英文摘要
|
In response to global climate change and energy supply transformation, Taiwan is actively building off-shore wind power to implement the goal of non-nuclear home. In addition, at the time when the world is actively developing green energy and wind power, Taiwan is one of the world's most important wind farms and may become a showcase for offshore wind power development in mainland China and Asia. However, the offshore wind power related marine engineering, unit maintenance and operation management of Taiwan wind farms have problems such as complex weather conditions, soft geology and earthquakes. Therefore, the selection and refinement of the technical type will be a topic worthy of study, and the management of the construction process is an issue worthy of attention. This study first reviews the development of offshore wind power industry, Taiwan's conditions and development policy objectives, and building information model. Secondly, we analyze the technological development and trend through patent analysis, and also explore the strengths and competitive advantages of the major offshore wind power manufacturers in terms of technological development. The results of the study provide recommendations on the development trend of offshore wind power and analysis on the related manufacturers' technologies. Therefore, the conclusion can provide a reference for the future selection of offshore wind turbine technology manufacturers, as well as an implementable evaluation method for the offshore wind power construction process, operation and maintenance, and life-cycle low carbon auditing.
|
参考文献
|
-
林榮貴,張永源(2018)。離岸風力發電技術專利地圖分析概況與展望。機械工業,427,14-20。
連結:
-
DNV, 2022. https://www.dnv.com/power-renewables/services/data-analytics/windgemini/index.html.
-
Ciuriuc, Alexandra,Rapha, José Ignacio,Guanche, Raúl,Domínguze-García, José Luis(2022).Digital Tools for Floating Offshore Wind Turbines(FOWT): A State of the Art.Energy Reports,8,1207-1228.
-
Global Wind Energy Group(GWEC), 2022. Global Wind Report 2022.
-
Hillegeist, P. and Rijkers, E., 2019. 2020 Global Floating Wind Energy Market and Forecast Report 2019~ 2034. Quest Floating Energy, 32- 39, Texas, USA.
-
O’Shea, M.,Murphy, J.(2020).Design of a BIM integrated structural health monitoring system for a historic offshore lighthouse.Buildings,10(7),131.
-
Tan, Yi,Li, Hong Xian,Cheng, Jack C.P.,Wang, Jun,Jiang, Boya,Song, Yongze,Wang, Xiangyu(2021).Cost and Environmental impact estimation methodology and potential impact factors in offshore oil and gas platform decommissioning: A review.Environmental Impact Assessment Review,87
-
Zhang, J.,Seet, B.-C.,Lie, T.T.(2015).Building information modelling for smart built environments.Buildings,5(1),100-115.
-
Zhu, Haiming,Du, Zunfeng,Wu, Junling,Sun, Zhaoheng(2022).Innovation Environment and Opportunities of Offshore Wind Turbine Foundations, Insights from a New Patent Analysis Approach.World Patent Information,68
-
工研院(2011)。工研院,2011,臺灣風能評估手冊。
-
中國土木工程水利學會(2021)。經濟部「離岸風電區塊開發選商規劃 」草案落實國內設計廠商參與之建言。土木水利,48(3),84-90。
-
吳俊逸,張瑞芬,方品軒,林啟瑞(2014)。以本體論專利探勘技術解析全球離岸風力發電關鍵技術之智財發展趨勢。臺灣能源期刊,1(2),191-211。
-
吳彥儒(2019)。亞洲離岸風電市場建立在地供應鏈之發展與課題。臺灣經濟研究月刊,42(6),85-93。
-
房辰陽,簡連貴,許顥騰,鍾承憲,周顯光(2018)。離岸風電維運安全規範與管理監督機制研析。技師期刊,83,38-47。
-
林新華(2018)。台灣海事工程於離岸風電之機會與挑戰。營建知訊,429,25-31。
-
財團法人船舶暨海洋產業研發中心,2020,離岸風電發展與水下基礎之探討,船舶電子報:https://www.soic.org.tw/%E9%9B%A2%E5%B2%B8%E9%A2%A8%E9%9B%BB%E7%99%BC%E5%B1%95%E8%88%87%E6%B0%B4%E4%B8%8B%E5%9F%BA%E7%A4%8E%E4%B9%8B%E6%8E%A2%E8%A8%8E/。
-
陳中舜(2018)。臺灣風電產業的回顧與展望。經濟前瞻,179,117-122。
-
楊瑞源,許中駿,馬雲琭,左峻德(2020)。國際浮動式離岸風電技術產業化發展趨勢分析。海洋探索,試刊號,87-100。
-
經濟部(2022)。經濟部,2022,太陽光電與離岸風電推動辦理情形。
-
經濟部工業局(2018)。經濟部工業局,2018,產業價值鏈資訊平台。
-
鄒逸錚(2019)。推動台灣成為亞洲離岸風電產業樞紐之策略與挑戰。台灣經濟研究月刊,42(6),104-112。
|