1)  Diffuser +
扩压器+
2)  Diffuser
扩压器
1.
A new method of improving performance of centrifugal compressor with vaneless diffuser;
离心压缩机无叶扩压器+的改进新方法
2.
Strength analysis of the diffuser by ANSYS FEM software;
基于有限元软件ANSYS的扩压器+强度分析
3.
Calculation of diffuser flow using GAO-YONG turbulence equations;
使用GAO-YONG湍流方程组对扩压器+流动的计算
3)  diffuser body
扩压器体
4)  vaned diffuser
叶片扩压器
1.
On the basis of three dimensional viscous numerical simulation on the internal flow field in the vaned diffuser of a centrifugal compressor,the influence of shaper parameters on the pneumatic performance in low solidity vaned diffuser is compared.
通过对一离心压缩机叶片扩压器+内部流场进行三维粘性数值模拟,对比分析了小稠度扩压器+的主要形状参数对气动性能的影响。
2.
In this paper the Kriging model was applied to the aerodynamic optimization design of the vaned diffuser for a high speed centrifugal compressor.
本文以某高速离心压气机叶片扩压器+为研究对象,采用Kriging模型在设计工况下对其进行气动优化设计,以获取较高的“叶轮+扩压器+”等熵效率,同时保证扩压器+出口静压不降。
3.
An Experimental investigation on the flow fi el d in vaned diffuser of a centrifugal fan has been conducted using Laser Doppler Velocimeter (LDV).
利用激光多普勒测速仪 (LDV)测量了离心风机叶片扩压器+的内部流场。
5)  wedge diffuser
楔型扩压器
6)  vaneless diffuser
无叶扩压器
1.
Hot wire measurement of flow field in vaneless diffuser;
无叶扩压器+内流场的热线测量
2.
Unsteady flows and rotating stall of a low-speed centrifugal compressor were investigated by measuring vaneless diffuser wall static pressure fluctuation and internal flow fields in detail at different small flow fluxes.
对某低速离心压缩机无叶扩压器+壁面静压波动和内部流场进行了详细的试验测量,重点研究了小流量工况下的不稳定流动和旋转失速。
3.
Numerical simulation results of rotating stall flow phenomenon inside a centrifugal compressor with vaneless diffuser by solving three-dimensional Reynolds averaged compressible N-S equations using commerce computational fluid dynamjcs(CFD) software CFX adopting RNG k-ε turbulence model are presented in this paper.
使用商业CFD计算软件CFX求解三维雷诺平均的Navier-Stokes方程组,结合出口气腔模型对某带无叶扩压器+的离心压缩机的旋转失速现象进行数值模拟。
参考词条
补充资料:电容分压器(见分压器)


电容分压器(见分压器)
capacitor voltage dividers

d)onf。日g无en丫oq{电容分压器(eaPaeitor voltage dividers)见分压器。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。