电磁阀52A型MAC电磁阀低价甩卖DN65281-G1 DC24V, 52A-11-D0A-DM-DDDJ-4KD ,DN20 ,55B-14-PZ-501BA 24VDC ,6311D351-PM-501DA-24VDC DN12 ,
6321D351-PM-501DAN20 ,MVA3B-A-211-PM-XX1JB ,3-ACA-DDFA-1BA ,41A-D0A-DM-DDAA-1BA, DMB-DDAA-1BA ,
4-LAA-DFFJ-3KD, 4-AC1-DDN-1BA, 4-FA2-DABA-2CM ,111B-501-BAAA ,4-FA2-DABA-2CM, PPC5C-ABA-AG,
AB-BBD-IB, 2252B-1210AAA ,225B-121CAAA ,225B-121BAA ,111B-511JB, 116B-121JB, 58D-64-501JA ,250B-501JA,
电磁阀52A型MAC电磁阀低价甩卖161B-501JB ,1668-611 DC24 ,DMB-DDAA-1BA 24V ,166B-611JB, 811-PM-591BA-155 ,811C-PM-591BA-155 ,
421A-D0A-DM-DXXA-EBA,DMB-DJBA-1BA ,461A-D0A-DM-DJBJ, 55B-12-PI-121JA ,56C-13-291JA ,161B-611JD ,
3-ACA-DABA-1BA ,111B-871JB ,111B-611JB ,111B-611JB, 3-SLL-0GAA-EDA, 117B-121JD ,161B-501JB ,
3SA-AAA-DABA-1BA ,4-AC1-DDNA-1BA ,111B-501-BAAA ,34B-ABA-GDFA-1KV ,111B-G115M, 52A-11-AOB-GEMO-1KJ ,116B-611JB , VL18-3F3740, 111B-611JM ,111B-611JM, 3-ACA-DDFA-1BA ,161B-611JD, 4-SC2-DAAJ-1KF ,
4-AA1-DDAJ-1KJ ,411A-D0A-DM-DDAJ-1JB ,52A-11-C0A-DM-DDAJ-1JM, 161B-501JB, MOD2232 DC 24V ,166B-611JA, DMB-DDAA-1BA ,111B-511JB ,3-ACA-DDFA-1BA ,3-ACA-DBFA-1BAB-30LR, PME-691DABE, 166B-611JM ,
CS-10-AS2 ,CS-10-VS2 ,3-ACA-DBAA-EBA, 714C-12-PI-124BA M-07001-01, 3-AAA-DABA-1BA ,
4-BC1-DDFA-1BA-CLSF, 55B-14-PI-611JJ ,411A-D0A-DM-DDFJ-1KJ ,3-AAB-DDAA-1BA, 111B-6115M ,130B-111JA ,130B-112JA ,130B-292JA ,130B-612JA, 916B-PM-611JB+PME-611JB 24VDC ,4-AA1-DDFJ-1JB 24VDC, PID124BAAA ,
44B-ABA-GDFA-1KA ,44C-ABA-GDFA-1KJ, 58D-74G-501JA ,914B-PM-121JD ,411A-B0A-BM-DDFZ-EKZ ,
6211C-000-PM-111DA ,116B-6111B ,116B-611JB PN1.0 DN15, 3-B00-DABJ-1FM ,92B-AAB-HAD-DM-DDAP-1DN,
PPC5B-ACB-AGAA-CAA-10, PPC5C-ABC-EGBA-CAA-AD, 3-SCC-DDAJ-1KA 24DCV ,6323D-311-PM-501DA,
关键词:阀门内漏;实时监测;节能;绩效考核中图分类号:TK262文献标识码:A文章编号:1673-1131(2013)09-0093-02 0前言 随着电力体制改革,面对国家日益严格的节能减排要求,火力发电企业越来越关注发电机组的节能减耗和发电成本的降低。而减少机组阀门泄漏量是其中一个重要的节能减耗手段。 泄漏是火力发电厂中常见的故障之一,尤其是锅炉的四管泄漏问题是火电厂停机的主要故障。目前,大多数发电企业对阀门泄漏定期检测,不仅浪费了大量人力和物力,而且检漏不及时,长期泄漏导致的爆管引发设备及人员安全隐患。 阀门泄漏常用检测方法有基于超声、氦质谱等检漏法,这些检测方法都具有一定的局限性,而基于温度等运行参数的外部检漏法,具有非接触、在线、实时测量等优势。通过创建火电机组阀门综合管理平台,可以给电厂运行人员提供阀门检修、检漏的依据和参考,具有重要意义和广泛的应用前景。 1阀门泄漏判断依据 根据阀后温度测点及系统相关温度、阀门开关状态、机组负荷等参数将阀门泄漏状态划分为正常、轻度泄漏、中度泄露和严重泄漏四种状态。阀门泄漏状态划分具体步骤如下。 1.1前提判断条件 我们系统设定的判断条件一般为:机组负荷大于机组Z低断油稳燃负荷,并且持续24小时。也就是机组正常运行24小时之后才会统计,这样有效地过滤掉非正常运行的冗余数据,更真实地反应实际运行泄漏情况。6323D-611-PM-501DA9 ,6511B-222-PM-501DA9 ,PPC-ABB-AGAA,PPC5C-ABC-FGBA-CAA-AD ,PPC5C-ACB-AGAA-CAA-GB ,PRA1A-ECAA PRA1A-EDAA, 52A-11-AOB-GEMO-IKJ, 44B-ABA-GDFC-1KA ,4-SC2-DDVD-1BA,
811C-PM-501CA-152, M-07001-01 ,6531B-311-PM-611DA, PME-611DABE, 3-AAA-DAAA-1CA, 3-ACA-DABA-1BA ,
4-AA1-DACC-1BA ,3-SAC-DDAA-1BA, 44B-ABA-GDFA-1KA ,3-AAA-DAAA-1BA ,4-AA01-BDFJ-1JB,
916B-PM-611JB+线圈PEM-611JB ,111B-511JA ,225B-121JA ,BOX-3343-AAA-CBFA-1KV,IN-400K3-ACA-DDFJ-1KA,
3-ACA-DDAA-1BA, 225B-120-1ATM-DAAP-1DA/110V ,56C-13-111JM, 82A-AC-BKA-TM-DAAP-1DA ,
82A-AC-BKA-TM-DDAP-1DA ,52A-11-AOB-GM-GEMD-1KA ,34B-ABB-GDFA-1BA, 3-ACA-DDAA-1BA ,4-SA2-DACA-1BA ,4-SA1-DACC-1BA ,55B-12-P1-111JA ,4-AC1-DDNA-1BA ,3-ACA-DDFA-1BA ,911B-PM-111JB ,921B-PM-122JD ,
922B-PM-122JD ,3-SAC-DACA-1BA ,111B-503JD ,MOD44, 225b-111CAAA,250B-611CAAA ,3-AAA-DDAJ-1JD,
52A-11-D08, 6211C-211-PM-501DA ,6221C-513-PM-611DA ,711C-12-PI-611CAGM-GEMC, PID-501BAAA, PID-611CAAA, PME-611DABE ,3-ACA-DDFA-1BA111B-121CAAA ,3-ACA-DCAA-1BA, 413A-D0A-DM-DDDJ-4KD,
52A-11-D0A-DM-DDDJ-4KD, 52A-11-D0C-DM-DDDJ-4KD, 6131D-361-PM-504DA ,413A-DOA-DM-DDDJ-4KD ,
52A-11-D0A-DM-DDDJ-4KD ,52A-11-D0C-DM-DDDJ-4KD。