1.
Study on the Transient Process of Power Station by Impulse Turbine;
冲击式水轮机电站系统水力过渡过程研究
2.
Research on Structure Analysis and Design Optimum of Distributing Pipe of Impulse Turbine in Hydropower Stations
冲击式水轮机配水环管结构分析与设计优化
3.
Brief Introduction of Mathematical Model for Pelton Wheel Y-Pipe Structure
冲击式水轮机三叉管结构的数学模型简介
4.
Study on Internal Flow Simulation and Performance of Pelton Turbine;
冲击式水轮机内部流动数值模拟及性能研究
5.
FSI Calculation and Analysis of Nozzle System in Pelton Turbine
冲击式水轮机喷嘴系统流—固耦合计算与分析
6.
Three Dimension Modeling and Strength Analysis of Multi-jet Turbine;
多喷嘴冲击式水轮机转轮的三维建模与强度分析
7.
Quality control and installation of intake pipe and nozzle for 30 MW vertical impulse turbine with 4 nozzles
广西南山30MW立轴4喷嘴冲击式水轮机进水管及喷嘴的安装与质量控制
8.
This article introduces mathematical model and its application of Pelton wheel Y-pipe structure. Then the author puts forward an idea of parametrization design.
介绍冲击式水轮机三叉管结构的数学模型及其应用,提出了“参数化设计”的设想。
9.
Study on the speed governor control and special operation issues of large-size multi-jet projectile hydro-turbine unit
多喷嘴冲击式大型水轮机组的调速器控制与特殊工况运行问题研究
10.
Research on Simulation of Military Wheel-equipment Railway Transportation Impact Test by SIMPACK
基于SIMPACK的轮式装备铁路冲击试验仿真研究
11.
Cavitation pitting evaluation in reaction hydraulic turbines
GB/T15469-1995反击式水轮机空蚀评定
12.
Research on AC-excited Control System for High-head Impulse Turbine Generator Set
高水头冲击水轮发电机组交流励磁控制系统研究
13.
integrally-forged impulse wheel
(涡轮机) 整锻冲动式转轮
14.
The Design and Development of a Sealed Water-level Controller Case for Surge-watered Dust Collector
冲击水浴除尘器密闭式水位控制箱的研制
15.
Pacific Valves can provide either impact handwheels or clampon hammer blow handwheel adapters.
美国太平洋阀门公司即可提供冲击手轮,也可提供夹紧式锤击手轮接合器。
16.
The Research on Exploiting the Software Package for Type-selection Design of Reaction Turbine;
反击式水轮机选型设计软件的开发研究
17.
The most economical mechanism for tight shutoff is the impactor handwheel.
要做到紧密关闭,最经济的机械装置就是冲击式手轮。
18.
Axial flow type and ballistic type. The speed of impeller depends on the speed of wind.
叶轮有两种:轴流式、冲击式。叶轮受到大小不同的风力就有不同的转速。