evaporator condenser

英 [ɪˈvæpəreɪtə kənˈdensə(r)] 美 [ɪˈvæpəˌreɪtər kənˈdensər]

网络  冷凝蒸发器

化学



双语例句

  1. Under frozen condition, two heat exchangers of the refrigeration system work alternatively as evaporator and condenser in order to provide cooling and defreezing at the same time.
    在结霜工况下,这种制冷系统的两台换热器交替用作蒸发器和冷凝器,同时进行制冷和融霜。
  2. The refrigerant, refrigeration oil and an evaporator, condenser and piping in the drying process is very important.
    对冷媒,冷冻油及蒸发器、冷凝器和配管的干燥处理是极为重要的。
  3. Common Program for Structure Design of Fin-and-Tube Evaporator and Condenser
    翅片管蒸发器、冷凝器结构设计的通用程序开发
  4. Switch on the power supply, power on the compressor, and examine whether the rotation direction of the fans of the evaporator and condenser agrees on that of the arrowhead.
    接通电源,点动启动压缩机,检查蒸发器及冷凝器风扇的旋转方向是否与箭头方向一致。
  5. Makes experiment on the heat pipe radiator for industry enclosure designed by author, analyzes different performance of radiator under different medium, different quantity of liquid filled ratio, and the different length proportion between evaporator and condenser.
    针对所设计的工业机柜热管散热器进行试验研究,分析其在充注不同工质、不同充液率以及不同蒸发段和冷凝段的长度比情况下的散热性能。
  6. The advantage of computer-aided design of evaporator and condenser of room air conditioner, compared with general design, was analyzed.
    分析了户式空调系统的蒸发器和冷凝器的计算机辅助设计相对于传统设计方法的优点。
  7. It is necessary to analyze refrigerant, thermostatic expansion valve, compressor, evaporator and condenser.
    空调系统的仿真计算需要对制冷剂、热力膨胀阀、压缩机、蒸发器和冷凝器进行数值分析。
  8. The moving boundary model ( MB-model) and discretized model ( DS-model) of evaporator and condenser were built respectively.
    分别采用移动边界和离散两种方式建立了蒸发器和冷凝器的模型。
  9. Then compared the capacity of evaporator and condenser in three forms which are straight, coil and added disturbance., the result is heat interchanger has the highest effect in the third form.
    同时,还将同样强化翅片换热器在盘管、直管和增加干扰环三种形式下的蒸发和冷凝能力进行了比较,发现采用增加干扰环的形式,蒸发和冷凝的换热效果均较为理想。
  10. In the present CPL, both evaporator and condenser are designed as a type of flat plate with porous wick.
    在所设计的新型平板式CPL系统中,蒸发器和冷凝器均采用带有毛细芯的平板式结构。
  11. Three kinds of length ratio of evaporator to condenser of heat pipe heat exchangers are proposed: the flow length ratio, the saving length ratio, and the allowable safety length ratio.
    本文提出了热管换热器加热段和冷却段的三种长度比:流通长度比、经济长度比和许用安全长度比。
  12. Then the method to determine the main parameters ( included temperature, pressure and heating load of evaporator and condenser, cooling water mass, electric power and so on) and the choice of system cooling program are illustrated.
    说明了确定系统各主要参数(包括蒸发器和冷凝器的温度压力参数、热负荷及系统冷却水量、发电功率等)的方法以及系统冷却方案的选择。
  13. By making a comparison between materials and type selection for three main parts of air conditioner& compressor, heat-exchanger ( evaporator and condenser) and capillary pipe, the article provides referential options for designing good and cheap air conditioner.
    本文通过对空调器三部件&压缩机、换热器(蒸发器和冷凝器)和毛细管的选材及选型的比较,从而为设计质优价廉的空调器提供了参考依据。
  14. Based on the principle of system power cycle and characteristics of Freon power generation system, the model for low temperature waste heat generating was constructed. The evaporator, condenser and steam turbine model were designed as well.
    根据系统动力循环原理以及氟里昂循环发电系统的特点,组建了小型低温余热发电系统模型,并对蒸发器、冷凝器、汽轮机模型等组件进行了设计。
  15. The influence of the relative orientation of evaporator and condenser on LHP's operation and its passive thermal control characteristics is discussed.
    讨论了蒸发器和冷凝器的方位对系统运行、温度控制特性的影响。
  16. It's constituted with high-efficient humidifier, preheater, evaporator condenser, bidirectional air blower, air-cooled condenser and water-cooled condenser.
    该装置由高效加湿器、预热器、蒸发冷凝器、双向风机、空冷式冷凝器与水冷式冷凝器等部件组成。
  17. The dehumidification rate per unit energy consume was greatly increased by adding a heat changer between evaporator and condenser.
    通过在蒸发器和冷凝器之间增设一组换热器,提高了单位功耗除湿率。
  18. Selection of the length ratio of evaporator to condenser of heat pipe heat exchangers
    热管换热器加热段和冷却段长度比的选择
  19. According to the special requirement for an R13/ R22 cascade refrigeration system of a laboratory design without available equipment and experience for reference, designs evaporator/ condenser, air cooler, expansion container.
    针对某工程选用R13/R22复叠式制冷系统设计试验室的特殊要求,在没有成套设备和可借鉴经验的情况下,自行设计了蒸发/冷凝器、冷风机、膨胀器等设备。
  20. The design calculations of evaporator, condenser, condensing-evaporator, medium heat transfer, capillary and compressor are described.
    文中涉及了蒸发器、冷凝器、冷凝蒸发器、中间换热器、毛细管和压缩机的设计计算。
  21. The measurement of flow rete of refrigerant is one of important problems in the experimental study of the performances of evaporator or condenser heat exchanger.
    制冷剂流量测量是直接蒸发冷凝抉热器性能试验研究的关键。
  22. It is a typical application in aluminum alloy to use brazing technology manufacturing process in the automotive air conditioning system components, such as the evaporator, condenser. The brazing quality issue is the main problems.
    铝合金钎焊技术在汽车空调系统零部件,如蒸发器,冷凝器的制造过程中大量应用,钎焊合格率问题一直是生产厂家的主要难题。
  23. ( 2) Influences of divided evaporator and condenser on MD process were investigated by the simulation of DBP-DBS mixture distillation.
    经DBP-DBS物系数值模拟,系统研究分段冷凝和分段蒸发对分子蒸馏过程的影响。
  24. Improved pipeline configuration with parallel channels can form several loops which greatly reduce local pressure drop for working fluid. It also decreases thermal driven temperature difference between evaporator and condenser of the pulsating heat pipe, and thermal resistance of the pulsating heat pipe decreases.
    改进型管路结构具有多通道并联管路形式,容易形成多个流通回路,工质两相流动的局部阻力会有明显降低,这一定程度上可降低脉动热管运行的驱动温差,从而降低热阻。
  25. This equipment mainly includes six parts: evaporator, condenser, compressor, expanding valve, assistant heater, and drying chamber.
    该装置主要由以下几个部分组成:蒸发器、冷凝器、压缩机、膨胀阀、辅助加热器和干燥室。
  26. Designed an adsorption refrigeration system based on the split heat pipe adsorbent bed. Designed and calculated for the evaporator and condenser considering with actual situation. 3.
    在应用分离式热管吸附床的基础上,对吸附制冷系统进行了设计,并结合本设计实际情况对冷凝器、蒸发器进行了设计和计算。
  27. As a result of its good adaptability, the evaporator and condenser of two phase flow separate heat pipe can be installed in any relative position.
    两相流分离式热管的适应性强,可满足蒸发器与冷凝器任意不同相对位置的安装。
  28. Meanwhile, the simulation calculation results are analyzed to find out the pressure difference between flash evaporator and condenser under which indicates the power of the constant operation of the desalination system. 2.
    同时,利用仿真模型,重点分析计算了不同参数下闪蒸器与冷凝器之间的压差,分析系统持续运作的理论动力。
  29. Condenser design according to the maximum working condition, for avoiding the problem of thermal efficiency decline under low temperature, at the same time can reduce the impact on refrigerant capacity under the different volume of evaporator and condenser.
    冷凝器按照最大工况设计,避免了低温换热效率下降的问题,同时可以减小由于蒸发器和冷凝器容积不同而对制冷剂充注量的影响。