期刊文献+

空调系统水力失调对电动两通阀动作的影响 被引量:1

The Influence on Two-Way Electric Valve for Hydraulic Maladjustment of Air Conditioning System
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摘要 为了研究空调水系统水力工况变化而产生的水力失调对电动两通阀动作的影响.笔者对电动两通阀进行了受力分析,论述了克服阀门不平衡力的执行机构及其输出力,利用空调系统水压图对风机盘管水系统进行了定性和定量分析.分析表明当某高层建筑空调系统水流量降低为总设计流量的50%时,其底层风机盘管上的电动两通阀动作失灵.进而提出从阀门自身构造性能和空调水系统水力工况的合理分布这两方面寻求解决的办法. In order to discuss the influence on the two-way electric valve for the hydraulic maladjustment caused by the change of hydraulic regime of air conditioning system,the author analyses the force of valve and discusses the valve actuator and its output force,then makes qualitative analysis and quantative analysis on fan-coil water system utilizing pressure diagram display.The analysis indicates when the flow-ratio of system in high-rise building falls to 50% of the total design flow,the two-way electronic valve on the fan-coil in first floor causes valve failure. The author therefore brings forward the resolution of the structure of valves and reasonable distributing of hydraulic regime in water system of air conditioning.
出处 《沈阳建筑大学学报(自然科学版)》 CAS 2004年第4期322-324,共3页 Journal of Shenyang Jianzhu University:Natural Science
基金 辽宁省自然科学基金资助项目(962124)
关键词 空调系统 水力失调 电动两通阀 受力分析 电动执行机构 输出力 two-way electronic valve permissible pressure water system of air conditioning hydraulic maladjustment
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参考文献2

  • 1Rishel J B. The history of HVAC variable- speed pumping[J]. ASHRAE Trans, 1995(101): 1 - 12.
  • 2Franco W, Sen M, Yang K T. Modeling and control of a thermal - hydraulic network [ C ]. Anaheim California:ASME NHTC, 2001.

同被引文献12

  • 1陈亮.空调闭式变流量水系统二通调节阀选择要求[J].暖通空调,1995,25(5):26-28. 被引量:1
  • 2高养田.空调交流量水系统设计技术发展[J].暖通空调,1996,26(3):20-26. 被引量:59
  • 3高养田.空调变流量水系统设计技术发展(续)[J].暖通空调,1996,26(4):29-35. 被引量:15
  • 4付祥钊 王岳人.流体输配管网[M].北京:中国建筑工业出版社,2002..
  • 5Hartman T. New Horizons for HVAC Control [J].Heating/Piping/Air Conditioning, 1995, 67(3):75-85.
  • 6Hartman T. Optimizing All - Variable Speed Systems with Demand Based Control[J]. The Automator, Automated Buildings, 2002 (3): 45-49.
  • 7Robert Petijean.水力管网全面平衡技术[M].郎四维译.北京:中国建筑工业出版社,1991.
  • 8Avery G. Designing and Commissioning Variale Flow Hydronic System[J]. ASHRAE J, 1993 (7);45 -49.
  • 9Avery G. The Pros and Cons of Balacing a Variable Flow Water System[J]. ASHRAE J, 1990 (10): 30-59.
  • 10Hartman T. Design Issues of Variable Chilled Water Flow through Chillers [J]. ASHRAE. Trans. 1996(2):36-41.

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