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壁面射流 meaning in Chinese

wall jet

Examples

  1. The last or main injection pulse is set around tdc . when the diesel spray impinging on the combustion wall , the bump around the combustion chamber wall can strip off the wall jet and form a secondary spray in combustion chamber , so the fuel and air can mix well and homogenous
    在主喷射时刻,利用燃烧室壁面的bump迅速剥离壁面射流,在空间形成二次射流,二次射流进入燃烧室空间后,再一次与空气混合,形成相对均匀的稀混合气。
  2. Jet impingement cooling is an advantage method in heat transfer enhancement owing to its extremely high local heat transfer coefficient and simple structure . as regard as the combustor flame tube cooling structure is concerned , the impingement - converse convection - film composite cooling is an effective method , in this composite cooling structure , the impingement cooling problem could be modeled as impingement inside semi - confined channel
    对于冲击-逆向对流-气膜复合冷却的火焰筒结构而言,火焰筒壁面冷气侧的冲击冷却实质上是半封闭通道的冲击冷却,即冲击射流从冲击孔板喷出,冲击到换热靶面后形成壁面射流沿通道单方向流出。
  3. Planar laser induced fluorescence ( plif ) was used to study the spray / wall impinging in constant volume vessel . the experimental result show that when fuel spray impinging on the plane wall , wall jet was formed while fuel impinging on a plane wall with a bump , when the wall jet meet the bump , a secondary jet can be formed . some parameters affecting the secondary spray were studied , including bump height , the secondary impinging distance , impinging distance and injector parameters
    对传统燃烧室和bump燃烧室内燃油空气混合过程进行了对比研究,发现燃油撞壁以后在传统燃烧室壁面形成壁面射流,这一层燃油浓度很高,很难与空气混合,而在bump燃烧室内,壁面射流遇到bump后,会在空间形成二次射流,二次射流进一步能快速与空气充分混合。
  4. It is found that , the heat transfer coefficients in the area after at stagnation point is higher than that of common jetting although the heat transfer coefficients are smaller at stagnation point , and , comparing to common jetting , rotary jetting contributes to the even distribution of heat transfer coefficients near stagnation point
    结果表明,尽管旋转射流的努谢尔特数在驻点附近低于普通射流的努谢尔特数,但在壁面射流区高于普通射流的努谢尔特数。与普通射流相比,旋转射流导致驻点附近区域的换热特性趋于均匀化。

Related Words

  1. 流体射流
  2. 冷气射流
  3. 射流丛
  4. 淹没射流
  5. 燃气射流
  6. 液体射流
  7. 回填射流
  8. 排出射流
  9. 出射流
  10. 流动射流
  11. 壁面区
  12. 壁面热通量
  13. 壁面涂层
  14. 壁面土压
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