中国电机工程学报
中國電機工程學報
중국전궤공정학보
ZHONGGUO DIANJI GONGCHENG XUEBAO
2013年
35期
28-35
,共8页
赵波%杨善让%张纲%张宏宇%张海林%蒋静江%刘志超%王文忠%洪海清%马士全%胡亚才
趙波%楊善讓%張綱%張宏宇%張海林%蔣靜江%劉誌超%王文忠%洪海清%馬士全%鬍亞纔
조파%양선양%장강%장굉우%장해림%장정강%류지초%왕문충%홍해청%마사전%호아재
空冷凝汽器%干式吹扫%灰垢热阻%清洗周期%累计平均背压%发电煤耗
空冷凝汽器%榦式吹掃%灰垢熱阻%清洗週期%纍計平均揹壓%髮電煤耗
공냉응기기%간식취소%회구열조%청세주기%루계평균배압%발전매모
air cooled condenser%compressed air blower%ash fouling resistance%cleaning period%accumulated average exhaust pressure%coal consumption
直冷系统以节水率达69%~84%而在燃煤电站得到广泛应用。但在风沙大的干旱地区,若清洗不及时,空冷凝汽器则因积灰而使排汽背压升高8 kPa甚或以上,机组煤耗因而升高10~15 g/(kW?h),污染排放亦随之增大,而及时清洗所需的水资源又为环境所限。对此,该文设计了一种以压缩空气代替高压除盐水的干式吹扫系统,并在某600 MW直冷机组单排翅片管空冷凝汽器上进行了两种清洗方式的比较实验。文中介绍了干式吹扫系统的构成、实验内容及结果,拟定了吹扫效果评价方法,建立了灰垢热阻与排汽背压的定量关联,并据以比较了干式吹扫与水洗在同一清洗周期内累计清洗效果。结果表明:干式吹扫年节水量为1.47 kg/m2,累计平均背压降低1.7 kPa ,机组发电煤耗降低约2.5g/(kW?h),实现了节水、节能和减排共赢。
直冷繫統以節水率達69%~84%而在燃煤電站得到廣汎應用。但在風沙大的榦旱地區,若清洗不及時,空冷凝汽器則因積灰而使排汽揹壓升高8 kPa甚或以上,機組煤耗因而升高10~15 g/(kW?h),汙染排放亦隨之增大,而及時清洗所需的水資源又為環境所限。對此,該文設計瞭一種以壓縮空氣代替高壓除鹽水的榦式吹掃繫統,併在某600 MW直冷機組單排翅片管空冷凝汽器上進行瞭兩種清洗方式的比較實驗。文中介紹瞭榦式吹掃繫統的構成、實驗內容及結果,擬定瞭吹掃效果評價方法,建立瞭灰垢熱阻與排汽揹壓的定量關聯,併據以比較瞭榦式吹掃與水洗在同一清洗週期內纍計清洗效果。結果錶明:榦式吹掃年節水量為1.47 kg/m2,纍計平均揹壓降低1.7 kPa ,機組髮電煤耗降低約2.5g/(kW?h),實現瞭節水、節能和減排共贏。
직랭계통이절수솔체69%~84%이재연매전참득도엄범응용。단재풍사대적간한지구,약청세불급시,공냉응기기칙인적회이사배기배압승고8 kPa심혹이상,궤조매모인이승고10~15 g/(kW?h),오염배방역수지증대,이급시청세소수적수자원우위배경소한。대차,해문설계료일충이압축공기대체고압제염수적간식취소계통,병재모600 MW직랭궤조단배시편관공냉응기기상진행료량충청세방식적비교실험。문중개소료간식취소계통적구성、실험내용급결과,의정료취소효과평개방법,건립료회구열조여배기배압적정량관련,병거이비교료간식취소여수세재동일청세주기내루계청세효과。결과표명:간식취소년절수량위1.47 kg/m2,루계평균배압강저1.7 kPa ,궤조발전매모강저약2.5g/(kW?h),실현료절수、절능화감배공영。
Direct air cooling (DAC) system has been widely applied in coal-fired power plants for its water-saving rate of 69%~84%. However, in arid regions with large sandstorm, the exhaust pressure of steam turbine will be raised by 8kPa or more because of the ash fouling of air cooled condenser (ACC). If it is not timely cleaned, the coal consumption of unit would elevate above 10~15 g/(kW?h) and the pollution emissions increases in the meantime. But the water consumption for timely cleaning is restricted by environmental conditions. To solve the incompatible contradiction, a novel compressed air blower (CAB) system was designed to clean the ash fouling for ACC in this paper, that is, the compressed air will entirely replace desalted water as cleaning medium for the new system. The main body of this paper includes the basic components of the CAB system, the content and results of a site simulation test (SST) for CAB under multi-operation conditions on an ACC of 600MW DAC unit, the blowing evaluation indexes proposed, and the quantitative correlation between the ash fouling resistance and exhaust pressure obtained by site simulation test data processing, the comparison of accumulated cleaning effects between compressed air blowing and water washing in the same cleaning period etc. The SST results of CAB system show that:the water-saving quantity per year is 1.47 kg/m2;the accumulated average exhaust pressure of steam turbine is reduced by 1.7 kPa and the coal consumption has been reduced by 2.5 g/(kW?h) compared to water washing. That is, the CAB system can accomplish three goals at the same time:water-saving, energy-saving and emission reduction.