全热交换器

  • 网络Total heat exchanger;enthalpy exchanger
全热交换器全热交换器
  1. 膜全热交换器由于可以同时回收空调排风中的潜热和显热而受到重视。

    The membrane-based total heat exchanger is a novel heat recovery unit due to its simultaneous recovery of sensible heat and moisture .

  2. 板翅式全热交换器应用于分散独立空调系统中的探讨

    Application of Plate-Wing Total Heat Exchanger in Decentralized Air Conditioning System

  3. 本文室内热环境模拟结果显示,房间能耗相同的情况下,使用全热交换器将对房间空气温度场和热舒适性指标PMV均有改善。

    Numerical results show that the indoor temperature field and PMV distributions are more homogeneous when a CFHRV was used under the same energy consumption in an air conditioning room .

  4. 空气&空气板式全热交换器热量回收性能的研究

    Study on Heat Exchange Performance of Air-to-Air Plate Heat Exchange Ventilator

  5. 全热交换器节能与经济效益分析实例

    Project Analysis on Energy Saving and Economic Benefit of Full-heat Exchanger

  6. 室外气候对空气全热交换器运行效率的影响

    Effects of outdoor climate on the efficiency of air-to-air total heat exchanger

  7. 板翅式空气全热交换器热回收效率的实验研究

    Experimental study on the efficiency of cross-flow heat recovery ventilators

  8. 其中,转轮式全热交换器是目前主要的新风全热回收技术之一。

    Among them , the rotary wheel total heat exchanger is widely recommended .

  9. 基于亲水/憎水复合膜的全热交换器换热换湿性能

    Performance of heat and mass transfer based on hydrophilic / hydrophobic composite membrane

  10. 全热交换器投资回收期分析

    Investment return life analysis of air-to-air energy recovery ventilator

  11. 城市轨道列车通风系统用全热交换器的技术经济分析

    Technical and Economic Analysis of the Total Heat Exchanger in Urban Rail Vehicles

  12. 热管换热器同转轮式全热交换器节能效果比较

    Comparison energy saving effect between heat pipe heat exchanger and rotate wheel heat exchanger

  13. 全热交换器在空调系统中的节能分析

    Energy-saving Analysis of Full-heat Exchanger in Air-conditioning System

  14. 膜全热交换器内热湿交换过程的熵分析

    Entropy analysis of membrane-based heat and mass exchanger

  15. 板式全热交换器纸材性能研究

    Paper Performance Study on Fixed-plate Heat Exchangers

  16. 本文介绍新型空调节能设备&全热交换器的结构、工作原理、热效率及其应用。

    The total heat exchanger is a new type of energy saving equipment for air-conditioning units .

  17. 板翅式全热交换器运行条件对性能影响的研究

    Investigation on Effect of the Operating Conditions on Performance of Heat Recovery Ventilator with a Membrane

  18. 全热交换器及其试验方法

    Heat Recovery Ventilation and Test Methods

  19. 全热交换器的重要评价指标是显热效率和潜热效率。

    Sensible heat efficiency and latent heat efficiency are two critical evaluating indicators of total heat exchanger .

  20. 全热交换器全年运行工况及其节能效果研究

    Research on the performance and the energy saving effect of total heat exchangers under a year-round operation

  21. 板翅式静止型全热交换器的研制及其热工性能

    Development of a prototype of the plate type total heat exchanger and research of its thermal performance

  22. 最后对分别在使用和未使用全热交换器的两种情况下的计算得到能源消耗情况进行了比较分析。

    Energy consumption with and without total heat exchanger was counted and compared by method of comparative analysis .

  23. 全热交换器和冰蓄冷解决超市室内空气污染问题的探讨

    Discussion about Solving Indoor Air pollution with Total Heat Recovery Ventilator and Ice Thermal Storage Technology in Super-markets

  24. 本文将对目前国外的能量回收装置标准进行比较,对全热交换器评价方法进行探讨。

    The standards of foreign energy recovery units were compared and the evaluation methods of enthalpy exchangers were studied .

  25. 实测结果表明,处理风量对板翅式全热交换器的显热效率和潜热效率均有一定的影响,但显热效率受到的影响作用相对较弱。

    The experimental data show that the sensible heat effectiveness and moisture effectiveness are both affected by the disposing air quantity under certain conditions .

  26. 提出了将全热交换器的投资回收时间设为零,然后反求其价格的经济分析方法。

    Provides an economic analysis method in which the investment return time is taken as zero to work out the price of such an exchanger .

  27. 板翅式全热交换器在不同地区应用的适用性分析空气&空气板式全热交换器结霜与旁通除霜的研究

    Analysis of the Applicability of Membrane-based Energy Recovery Ventilators in Different Climatic Zones of China ; Research on Frosting and Bypass Defrosting Air-Air Plate Total Heat Exchanger

  28. 就采用全热交换器和冰蓄冷技术以改善超市室内空气品质进行分析和探讨;

    Furthermore , the total heat recovery ventilators and ice thermal storage technology used to improve the indoor air quality in the super-markets were discussed in the paper .

  29. 同时,全热交换器的潜热交换效率受芯体尺寸的影响作用大于显热效率。

    Furthermore , the trend is more obvious as air velocity increases near the surface of membrane , and it has more effect on the moisture effectiveness than sensible heat effectiveness .

  30. 转速会降低磁流体的密封能力,而在多级密封中能提高磁流体的密封能力。热管换热器同转轮式全热交换器节能效果比较

    Under the condition of few-tooth sealing , the rotate speed can reduce the ability of it . COMPARISON ENERGY SAVING EFFECT BETWEEN HEAT PIPE HEAT EXCHANGER AND ROTATE WHEEL HEAT EXCHANGER