Developing a scheme for the utilization system of condensation heat from refrigerating machines to decrease the dependency of ice arena on municipal systems of heating and hot water supply

I. A. Korotkiy, E. Neverov, P. Korotkikh, V. G. Lonshakov, Success
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Abstract

The article presents the results of developing a system for utilization of condensation heat from refrigerating units and air-conditioning systems of ice fields to decrease the dependency of engineering and technical systems of the objects on municipal systems of heating and hot water supply. The proposed solution provides saving of heat and electric energy consumed by both the refrigeration supply system and other systems of the object. When compressed gas overheating is used, an addition heat exchanger is added to the revegetating circuit allowing to utilize up to 20 % of heat released by the unit. As the temperature of refrigerating medium may be above 100 °C in the end of compression process, the environment (water or air) is heated up to 80–90 °C. The technology has been developed for Small Ice Hockey Arena and Ice Hockey Training Rink in Sochi Olympic Park. The IIR conference series on Sustainability and the Cold Chain is recognised as a cutting-edge event on the cold chain which addresses the ever-increasing demand for knowledge-sharing in this essential sector. This prestigious biennial conference attracts international audiences of researchers and industrialists, providing an opportunity to showcase the latest developments in sustainability, retail refrigeration and the cold chain.
开发一种利用制冷机冷凝热系统的方案,以减少冰场对市政供暖和热水供应系统的依赖
本文介绍了开发利用冰原制冷机组和空调系统冷凝热系统的结果,以减少对象的工程技术系统对市政供热和热水供应系统的依赖。提出的解决方案提供了节省的热量和电能消耗的制冷供应系统和其他系统的对象。当使用压缩气体过热时,一个额外的热交换器被添加到再生电路中,允许利用该装置释放的热量的20%。由于在压缩过程结束时,制冷介质的温度可能在100℃以上,因此将环境(水或空气)加热到80-90℃。这项技术是为索契奥林匹克公园的小型冰球馆和冰球训练场开发的。IIR关于可持续发展和冷链的系列会议被认为是冷链领域的前沿活动,它解决了这一重要部门日益增长的知识共享需求。这个久负盛名的两年一次的会议吸引了研究人员和实业家的国际观众,提供了一个展示可持续发展,零售制冷和冷链的最新发展的机会。
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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