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2019 | OriginalPaper | Chapter

2. Wave and Wind Energy Boost the Marine Key Points Construction

Authors : Chongwei Zheng, Chongyin Li, Hailang Wu, Min Wang

Published in: 21st Century Maritime Silk Road: Construction of Remote Islands and Reefs

Publisher: Springer Singapore

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Abstract

The marine key points are usually far away from the mainland. The dilemma of the electricity, insufficiency of the fresh water, fragility of the ecological environment, etc. cause the construction of marine key points become a worldwide challenge. Rational developing the marine new energy resources will help solve these problems. This Chapter presented the comparison among new energy resources, prospect of wave energy and wind energy, introduction of wave energy conversion system, contribution to enhance the viability ability of marine key points, to exhibit the advantages of the wave energy and wind energy resources, especially on the marine key points construction. We also pointed out that the full assessment of energy should be carried out before the resource development, to realize the efficient and safety development and utilization of the wave and wind energy.

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Literature
go back to reference Alesbe I, Abdel-Maksound M, Aljabair S (2017) Analysis of unsteady flow over offshore wind turbines in combination with different types of foundations. J Mar Sci Appl 16(2):190–198CrossRef Alesbe I, Abdel-Maksound M, Aljabair S (2017) Analysis of unsteady flow over offshore wind turbines in combination with different types of foundations. J Mar Sci Appl 16(2):190–198CrossRef
go back to reference Amiri A, Panahi R, Radfar S (2016) Parametric study of two-body floating-point wave absorber. J Mar Sci Appl 15(1):41–49CrossRef Amiri A, Panahi R, Radfar S (2016) Parametric study of two-body floating-point wave absorber. J Mar Sci Appl 15(1):41–49CrossRef
go back to reference Behzad H, Panahi R (2017) Optimization of bottom-hinged flap-type wave energy converter for a specific wave rose. J Mar Sci Appl 16(2):159–165CrossRef Behzad H, Panahi R (2017) Optimization of bottom-hinged flap-type wave energy converter for a specific wave rose. J Mar Sci Appl 16(2):159–165CrossRef
go back to reference Cheng Y-l, Dang Y, Wu Y-j (2009) Status and trends of the power generation from wave. Appl Energy Technol 12:26–30 Cheng Y-l, Dang Y, Wu Y-j (2009) Status and trends of the power generation from wave. Appl Energy Technol 12:26–30
go back to reference Chu T-j (2004) Exploitation and utilization of ocean energy. Chemical Industry Press, Beijing Chu T-j (2004) Exploitation and utilization of ocean energy. Chemical Industry Press, Beijing
go back to reference El-Gohary MM (2013) Overview of past, present and future marine power plants. J Mar Sci Appl 12(2):219–227CrossRef El-Gohary MM (2013) Overview of past, present and future marine power plants. J Mar Sci Appl 12(2):219–227CrossRef
go back to reference Liao L-z (2007) Ecological restoration of non-resident Houyu marine island in Xiamen. J Subtrop Resour Environ 2(2):57–61 Liao L-z (2007) Ecological restoration of non-resident Houyu marine island in Xiamen. J Subtrop Resour Environ 2(2):57–61
go back to reference Liao L-z, Fang J-y, Lei G (2007) Non-resident islands resources and projective utilization in Eastern Fujian. J Subtrop Resour Environ 2(4):49–53 Liao L-z, Fang J-y, Lei G (2007) Non-resident islands resources and projective utilization in Eastern Fujian. J Subtrop Resour Environ 2(4):49–53
go back to reference Ling S (2008) Thinking of wind power development and use in China Coastland. Resour Dev Mark 24(7):634–635 Ling S (2008) Thinking of wind power development and use in China Coastland. Resour Dev Mark 24(7):634–635
go back to reference Ma Y-y (2009) Wave energy resources application. Express Water Resour Hydropower Inf 30(3):31–32 Ma Y-y (2009) Wave energy resources application. Express Water Resour Hydropower Inf 30(3):31–32
go back to reference Mirab H, Fathi R, Jahangiri V, Ettefagh M, Hassannejad R (2015) Energy harvesting from sea waves with consideration of airy and JONSWAP theory and optimization of energy harvester parameters. J Mar Sci Appl 14(4):440–449CrossRef Mirab H, Fathi R, Jahangiri V, Ettefagh M, Hassannejad R (2015) Energy harvesting from sea waves with consideration of airy and JONSWAP theory and optimization of energy harvester parameters. J Mar Sci Appl 14(4):440–449CrossRef
go back to reference Ni Y-l, Xin H-l, Liu Y (2009) Analysis on the development and present technology status of offshore wind power in China. Energy Eng 4:21–25 Ni Y-l, Xin H-l, Liu Y (2009) Analysis on the development and present technology status of offshore wind power in China. Energy Eng 4:21–25
go back to reference Wang X-d, Cao Y-y (2008) The wind energy source application in the sea environment. Sci Technol Consult Herald 5:92 Wang X-d, Cao Y-y (2008) The wind energy source application in the sea environment. Sci Technol Consult Herald 5:92
go back to reference Wang C-k, Lu W (2009) Analysis methods and reserves evaluation of ocean energy resources. Ocean Press, Beijing Wang C-k, Lu W (2009) Analysis methods and reserves evaluation of ocean energy resources. Ocean Press, Beijing
go back to reference You Y-g (2006) Wave energy resources development in China. China Sci Technol Achiev 2:17–19 You Y-g (2006) Wave energy resources development in China. China Sci Technol Achiev 2:17–19
go back to reference You Y-g, Ma Y-j (2003) The sea energy source application in the sea environment. Meterol Hydrol Mar Instrum 3:32–35 You Y-g, Ma Y-j (2003) The sea energy source application in the sea environment. Meterol Hydrol Mar Instrum 3:32–35
go back to reference Zhan P-g, Yu H, Hou B (2005) Technical summary of wind power generation on the sea. Electr Equip 6(12):42–44 Zhan P-g, Yu H, Hou B (2005) Technical summary of wind power generation on the sea. Electr Equip 6(12):42–44
go back to reference Zhao H-t, Wu T-q (2008) Some ideas about further development of the Xisha, Nansha and Zhongsha Islands. Trop Geograph 28(4):369–375 Zhao H-t, Wu T-q (2008) Some ideas about further development of the Xisha, Nansha and Zhongsha Islands. Trop Geograph 28(4):369–375
go back to reference Zheng CW (2011a) Wave energy and other renewable energy resources in South China Sea: advantages and disadvantages. J Subtrop Resour Environ 6(3):76–81 Zheng CW (2011a) Wave energy and other renewable energy resources in South China Sea: advantages and disadvantages. J Subtrop Resour Environ 6(3):76–81
go back to reference Zheng CW (2011b) Research on wave energy resources in the northern South China Sea during recent 10 years using SWAN wave model. J Subtrop Resour Environ 6(3):76–81 Zheng CW (2011b) Research on wave energy resources in the northern South China Sea during recent 10 years using SWAN wave model. J Subtrop Resour Environ 6(3):76–81
go back to reference Zheng CW, Li XQ (2011) Wave energy resources assessment in the China Sea during the last 22 years by using WAVEWATCH-III wave model. Period Ocean Univ China 41(11):5–12 Zheng CW, Li XQ (2011) Wave energy resources assessment in the China Sea during the last 22 years by using WAVEWATCH-III wave model. Period Ocean Univ China 41(11):5–12
go back to reference Zheng CW, Li CY (2015a) Development of the islands and reefs in the South China Sea: wind climate and wave climate analysis. Period Ocean Univ China 45(9):1–6 Zheng CW, Li CY (2015a) Development of the islands and reefs in the South China Sea: wind climate and wave climate analysis. Period Ocean Univ China 45(9):1–6
go back to reference Zheng CW, Li CY (2015b) Development of the islands and reefs in the South China Sea: wind power and wave power generation. Period Ocean Univ China 45(9):7–14 Zheng CW, Li CY (2015b) Development of the islands and reefs in the South China Sea: wind power and wave power generation. Period Ocean Univ China 45(9):7–14
go back to reference Zheng CW, Zhou L, Zhou LJ (2011) Seasonal variation of wave and wave energy in xisha and nansha sea area. Adv Mar Sci 29(4):419–426 Zheng CW, Zhou L, Zhou LJ (2011) Seasonal variation of wave and wave energy in xisha and nansha sea area. Adv Mar Sci 29(4):419–426
go back to reference Zheng CW, Zhuang H, Li X, Li XQ (2012a) Wind energy and wave energy resources assessment in the East China Sea and South China Sea. Sci China Technol Sci 55(1):163–173CrossRef Zheng CW, Zhuang H, Li X, Li XQ (2012a) Wind energy and wave energy resources assessment in the East China Sea and South China Sea. Sci China Technol Sci 55(1):163–173CrossRef
go back to reference Zheng CW, Li XQ, Pan J (2012b) Wave energy analysis of the South China Sea and the North Indian Ocean in recent 45 years. Mar Sci 36(6):101–104 Zheng CW, Li XQ, Pan J (2012b) Wave energy analysis of the South China Sea and the North Indian Ocean in recent 45 years. Mar Sci 36(6):101–104
go back to reference Zheng CW, Lin G, Sun Y (2012c) Simulation of wave energy resources in the South China Sea during the past 22 years. J Trop Oceanogr 31(6):13–19 Zheng CW, Lin G, Sun Y (2012c) Simulation of wave energy resources in the South China Sea during the past 22 years. J Trop Oceanogr 31(6):13–19
go back to reference Zheng CW, Pan J, Li JX (2013) Assessing the China Sea wind energy and wave energy resources from 1988 to 2009. Ocean Eng 65:39–48CrossRef Zheng CW, Pan J, Li JX (2013) Assessing the China Sea wind energy and wave energy resources from 1988 to 2009. Ocean Eng 65:39–48CrossRef
go back to reference Zheng CW, You XB, Zhou GQ, Chen XB (2015a) Ocean environment characteristic and wave energy resource in the China Sea and adjacent waters. China Ocean Press, Beijing Zheng CW, You XB, Zhou GQ, Chen XB (2015a) Ocean environment characteristic and wave energy resource in the China Sea and adjacent waters. China Ocean Press, Beijing
go back to reference Zheng CW, Pan J, Sun W et al (2015b) Strategic of the ocean environment of the 21st century Maritime Silk Road. Ocean Dev Manag 32(7):4–9 Zheng CW, Pan J, Sun W et al (2015b) Strategic of the ocean environment of the 21st century Maritime Silk Road. Ocean Dev Manag 32(7):4–9
go back to reference Zheng CW, Li XQ, Gao ZS et al (2015c) Strategic of the 21st century Maritime Silk Road: wind climate analysis. Ocean Dev Manag 32(8):4–11 Zheng CW, Li XQ, Gao ZS et al (2015c) Strategic of the 21st century Maritime Silk Road: wind climate analysis. Ocean Dev Manag 32(8):4–11
go back to reference Zheng CW, Fu M, Rui ZF et al (2015d) Strategic of the 21st century Maritime Silk Road: wave climate analysis. Ocean Dev Manag 32(10):1–7 Zheng CW, Fu M, Rui ZF et al (2015d) Strategic of the 21st century Maritime Silk Road: wave climate analysis. Ocean Dev Manag 32(10):1–7
go back to reference Zheng CW, Gao ZS, Zhang Y et al (2015e) Strategic of the 21st century Maritime Silk Road: extreme wind speed and extreme wave height. Ocean Dev Manag 32(11):4–8 Zheng CW, Gao ZS, Zhang Y et al (2015e) Strategic of the 21st century Maritime Silk Road: extreme wind speed and extreme wave height. Ocean Dev Manag 32(11):4–8
go back to reference Zheng CW, Sun W, Li X et al (2016a) Strategic of the 21st century Maritime Silk Road: important route, crucial node and port feature. Ocean Dev Manag 33(1):4–13 Zheng CW, Sun W, Li X et al (2016a) Strategic of the 21st century Maritime Silk Road: important route, crucial node and port feature. Ocean Dev Manag 33(1):4–13
go back to reference Zheng CW, Li X, Chen X et al (2016b) Strategic of the 21st century Maritime Silk Road: geography and climate characteristic. Ocean Dev Manag 33(2):3–10 Zheng CW, Li X, Chen X et al (2016b) Strategic of the 21st century Maritime Silk Road: geography and climate characteristic. Ocean Dev Manag 33(2):3–10
go back to reference Zheng CW, Li X, Chen X et al (2016c) Strategic of the 21st century Maritime Silk Road: marine resources and development status. Ocean Dev Manag 33(3):3–8 Zheng CW, Li X, Chen X et al (2016c) Strategic of the 21st century Maritime Silk Road: marine resources and development status. Ocean Dev Manag 33(3):3–8
go back to reference Zheng CW, Li CY, Yang Y, Chen X (2016d) Analysis of wind energy resource in the Pakistan’s Gwadar Port. J Xiamen Univ (Natural Science Edition) 55(2):210–215 Zheng CW, Li CY, Yang Y, Chen X (2016d) Analysis of wind energy resource in the Pakistan’s Gwadar Port. J Xiamen Univ (Natural Science Edition) 55(2):210–215
go back to reference Zheng CW, Sun W, Chen X et al (2017) Strategic of the 21st century Maritime Silk Road: construction of integrated application platform. Ocean Dev Manag 34(2):52–57 Zheng CW, Sun W, Chen X et al (2017) Strategic of the 21st century Maritime Silk Road: construction of integrated application platform. Ocean Dev Manag 34(2):52–57
Metadata
Title
Wave and Wind Energy Boost the Marine Key Points Construction
Authors
Chongwei Zheng
Chongyin Li
Hailang Wu
Min Wang
Copyright Year
2019
Publisher
Springer Singapore
DOI
https://doi.org/10.1007/978-981-10-8114-9_2