1) incompressible fluid
非压缩性流体
2) flow of incompressible fluid; incompressible flow
非谐压缩性气流
3) fluid compressibility
流体可压缩性
1.
The BEM equation for acoustic analysis in shallow water and the corresponding coupled FEMBEM vibration equation are established,and then the impacts of water depth and the fluid compressibility on the natural frequencies and mode shapes for underwater structures are discussed.
本文首先建立了浅水域声学边界元方程和相应的FEM/BEM耦合振动方程,探讨了水深对结构振动固有频率和振型的影响,流体可压缩性对结构振动固有频率的影响。
2.
The influonce of fluid compressibility on structural vibration in the half_space fluid domain is discussed.
本文探讨了流体可压缩性对半无限流体域中结构振动的影响。
4) viscous compressible fluid
可压缩粘性流体
1.
The adaptive physical model on Coutte Flow based on a motional coordinate is presented,and a solution of a equation for velocity, temperature and rate of heat transfer of a viscous compressible fluid is obtained.
在基于动坐标系的库特剪切流的物理模型上 ,提出了两平板间可压缩粘性流体的温度 ,流速与热流速率间的关联式。
6) incompressibility
非压缩性
补充资料:连续性与非连续性(见间断性与不间断性)
连续性与非连续性(见间断性与不间断性)
continuity and discontinuity
11an父ux泊g四f“山。麻以角g、.连续性与非连续性(c。nt,n琳t:nuity一)_见间断性与不间断性。and diseo红ti-
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