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water wheel

英 [ˈwɔːtə(r) wiːl]

美 [ˈwɔːtər wiːl]

n.  水轮

电力

柯林斯词典

  • (水力推动的)水轮,水车
    Awater wheelis a large wheel which is turned by water flowing through it. Water wheels are used to provide power to drive machinery.

    英英释义

    noun

    • a wheel that rotates by direct action of water
        Synonym:waterwheel
      1. a wheel with buckets attached to its rim
          Synonym:waterwheel

        双语例句

        • A water wheel with buckets attached to the rim; used to raise water for transfer to an irrigation channel.
          桶附在边缘上的水车;提高水并把水转向灌渠。
        • The pressure of the water turns this wheel, and this is used to make electric power.
          水压使轮子转动,这种动能被用来发电。
        • Through simulation on velocity modulation system of water wheel generator, indicated control effect of this control mode surpassed the conventional PID control.
          通过对水轮机调速系统进行仿真,表明了该控制方式控制效果优于常规PID控制。
        • A large and efficient version of a water wheel used to drive an electric generator.
          水轮的大的有效率的样式用来驱动发电机。
        • The water wheel, also called rotary wheel, was the best and broadest irrigating tool in ancient China.
          水车,又称翻车,是我国古代使用最广泛、效用最好的农业灌溉机械。
        • In this paper, the saturated synchronous reactance is calculated by the finite element method for the large water wheel type generator with fractional slot stator winding.
          采用有限元法计算了定子为分数槽绕组的大型水轮发电机饱和同步电抗。
        • A channel that feeds water to a mill or water wheel or turbine.
          一种把水输到磨房或水轮或涡轮的渠道。
        • The gaudiest and most improbable water wheel the world has ever seen.
          世界上从未见过的最艳丽、最奇异的水车。
        • This paper takes the thermal deformation research and cooling technology of a large water wheel generator as background, and makes a synthetical calculation of the three dimensional temperature field and the ventilation system of the rotor of an electric machine.
          以大型水轮发电机热变形及冷却技术研究为背景,进行了大型水轮发电机转子三维温度场及电机通风系统的综合计算研究。
        • In the past, when the heating problem of a large water wheel generator was concerned, the temperature field was individually solved regardless of the interactions among thermal source, ventilation structure, temperature and its distribution.
          以往在进行大型水轮发电机发热分析时,都是孤立地求解温度场,而很少考虑热源及通风结构与温度及其分布之间的相互影响。