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- Improvement of Finned Tube Evaporator Under Frosting Condition 结霜工况下翅片变片距管蒸发器的改进
- finned tube evaporator 翅片管蒸发器
- A new non-chip cutting-press compound shaping technique of fin tube was presented. 提出了一种新的翅片管无屑切削挤压复合成形方法。
- The shaping process of fin tube and the characteristics of the cutting tools were researched in detail. 对翅片的成形过程和加工刀具的特点进行了研究,建立了翅片尺寸的理论模型;
- The air cooler is designed of nullity fin oval stainless steel bellows tube bank replacing conventional fin tube bank. 空气冷却器采用无翅片椭圆不锈钢波纹管管束替代传统的翅片管管束,是空气冷却器设计制造的技术革新。
- Spirally corrugated and sawtooth-shaped fin tube is a high performance condensation heat transfer tube. 螺旋槽锯齿翅片管是一种新型高效冷凝换热管。
- In this paper, the model for the formation of overlap in extrusion_ploughing for outside fin tube is developed. 建立了挤压犁削加工外翅片管过程中飞边的生成模型,给出了产生飞边的判定准则,并对影响飞边产生的因素进行了研究。
- Aluminium tube evaporator is an important component in the cold-producing system of refrigerator, and the Aluminium tube corrosion leakage will cause the system failure. 摘要铝管蒸发器是冰箱制冷系统的重要部件,铝管腐蚀泄漏导致制冷系统不起作用。
- Established the cooler fin tube production Division in the Utsunomiya Plant for expansion of production. 建立了较凉的翅片管的生产部门,在宇都宫厂为扩大生产。
- In this paper, the heat transfer performance of foed convective Condensation and the heat transfer enhancement mechanism on the petal shaped fin tube (PF tube) are studied. 本文研究了花瓣形翅片管(PF管)在水平套管之环形通道内强制对流冷凝的传热性能及传热强化机理。
- A new method of machining integral fin tubes (IFT), chopping extrusion technique, was presented. 提出了一种新的整体翅片管的机械加工方法,即劈切挤压加工。
- basket type vertical tube evaporator 悬筐式蒸发器
- Closed shell and tube evaporator 卧式壳管式蒸发器
- standard vertical tube evaporator 标准竖管蒸发器
- multipass crossfinned tube evaporator 套片式蒸发器
- central circulation tube evaporator [化] 中央循环管式蒸发器
- high frequency welded spiral fin tube 高频焊接螺旋翅片管
- duplex continuous integral fin tube 双金属套片式翅片管
- Present a numerical method to solve Conjugate heat transfer problem of the laminar flow in fin tubes by Combining the boundary clement method in solid regions and Duhamel theory in fluid regions. 本文讨论了在固体区域应用边界元方法(BEM)和在流体区域应用Duhamel理论相结合,求解外肋圆管内层流换热耦合问题的计算方法。