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Thermal analysis of photovoltaic thermal integrated greenhouse system (PVTIGS) for heating of slurry in potable biogas plant: An experimental study

机译:光伏热集成温室系统(PVTIGS)对便携式沼气厂中的泥浆加热的热分析:一项实验研究

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This communication offers an investigation of photovoltaic thermal integrated greenhouse system (PVTIGS) for heating of slurry in potable biogas plant developed at IIT Delhi, India. The energy through biomass is one of the renewable and clean energy which is generated with the help of organic raw materials (such as animal dung, vegetable waste, and tree leaves) through anaerobic process. PVTIGS may utilized for different applications like making electricity, enhancing the slurry temperature (resulting in improved production of biogas), crop cultivation and cooking etc. Thermal modelling of the newly developed system (PVTIGS) with load condition has been derived. Different parameters of PVTIGS have been calculated namely, solar cell temperature, slurry temperature, greenhouse room temperature and biogas plant wall temperature with the help of thermal modelling. Further, theoretical values has been compared with experimental values. Correlation coefficient (r) and root mean square percentage deviation (e) found to be 0.93, 5.25; 0.97, 4.2; 0.98, 3.35 and 0.85, 8.07 for greenhouse room, flow air, biogas chamber and slurry temperature respectively. During sunshine hours (7 AM to 6 PM) and off sunshine hours (6 PM to 7 AM), the average temperature difference between slurry and ambient air temperature are 3.93 degrees C and 6.74 degrees C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:该通讯提供了对印度热能德里开发的饮用水沼气厂中用于加热泥浆的光伏热集成温室系统(PVTIGS)的研究。通过生物质产生的能量是可再生的清洁能源之一,它是通过有机原料(例如动物粪便,蔬菜废物和树叶)通过厌氧过程产生的。 PVTIGS可用于不同的应用,例如发电,提高泥浆温度(导致沼气产量提高),农作物种植和烹饪等。已经得出了带有负载条件的新开发系统(PVTIGS)的热模型。借助热建模,已计算出PVTIGS的不同参数,即太阳能电池温度,浆料温度,温室室温和沼气厂壁温。此外,已经将理论值与实验值进行了比较。相关系数(r)和均方根百分比偏差(e)为0.93、5.25; 0.97、4.2;温室,流动空气,沼气室和浆液温度分别为0.98、3.35和0.85、8.07。在日照时间(上午7点至下午6点)和非日照时间(下午6点至上午7点)期间,浆料与周围空气温度之间的平均温差为3.93摄氏度和6.74摄氏度。(C)2017 Elsevier Ltd.版权所有保留。

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