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1)  guided solid
导动体
2)  dynamic conductor
动态导体
1.
Through studies based on characteristics of “dynamic conductor”,this paper has formed a suite of “mise a la masse”detection theories and techniques for underground dynamic conductor,and described the object of their application,the geoelectric model,the technical basis,some detection methods and their preliminary application.
根据“动态导体”的特点开展研究,形成了1 套地下动态导体的充电法探测理论和方法,并就其应用对象和地电模型、技术基础、部分探测方法和初步应用等方面进行了介
2.
It is a simple and practical method to detect the underground dynamic conductor by vertical line source borehole-ground DC method.
利用钻孔金属套管作为线源供电,在地表观察电位探测地下动态导体是一种实用的方法。
3)  moving conductor
运动导体
1.
A novel finite analytic element method for solving eddy current problems of moving conductor;
有限解析单元法求解运动导体涡流场
2.
The governing equation of electromagnetic field in moving conductor is of convectivediffusive type.
运动导体中电磁场控制方程为一对流扩散型微分方程,为克服此类方程的Galerkin有限元解在网格Peclet数大于1时出现的伪振荡同时克服Heinrich迎风有限元法对扩散项处理的不合理性,提出了一种修正的Heinrich迎风有限元法,并应用于若干运动导体电磁场的有限元分析。
4)  Moving superconductor
运动超导体
5)  Fluid-induced vibration
流体诱导振动
1.
The heat-transfer performance of the equipment was enhanced with heat-transfer enhancement technology by fluid-induced vibration.
应用流体诱导振动强化传热技术能够提高该设备的传热性能,而这一设备作为换热设备的一种,传统的传热直管结构的振动不能够被利用,只能够去防止。
6)  Flow-Induced Vibration
流体诱导振动
1.
This paper,inaccordance with the random vibration theory,deals with flow-induced vibrations of heat exchanger tube bundles,establishes the dynamic model of the tube bundles,determines the distribution of the exciting force,obtains the square root and the spectrum density of their random responses.
研究表明,采用随机振动理论可以较好地预测管壳式换热器管束流体诱导振动;纵向流换热器与折流板换热器相比,具有优异的抗振性能。
2.
The effects of different degrees of obliqueness of wavy cylinders on flow-induced vibration suppression on cylindrical structures were experimentally investigated.
提出了一种可减小流体诱导振动的波状圆柱,并对3种不同表面倾斜度的波状圆柱进行了实验研究。
3.
A method of heat transfer enhancement by flow-induced vibration was put forward in this paper, and experiments were performed.
本文提出了流体诱导振动复合强化传热新方法并进行了实验研究,实验结果表明流体诱导的振动与其他方式一样对传热有足够的影响。
补充资料:动体


动体


  纤毛类原生动物纤毛基部的自体复制颗粒。
  
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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