摘要
目前世界各国的竞争优势并不在其防御能力上,而是体现在能源领域内。世界上约45%的能源供应是通过电力。45%通过燃料,余下的10%则是通过非商业或其它各种途径。2007年12月31日,在印度第十计划末期,印度各电厂的总装机容量为132330兆瓦,详情见表一。2006年7月,印度的电能供应情况见表二。
出处
《电器工业》
2009年第6期48-51,共4页
CHINA ELECTRICAL EQUIPMENT INDUSTRY
同被引文献34
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1权衡.印度式经济增长:基于“印度式民主”视角的分析[J].社会科学,2007(7):86-97. 被引量:7
-
2Anshu Bharadwaj, "Nuclear Power in India: The Road Ahead", Report of Center for Study of Science, Technology and Policy (India), Sep. 2008, p.17.
-
3M. V. Ramana, "Nuclear Power in India: Failed Past, Dubious Future", in Henry Sokolski Eds, Gauging US-Indian Strategic Cooperation, Carlisle (America): Strategic Studies Institute of the US Army War College, 2007, p.71.
-
4Anshu Bharadwaj, "Nuclear Power in India: The Road Ahead", Report of Center for Study of Science, Technology and Policy (India), Sep. 2008, p.72.
-
5M. V. Ramana, "Nuclear Power in India: Failed Past, Dubious Future", in Henry Sokolski eds, Gauging US-Indian Strategic Cooperation, Carlisle (America): Strategic Studies Institute of the US Army War College, 2007, p.76.
-
6World Nuclear Association, Report of Nuclear Power in India, June 2011, p.3.
-
7World Nuclear Association, Report of World Nuclear Power Reactors and Uranium Requirements, June 2011, pp. 1-2.
-
8World Nuclear Association, Report of World Nuclear Power Reactors and Uranium Requirements, June 2011, p.2.
-
9印度电力部网站:http://powermin.nic.in/JSP_SERVLETS/internal.jsp.
-
10British Petroleum, Statistical Review of World Energy, June 2011, p.41.
-
1郭学艳,李字芹.加强继电保护提高互联电网安全防御能力[J].科技与企业,2015,0(21):107-107. 被引量:2
-
2罗兴忠.加强继电保护与紧急控制系统的研究提高互联电网安全防御能力[J].低碳世界,2013(07X):49-50. 被引量:4
-
3陈颖瑜.智能电网调度运行的关键技术分析[J].科技创新与应用,2014,4(35):179-179. 被引量:5
-
4苗雁华,赵守庭.100t电炉电力系统[J].电气传动自动化,2000,22(6):21-23.
-
5核电厂事件如何分级?[J].江苏电机工程,2011,30(3):10-10.
-
6杨栋华.小议如何提高配网供电可靠性[J].才智,2010,0(26):267-267.
-
7韩亮.提高配网供电可靠性的几个技术问题[J].四川电力技术,2002,25(2):54-57. 被引量:11
-
8应百川.变压器节能途径和潜力的分析评估(上)[J].节能,1992,11(4):4-7. 被引量:3
-
9陈凯,甄旭锋.加强电网安全防御能力的若干建议[J].中国电力教育(下),2011(11):78-79.
-
10熊炜.浅谈接地装置型式选择及设计优化[J].低碳世界,2016,6(27):62-63.