of solar thermal power systems belongs the solar tower where a field of two-axis tracking heliostats reflect the solar radiation to the receiver aperture, where concentration ratios up to 1000 are reached. This offers the potential to provide high steam temperatures for a rankine cycle or ultimately even high enough temperature heat for the gas turbine system of a combined cycle power plant. One major option for the accelerated market introduction of solar thermal power technology is the concept of solar-fossil hybrid power plants. Their advantage, compared to solar-only systems, lies in low additional investment costs due to an adaptable solar share and reduced technical and economical risks. In this paper a simulation model for the calculation of a hybrid power plant is described. Also the design and performance assessment of solar hybrid tower plants in the power level of 1-2 MW, is presented. An advanced software tool library is developed for the modelling of such small hybrid power plants. First validation and simulation results for parts of a small solar tower power plant are described and discussed.
机译:太阳能热力是一种新兴技术,为不断增长的能源市场提供清洁电力。对于太阳能电力系统的组属于太阳能塔,其中两轴跟踪光晕塔的领域将太阳辐射反射到接收器孔径,其中达到浓度比率高达1000。这提供了为Quance循环提供高蒸汽温度的可能性,或者最终为组合循环发电厂的燃气涡轮机系统提供足够高的温度热量。加速市场引进太阳能热电动力技术的一个主要选择是太阳能 - 化石混合发电厂的概念。与唯一的太阳能系统相比,它们的优势在于,由于太阳能份额适应和技术和经济的风险降低,因此额外的投资成本低。本文描述了一种用于计算混合动力厂的仿真模型。还提出了1-2 MW功率水平的太阳能杂交塔工厂的设计和性能评估。开发了一个高级软件工具库,用于这种小型混合发电厂的建模。描述和讨论了小型太阳能塔电厂部件的第一验证和仿真结果。

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