利用太阳热能进行人造黄油熔热过程的研究。

Journal of Solar Energy Engineering Pub Date : 2015-04-01 Epub Date: 2014-09-11 DOI:10.1115/1.4028367
Mohamed A Sharaf Eldean, A M Soliman
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引用次数: 14

摘要

由于人造黄油的高熔点和储罐的大小,熔化人造黄油的加热过程需要大量的热能。现有的加热人造黄油的方法每小时的生产成本很高,而且使用化石燃料,这已被证明对环境有负面影响。因此,我们对使用太阳能热作为人造黄油熔化过程的替代能源进行了可行性分析研究。在本研究中,比较了抛物线槽集热器(PTC)太阳能场与蒸汽锅炉太阳能场的效率和成本效益。研究了不同工质(水蒸气和Therminol-VP1导热油)在太阳场中的作用。结果表明,无论工作流体类型如何,传统配置的总小时成本($/h)都远远高于太阳能应用。此外,常规配置对环境造成的负面影响是,CO2、CO和NO2的排放量分别增加了117.4 kg/d、184 kg/d和74.7 kg/d。在温差不超过25℃的条件下,熔体和罐体体积参数的优化周期分别为8-10 h和100 m3。建议使用水和蒸汽作为工作流体的太阳能PTC作为人造黄油熔化加热过程的重要替代方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Study of Using Solar Thermal Power for the Margarine Melting Heat Process.

Study of Using Solar Thermal Power for the Margarine Melting Heat Process.

Study of Using Solar Thermal Power for the Margarine Melting Heat Process.

Study of Using Solar Thermal Power for the Margarine Melting Heat Process.

The heating process of melting margarine requires a vast amount of thermal energy due to its high melting point and the size of the reservoir it is contained in. Existing methods to heat margarine have a high hourly cost of production and use fossil fuels which have been shown to have a negative impact on the environment. Thus, we perform an analytical feasibility study of using solar thermal power as an alternative energy source for the margarine melting process. In this study, the efficiency and cost effectiveness of a parabolic trough collector (PTC) solar field are compared with that of a steam boiler. Different working fluids (water vapor and Therminol-VP1 heat transfer oil (HTO)) through the solar field are also investigated. The results reveal the total hourly cost ($/h) by the conventional configuration is much greater than the solar applications regardless of the type of working fluid. Moreover, the conventional configuration causes a negative impact to the environment by increasing the amount of CO2, CO, and NO2 by 117.4 kg/day, 184 kg/day, and 74.7 kg/day, respectively. Optimized period of melt and tank volume parameters at temperature differences not exceeding 25 °C are found to be 8-10 h and 100 m3, respectively. The solar PTC operated with water and steam as the working fluid is recommended as a vital alternative for the margarine melting heating process.

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