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光煤互补发电系统集成优化与控制系统设计-动力工程专业论文.docxVIP

光煤互补发电系统集成优化与控制系统设计-动力工程专业论文.docx

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ABSTRACT It is one of the strategic measures to the modification of the current power system that the multi-energy combined power system is applied to accomplish the goals which involve the energy structure adjustment, environmental protection and sustainable development. The solar energy has the feature of clean, sustainable and no contamination. Of all the solar power systems, solar thermal power system is the typical one. However, It is still struggling to promote pure solar power system due to the high unit cost and instability of it. And as a result, the solar-coal combined power system was introduced into the energy supply system to release the tension of the energy using. The solar-combined power system combined two thermal systems, the 200MW power plant system and the trough solar thermal system. A mathematical model of it is constructed on the basis of the thermodynamics principle, energy conservation law and the mass conservation law. And an optimization of the integration mode used in the solar collector field is performed. The essay mainly analyzes the variation trend of the combined system s efficiencies in thermodynamics, thermoeconomics as well as the exergy at different outlet temperature of the solar collector field. And at the same time, A radiation model in Gansu is also built up. With the help of the radiation model, the thermoeconomic cost model and the economy model of the combined power system are both created which can tell the influences on the two estimation standards from different outlet temperature of the solar field. And the result shows that the higher the outlet temperature of the solar field , the better the system performance becomes except that the combined system has the optimal point in the evaluation criteria of the system total exergy loss. Therefore the combined power systems performance could be promoted by setting the inlet temperature of solar field on higher degrees, which has great guidance on the boosting the solar powe

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