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DESIGN OF SOLAR ASSISTED COMMUNITY BIOGAS PLANT

机译:太阳能社区生物沼气厂的设计

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This study aims at providing a solution to the difficulty in the production of biogas in cold weather conditions especially during winters and in hilly regions where the temperature remains low throughout the year.As is well known biogas can be produced by anaerobic fermentation of organic materials with the help of bacteria [1]. Meynell [2] pointed out that the production of biogas becomes insignificant when the slurry temperature is less than 15°C. Such situations are usually faced in northern India, where the ambient temperature and, hence, the slurry temperature, in the winters drops below 15°C and hence improper digestion of slurry leads to poor biogas yield. This problem can be overcome by making the biogas plant solar assisted. The heat requirements of the digesters generally consist of three parts; (i) heat required for raising the temperature of incoming slurry for digestion; (ii) for compensating heat losses through the boundaries of the digester and (iii) for compensating losses that might occur in the piping between the heat source and the digester [3]. The required heat is provided from the collector which absorbs solar radiation and converts it into heat which is absorbed by a heat transfer fluid passing through the collector [4].In this work, a biogas plant for a specified capacity has been designed. Based on the biogas plant dimensions and the average ambient conditions for a specified location, the rate of loss of energy was determined. A solar collector system has been designed to supply sufficient energy to maintain the slurry temperature of 35°C.
机译:这项研究旨在提供解决方案,以解决寒冷气候条件下沼气生产的困难,特别是在冬季和全年温度仍然较低的丘陵地区。 众所周知,在细菌的帮助下,有机材料的厌氧发酵可以产生沼气[1]。 Meynell [2]指出,当浆液温度低于15°C时,沼气的产生变得微不足道。这种情况通常在印度北部面临,那里的环境温度以及因此的泥浆温度在冬季降至15°C以下,因此泥浆的不当消化会导致沼气产量下降。这个问题可以通过沼气厂的太阳能辅助来克服。蒸煮器的热量需求通常包括三个部分: (i)升高进入消化液的温度所需的热量; (ii)补偿通过蒸煮器边界的热损失,以及(iii)补偿在热源和蒸煮器之间的管道中可能发生的热损失[3]。所需的热量由收集器提供,该收集器吸收太阳辐射并将其转换为热量,该热量被穿过收集器[4]的传热流体吸收。 在这项工作中,已设计出具有指定容量的沼气厂。根据沼气厂的规模和指定地点的平均环境条件,确定能量损失率。已经设计了太阳能收集器系统以提供足够的能量以将浆料温度保持在35°C。

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