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1)  electrostatic agglomeration
静电凝聚
1.
It may be stated into two main parts:the one is the so called "gradient force" due to the gradient of electrical intensity on the polarized particles as well as its behavours, the other is the electrostatic agglomeration of the polarized particles in the electrical.
先分析了极化尘粒在均匀场和非均匀场中受到的梯度力情况,然后分析了极化尘粒在均匀和非均力场中的静电凝聚行为。
2)  static condensation
静力凝聚
1.
By applying a top-down hierarchical bipartite method,the interior degrees of freedom(DOF)are eliminated through static condensation.
将1个杆件当作1个逐级派生的子结构,自顶向下逐级派生,使用静力凝聚方法,消除内部自由度,建立了几何非线性刚度矩阵的递推格式,自底向上逐级递推凝聚。
2.
Starting from the basic equations of static condensation,the algorithm is available to calculate the rotational response in accordance to structural displacement data by solving the generalized inverse matrix.
该算法从静力凝聚的基本方程出发,求解广义逆矩阵,由结构的位移测量信息计算结构的转角信息。
3.
Firstly,a static condensation technique is used to simplify the frame structure to a stick model with lumped mass at each floor level,and the degrees of freedom are reduced greatly in the process of structural analysis.
首先利用静力凝聚方法大幅度地缩减结构的自由度数目,形成一维链状模型,使得结构运动方程中只包含各层反应从而大大降低计算工作量。
3)  Static condense
静凝聚
4)  electrostatic coagulation
静电凝并
5)  static condensation method
静力凝聚法
1.
The using of static condensation method eliminated the coupling of the horizontal and vertical displacements and the rotational displacements.
将空间框架简化为平面框架,采用平面梁模型,建立结构自由振动的微分方程,采用静力凝聚法消去主副自由度之间的耦合关系,得到平面框架结构体系考虑水平和竖向耦合自由振动的振型和频率。
6)  electrostatic coalescence
静电聚结
1.
To find the coalescing properties of water-in-oil emulsion in high voltage electric field,the rules of electrostatic coalescence and movement characteristics of droplets in high voltage electric field were studied to reduce the emulsion breaking mechanism of AC field.
为了发现油包水乳状液在高压交流电场中静电聚结特性,对液滴在电场中的运动规律进行了分析,得出了交流电的破乳机理。
补充资料:BCS凝聚能(BCScondensationenergy)
BCS凝聚能(BCScondensationenergy)

一般将T=0K时的超导基态能量Es(0)与正常态费米球分布能量En(0)之差称BCS凝聚能。由BCS理论给出:

Es(0)-En(0)=-N(0)Δ2(0)/2

由此可知,Es(0)<En(0),能隙2Δ(0)的出现,系统将从正常态转入超导态而发生超导相变。

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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