Volume 2 Issue 11
Nov.  2020
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LI Xiaolong. Analysis on Energy Saving Design of Indoor Ice Rink[J]. Intelligent Building and Construction Machinery, 2020, 2(11): 118-120.
Citation: LI Xiaolong. Analysis on Energy Saving Design of Indoor Ice Rink[J]. Intelligent Building and Construction Machinery, 2020, 2(11): 118-120.

Analysis on Energy Saving Design of Indoor Ice Rink

  • Received Date: 2020-10-09
  • Rev Recd Date: 2020-11-24
  • Available Online: 2022-03-28
  • Publish Date: 2020-11-28
  • With the approach of the 2022 Beijing Winter Olympics, the number of indoor ice rinks is increasing year by year, by 2017, there are 73 indoor ice rinks in Beijing. If we want to keep the ice rink in use all year round, the refrigeration equipment of the ice rink needs to keep running all year round, this leads to a huge annual consumption of electricity per ice rink.. Therefore it is necessary to reasonably design the refrigeration unit, through the application of heat recovery technology, reasonably design the operation mode, shorten the service time of the equipment, improve the service life of the equipment, reduce the power consumption and reduce the total operation cost.

     

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    纪俊峰.北京室内冰场信息大全[EB/OL].[2017-09-01].http://www.sohu.com/a/150863499_729430.
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    GB/T 19995.3-2006,天然材料体育场地使用要求及检验方法第三部分运动冰场[S].北京:中国标准出版社,2006.
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    International Ice Hockey Federation.Technical Guidelines of an Ice Rink[M].Pairs:International Ice Hockey Federation,2016.
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    北京照明学会设计委员会.照明设计手册[M].北京:中国电力出版社,2016.
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