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ANALYSIS OF A CONCENTRATING SOLAR POWER GENERATION SYSTEM INTEGRATED WITH BIOMASS BOILER

机译:集成生物质锅炉的集中式太阳能发电系统分析

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The present work focuses on the numerical analysis of the annual performance of a 1-MWe hybridrnbiomass-solar CSP power plant with 2-tanks TES direct system. Molten salts have been considered as thermal storagernfluid and HTF, in order to improve the operative temperature range of the system. The integration of the CSP with arnbiomass boiler aims at improving the flexibility and competitiveness of the hybrid power system, increasing thernnumber of equivalent operative hours and decreasing the size of the solar arrays, while enhancing the biomass shortrnsupply chain. The performance of the moving grate biomass boiler has been modeled by a customized set of functionsrnimplemented in MATLAB environment, which are then integrated into TRNSYS in order to simulate the entirernhybrid power plant. Simulations demonstrate that the hybrid power system operates for a higher number of equivalentrnhours than the simple CSP, and with a biomass demand approximately 25% lower than the conventional biomassfiredrnCHP.
机译:目前的工作集中在带有2箱TES直接系统的1-MWe混合生物质太阳能CSP电厂年性能的数值分析上。为了改善系统的工作温度范围,熔融盐被视为储液和HTF。 CSP与arnbiomass锅炉的集成旨在提高混合动力系统的灵活性和竞争力,增加等效运行小时数并减小太阳能电池板的尺寸,同时增强生物质供不应求的链。移动炉排生物质锅炉的性能已通过在MATLAB环境中实现的一组自定义函数进行建模,然后将这些函数集成到TRNSYS中,以模拟整个混合动力电厂。仿真表明,与简单的CSP相比,混合动力系统的等效当量小时数更高,并且对生物质的需求量比常规的生物质CHP低约25%。

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