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Dynamic modelling and thermoeconomic analysis of micro wind turbines and building integrated photovoltaic panels

机译:微风力涡轮机和建筑集成光伏板的动态建模与热经济分析

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During the past few years a significant effort has been performed in order to promote the use of renewable energy sources. However, one of the main barriers for a mature commercialization is due to the unpredictability of the renewable power production, mainly in case of wind and solar energy. Unfortunately, electric storage devices are often poorly profitable. Therefore, some more stable renewable energy systems must be designed. In this framework, this paper presents a novel hybrid renewable system consisting of Building Integrated PhotoVoltaic panels and small-scale Wind Turbines and double stage heat pumps. This combination is very promising since it reduces the typical fluctuations of solar or wind systems, achieving a more stable profile of the overall power production. A detailed dynamic simulation model is developed in TRNSYS environment, including validated models for all the components and a suitable thermoeconomic analysis. A case study is implemented for a hotel building, where the space heating and cooling energy is supplied by an electrically driven reversible air-to-water Heat Pump, supplied by the electricity produced by Building Integrated PhotoVoltaic panels and Wind Turbines. the thermal energy recovered from the HP desuperheater is coupled with the thermal energy produced by a two-stage cascade cycle Heat Pump to produce domestic hot water. Results are presented in terms of hourly, monthly and yearly system performance data as well as by discussing the results of a detailed sensitivity analysis performed to detect the optimum configuration and weather zone of this hybrid renewable system. An analysis of the building envelope features is also performed, according to the nearly zero energy buildings target. Results showed that the combination of photovoltaic and wind technologies allows one to significantly enhance the stability of the renewable power production. Results also show that the use of heat pumps leads to a reduction of the primary energy demand for building space heating/cooling and domestic hot water by 30%. A payback period of about 5.2 years is obtained and the optimum configuration suggests adopting one 20 kW Wind Turbine for the selected case study. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在过去几年中,已经进行了重大努力,以促进使用可再生能源。然而,成熟商业化的主要障碍之一是可再生能源生产的不可预测性,主要是在风和太阳能的情况下。不幸的是,蓄电装置通常有利润。因此,必须设计一些更稳定的可再生能源系统。在本框架中,本文提出了一种新型混合可再生系统,包括建筑集成光伏板和小型风力涡轮机和双级热泵。这种组合非常有希望,因为它降低了太阳能或风系统的典型波动,实现了整体电力生产的更稳定的轮廓。详细的动态仿真模型是在TRNSYS环境中开发的,包括所有组件的验证模型以及适当的热经济分析。为酒店建筑实施了一个案例研究,其中空间加热和冷却能量由电动可逆空气热泵供应,由通过建造集成光伏板和风力涡轮机产生的电力提供的电力供应。从HP Desuperher中回收的热能与由两级级联循环热泵产生的热能相连,以生产家用热水。结果是以每小时,每月和每年的系统性能数据提供的,以及讨论进行详细的灵敏度分析的结果,以检测该混合再生系统的最佳配置和天气区。根据近零能量建筑物目标,还执行了对建筑物包络特征的分析。结果表明,光伏和风技术的组合允许人们显着提高可再生能源生产的稳定性。结果还表明,使用热泵的使用导致将空间加热/冷却和国内热水的主要能量需求减少30%。获得了约5.2岁的投资回收期,最佳配置建议采用一个20千瓦风力涡轮机进行所选案例研究。 (c)2020 elestvier有限公司保留所有权利。

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