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1)  kinetic energy density
动能密度
1.
Improved kinetic energy density based structural damage detection
基于动能密度的结构损伤识别
2.
A two-step damage identification method of cracked beams is proposed based on the kinetic energy density and the bending spring model.
基于动能密度和弯曲弹簧模型,提出了裂纹梁损伤识别两步法。
3.
Among the many minima of the time rate change of kinetic energy density with time, the minimum with reference to the space coordinates is postulated to coincide with the location of fluid detachment from the solid surface.
在空间场中动能密度的时间变化率有许多极小值,定义流动分离发生在其最小值处。
2)  gravitational field/energy momentum tensor density
引力场/能动张量密度
3)  sound energy density
声能密度
1.
The linear differential equations are set up and the solutions of the equations are founded in order to get two sound energy density formulas.
从能量守恒定律出发,假定舞台空间及观众厅空间均系完全扩散的声场,建立线性微分方程组并求解之,即得到分别求两个空间声能密度的公式,将两个公式适当变形,即得到分别求舞台空间及观众厅空间的声衰变方程,并用相关资料发表的实测数据对理论计算结果进行了印证,其误差范围在工程许可的范围内。
4)  energy storage density
储能密度
1.
Study on the inner electrode of the high energy storage density glass-ceramic capacitors;
高储能密度玻璃-陶瓷电容器内电极的研究
2.
Composite dielectric materials for capacitors of high energy storage density has been studied.
对高储能密度电容器复合介质材料作了研究。
3.
La doped PbZrO_3 have it energy storage density high at 14.
9J/cm~3的储能密度,Nb掺杂的富Zr反铁电Pb(Zr,Sn,Ti)O_3[PZST]的电滞回线显示出比La掺杂的PZST具有更好的矩形特征。
5)  energy density
能量密度
1.
Numerical simulation of effect of different energy density on inertia friction welding process;
不同能量密度的环件惯性摩擦焊接过程数值模拟
2.
Electromagnetic energy density in a left-handed material;
左手物质中的电磁能量密度
3.
A simplified method for solving energy density of rods and beams;
杆、梁结构振动能量密度的简化解法
6)  energy density
储能密度
1.
The use of advanced carbon- fiber composite on a flywheelrotorresultsin notonly the in- crease of energy density by increasing the rotating speed when the outerdiameterand massare fixed, butalso solution of the fracture problem of the flywheel rotor.
高速旋转的飞轮在给定外径和质量的情况下 ,轮缘采用先进的碳纤维缠绕 ,提高飞轮的转速 ,从而增大飞轮的储能密度 ,解决了飞轮轮缘因高速旋转而断裂破坏的问题。
2.
The influence of the factors such as the material, configuration,connection and facture technics of rotor on the energy density is analyzed.
分析了转子材料、结构、连接及制作工艺等因素对储能密度的影响,分析结果表明:复合材料轮缘内外径比值α是影响其储能密度的关键,根据轮缘材料选取合理值,对轮毂进行优化可以进一步提高转子的储能密度。
3.
The energy density of two kinds of capacitors is over 500J/L.
 电容器是脉冲功率设备的重要储能元件,提高电容器的储能密度能有效地减小脉冲电源的体积。
补充资料:非密度制约因素(见密度制约因素)


非密度制约因素(见密度制约因素)


  l焦非密度制约因素见生态因素、密度制约后
  
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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