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『簡體書』中南美洲清洁能源开发与投资研究(英文版)

書城自編碼: 3572438
分類: 簡體書→大陸圖書→工業技術一般工业技术
作者: 全球能源互联网发展合作组织
國際書號(ISBN): 9787519850821
出版社: 中国电力出版社
出版日期: 2020-11-01

頁數/字數: /
書度/開本: 16开 釘裝: 平装

售價:NT$ 1680

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編輯推薦:
给出了中南美洲较完整的体系化清洁能源资源评估方法与结果,提出了基地开发方案,并且展示了量化的技术经济指标,对于读者而言兼顾科普性、通识性以及专业性,满足不同读者的信息获取需求。
內容簡介:
本报告是《中南美洲清洁能源开发与投资研究》的英文版。
本报告是聚焦中南美洲清洁能源开发与投资研究,全面展示了中南美洲的清洁能源资源评估和大型基地选址成果。第1章至第3章,采用数字化方法完成了中南美洲水电、风电和光伏的资源评估与基地开发研究。在水电方面,对中南美洲主要流域的水能资源开展了理论蕴藏量测算,对主要待开发的河段提出了梯级开发方案;在风电和光伏方面,在全面测算和分析影响集中式开发的主要影响因素基础上,开展了全洲各国家和地区风能、太阳能理论蕴藏量、技术可开发量以及开发成本的量化评估。运用数字平台,研究提出了中南美洲大型陆上风电基地、大型太阳能光伏基地的选址布局,完成了开发条件评价、开发规模评估以及技术经济指标测算。第4章,基于中南美洲能源电力供需发展趋势,统筹区域内、跨区及跨洲电力消纳市场,研究分析大型清洁能源基地送电方向和输电方式。第5章,梳理了中南美洲主要国家的能源政策及投资现状,剖析清洁能源开发项目典型投资模式,结合中南美洲水能、风能、太阳能大型基地开发方案开展案例研究,提出了加快中南美洲清洁发展的政策和投资模式建议。
關於作者:
全球能源互联网发展合作组织(简称合作组织),是由致力于推动世界能源可持续发展的相关企业、组织、机构和个人等自愿组成的国际组织。注册地设在北京。合作组织的宗旨是推动构建全球能源互联网,以清洁和绿色方式满足全球电力需求,推动实现联合国“人人享有可持续能源”和应对气候变化目标,服务人类社会可持续发展。合作组织将积极推广全球能源互联网理念,组织制定全球能源互联网发展规划,建立技术标准体系,开展联合技术创新、重大问题研究和国际交流合作,推动工程项目实施,提供咨询服务,引领全球能源互联网发展。
目錄
PREFACE
STUDY REGION
SUMMARY
1 Hydroenergy Resources Assessment and Development 001
1.1 Methods and Data 002
Resource Assessment Methods 002
Macro Site Selection Method 004
Basic Data and Parameters 006
1.2 Resource Assessment 010
Distribution of Water Systems 010
Hydrological Data 011
Land Covers 014
Geological Conditions 016
Overview of Hydroenergy Resources 019
Assessment Results 021
1.3 Base Development 032
Development Status 032
Layout of Bases 033
Base at Orinoco River 035
Base at Tocantins River 046
Base at Tapajos River, a Tributary of the Amazon River 060
Base at Maranon River, a Tributary of the Amazon River 062
Base at Madeira River, a Tributary of the Amazon River 069
Base at Ucayali River 072
Base at Motagua River 075
2 Wind Energy Resources Assessment and Development 077
2.1 Methods and Data 078
Resource Assessment Methods 078
Macro Site Selection Method 082
Basic Data and Parameters 084
2.2 Resource Assessment 090
Distribution of Wind Speeds 090
Land Covers 092
Distribution of Conservation Areas 093
Transportation Facilities 094
Grid Facilities 095
Assessment Results 098
2.3 Power Bases Development 108
Development Status 108
Layout of Bases 109
Overview of Bases 110
Study on Site Selection of Bases 114
3 Solar Energy Resources Assessment and Development 125
3.1 Methods and Data 126
Resource Assessment Method 126
Macro Site Selection Method 128
Basic Data and Parameters 130
3.2 Resource Assessment 135
Global Horizontal Irradiance 135
Land Covers 136
Distribution of Terrains 138
Assessment Results 140
3.3 Power Bases Development 150
Development Status 150
Layout of Bases 151
Overview of Bases 152
Study on Site Selection of Bases 157
4 Outbound Transmission of Large-scale Renewable Energy Bases 167
4.1 Forecast of Electricity Demand 168
4.2 Deep Electric Energy Substitution 171
HydrogenProductionandHydrogenEnergyUtilizationforClean Electricity 171
Seawater Desalination and Ecological Restoration 174
4.3 Eastern South America 176
Power Delivery Direction 176
Power Transmission Mode 177
4.4 Southern South America 178
Power Delivery Direction 178
Power Transmission Mode 180
4.5 Western South America 182
Power Delivery Direction 182
Power Transmission Mode 183
4.6 Central America 185
Power Delivery Direction 185
Power Transmission Mode 186
5 Policy Environment and Investment and Financing Suggestions 187
5.1 Overview of Countries in Central and South America 188
5.2 Policy Environment for Major Countries in Central and South America 191
Brazil 191
Bolivia 194
Chile 196
Argentina 198
Paraguay 200
Uruguay 202
Venezuela 204
Colombia 206
Ecuador 208
Peru 210
Guatemala 212
El Salvador 214
Nicaragua 216
5.3 Investment and Financing Proposal 218
Forming a Diversified Investment and Financing System 218
Accelerating the Construction of Regional Power Market 218
Reducing Fossil Energy Subsidies 219
Improving the Business Environment 219
Strengthening Inflation Risk Management 220
Reducing the Cost of Funding 220
5.4 Summary 221
EPILOGUE 222
內容試閱
Energy is an important foundation for economic and social development. Mankind uses energy, historically we have converted energy sources from firewood to fossil such as coal, oil, and natural gas, to renewable energy such as hydro, wind and solar energy, every change is accompanied by a huge leap in productivity and major progress in human civilization. Energy, as the driving force for the development of modern society, contributes to the nation’s economy and its citizens’ interactive dynamic, as well as to their welfare. The massive development and use of traditional fossil energy has led to increasingly prominent problems such as resource shortages, environmental pollution, and climate change, which seriously threaten human survival and sustainable development. In essence, the core of sustainable development is clean development. The key is to promote renewable energy, and replace fossil energy with renewable energy such as solar, wind, and hydropower.Scientific and accurate quantitative assessment of resources is the critical foundation for large-scale development and utilization of renewable energy. At present, the globally installed capacity of hydro, wind and solar power has exceeded 30% of the installed capacity of power sources. Although some achievements have been made in the development of renewable energy, there is still potential for it to expand. Therefore, it is of great importance to conduct a fine assessment on resource reserves. On the basis of establishing and improving the global renewable energy resources database, the Global Energy Interconnection Development and Cooperation Organization GEIDCO has established an assessment system and digital fine assessment models for renewable energy resources. These models carry out systematic calculation and quantitative assessment of theoretical potential, technical potential installed capacity and economic potential installed capacity of hydro, wind and solar energies from a global perspective. An achievement of the Global Renewable-energy Exploitation ANalysis GREAN Systematic and efficient macro site selection of power bases is an important prerequisite for large-scale development and utilization of renewable energy. The site selection of renewable energy power bases is related to the cost-effectiveness of power station development, which crucially contributes to economic development and the efficient utilization of renewable energy. There are many factors affecting the site selection of power bases, hence the site selection analyses and decision-making process are convoluted. The desk top study of site selection is often limited by the integrity and accuracy of data. Site taking into account factors such as global topography and terrain elevation, land covers, water systems, natural reserves, geology and historical seismic activity frequency, power supply and power grid, population and economy, GEIDCO has developed a set of basic database, models and tools for macro site selection for renewable energy power bases which significantly increase the breadth and depth of data collection and analysis processes, thereby, greatly improving the accuracy, economy and effectiveness of the desk top study of site selection, and achieving systematic achievements in promoting the development of global renewable energy resources. The data collected and analyzed by Focusing on the world’s resource assessment and base development of all continents, GEIDCO has prepared a series of scientific reports on renewable energy development and investment globally, specifically in continents such as Asia, Europe, Africa, North America, Central and South America and Oceania.This report is one of the renewable energy research series focusing on Central and South America, which fully shows the achievements in the assessment of renewable energy resources and the site selection of large-scale power bases in Central and South America. In Chapters 1, 2 and 3, the resource assessment and base development research of hydro, wind and photovoltaic power in Central and South America were completed by digital methods. Firstly, the methods, models and data of resource assessment and site selection are introduced respectively. In terms of hydropower, the theoretical potential of hydroenergy resources in major river basins of Central and South America is calculated, and cascade hydropower stations development schemes of major reaches are proposed. In terms of wind and photovoltaic power, on the basis of comprehensive calculation and analysis of the main factors affecting centralized development, the theoretical potential, technical potential installed capacity and economic potential installed capacity of wind power and photovoltaic power in all countries and regions of Central and South America have been calculated. Using the GREAN platform, the site selection and layout of large-scale onshore wind power bases and large-scale solar photovoltaic power bases in Central and South America are proposed, and the assessment of development conditions, development scale and the calculation of technical and economic indicators are completed. In Chapter 4, based on the development trend of energy and countries in Central and South America, analyzes the typical investment modes of renewable energy exploitation projects, conducts case studies in the development schemes of large- scale hydro, wind and solar power bases in Central and South America, and proposes suggestions on policies and investment modes to speed up clean development in Central and South America.The Global Renewable Energy Development and Investment series of reports made by the GEIDCO are committed to providing guidance and reference for the large-scale development and utilization of renewable energy around the world and accelerating the implementation of clean alternatives on the energy supply side. This report provides guidelines and acts as a reference guide for government departments, international organizations, energy enterprises, financial institutions, universities and relevant individuals who take part in renewable energy resource assessment, strategic research, project development, international cooperation, etc. However, due to the time constraints for data collection and report research writing timeframe, the contents may be

 

 

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