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Experimental Analysis of the Performances of Unit Refrigeration Systems Based on Parallel Compressors with Consideration of the Volumetric and Isentropic Efficiency 被引量:8
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作者 Daoming Shen Chao Gui +1 位作者 Jinhong Xia Songtao Xue 《Fluid Dynamics & Materials Processing》 EI 2020年第3期489-500,共12页
The performances of a refrigeration unit relying on compressors working in parallel have been investigated considering the influence of the compressor volumetric efficiency and isentropic efficiency on the compression... The performances of a refrigeration unit relying on compressors working in parallel have been investigated considering the influence of the compressor volumetric efficiency and isentropic efficiency on the compression ratio.Moreover,the following influential factors have been taken into account:evaporation temperature,condensation temperature and compressor suction-exhaust pressure ratio for different opening conditions of the compressor.The following quantities have been selected as the unit performance measurement indicators:refrigeration capacity,energy efficiency ratio(COP),compressor power consumption,and refrigerant flow rate.The experimental results indicate that the system refrigeration capacity and COP decrease with a decrease in evaporation temperature,increase of condensation temperature,and increase in pressure ratio.The refrigerant flow rate increases with the increase in evaporation temperature,decrease in condensing temperature and increase in pressure ratio.The compressor power consumption increases with the increase in condensing temperature and increase in pressure ratio,but is not significantly affected by the evaporation temperature. 展开更多
关键词 Parallel compressor unit evaporation temperature condensation temperature pressure ratio refrigeration capacity energy efficiency ratio(COP)
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Discussion on the Economic Benefits Brought by Energy Saving Optimization of Control System of Large Compressor Unit in Petrochemical Plant
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作者 ZHANG Wenbin 《外文科技期刊数据库(文摘版)工程技术》 2021年第5期157-160,共7页
At present, large centrifugal compressors are widely used in domestic petrochemical plants. This paper describes the control status of compressor control system in domestic petrochemical plants, the optimization schem... At present, large centrifugal compressors are widely used in domestic petrochemical plants. This paper describes the control status of compressor control system in domestic petrochemical plants, the optimization scheme to realize energy-saving control and the economic benefits brought to enterprises after control optimization. 展开更多
关键词 petrochemical plant compressor unit energy saving optimization control economic performance
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Discussion on the Installation and Debugging Method of Large Compressor Control System
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作者 LIU Zhipeng PANG Bo 《外文科技期刊数据库(文摘版)工程技术》 2021年第5期493-494,共3页
Compressor is a large power supply, equipment installation and commissioning and equipment protection plays a very important role. On this basis, this paper introduces the installation of the control system of large c... Compressor is a large power supply, equipment installation and commissioning and equipment protection plays a very important role. On this basis, this paper introduces the installation of the control system of large compressor unit, analyzes the installation and commissioning of large compressor unit system, and comprehensively analyzes the application of commissioning technology in the installation of large compressor unit. 展开更多
关键词 compressor unit Instrument installation DEBUGGING
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贺尔碧格气量无级调节系统在炼油装置应用
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作者 冯东石 《天津化工》 CAS 2023年第S01期182-184,共3页
本文介绍了贺尔碧格公司专门为往复式压缩机开发的液压式气量无级调节系统。它的主要工作原理是计算机即时处理压缩机运行过程中的状态数据,通过液压执行器来实时控制进气阀的开启与关闭时间,实现压缩机排气量0~100%全行程范围无级调节... 本文介绍了贺尔碧格公司专门为往复式压缩机开发的液压式气量无级调节系统。它的主要工作原理是计算机即时处理压缩机运行过程中的状态数据,通过液压执行器来实时控制进气阀的开启与关闭时间,实现压缩机排气量0~100%全行程范围无级调节,从而最大限度节约能源。 展开更多
关键词 CIU(compressor Interface Unit)中间接口单元 液压式气量无级调节 传感器TDC(TopDead Center Sensor)
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A Self-Learning Diagnosis Algorithm Based on Data Clustering
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作者 Dmitry Tretyakov 《Intelligent Control and Automation》 2016年第3期84-92,共9页
The article describes an approach to building a self-learning diagnostic algorithm. The self-learning algorithm creates models of the object under consideration. The models are formed periodically through a certain ti... The article describes an approach to building a self-learning diagnostic algorithm. The self-learning algorithm creates models of the object under consideration. The models are formed periodically through a certain time period. The model includes a set of functions that can describe whole object, or a part of the object, or a specified functionality of the object. Thus, information about fault location can be obtained. During operation of the object the algorithm collects data received from sensors. Then the algorithm creates samples related to steady state operation. Clustering of those samples is used for the functions definition. Values of the functions in the centers of clusters are stored in the computer’s memory. To illustrate the considered approach, its application to the diagnosis of turbomachines is described. 展开更多
关键词 SELF-LEARNING Diagnostics Fault Detection CLUSTERS K-MEANS Turbomachine Gas Turbine Centrifugal Supercharger Gas compressor Unit
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