期刊文献+
共找到7篇文章
< 1 >
每页显示 20 50 100
橡胶行业气动节能技术的改造应用
1
作者 刘伟冬 《技术与市场》 2016年第12期5-7,11,共4页
为了降低橡胶行业的能耗,通过对气动节能技术相关原理的应用,针对某橡胶厂压缩空气的使用现状,运用高压风机代替压缩空气喷吹、分压供气、空气压缩机变频控制等方法进行节能改造,并给出部分具体改造方案。结果显示,通过改造,节能效果改... 为了降低橡胶行业的能耗,通过对气动节能技术相关原理的应用,针对某橡胶厂压缩空气的使用现状,运用高压风机代替压缩空气喷吹、分压供气、空气压缩机变频控制等方法进行节能改造,并给出部分具体改造方案。结果显示,通过改造,节能效果改善明显。 展开更多
关键词 气动节能 压缩空气 改造
下载PDF
轮胎行业气动节能技术 被引量:2
2
作者 袁仲雪 《橡胶工业》 CAS 北大核心 2008年第1期44-47,共4页
介绍压缩空气成本计算方法,分析国内轮胎行业压缩空气使用现状,提出降低空气压缩机输出压力、合理分配空气压缩机开关机状态、检查管道泄漏和降低空气压缩机待机能耗等节能措施。轮胎企业采取气动节能技术可节能40%~50%。
关键词 轮胎 气动节能技术 压缩空气
下载PDF
面向压缩机群控制的新型节能智能控制器的研究 被引量:20
3
作者 张业明 蔡茂林 《液压气动与密封》 2008年第5期14-18,共5页
基于生产企业对气动系统逐步加大节能措施的现状,首次提出了基于流量供给的气动节能理念,将传统的压缩机压力控制方式转变为流量供给控制方式,分析了当前压缩机控制的3种方式和发展情况,阐述了基于流量供给的气动节能理论原理,研究了面... 基于生产企业对气动系统逐步加大节能措施的现状,首次提出了基于流量供给的气动节能理念,将传统的压缩机压力控制方式转变为流量供给控制方式,分析了当前压缩机控制的3种方式和发展情况,阐述了基于流量供给的气动节能理论原理,研究了面向压缩机群控制的新型节能智能控制器的流量控制、台数控制、预测控制和学习控制4个功能,并分析了各功能之间的关系,最后给出了智能控制器的软件结构以及硬件结构。 展开更多
关键词 气动节能 流量供给 智能控制器 预测控制 学习控制
下载PDF
压缩空气动力应用的发展现状及展望 被引量:20
4
作者 贾光政 王宣银 吴根茂 《中国机械工程》 EI CAS CSCD 北大核心 2004年第13期1190-1194,共5页
提出压缩空气不仅可以作为工作介质 ,而且可以储存能量作为一种动力源。阐述了常规气动伺服控制系统研究的现状 ,认为以PWM和PCM调制方式为主的开关伺服控制技术仍然是研究的热点。说明了气动系统节能必须重视压缩空气生产、处理、储存... 提出压缩空气不仅可以作为工作介质 ,而且可以储存能量作为一种动力源。阐述了常规气动伺服控制系统研究的现状 ,认为以PWM和PCM调制方式为主的开关伺服控制技术仍然是研究的热点。说明了气动系统节能必须重视压缩空气生产、处理、储存、分配与控制等各个环节 ,并需根据具体情况采取合适的节能技术和方法。综述了高压气动系统和元件的研究概况 ,指出高压化是气动系统发展的一个方向。提出绿色气动动力系统 。 展开更多
关键词 压缩空气 气动伺服控制 节能气动系统 高压气动系统 绿色气动动力系统
下载PDF
Development of High Efficiency Swing Compressor for R32 Refrigerant 被引量:1
5
作者 Yuuichi Yamamoto Takehiro Kanayama +1 位作者 Kenichi Yuasa Hideki Matsua 《Journal of Energy and Power Engineering》 2015年第2期161-165,共5页
In the age of global warming, energy saving features and overall reduction of environmental impact are critical components that must be addressed when developing new HVAC (heating ventilation and air conditioning) u... In the age of global warming, energy saving features and overall reduction of environmental impact are critical components that must be addressed when developing new HVAC (heating ventilation and air conditioning) units. We chose R32 refrigerant, with its lower LCCP (life cycle climate performance) as a more sustainable choice than R410A. However, R32 has its drawbacks. Due to its smaller molecular weight, internal leakage loss is higher for R32. Moreover, high discharge gas temperature decreases the reliability of the compressor, and makes a large overheating loss increase. In this study, we will describe the technologies (reducing the piston pressurizing force, heat-insulating structure, optimizing the port diameter) that were developed to overcome these drawbacks. We will also oresent the performance and reliability of the newly develoned high efficiency swing, comnressor series for R32 refrigerant. 展开更多
关键词 GWP(global warming potential) R32 refrigerant rotary compressor swing type compressor discharge gas temperature.
下载PDF
Evaluation of the Thermodynamic Performance of the Traditional Passive Systems
6
作者 Antonio De Vecchi Simona Colajanni +2 位作者 Annalisa Lanza Volpe Miriam Noto Annalisa Palermo 《Journal of Energy and Power Engineering》 2013年第5期850-857,共8页
The energy consumption of buildings in urban areas is one of the greatest source of energy wasting and, consequently, ofincreasing of CO2 emission. Research is currently focused on the reduction of this consumption th... The energy consumption of buildings in urban areas is one of the greatest source of energy wasting and, consequently, ofincreasing of CO2 emission. Research is currently focused on the reduction of this consumption through the use of passive air-conditioning systems, that can be integrated with conventional systems and give rise to the so-called hybrid systems. Historically, these passive systems were developed in the Mediterranean and Middle East area. The research approach on this topic involves the application of design strategies and the development of computational tools and control systems. The development of the hybrid systems is the result of the synergy between current scientific knowledge, advanced manufacturing and information technology. In this study, a modular housing system has been investigated under different conditions. Simulations have been repeated, in order to identify the configuration that provides the highest indoor comfort. The analysis of the different conditions has been carried out using a CFD (computational fluid dynamic) software. The paper shows the results developed by the Dipartimento di Architettura of the Universit^t di Palermo in the analysis of the natural ventilation effect on the indoor comfort. 展开更多
关键词 BUILDING CFD simulation passive systems energy saving.
下载PDF
Seat tightness of pneumatic cryogenic control valve 被引量:2
7
作者 ZHANG Ning LI Qiang +2 位作者 LI Qing HU ZhongJun HU Kang 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第8期2066-2069,共4页
Pneumatic cryogenic control valves(PCCV)are designed to meet the special requirements for the large cryogenic helium refrigeration system.Polychlorotrifluoroethylene(PCTFE)is adopted as the flat seal material of the v... Pneumatic cryogenic control valves(PCCV)are designed to meet the special requirements for the large cryogenic helium refrigeration system.Polychlorotrifluoroethylene(PCTFE)is adopted as the flat seal material of the valve seat.The leakage rates and compressive strain of the PCTFE gasket with different sealing stress are tested at both room temperature(293 K)and liquid nitrogen temperature(77 K).After 300 open/close cycles,the experimental results show that the sealing properties of the PCTFE gasket are improved.The leakage rates are about 10-8(293 K)and 10-4(77 K)Pam3 s-1 respectively.Finally,the effects of working pressure on sealing characteristics are discussed.The working pressure has little effect on compressive strain but it has a great influence on leakage rate.The leakage rate is linear with the working pressure of inlet at room temperature,but at liquid nitrogen temperature the leakage rate is linear with the square of the working pressure. 展开更多
关键词 leakage rate PCTFE pneumatic cryogenic control valve cryogenic system
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部