供水技术2024,Vol.18Issue(2) :47-50.DOI:10.3969/j.issn.1673-9353.2024.02.009

绿色低碳理念在建筑给水排水设计中的应用

Application of Green and Low-Carbon Concepts in Building Water Supply and Drainage Design

王志强
供水技术2024,Vol.18Issue(2) :47-50.DOI:10.3969/j.issn.1673-9353.2024.02.009

绿色低碳理念在建筑给水排水设计中的应用

Application of Green and Low-Carbon Concepts in Building Water Supply and Drainage Design

王志强1
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作者信息

  • 1. 北京科技大学,北京市 海淀区 100083
  • 折叠

摘要

为实现建筑行业水资源的可持续利用,缓解能源危机,提出绿色低碳理念在现代建筑给排水设计中的应用.文中先从给水系统、排水系统、缺乏水资源循环利用观念三个方面阐述我国目前建筑给排水设计状况.再研究环保节能理念在现代建筑给排水设计中的应用,主要有以下几个方面:选择新型的节水设备,包括管道、节水型的卫生器具和新型阀门;应用中水回收系统;完善热水供应循环系统;有效利用太阳能;严格把控超压出流;以及给水系统和排水系统的节能设计.通过本文的设计应用,有效的提高水资源的合理利用和循环使用,降低运营成本和能源开支.

Abstract

In order to achieve sustainable utilization of water resources in the construction industry,alleviate energy crises,this paper proposes the application of environmental protection and energy conservation concepts in modern architectural water supply and drainage design.The paper first elaborates on the current status of water supply and drainage design in China from three aspects:water supply system,drainage system,and lack of concepts for recycling water resources.Then,the application of environmental protection and energy conservation concepts in modern architectural water supply and drainage design is studied,mainly including the following aspects:selecting new types of water-saving equipment,including pipes,water-saving sanitary fixtures,and new types of valves;applying greywater recycling systems;improving hot water supply circulation systems;effectively utilizing solar energy;strictly controlling excess pressure outflow;and energy-saving design of water supply and drainage systems.Through the application of the design in this paper,the rational utilization and recycling of water resources can be effectively improved,and operational costs and energy expenses can be reduced.

关键词

环保节能/现代建筑/给排水

Key words

environmental protection and energy saving/modern architecture/water supply and drainage/utilization

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出版年

2024
供水技术
天津市自来水集团有限公司

供水技术

影响因子:0.293
ISSN:1673-9353
参考文献量4
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