21st Century Maritime Silk Road. (2020)
- Record Type:
- Book
- Title:
- 21st Century Maritime Silk Road. (2020)
- Main Title:
- 21st Century Maritime Silk Road
- Further Information:
- Note: Chongwei Zheng, Jianjun Xu, Chao Zhan, Wing Wang.
- Other Names:
- Zheng, Chongwei
Xu, Jianjun
Zhan, Chao
Wang, Qing - Contents:
- Intro; Preface; Acknowledgements; Contents; About the Authors; 1 Introduction; 1.1 Contribute to the Development of Countries (Regions) Along the Maritime Silk Road; 1.2 Improve the Living Quality of People Along the Line; 1.3 Alleviate Resource Crisis and Protect Marine Ecology; 1.4 Promote Improvement and Guide Participation; 1.5 Focus on Maritime Key Points and Help to Move Towards Deep-Sea; 1.6 Saving Land Resources and Strong Anti-destructive Ability; 1.7 Comparison of Advantages and Disadvantages Among Major Energies; References; 2 Research Progress of Wave Energy Evaluation 2.1 Assessment of Global Oceanic Wave Energy2.1.1 Observation Data Stage; 2.1.2 Satellite-Based Observation Stage; 2.1.3 Numerical Simulation Stage; 2.1.4 Reanalysis Data Stage; 2.2 Wave Energy Assessment in the China Seas; 2.3 Wave Energy Assessment in the Maritime Silk Road; 2.4 Difficulties in Wave Energy Assessment; 2.4.1 Climatic Characteristics of Wave Energy; 2.4.2 Wave Energy Evaluation in the Maritime Silk Road; 2.4.3 How to Focus on the Wave Energy of the Maritime Key Points?; 2.4.4 Wave Energy Classification; 2.4.5 Short-Term Forecasting of Wave Energy 2.4.6 Long-Term Variation of Wave Energy2.4.7 Exploring the Relationship Between Wave Energy and Important Astronomical Earth Factors; 2.4.8 Long-Term Projection of Wave Energy; 2.4.9 Swell Wave Characteristics Analysis; 2.4.10 Construction of Wave Energy Resource Dataset; 2.4.11 Construction of Wave Energy Integrated Application Platform;Intro; Preface; Acknowledgements; Contents; About the Authors; 1 Introduction; 1.1 Contribute to the Development of Countries (Regions) Along the Maritime Silk Road; 1.2 Improve the Living Quality of People Along the Line; 1.3 Alleviate Resource Crisis and Protect Marine Ecology; 1.4 Promote Improvement and Guide Participation; 1.5 Focus on Maritime Key Points and Help to Move Towards Deep-Sea; 1.6 Saving Land Resources and Strong Anti-destructive Ability; 1.7 Comparison of Advantages and Disadvantages Among Major Energies; References; 2 Research Progress of Wave Energy Evaluation 2.1 Assessment of Global Oceanic Wave Energy2.1.1 Observation Data Stage; 2.1.2 Satellite-Based Observation Stage; 2.1.3 Numerical Simulation Stage; 2.1.4 Reanalysis Data Stage; 2.2 Wave Energy Assessment in the China Seas; 2.3 Wave Energy Assessment in the Maritime Silk Road; 2.4 Difficulties in Wave Energy Assessment; 2.4.1 Climatic Characteristics of Wave Energy; 2.4.2 Wave Energy Evaluation in the Maritime Silk Road; 2.4.3 How to Focus on the Wave Energy of the Maritime Key Points?; 2.4.4 Wave Energy Classification; 2.4.5 Short-Term Forecasting of Wave Energy 2.4.6 Long-Term Variation of Wave Energy2.4.7 Exploring the Relationship Between Wave Energy and Important Astronomical Earth Factors; 2.4.8 Long-Term Projection of Wave Energy; 2.4.9 Swell Wave Characteristics Analysis; 2.4.10 Construction of Wave Energy Resource Dataset; 2.4.11 Construction of Wave Energy Integrated Application Platform; 2.5 Research Content of the Book; References; 3 Temporal-Spatial Distribution of Wave Energy in the Maritime Silk Road; 3.1 Data and Methods; 3.1.1 Data; 3.1.2 Methods; 3.2 Temporal-Spatial Distribution of Significant Wave Height 3.3 Spatial-Temporal Distribution of Wave Period3.4 Spatial-Temporal Distribution of Wave Power Density; 3.5 Spatial-Temporal Distribution of Available Rate of Wave Energy; 3.6 Spatial-Temporal Distribution Characteristics of Resources Richness (Energy Level Occurrences); 3.6.1 Available Level Occurrence (ALO); 3.6.2 Moderate Level Occurrence (MLO); 3.6.3 Rich Level Occurrence (RLO); 3.7 Spatial-Temporal Distribution of Energy Stability; 3.8 Monthly and Seasonal Variabilities of Wave Energy; 3.9 Spatial and Temporal Distribution of Resource Reserves; 3.9.1 Annual Energy Storage 3.9.2 Energy Storage in Representative Month3.10 Summary; References; 4 Climatic Trend of Wave Energy in the Maritime Silk Road; 4.1 Materials and Methods; 4.2 Trends in Wave Power Density; 4.2.1 Annual Trend in WPD; 4.2.2 Trend of WPD in Each Month; 4.2.3 Dominant Month of the Trend in WPD; 4.3 Trend in Resource Available Rate; 4.3.1 Annual Trend in EWHO; 4.3.2 Trend of EWHO in Representative Months; 4.3.3 Dominant Month of the Trend in EWHO; 4.4 Trend of Energy Level Frequency; 4.4.1 Trend in ALO; 4.4.2 Trend in MLO; 4.4.3 Trend of RLO; 4.5 Trend in Energy Stability; 4.5.1 Trend in Cv … (more)
- Publisher Details:
- Singapore : Springer
- Publication Date:
- 2020
- Extent:
- 1 online resource (183 pages)
- Subjects:
- 387.5
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Electronic books - Languages:
- English
- ISBNs:
- 9811509174
9789811509179 - Related ISBNs:
- 9789811509162
- Notes:
- Note: Print version record.
- Access Rights:
- Legal Deposit; Only available on premises controlled by the deposit library and to one user at any one time; The Legal Deposit Libraries (Non-Print Works) Regulations (UK).
- Access Usage:
- Restricted: Printing from this resource is governed by The Legal Deposit Libraries (Non-Print Works) Regulations (UK) and UK copyright law currently in force.
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library HMNTS - ELD.DS.465488
- Ingest File:
- 02_609.xml