Technical aspects of the development of solar energy refrigeration technology on solid sorbents

Y. V. Shipulina, M. F. Rudenko, V. N. Sainova
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Abstract

Objective . The purpose of the study is a scientific review of the stages of development of refrigeration technology with sorption action on solid sorbents and an assessment of the current state of development of such household equipment in relation to the use of solar energy. Method . The dynamics of the development of solar energy refrigeration equipment based on sorption thermotransformers, the working vapors of which are solid sorbents and ozone-safe refrigerants, are analyzed. The beginning of development comes from the creation of periodic installations operating from the thermal energy of traditional energy carriers: hot water, burning of hydrocarbon or organic fuels, electric energy, and cooling with water and air and ends with modern refrigeration units operating from the energy of solar radiation and the daily temperature difference of the environment. Result . The peculiarities of making technical decisions underlying the design of the main devices of solar energy refrigeration units are noted. Circuit designs and operating principles of installations and their devices used to improve operating efficiency are described. The main trends in research conducted by scientists to improve the operation of solar energy thermal transformers of cyclic action are considered. Conclusion . This article may be useful to young scientists, engineers and designers for the design and development of innovative autonomous thermal transmitters and refrigeration units for cooling and short-term storage of products and medicines, obtaining food ice, air conditioning, operating independently from solar energy. Such installations are easy to manufacture and operate.
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在固体吸附剂上发展太阳能制冷技术的技术方面
目标。这项研究的目的是对对固体吸附剂有吸附作用的制冷技术的发展阶段进行科学审查,并评估这种家用设备在利用太阳能方面的发展现状。方法。分析了以固体吸附剂和臭氧安全制冷剂为工作蒸气的吸附性热变压器太阳能制冷设备的发展动态。发展的开始来自于利用传统能源载体的热能(热水、碳氢化合物或有机燃料的燃烧、电能、水和空气冷却)运行的定期装置的创建,并以利用太阳辐射能量和环境的日常温差运行的现代制冷装置结束。结果。指出了太阳能制冷机组主要装置设计中技术决策的特殊性。介绍了用于提高运行效率的装置及其装置的电路设计和工作原理。讨论了科学家们为改善循环作用太阳能热变压器的运行而进行的主要研究趋势。结论。本文可能对年轻的科学家、工程师和设计师设计和开发用于冷却和短期储存产品和药品、获取食物冰、空调、独立于太阳能运行的创新自主热传输器和制冷装置有所帮助。这种装置易于制造和操作。
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审稿时长
8 weeks
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