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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

  • 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
  • Taking parallelogram shaped tread element as an example, the effect of tread element design on tyre viscous hydroplaning performance was analyzed. The results obtained provide a theoretical basis for anti slip design of the tread element.
    以平行四边形胎面单元为例,分析了胎面单元设计对轮胎粘性滑水性能的影响,为轮胎胎面单元抗湿滑设计提供了理论依据。
  • Part hydroplaning effect on pavement friction coefficient
    部分滑水对路面附着系数的影响
  • Mechanism Analysis of an Aircraft Tire Dynamic Hydroplaning
    机轮动力滑水机理分析
  • Once the partly hydroplaning happens, the friction coefficient between tire and road surface decreases significantly, less experienced drivers are more vulnerable to making misjudgments toward speed and distance during driving and braking, which lead to traffic accidents.
    部分滑水现象一旦发生,使得轮胎与路面的附着系数显著降低,经验不丰富的驾驶员在行车及制动时极易发生对速度和间距的误判,导致交通事故发生。
  • In addition, the water flow state when tire occurred hydroplaning in wet-road was studied in this paper.
    此外,本文还对轮胎在湿滑路面从行驶到发生水滑现象过程中的水流状态进行了研究。
  • 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。
  • Hydroplaning velocity formulas are established respectively when the water film on road is shallow and the water film on road is deep by applying momentum theory.
    应用动量定理,分别建立机轮在水膜较薄和较厚两种情况下的动力滑水临界速度公式。
  • This "waterskiing" on the road is technically called hydroplaning, and it happens when water comes between the road and your tires, causing you to lose traction and go out of control.
    在技术上,这种“路上滑水”称作“湿路打滑”,当路面和轮胎之间有水时,就会发生这种现象,致使车子失去牵引力从而失去控制。
  • 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。