,814 北京科技大学学报 第31卷 表2程潮铁矿矿山应急体系评价指标权重 Table 2 The index combined weight of emergency plans in Chengchao Mine 层次权重 组合权 层次权重 组合权 层次,C 层次,C B1=0.025B2=0.104B3=0.115B4=0.512 重,P B4=0.512B5=0.203B6=0.041 重,P C11 0.315 0.0079 C47 0.084 0.0430 C12 0.153 0.0038 C48 0.037 0.0189 C13 0.532 0.0133 C49 0.026 0.0133 C21 0.571 0.0594 C51 一 0.085 0.0173 C22 0.429 0.0446 C52 一 0.207 0.0420 C31 0.221 0.0254 C53 0.141 0.0286 C32 0.478 0.0550 C5 0.312 一 0.0633 C33 0.301 0.0346 Cs5 一 0.061 0.0124 C41 0.181 0.0927 C56 0.194 0.0394 C42 0.031 0.0159 C61 0.274 0.0112 CAs 0.059 0.0302 C62 0.351 0.0144 0.112 0.0573 C63 0.197 0.0081 C45 0.254 0.1300 C64 0.178 0.0073 0.216 0.1106 表3程潮铁矿应急体系评价结果 Table 3 Evaluation results of an emergency system for Chengchao Mine 评价指标 应急体系 Cu C12 C13 C21 C22 C31 C32 C33 C41 Ca2 C43 CA4 C45 C46 程潮铁矿 95 12060%110 1340.6398 3 140 10.51123 117 89 评价指标 SP 应急体系 C47 Ci8 C49 Cs1 C52 C53 Cst C55 C56 C61 C62 C63 C64 模型 程潮铁矿 0.6 13211260% 3 121 400 300 141 2 131 1262.56 参考文献 lytic hierarchy process.Beijing Univ Posts Telecommun Soc Sci Ed,2001(3):25 [1]ShiP W.Developing scientific monitoring system for prohibiting disastrous accidents in mine.JChina Coal Soc.2002.27(3):225 (李学平。用层次分析法求指标权重的标度方法的探讨.北京 (石平武.发展科学监测体系,制止矿山重大事故.煤炭学报, 邮电大学学报:社会科学版,2001(3):25) 2002,27(3):225) [8]Li Q M,Wang Y H.Liao G L.Study on scientific issue and [2]Hou Y B.Zhang D Z,Feng S H.General alarming system for evaluation method in safety assessment of tailing reservoir.Saf mine Management information systems.J Unis Sci Technol Bei- Sci Technol,2006.2(6):53 jig,2003,25(1).25 (李全明,王云海,廖国礼·尾矿库安全评价中的科学问题及评 (侯运炳,张东站,冯述虎。矿山管理信息系统的通用报警系 价方法探讨.中国安全生产科学技术,2006,2(6):53) 统.北京科技大学学报,2003,25(1):15) [9]Jin IL.Wei Y M.Generalized Intelligent Evaluation Method [3]KoumiotisS P.Kiranoudis CT,Markatos N C.A systemic ap- and Application of the Complex System.Beijing:Science Press. proach to effective chemical emergeney management.Saf Sci, 2008 2001,38(1):49 (金菊良,魏一鸣,复杂系统广义智能评价方法与应用·北京: 4]Jin L.Research on the construction of city emergency response 科学出版社,2008) system of the United States.Planners,2008,24(2):81 [10]Wang S,Zhang L B.System Prediction and Comprehensive (金磊·美国城市公共安全应急体系建设方法研究·规划师, Evaluation.Hefei:Hefei University of Technology Press. 2008,24(2):81) 2006,136 [5]Lentz C.How one emergeney plan works in a complex research (王硕,张礼兵.系统预测与综合评价方法.合肥:合肥工业 facility.JChem Health Saf.2006.13(3):21 大学出版社,2006:136) [6]Li K R.Analysis the question of establishing emergency system in [11]Luo WT.Study of Comprehensive Evaluation about Emergen- China.JSaf Sci Technol,2005.1(5):52 cy Plans in Railway [Dissertation].Beijing:Beijing Jiaotong (李克荣。我国应急体系建设中的问题探讨与对策。中国安全 University,2008:49 生产科学技术,2005,1(5):52) (罗文婷.铁路应急预案综合评价方法研究[学位论文],北 [] Li X P.A study of scaling method to obtain index weight by ana- 京:北京交通大学,2008:49)表2 程潮铁矿矿山应急体系评价指标权重 Table2 The index combined weight of emergency plans in Chengchao Mine 层次C 层次权重 B1=0∙025 B2=0∙104 B3=0∙115 B4=0∙512 组合权 重Pi 层次C 层次权重 B4=0∙512 B5=0∙203 B6=0∙041 组合权 重Pi C11 0∙315 — — — 0∙0079 C47 0∙084 — — 0∙0430 C12 0∙153 — — — 0∙0038 C48 0∙037 — — 0∙0189 C13 0∙532 — — — 0∙0133 C49 0∙026 — — 0∙0133 C21 — 0∙571 — — 0∙0594 C51 — 0∙085 — 0∙0173 C22 — 0∙429 — — 0∙0446 C52 — 0∙207 — 0∙0420 C31 — — 0∙221 — 0∙0254 C53 — 0∙141 — 0∙0286 C32 — — 0∙478 — 0∙0550 C54 — 0∙312 — 0∙0633 C33 — — 0∙301 — 0∙0346 C55 — 0∙061 — 0∙0124 C41 — — — 0∙181 0∙0927 C56 — 0∙194 — 0∙0394 C42 — — — 0∙031 0∙0159 C61 — — 0∙274 0∙0112 C43 — — — 0∙059 0∙0302 C62 — — 0∙351 0∙0144 C44 — — — 0∙112 0∙0573 C63 — — 0∙197 0∙0081 C45 — — — 0∙254 0∙1300 C64 — — 0∙178 0∙0073 C46 — — — 0∙216 0∙1106 表3 程潮铁矿应急体系评价结果 Table3 Evaluation results of an emergency system for Chengchao Mine 应急体系 评价指标 C11 C12 C13 C21 C22 C31 C32 C33 C41 C42 C43 C44 C45 C46 程潮铁矿 95 120 60% 110 134 0∙63 98 3 140 1 0∙51 123 117 89 应急体系 评价指标 C47 C48 C49 C51 C52 C53 C54 C55 C56 C61 C62 C63 C64 SP 模型 程潮铁矿 0∙6 132 112 60% 8 3 121 400 300 141 2 131 126 2∙56 参 考 文 献 [1] Shi P W.Developing scientific monitoring system for prohibiting disastrous accidents in mine.J China Coal Soc200227(3):225 (石平武.发展科学监测体系制止矿山重大事故.煤炭学报 200227(3):225) [2] Hou Y BZhang D ZFeng S H.General alarming system for mine Management information systems.J Univ Sci Technol Beijing200325(1):25 (侯运炳张东站冯述虎.矿山管理信息系统的通用报警系 统.北京科技大学学报200325(1):15) [3] Koumiotis S PKiranoudis C TMarkatos N C.A systemic approach to effective chemical emergency management. Saf Sci 200138(1):49 [4] Jin L.Research on the construction of city emergency response system of the United States.Planners200824(2):81 (金磊.美国城市公共安全应急体系建设方法研究.规划师 200824(2):81) [5] Lentz C.How one emergency plan works in a complex research facility.J Chem Health Saf200613(3):21 [6] Li K R.Analysis the question of establishing emergency system in China.J Saf Sci Technol20051(5):52 (李克荣.我国应急体系建设中的问题探讨与对策.中国安全 生产科学技术20051(5):52) [7] Li X P.A study of scaling method to obtain index weight by analytic hierarchy process.J Beijing Univ Posts Telecommun Soc Sci Ed2001(3):25 (李学平.用层次分析法求指标权重的标度方法的探讨.北京 邮电大学学报:社会科学版2001(3):25) [8] Li Q MWang Y HLiao G L.Study on scientific issue and evaluation method in safety assessment of tailing reservoir.J Saf Sci Technol20062(6):53 (李全明王云海廖国礼.尾矿库安全评价中的科学问题及评 价方法探讨.中国安全生产科学技术20062(6):53) [9] Jin J LWei Y M.Generalized Intelligent Ev aluation Method and Application of the Complex System.Beijing:Science Press 2008 (金菊良魏一鸣.复杂系统广义智能评价方法与应用.北京: 科学出版社2008) [10] Wang SZhang L B.System Prediction and Comp rehensive Ev aluation.Hefei: Hefei University of Technology Press 2006:136 (王硕.张礼兵.系统预测与综合评价方法.合肥:合肥工业 大学出版社2006:136) [11] Luo W T.Study of Comp rehensive Ev aluation about Emergency Plans in Railway [Dissertation ].Beijing:Beijing Jiaotong University2008:49 (罗文婷.铁路应急预案综合评价方法研究 [学位论文].北 京:北京交通大学2008:49) ·814· 北 京 科 技 大 学 学 报 第31卷