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Power Generation in China: Research, Policy and Management [Kietas viršelis]

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  • Formatas: Hardback, 218 pages, aukštis x plotis x storis: 244x169x14 mm, weight: 333 g
  • Serija: China Global Environment Series
  • Išleidimo metai: 30-Mar-2013
  • Leidėjas: Paths International Ltd
  • ISBN-10: 1844643352
  • ISBN-13: 9781844643356
Kitos knygos pagal šią temą:
  • Formatas: Hardback, 218 pages, aukštis x plotis x storis: 244x169x14 mm, weight: 333 g
  • Serija: China Global Environment Series
  • Išleidimo metai: 30-Mar-2013
  • Leidėjas: Paths International Ltd
  • ISBN-10: 1844643352
  • ISBN-13: 9781844643356
Kitos knygos pagal šią temą:
In an effort to promote a host of energy efficiency, conservation, pollution-mitigation, and development goals, the Chinese government's Office of State Council issued the "Regulation on Energy Conservation Power Generation Dispatching" in August of 2007, which led to the implementation of power generation scheduling reform in the form of five pilot programs in the provinces of Guangdong, Guizhou, Henan, Jiangsu, and Sichuan. This volume provides an evaluative analysis of these pilot programs, addressing the management system of energy-efficient power generation scheduling, power market reforms, the interaction between power price and energy-efficient power generation scheduling, environmental protection, cost efficiency analysis, and policy suggestions for improvement. Annotation ©2013 Book News, Inc., Portland, OR (booknews.com)

A timely new book that examines the reform of China's vast power generation network and future energy-efficiency and environmental policies. Coal used for power generation accounts for 54% of China's sulphur dioxide emissions. In 2009, electricity generation consumed 50gce more coal than the international advanced level, which means 180 million tons of standard coal equivalent was over consumed in that year (3681.2 billion kWh). In 2009, the line loss rate of PRC's power grid reached to 6.49%, this is 1% higher than the world's advanced level. More than 30 billion KWh of electricity was lost, equal to 10.2 million tons of coal. These are huge losses. In order to improve China's energy efficiency and reduce reduce pollution, the Office of State Council issued the hugely significant Regulation on Energy Conservation Power Generation Dispatching. Five Chinese provinces piloted the new regulations and this fascinating book examines these pilot studies and subsequent reforms - the effects of these regulations are now being felt across China's vast network of power generators. It offers deep analysis alongside several significant conclusions and policy suggestions that will enable China to make significant reductions in energy consumption and help cut emissions.

A timely new book that examines the reform of China's vast power generation network and future energy-efficiency and environmental policies. It offers deep analysis alongside several significant conclusions and policy suggestions that will enable China to make significant reductions in energy consumption and help cut emissions.
1 The Significance and Content of Energy-Efficient Power Generation Scheduling
1(17)
1.1 The significance of energy-efficient power generation scheduling
1(5)
1.1.1 Energy-efficient power generation scheduling: to reduce coal consumption for power generation
1(3)
1.1.2 Energy-efficient power generation scheduling: further optimization of power structure
4(1)
1.1.3 Energy-efficient power generation scheduling: the way of reduction in air pollutants emissions
5(1)
1.2 Primary approach of energy-efficient power generation scheduling
6(5)
1.2.1 Related regulations on energy-efficient power generation scheduling
6(1)
1.2.2 Sorting method of energy-efficient power generation scheduling
7(3)
1.2.3 Basic procedure of energy-efficient power generation scheduling
10(1)
1.3 Characteristics and impacts of energy-efficient power generation scheduling
11(7)
1.3.1 Evolution of the power scheduling system in the PRC
11(2)
1.3.2 Comparison of different generation dispatching modes
13(2)
1.3.3 Impacts of energy-efficient power generation scheduling on the PRC's power system
15(3)
2 Pilots Analysis of Energy-Efficient Power Generation Scheduling
18(48)
2.1 Effect analysis in Guizhou province
18(8)
2.1.1 Basic situation of Guizhou Power Grid
18(2)
2.1.2 Measures adopted in Guizhou
20(3)
2.1.3 Achievements of energy-efficient power generation scheduling in Guizhou
23(2)
2.1.4 Existing problems and development trends of energy-efficient power generation scheduling in pilot areas in Guizhou
25(1)
2.2 Effect analysis of energy-efficient power generation scheduling in Guangdong
26(4)
2.2.1 Basic situation of Guangdong Power Grid
26(1)
2.2.2 Measures adopted in Guangdong for EEPGS
27(2)
2.2.3 Achievements of energy-efficient power generation scheduling in Guangdong
29(1)
2.2.4 Existing problems and development trends of energy-efficient power generation scheduling in Guangdong
29(1)
2.3 Implementation situation of energy-efficient power generation scheduling of China Southern Power Grid
30(4)
2.3.1 Basic situation of China Southern Power Grid
30(2)
2.3.2 Measures adopted by China Southern Power Grid in energy-efficient scheduling
32(1)
2.3.3 Achievements of energy-efficient scheduling in China Southern Power Grid
33(1)
2.4 Effect analysis of energy-efficient power generation scheduling in Jiangsu province
34(5)
2.4.1 Basic situation of Jiangsu Power Grid
34(1)
2.4.2 Measures adopted for energy-efficient power generation scheduling in Jiangsu
34(4)
2.4.3 Achievements of energy-efficient power generation scheduling in Jiangsu
38(1)
2.4.4 Existing problems of energy-efficient power generation scheduling in Jiangsu
38(1)
2.5 Effect analysis of energy-efficient power generation scheduling in Sichuan
39(4)
2.5.1 Basic situation of Sichuan Power Grid
39(1)
2.5.2 Measures adopted for energy-efficient power generation scheduling in Sichuan
40(1)
2.5.3 Achievements of energy-efficient power generation scheduling in Sichuan
41(1)
2.5.4 Existing problems of energy-efficient power generation scheduling in Sichuan
42(1)
2.6 Effect analysis of energy-efficient power generation scheduling in Henan
43(8)
2.6.1 Basic situation of Henan Power Grid
43(1)
2.6.2 Measures adopted for energy-efficient power generation scheduling in Henan
44(4)
2.6.3 Energy conservation and emission reduction results of Henan provincial power grid
48(3)
2.7 Comparison analysis of energy-efficient scheduling in pilot areas
51(15)
2.7.1 Pilot workplan
51(1)
2.7.2 Sorting table of generation units
52(2)
2.7.3 Economic compensation approach
54(1)
2.7.4 Implementation specifications
55(2)
2.7.5 Technical supporting system
57(2)
2.7.6 Differential power quotas
59(1)
2.7.7 Differential power pricing
59(2)
2.7.8 Power generation right trading
61(1)
2.7.9 Program of "Large Substitutes for Small"
62(1)
2.7.10 Existing problems of energy-efficient power generation scheduling in pilot provinces
63(3)
3 Management System of Energy-efficient Power Generation Scheduling
66(30)
3.1 Business framework of energy-efficient power generation scheduling
66(4)
3.1.1 Business content of energy conservation power generation
66(3)
3.1.2 Business procedure of energy-efficient power generation scheduling
69(1)
3.2 Constitution of energy-efficient power generation information system
70(14)
3.2.1 Energy efficiency declaration system
70(5)
3.2.2 Decision-making supporting system of energy-efficient power generation scheduling
75(2)
3.2.3 Decision-making information supporting system of energy-efficient power generation scheduling
77(7)
3.3 Inputs of energy-efficient power generation scheduling
84(12)
3.3.1 Personnel safeguard for energy-efficient scheduling technology
84(1)
3.3.2 Material safeguard for energy-efficient scheduling technology
84(6)
3.3.3 Financial safeguard for energy-efficient scheduling technology
90(1)
3.3.4 Technical training of energy-efficient scheduling
90(6)
4 Power Market Reform and Energy-Efficient Power Generation Scheduling
96
4.1 Major measures for power regime reform in the PRC
96(6)
4.1.1 Break monopoly of investment; separate the government from corporate
96(1)
4.1.2 Separation of power plant from power grid
97(1)
4.1.3 Regional power market pilots
98(1)
4.1.4 Direct power purchase by major users and bilateral transaction
99(1)
4.1.5 Problems need to be further resolved
100(2)
4.2 Experience and enlightenment from power market reform in foreign countries
102(5)
4.2.1 International experience
102(4)
4.2.2 Enlightenment of foreign power market reform
106(1)
4.3 Energy-efficient power generation scheduling and power market transaction
107
4.3.1 Relation between energy-efficient scheduling and market mechanism
107(1)
4.3.2 Particularity and feasibilities of the electricity market transaction
108(1)
4.3.3 Comparison and analysis of transaction mode
108(3)
4.3.4 Diversification and multi-level of power transaction
111(1)
4.3.5 Transaction mode based on energy conservation
112