1)pump/fan泵与风机
1.The paper bases on performance and characteristics of pump/fan, analyzes the relationship between flow quantity, head, power and rotate speed.根据泵与风机在不同工况下运行的性能与特点,分析了变流量运行时,泵与风机流量、扬程(压头)、功率与转速间的关系。
2.This article presents in theory reasons for the interrelationship between the energy saving benefit of variable speed control of pump/fan and the piping back pressure by analysing the change pattern of working parameters of variable speed control of pump/fan with changing piping back pressure.通过分析泵与风机的变速工况参数随管路背压的变化规律 ,从理论上指出了泵与风机变速调节的节能效益与管路背压大小相关的原因。
3.Theoretically points out the reasons for the interrelation of the energy saving benefit of Variable speed control of pump/fan with the piping back pressure by analysing the regularity of change of the working parameters of variable speed control of pump/fan with piping back pressure.通过分析泵与风机的变速工况参数随管路背压的变化规律,从理论上指出了泵与风机变速调节的节能效益与管路背压大小相关的原因。
英文短句/例句
1.Mood Choices for Starting Water Pump and Blower in Salt Making Industry制盐工业水泵与风机起动方式的选择
2.The Simulation Teaching System of Pump and Air Blower Based on 3dsmax and CAXA-solid基于3dsmax和CAXA-solid的泵与风机模拟教学系统
3.Saving Energy and Cleaning Production --On Setting Up the Selective Course of Technology of Energy Saving in Pumps and Fans;节约能源 清洁生产——论选修课《泵与风机节能技术》的开设
4.Create The National Excellent Courses of Distinct Vocational Features--To build " Pump Fan and Fluid Mechanics " courses as an example;打造职业特色鲜明的国家级精品课程——以建设“流体力学泵与风机”课程为例
5.Compare Between Air-cooled Heat Pump and Variable Refrigerant Flow Air-conditioning in the Use of School Office Building风冷热泵与多联机在学校办公楼的应用比较
6.impeller for fans, gas pumps or compressors风扇、气泵或压缩机叶轮
7.Research and outlook on electric motor frequency and rotational speed control of fan and water pump风机、水泵类拖动系统电动机变频调速研究与实践
8.gas compressors and fans泵(液泵除外)、空气或其它气体压缩机及鼓风机
9.Improvement on cooling-air duct of sluicing pump motor in ash pumphouse灰渣泵房冲洗水泵电动机冷却风路的改进
10.Research on Energy Saving of Fan and Pump at 420t/h Boiler;420t/h锅炉风机、水泵节能研究
11.Exploration on the teaching of hydrodynamic pump and fan for high vocational education;高职课程《流体力学泵和风机》教学探讨
12.Application of Inverter in Fan and Water Motor Energy Saving Transformation变频器在风机泵类节能改造中的应用
13.The spray pump should be interlocked with the supply fan.喷水泵应与送风箱相联锁。
14.Balance Point Choosing and Thermo Economic Optimization of Air-source Heat Pump;风冷热泵平衡点选择与热经济学优化
15.Code for construction and acceptance of compressor, fan and pump installation engineering压缩机、风机、泵安装工程施工及验收规范
16.High Efficiency Energy Saving VVCF Method of Operation Motors of Load Fans or Water Pump;风机、水泵类负载电动机的高效节能运行方式
17.Trouble Analysis of the Main Oil Pump in DF4 Type Locomotive and Measures to Prevent东风4型机车主机油泵故障分析及措施
18.Demand of Concrete Pumping Capability and Supply Analysis of Pumping Capability of Concrete Pumps混凝土泵送能力需求与泵送机械的泵送能力供给分析
相关短句/例句
water pump and fan水泵与风机
3)fan and pump风机与水泵
4)pump and fan systems泵与风机系统
5)fluid mechanics & pump and fan流体力学.泵与风机
6)Pump Fan and Fluid Mechanics流体力学泵与风机
1.Create The National Excellent Courses of Distinct Vocational Features——To build " Pump Fan and Fluid Mechanics " courses as an example;打造职业特色鲜明的国家级精品课程——以建设“流体力学泵与风机”课程为例
延伸阅读
风机泵类电控系统风机泵类电控系统electric drive control system for fan and pump 系统和大功率无换向器电动机拖动系统。 (1)变极对数调速拖动系统.这种系统的控制电路简单、占地面积小、维护方便、价格低廉,但系有级调速,一般仅有2档或3档转速。如果将此系统与定子调压或电磁调速电动机结合起来,可以得到既减少转差损耗,又在相当范围内平滑调速的较高效率的拖动系统。 (2)串级调速拖动系统。这种系统适用于烧线转子感应电动机。优点是变流设备容量(转差功率)小,比其他无级调速方案经济;缺点是必须使用绕线转子感应电动机,功率因数低,增加电机损耗,最商转速降低。现已开发出多种改善功率因数的线路.双馈电机可克服一般申级调速的一些缺点,但变流和控制复杂、成本高。 (3)变频调速拖动系统。这是一种理想的拖动系统,且可使用笼型感应电动机(或同步电动机),具有申级调速拖动系统效率高的优点。如采用脉宽调制(PWM)变频调速,还可提高系统的功率因数和减小谙波。晶体管PWM电压型交流一直流一交流变频调速可用于100~200 kw设备,晶闸管电流型交流一直流一交流变频调速可用于几百千瓦至2000 kw大型设备。交流一交流直接变频调速(600r/min以下)可用于几千千瓦以上的特大型设备(同步电动机).这种拖动系统的控制电路复杂,总投资较高,甚至高达电磁调速电动机的4~5倍。 (4)大功率无换向器电动机拖动系统。大功率无换向器电动机(600r/min以上)也可用于几千千瓦以上的特大型设备(同步电动机)。某些特大功率(几万千瓦)的风机和泵,虽不调速,但需变颇起动装里,也可用大功率无换向器电动机拖动。 电控系统图1为典型的双闭环控制晶闸管串级调速的电控系统原理图。如果对转速变化率没有特殊要求,可以采用开环控制系统,图2为一泥砂泵的开环控制串级调速电控系统原理图,电动机采用频敏变阻器起动,起动后转变至申级调速,调速由自整角机组成的移相器进行。由于所要求的调速比一般不大于2:1,故串级调速所采用的晶闸管申级装里的容量一般为电动机功率的30%~50%。图1闭环控制的串级调速电控系统原理图图3为TOSVERT一13oGI变颇调速电控系统原理图。图中包括主电路、各种保护配置、调速控制环节。该系统采用大功率晶体管组成的PWM型逆变器和微处理机编程的正弦波PWM控制,电压和频率同时在逆变器侧加以控制,电流输出波形近似为正弦波。变频调速电控系统除上述PWM型外,还有电压和频率独立控制的交流一直流一交流电压型变频系统和交流一直流一交流电流型变频系统。
