liquid cooling

英 [ˈlɪkwɪd ˈkuːlɪŋ] 美 [ˈlɪkwɪd ˈkuːlɪŋ]

网络  水冷; 液体冷却; 液冷; 液态冷却; 液相冷却技术

计算机



双语例句

  1. Did you know that liquid cooling is90 percent more efficient than air cooling?
    您知道吗?液体制冷的效率比气体制冷高90%。
  2. Liquid cooling efficiencies as opposed to air cooling.
    从气体制冷向液体制冷发展。
  3. However, because of its powerful cooling performance, but it makes most people overlook the liquid cooling products, therefore, another major advantage-mute.
    然而由于其强大的散热性能,却使得大多数人却因此忽略了液冷产品的另一大优势&静音。
  4. In this paper, micro-structure liquid cooling analysis theory and experimental analysis were adopted to research the thermal design of MEMS with high thermal density.
    文中从微小结构液体冷却热交换设计理论分析和试验着手,研究高热密度情况下的MEMS散热设计。
  5. High efficiency liquid cooling system for optimum engine operating temperature-includes compact liquid cooled oil cooler.
    高效率的液冷却系统为引擎提供了最佳的工作温度&他甚至还包含了一个紧凑的机油冷却器。
  6. The innermost layers provide liquid cooling and ventilation.
    最里面的层防止液体变冷和使得空气能流通。
  7. At this type of shielding pump for bearing lubrication, cooling and liquid cooling of the electrical flow direction with the basic type is just the opposite.
    在此型屏蔽泵中,对轴承润滑、冷却和对电机冷却的液体流动方向与基本型正好相反。
  8. The liquid cooling type heat sink is compact in structure, small in occupation and convenient in assembly.
    该液冷式散热装置结构紧凑、占用空间小且安装方便。
  9. A liquid cooling type heat sink comprises a cooling body, a pump body fixed on the cooling body and a radiating unit.
    一液冷式散热装置包括一冷却体、一固定于该冷却体上的泵体及一散热单元。
  10. The liquid cooling temperature, the stretching ratio and the stretching temperature were the major factors, which influenced the mechanical properties of the blending monofilaments.
    液体冷却温度、拉伸倍率及拉伸温度是影响共混单丝力学性能的主要因素。
  11. Liquid cooling unit, compression-type, industrial
    液体冷却装置,压缩型工业用
  12. And with innovative technologies like our proprietary Liquid Cooling System and our Vivid Control technology, you'll enjoy bright, clear projected images in virtually any location and environment.
    并且以创新技术喜欢我们私有的液体冷却系统和我们生动的控制技术,您将享用明亮,清除投影图象在实际上所有地点和环境。
  13. Research and development of the low temperature liquid cooling circulator
    低温液体冷却循环器的研究与开发
  14. Forcing liquid cooling for high power devices ( such as klystron) in-radar transmitter is a common cooling method.
    雷达发射机中大功率器件(如速调管)的强迫液体冷却是一种常用的冷却方式。
  15. Based on the analysis of application characteristics, a liquid cooling circulator with higher accuracy of temperature control is designed.
    在分析使用特点的基础上,设计了一种有较高精度的温度控制方式的小型液体冷却循环器。
  16. Configuration Modeling and Simulation of Aircraft Liquid Cooling System Based on Flow Chart
    基于流程图的飞机液冷系统组态建模及仿真
  17. Main contents of the thesis are as follows: Description of the present usage of liquid cooling system, presentation of a new type of liquid cooling system and description of its work principles;
    本文的主要内容如下:对液冷源使用现状进行了描述,提出了一种新型液冷源系统并对其工作原理进行了阐述;
  18. The structure and function are introduced simply about the ventilation system used for EVA ( Extravehicular Activity), the heat transfer process is analyzed among ventilating gas, liquid cooling and ventilation system and environment, and a heat transfer mathematical model of ventilation system is developed.
    简单介绍了舱外航天通风系统的结构、功能,分析了通风气体、液冷通风系统及环境间的换热过程,给出了通风系统传热数学模型。
  19. The paper briefly introduces the application of high Gradient Magnetic Separation technique in the double liquid cooling magnetic cobber as well as its working principle and main technology parameters.
    简述了高梯度磁分离技术在双液冷磁选机上的应用以及双液冷磁选机的工作原理与主要技术参数。
  20. Design on the Vehicle-mounted Radar Liquid Cooling System
    车载雷达液体冷却系统设计
  21. The electronic device cooling which included in the system of vehicle-mounted radar launching was studied, the main technical specifications of the vehicle-mounted liquid cooling system were discussed, its character of thermodynamic and proved its design scheme were analyzed.
    以某车载雷达发射系统中的电子器件冷却为主要研究对象,讨论了车载液体冷却系统的主要技术指标,进行了热力学分析,论证了车载液体冷却系统的设计方案。
  22. Experimental research of the assembled system of liquid cooling system, which yields the system perform parameters of refrigerating capacity and resistance loss in different working conditions.
    利用组装的液冷源系统进行实验研究,得到不同的工况下系统的制冷量、阻力损失等系统性能参数;
  23. Microencapsulated Phase Change Material ( MEPCM) suspension liquid is a coolant with high heat capacity, which can enhance considerably liquid cooling performance.
    相变材料微胶囊(MEPCM)悬浮液是一种高热容冷却介质,其应用可大幅提高高功率设备液体冷却性能。
  24. Through description of the cooling system design for one ground-based radar transmitter, a liquid cooling system design plan for solid-state transmitter is introduced, its thermal analysis is presented, and the key technology of the design is also discussed.
    通过对某地面雷达发射机的冷却系统设计,介绍了固态发射机的液体冷却系统设计方案,进行了热分析,讨论了其中的关键技术。
  25. The relations of temperature and time were obtained, and micro-movement of liquid cooling medium was studied by molecular dynamics.
    依据计算得到的介质温度分布云图和温度随时间的变化规律,利用分子动力学方法研究了水溶液冷却介质在淬火冷却过程中的微观运动规律。
  26. The most common coolants in liquid cooling systems are aqueous solution of propylene glycol, ethylene glycol, methanol and ethanol.
    液冷系统中最常用的载冷剂有丙二醇、乙二醇、甲醇和乙醇的水溶液。
  27. The development of the system provides a low-cost and high accuracy solution to liquid cooling system manufacturing industry.
    该系统的研制为液冷源制造业提供了一条低成本高精度的解决方案。
  28. The article has a great value for the design of electronic equipment liquid cooling system.
    本结论对电子设备液体冷却系统的设计具有很大的参考价值。
  29. The results are shown as following: this liquid cooling system can effectively lower the temperature of the CPU, so compared with the traditional air-cooled and ordinary water cooler, this system has more superior heat dissipation performance.
    并且进行了实际应用测试,结果表明:该液冷散热系统能有效降低CPU运行时的温度,相对于传统的风冷与普通水冷散热器,具有更加优越的散热性能。
  30. Proposed the use of cooling equipment cooling scheme, and the liquid cooling mode in theory calculation, using thermal analysis software for different flow field were analyzed, the optimum design scheme.
    提出了使用液冷进行设备散热的方案,并对液冷散热方式进行理论设计计算,用热分析软件对不同流场形式进行分析,得出了较佳的设计方案。