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hydroplaning

英 [ˈhaɪdrəpleɪnɪŋ]

美 [ˈhaɪdrəpleɪnɪŋ]

n.  水上滑行;滑水现象(指飞机在积水跑道上滑跑时的现象)

双语例句

  • In an early stage, experimental study was performed to understand the hydroplaning behavior of tire.
    早期对轮胎滑水现象的研究采用直接的实验研究方法。
  • Research on Steady-State Rolling Resistance and Hydroplaning of Radial Tire
    子午线轮胎稳态滚动阻力及水滑特性的研究
  • Different preview times correspond to different critical vehicle speeds, and there is an optimal preview time. AN ANALYSIS ON THE CRITICAL SPEED MARKING THE OCCURANCE OF HYDROPLANING FOR WHEELED VEHICLES
    不同的预瞄时间对应不同的临界车速,并且存在一个最佳的预瞄时间。滑水临界车速分析及可能采取的解决措施
  • And according to the fluid mechanics theory, it is obtained the interaction formula between the hydroplaning critical velocity and load.
    并根据流体力学相关理论,得出了水滑临界速度与载荷之间的关系公式。
  • Combined with Lagrange method and Euler method, the General Coupling algorithm is established for the tire hydroplaning analysis.
    本文建立了子午线轮胎三维有限元模型,结合拉格朗日方法和欧拉方法,确立了适用于轮胎水滑分析的一般耦合算法。
  • To reduce the accident of partly hydroplaning by misjudgment, highway management departments 'setting the velocity ( distance) feedback instrument in the steep and dangerous sections of sharp bends combined with Chevron confirmed signs are recommended.
    建议高速公路管理部门在急弯陡坡等危险路段设置车速(间距)反馈仪,并结合车距确认标志对驾驶员进行提醒,以减少由于判断失误而产生的部分滑水事故。
  • Moreover, how the thickness of water film impacts on the hydroplaning critical velocity is analyzed.
    当水膜较厚时充气压力对滑水临界速度已无意义,并讨论了水膜厚度对滑水临界速度的影响。
  • Automobile as an important vehicle has been widely used in the modern society, which will be driven on water or wet toads unavoidably. The car tire at high speed would occur hydroplaning.
    作为重要代步工具的汽车在现代社会中得到广泛的应用,不可避免的会在有积水或者湿滑路面上行驶,这时高速运行的汽车轮胎容易发生水滑现象。
  • Analysis for the Effect of Tread Element on Tyre Viscous Hydroplaning Performance
    胎面单元对轮胎粘性滑水性能影响分析
  • Due to the excellent performances, such as quick drainage, moisture reduction, hydroplaning prevention and low noise, porous pavement has become more and more popular in the construction of HMA pavement.
    排水性沥青路面(PorousPavement)由于其优良的迅速排水、抑制水雾、防止漂滑、降低噪音等性能日益得到工程界的广泛关注,越来越多的应用于工程实践。