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1)  system energy loss
系统能量损失
2)  energy loss coefficient
能量损失系数
3)  energy losses
能量损失
1.
In this paper,the numerical simulation technique is used to investigating the effect of different swept depth of a turbine last stage blades with forward swept orthogonal designing on the energy losses of the cascades.
采用数值模拟技术详细地研究了不同掠高的某蒸汽轮机末级叶片前掠正交设计对叶栅能量损失的影响。
2.
Analyzed the changing of energy loss in turbine cascade with different backward wedge angles,and achieved the range of the backward wedge angles corresponding of the minimum energy losses on three typical sections in the turbine cascade.
分析了叶栅能量损失系数随不同后楔角的变化,得到了在该涡轮叶栅内对应最小能量损失的3个典型截面上的后楔角的范围。
3.
Analyzed the changing of energy losses coefficient in turbine cascade with different backward curved angles,and achieved the range of the backward curved angles corresponding of the minimum energy losses on three typical sections in the turbine cascade.
分析了叶栅能量损失系数随不同后弯角的变化,得到了在该涡轮叶栅内对应最小能量损失的3个典型截面上的后弯角的范围。
4)  energy loss
能量损失
1.
Effect of flow resistance and energy loss to injection molding products;
流动阻力及能量损失对注射成型制件的影响
2.
Reduction of energy loss by bowed blades;
弯曲叶片降低能量损失的涡动力学机制
3.
Analysis on the energy loss in the flowing process of high pressure water jet;
高压水射流流动过程中能量损失的分析
5)  expended energy
损失能量
6)  system loss
系统损失
1.
Based on the analysis of effects of window functions on signal processing,the system loss for range/velocity transform with Hanning window and azimuth transform with Chebyshev window is analyzed quantitatively.
本文在分析信号处理中加窗影响的基础上 ,针对距离 /速度分选采用汉宁窗、波束形成采用切比雪夫窗的系统 ,定量分析了距离 /速度 /方位分选所产生的系统损失 ,并提出插值处理、双门限检测两种方案以减小此损
补充资料:δ射线能量损失
分子式:
CAS号:

性质:又称δ射线能量损失。指次级电子(又称δ射线)在带电粒子轨迹附近一定范围内损失能量而形成径迹的作用机制。

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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