流体机械
流體機械
류체궤계
FLUID MACHINERY
2015年
7期
82-87,46
,共7页
离心式%永磁同步%变频%直驱%高速电机%双级压缩
離心式%永磁同步%變頻%直驅%高速電機%雙級壓縮
리심식%영자동보%변빈%직구%고속전궤%쌍급압축
centrifugal%permanent-magnetic synchronous%frequency-convertible%directly-driven%high-speed motor%double-stage compression
提升离心式冷水机组的满负荷能效系数(COP)与综合部分负荷能效系数(IPLV),对于我国公共建筑节能具有非常重要的意义。永磁同步变频离心式冷水机组采用了双级压缩中间补气循环、压缩机全工况气动设计、高速电机直接驱动结构、高速大功率永磁同步变频调速电机及相应变频器等关键技术,其循环效率、绝热效率、机械效率、电机效率、变频器效率等均得到大幅提升。实测结果显示,永磁同步变频离心式冷水机组的额定工况 COP 达到7.03,IPLV 达到11.68,部分负荷最高 COP 达到20.30,其性能相对于常规变频离心式冷水机组大幅提高。
提升離心式冷水機組的滿負荷能效繫數(COP)與綜閤部分負荷能效繫數(IPLV),對于我國公共建築節能具有非常重要的意義。永磁同步變頻離心式冷水機組採用瞭雙級壓縮中間補氣循環、壓縮機全工況氣動設計、高速電機直接驅動結構、高速大功率永磁同步變頻調速電機及相應變頻器等關鍵技術,其循環效率、絕熱效率、機械效率、電機效率、變頻器效率等均得到大幅提升。實測結果顯示,永磁同步變頻離心式冷水機組的額定工況 COP 達到7.03,IPLV 達到11.68,部分負荷最高 COP 達到20.30,其性能相對于常規變頻離心式冷水機組大幅提高。
제승리심식랭수궤조적만부하능효계수(COP)여종합부분부하능효계수(IPLV),대우아국공공건축절능구유비상중요적의의。영자동보변빈리심식랭수궤조채용료쌍급압축중간보기순배、압축궤전공황기동설계、고속전궤직접구동결구、고속대공솔영자동보변빈조속전궤급상응변빈기등관건기술,기순배효솔、절열효솔、궤계효솔、전궤효솔、변빈기효솔등균득도대폭제승。실측결과현시,영자동보변빈리심식랭수궤조적액정공황 COP 체도7.03,IPLV 체도11.68,부분부하최고 COP 체도20.30,기성능상대우상규변빈리심식랭수궤조대폭제고。
Improvement of Coefficient of Performance (COP) and Integrated Part Load Value (IPLV) of the centrifugal chiller is highly important for the energy saving of public buildings in China.The Permanent-magnetic Synchronous Frequency-convertible (PSF) centrifugal chiller applies many key technologies,such as the double-stage compression with flash-gas inter-stage suction cycle,the pneumatic design of the compressor under wide-range operation conditions,the directly-driven compressor by high-speed motor,the high-speed large-power PSF motor with corresponding frequency converter etc.The performance indexes of the PSF cen-trifugal chiller,including the cyclic efficiency,isentropic efficiency,mechanic efficiency,motor efficiency and frequency converting efficiency,have been greatly improved.Experimental results of the 1000 RT PSF centrifugal chiller show that the rating COP rea-ches 7.03,the IPLV reaches 11.68,and the maximum part load COP reaches 20.30.The performance of the PSF centrifugal chil-ler is much better than that of a common frequency-convertible centrifugal chiller.