Determination of the Parameters of the Solar System to Compensate for the Thermal Losses of a Single-chamber Vertical Cylindrical Reactor

V. Bukhmirov, A. Sadchikov, N. F. Kokarev
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Abstract

The purpose of this study is to analyze the feasibility of using the solar system to partially compensate for the heat losses of the methanogenesis reactor of the bioenergy station "EcoVoltAgro" with a volume of 25 m3. In the process of research, the method of comparative analysis was used. Calculation of the available solar radiation was carried out on the basis of the information of the climatological database of the National Aeronautics and Space Administration of the United States for coordinates corresponding to the geographical location of Orenburg. Optimal parameters of the solar system are proposed to compensate for the heat losses of a single-chamber vertical cylindrical methane-genesis reactor, the required surface area and the number of solar collectors for each month of the year are determined. In order to reduce the cost of creating a solar system with a large number of solar collectors, a schematic diagram of a heating system for a methane-genesis reactor based on solar collectors and a boiler operating on biogas is proposed. The calculation of biogas savings for each month of the year is made using the proposed scheme.
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确定太阳能系统参数以补偿单室立式圆柱形反应器的热损失
本研究的目的是分析利用太阳能系统部分补偿体积为25 m3的“EcoVoltAgro”生物能源站产甲烷反应器热损失的可行性。在研究过程中,采用了比较分析的方法。可利用太阳辐射的计算是根据美国国家航空和航天局的气候数据库提供的与奥伦堡地理位置相对应的坐标的资料进行的。为补偿单室立式圆柱形甲烷生成反应器的热损失,提出了太阳能系统的最佳参数,确定了每个月所需的表面积和太阳能集热器数量。为了降低建造大量集热器的太阳能系统的成本,提出了一种基于太阳能集热器和沼气锅炉的甲烷生成反应器加热系统的原理图。按建议的方案计算每年每月的沼气节省量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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