多级压缩机
- 网络Multi-stage compressor;MCompr
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对于多级压缩机应采用两级诊断方案等观点。
The method of two step diagnosis should be adopted for the multistage compressor .
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基于粗糙集与模糊神经网络的多级压缩机诊断
Fault Diagnosis of the Reciprocating Compressor Based on Integrated Rough Sets and Fuzzy Neural Network
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多级压缩机压力比与气阀结构参数的优化
The optimization of the pressure ratios and the valves designing parameters of a multi stage compressor
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因此,多级压缩机的动叶设计应对来流的不均匀性加以充分考虑。
The design of rotating impeller of multistage centrifugal compressor should fully take into account the upstream flow distortion .
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为解决多级往复式压缩机故障诊断这一复杂问题,提出了一种基于智能互补融合的智能诊断策。
Fault diagnosis of the multilevel reciprocating compressor is very complex .
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多级往复式压缩机切换方案的确定与实施
Determination and practice of diverted plan for multistage reciprocating compressor
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多级离心压缩机级内叶轮参数的优化
Optimization of Parameters in Impeller of Multistage Centrifugal Compressor
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葛洲坝二号船闸人字门启闭机四杆机构的最优设计问题多工况多级离心压缩机总体优化命题的建模与数值方法
Modeling and Numerical method of Optimal Design Problem for Multistage Centrifugal Compressors on Multi-design Points
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在简要阐述压缩机喘振区域及限制流量防喘振控制算法的基础上,着重介绍了单回路可编程调节器(SLPC)在多级离心式压缩机防喘振控制系统中的应用及其取得的效果。
On the basis of brief description of surge area of compressor and flow limited anti-surge control algorithm , the application of single loop programmable controller ( SLPC ) in anti-surge control system for multiple stages centrifugal compressor and the applicable effects are emphasized .
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多级活塞式压缩机热力计算的新方法
A New Method for Thermodynamic Calculation of Multistage Reciprocating Compressor
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多级轴流压缩机总体性能预测模型的建立及其优化
Predicting Model for Overall Performance of Multistage Axial-Flow Compressors and Its Application
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针对低、高压轴流送风机及多级轴流压缩机在低流量区域的失速喘振特性及其预防措施进行了分析。
The stall surging characteristic and its prevention measure are analysed with focus on low-pressure axial fan 、 high-pressure axial fan and mutiple-stage axial compressor .
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本文从多级活塞式压缩机基本热力过程分析入手,得出了多级活塞式压缩机变工况运行的热力复算新方法。
This paper deduced the new thermodynamic check calculating method of multi-stage reciprocating compressor by analysis the basic thermodynamic process when they are operating under the variable conditions .