[1]刘爱虢,陈欣,陈保东,等.液化天然气作为航空燃料的发展趋势及特点分析[J].航空动力学报,2016,31(6):1281-1288.
LIU Aiguo, CHEN Xin, CHEN Baodong, et al. Development trend and characteristics of liquefied natural gas as the aviation fuel[J]. Journal of Aerospace Power, 2016, 31(6): 1281-1288.
[2]杨莉娜,韩景宽,王念榕,等.中国LNG接收站的发展形势[J].油气储运,2016,35(11):1148-1153.
YANG Lina, HAN Jingkuan, WANG Nianrong, et al. Development situation of LNG terminals in China[J].Oil & Gas Storage and Transportation, 2016, 35(11): 1148-1153.
[3]王震,薛庆.充分发挥天然气在我国现代能源体系构建中的主力作用—对《天然气发展“十三五”规划》的解读[J].天然气工业,2017, 37(3):1-8.
Wang Zhen, Xue Qing. To fully exert the important role of natural gas in building a modern energy security system in China: An understanding of Chinese National 13th Five-Year Plan for Natural Gas Development[J].Natural Gas Industry, 2017, 37(3): 1-8.
[4]国家能源局石油天然气司.中国天然气发展报告[R].北京:石油工业出版社,2016.
[5]吴策宇,党文义,刘晓龙,等.LNG接收站选址安全距离研究[J].中国安全生产科学技术,2012,8(6):167-172.
WU Ceyu, DANG Wenyi, LIU Xiaolong, et al. Study on the safe distance for siting of LNG receiving terminal[J]. Journal of Safety Science and Technology, 2012, 8(6): 167-172.
[6]刘堃,覃杰,宓宝勇.LNG码头选址探讨[J].水运工程,2012,7(46):77-81.
LIU Kun, QIN Jie, MI Baoyong. Site selection of LNG terminal[J].Port & Waterway Engineering, 2012, 7(46): 77-81.
[7]杨宝龙.基于遗传算法的区域性LNG码头选址研究[D].上海:上海交通大学,2014.
[8]王浩.LNG加气站选址决策研究[D].大连:大连海事大学,2014.
[9]石巍.成品油储备仓库建设选址及经济评价研究[D].杭州:浙江大学,2012
[10]李群,庾付磊.基于组合赋权理想点法的高切坡安全评价[J] .安全与环境学报,2015,15(3):62-65.
LI Qun, YU Fulei, Research on the safety assessment of high-cutting slope in the highway construction based on the combination weighting ideal point method[J].Journal of Safety and Environment, 2015, 15(3): 62-65.
[11]宋杰鲲,张丽波.基于三角模糊熵的信息安全风险评估研究[J].情报理论与实践,2013,36(8):99-104.
SONG Jie kun, ZHANG Li bo, Assessment of information security risk based on fuzzy triangle and entropy analysis[J].Information Studies, 2013, 36(8): 99-104.
[12]郭亚军,易平涛.线性无量纲化方法的性质分析[J].统计研究,2008,25(2):93- 100.
GUO Yajun, YI Pingtao. Character analysis of linear dimensionless methods[J].Statistical research, 2008, 25(2): 93- 100.
[13]王双川,吕瑞强,李德权.基于三角模糊熵的装备维修合同商保障风险评估[J].军械工程学院学报,2016,28(3):13-18.
WANG Shuangchuan, LU Ruiqiang, LI Dequan. Risk assessment of equipment maintenance contractor support based on fuzzy triangle and entropy analysis[J].Journal of Ordnance Engineering College, 2016, 28(3): 13-18.
[14]张星.自然灾害灾情的熵权综合评价模型[J].自然灾害学报,2009,18(6):189-192.
ZHANG Xing. Entropy weight theory-based integrated evaluation model of natural disasters[J].Journal of Natural Disasters, 2009, 18(6): 189-192.
[15]高岩,周德群,刘晨琛,等.基于关联的三角模糊数直觉模糊集成算子及其应用[J].系统工程与实践,2012,32(9):1964-1972.
GAO Yan, ZHOU Dequn, LIU Chenchen,et al. Triangular fuzz-y number intuitionistic fuzzy aggregation operators and their application base on interaction[J].Systems Engineering-Theory & Practice, 2012, 32(9): 1964-1972.
[16]袁良运,赵以贤,宋贤龙.基于三角模糊熵的装备维修合同商评价与选择[J].火力与指挥控制,2013,38(6):85-88.
YUAN Liangyun, ZHAO Yixian, SONG Xian long. Assessment and selection of equipment maintenance contractor support based on fuzzy triangle and entropy analysis[J]. Fire control & command control, 2013, 38(6): 85-88.
[17]孙萍.自然灾害下区域应急物流网络规划研究[D]. 哈尔滨:黑龙江大学,2016.
[18]中交第四航务工程勘察设计院有限公司.漳厦LNG接收站项目码头工程港址比选报告[R].2014.
[1]黄仁东,华正阳.基于理想点法的邻近基坑高层建筑安全性评价[J].中国安全生产科学技术,2014,10(8):162.[doi:10.11731/j.issn.1673-193x.2014.08.029]
HUANG Ren-dong,HUA Zheng-yang.Safety assessment on high-rise adjacent to foundation pit based on ideal point method[J].JOURNAL OF SAFETY SCIENCE AND TECHNOLOGY,2014,10(12):162.[doi:10.11731/j.issn.1673-193x.2014.08.029]