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再附着的英文

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"再附着"怎么读用"再附着"造句

英文翻译手机手机版

  • reattachment

例句与用法

  • The biopsies of bone and muscle were taken at the following intervals : 1 , 2 , 3 months post - operation
    分别在术后1 、 2 、 3个月检测咬肌再附着界面的生物力学变化。
  • The characteristics of the healing muscle to bone interface were examined by biomechanical techniques . [ results ] the biomechanical change of muscle - bone interface was getting stronger gradually during the different period
    结果双侧咬肌下颌骨再附着界面的附着强度随时间延长逐渐增强,实验组与对照组比较差异无显著性。
  • In accordance with different tripping annulus at the inlet , the numerical simulations of the reattachment length were performed with the " variable c ? " model . in the range of experimental reynolds number , the tripping effect on the reattachment length was developed in the figure . the dependence of the reattachment length on reynolds number was also analysed in the different status of pipe flow
    利用变模型常数的-模型针对不同尺寸的挡环进行了再附着长度的模拟计算,在实验雷诺数范围内,建立了入口处挡环对再附着长度影响的变化曲线,分析了再附着长度在不同的管流流动状态下相对于雷诺数的变化情况。
  • The goal of this paper is to study fully developed turbulent pipe flow . with the aid of the tripping annulus at the inlet , based on the experimental investigation and numerical simulation , detailed researches on a few basic rules in pipe flow have been performed , such as mean velocity profile , relative intensity of turbulence , the log - law , von karman ' s constant and reattachment length , thus filling some gaps in the research work of predecessors and obtaining a far - reaching understanding
    本文的目的就是利用入口挡环进一步探索充分发展的圆管湍流,通过实验和数值模拟对圆管湍流的若干基本规律,如平均速度分布、相对湍流强度、对数定律、冯?卡门常数和再附着长度等进行详细的研究,以填补前人研究中的一些空白,并获得更深入的了解。
  • The numerical results under different methods , especially the simulation of recirculation region and reattachment length were carefully checked and compared . it indicated that the " variable c ? " model could effectively increase the dissipation near the wall and , more over improve the simulation of the reattachment length to close to the experimental results . 4
    比较不同修正方法下的圆管湍流计算结果,尤其是回流区域和再附着长度的模拟结果表明:变模型常数的-模型有效地的增加了近壁区域的湍能耗散率,使再附着长度的计算结果更接近于实验结果。
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