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1)  dissipation rate
耗散速率
2)  dissipation ratio
耗散率
1.
A new model_based method for structural damage detection,which is based on the theory of dissipation ratio of modal strain energy,is put forward.
本文提出了基于模态应变能耗散率理论的一种新的结构损伤识别方法。
3)  loss ratio
耗散率
1.
Some characteristic-s of fractional calculus model for viscoelastic materials, such as storage modulus, loss modulus, loss ratio and some damping proprieties of fractional calculus model viscoelastic materials are discussed.
 从分数导数的性质出发,讨论具有分数导数型本构关系的黏弹性材料的储能柔量、耗散柔量、耗散率、内摩擦角等参量随角频率的变化规律,分析具有分数导数型本构关系的黏弹性材料的一些阻尼特性。
2.
The damping performances such as storage modulus, loss modulus, loss ratio and so on of fractional Maxwell model ware investigated in detail.
运用分数代数及本构理论 ,讨论了具有分数代数Maxwell本构关系的粘弹性材料的储能柔量、耗散柔量、耗散率、内摩擦角等参量随频率的变化规律 ,分析了具有分数导数Maxwell本构关系的粘弹性材料的一些阻尼特性。
4)  Dissipation power
耗散功率
1.
The result showed that the conductivity of NR compound filled with super conductive black was significantly better than that of NR compound filled with acetylene black; the appropriate loading level of the super conductive black was 30 phr; the AC resistance of the conductive NR compound was lower than its DC resistance i the dissipation power wh.
结果表明;填充高导电炭黑的天然橡胶的导电性能明显优于填充乙炔炭黑的天然橡胶,高导电炭黑的适宜填充量为30份;导电天然橡胶交流电阻低于直流电阻;导致导电天然橡胶受热迅速破坏的耗散功率为20—30W,高导电炭黑天然橡胶正常使用的耗散功率不宜超过4W。
5)  Power dissipation
功率耗散
1.
It was found that different transitions which were related with the electrical power dissipation took place in the course of increase in rf power and gas flow rate respectively.
发现在放电射频功率增加和反应气体流量升高的过程中 ,其等离子体状态分别发生性质不同的转变 ,这种转变联系到射频功率耗散机制的变化。
6)  dissipation rate
耗散率
1.
The turbulent data obtained from Damxung site during TIPEX in 1998 were used to study the characteristics of dissipation rates of turbulent kinetic energy, temperature variance and humidity variance in the middle area of Tibetan Plateau.
利用 1 998年第 2次青藏高原气象科学实验 (TIPEX)当雄地区观测站的湍流资料 ,分析了青藏高原中部地区湍流动能、温度脉动和湿度脉动耗散率的特征规律。
2.
Experimental investigations were devoted to the study of scaling exponent of coarse-grained dissipation rate structure function for velocity and temperature fluctuation in a turbulent boundary layer at moderate Reynolds number.
对中等雷诺数下壁面常温和壁面加热的平板湍流边界层中速度和温度粗粒化的耗散率结构函数标度指数进行了实验测量· 用热线风速仪测量了风洞中壁面常温和加热的平板湍流边界层中不同法向位置的流向速度分量和温度的时间序列信号 ,研究了由于湍流边界层近壁区域相干结构的存在而导致的非各向同性、非均匀性对湍流耗散率结构函数标度指数的影响 ,研究发现 ,中等雷诺数下壁面加热的边界条件和剪切湍流的平均速度梯度对速度和温度耗散率结构函数的标度指数没有影响 ,均匀各向同性湍流的耗散率结构函数标度指数的层次结构模型对壁面加热平板湍流边界层的速度和温度耗散率结构函数的标度指数也是适用的
3.
By applying the theory of wave energy dissipation rate and combining with.
应用波动能量耗散率理论,并结合孤立波理论的有关公式,作者推导了计算动床海滩上破碎指标r_b的公式,并进而给出破碎水深h_b与破碎波高H_b的计算公式。
补充资料:电导率(见电阻率)


电导率(见电阻率)
conductivity

d!日nd日O}已电导率(eonduetivity)见电阻率。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条