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Dynamic analysis of off-grid systems with ORC plants adopting various solution for the thermal storage

机译:采用各种解决方案的兽人工厂对散网系统的动态分析

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Real time matching of electric power generation is a crucial aspect in off-grid systems as well as in case of use of renewable intermittent sources. In this paper, with reference to 1 MW_(el) Turboden biomass ORC plants operating in off-grid systems, we study the possibility to store thermal energy in the form of sensible heat within a storage composed by a bunch of steel or cast iron pipes with variable thickness and different coating materials. Thermal power is taken in and out of the storage by a flow of thermal oil, heated by a biomass furnace, and eventually supplied and converted into electricity by the ORC plant running in an off-grid area. Starting from steady state conditions at 30% of the nominal power of the furnace, we assume an instantaneous increase to 100% of the electric power demand and we study the transient of the system in correspondence of the furnace power ramp. To this purpose, we developed a dynamic finite difference model, for the system composed by the furnace, the ORC plant, the furnace inlet and outlet piping and the thermal storage. It comes out that with a storage system properly designed as function of the furnace power ramp, it is possible to run the ORC at 100% during the analyzed transient, thus allowing a real time matching of the power demand.
机译:电力发电的实时匹配是非网格系统中的关键方面,以及可再生间歇性源的使用情况。在本文中,参考了在非网格系统中操作的1 MW_(EL)涡轮机生物量矿床,我们研究了在由一束钢或铸铁管组成的存储器内以明智的热量的形式存储热能的可能性具有可变厚度和不同的涂料。通过由生物质炉加热的热油流进出储存的热功率,并最终通过在散网区域中运行的兽人厂供应和转换为电力。从炉子标称功率的30%的稳态条件开始,我们假设瞬时增加到电力需求的100%,并且我们研究了炉子电源斜坡的对应关系的系统的瞬态。为此目的,我们开发了一种动态有限差模型,用于由炉,兽人厂,炉内进出管道和热储存组成的系统。它阐述了与炉子电源斜坡的功能正确设计的存储系统,在分析的瞬态期间可以在100%处运行ORC,从而允许功率需求的实时匹配。

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