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    《新能源结构 - 收集、利用、部署和储存可再生能源》特刊征稿

    作者:赵赟  

    发布者:翁瑜  

    审核人:唐环 仉文岗 马骥  

    日期 : 2024-01-13

     

    近日,薄壁结构期刊《Thin-Walled Structures》面向土木工程领域的特刊《Novel Structures for Harnessing, Deploying and Storing Renewable Energy》(《新能源结构 - 收集、利用、部署和储存可再生能源》)正式创刊,现面向广大学者征稿。

    《Thin-Walled Structures》期刊由Elsevier出版,JCR分区为Q1,是中科院工程技术1区Top期刊。该特刊由我院王宇航教授、徐菲教授和University of Lisbon的Prof. Yordan Garbatov及Johns Hopkins University的Prof. Benjamin Schafer共同担任客座编辑。

     

    可再生能源是来自可再生自然资源的清洁能源,例如风能、太阳能、水能、潮汐能和地热能,它已成为应对气候危机和实现碳中和的关键。为了更有效的收集、利用、部署和储存可再生能源,需要新型的钢与组合新能源结构,包括风电结构、太阳能电板支架结构、浮式结构、水电结构和地热能取能结构。由于这些新能源结构通常位于高山、沙漠、深海和极寒地区,因此面临着特殊的设计要求、复杂的载荷条件和恶劣的环境因素。本专题聚焦于钢与组合新能源结构的最新研究及应用进展。

    (Renewable energy is clean energy that comes from renewable natural resources, such as wind, sunlight, the movement of water, tides and geothermal heat, and it has become the key to addressing the climate crisis and achieving the goal of carbon neutrality. Novel steel and composite structures are required to harness, deploy, and store renewable energy. These structures, including wind turbines, mounting structures for solar panels, floating structures, hydropower stations and geothermal power plants, are usually located in high mountains, deserts, deep sea and extremely cold regions, thereby presenting various engineering challenges resulting from the combination of special design requirements, complex loading conditions and harsh environmental factors. This special issue is dedicated to the latest developments and advances in research and practical applications of novel steel and composite structures for harnessing, deploying and storing renewable energy.)

    主题包括但不限于:

    •风电结构、太阳能电池板、浮式结构、水电结构和地热能取能结构的新型结构体系

    Novel structural systems for wind turbines, solar panels, floating structures, hydropower stations and geothermal power plants

    •在地震、爆炸、冲击、台风、海啸、干旱气候、严寒天气等极端载荷条件下的结构行为。

    Their structural behaviour under extreme loading conditions, including earthquakes, blasts, impacts, typhoons, tsunamis, dry climate, severe cold weather, etc.

    •疲劳、断裂和振动引起的分析

    Fatigue, fracture and vibration-induced analyses

    •结构退化

    Structural degradation

    •长期性能和耐久性

    Long-term performance and durability

    •设计与全寿命周期评估

    Design and life-cycle assessment

    •基于人工智能和集成的设计方法

    Artificial-intelligent-based and integrated design methods

     

    官网主页链接:https://www.sciencedirect.com/journal/thin-walled-structures/about/call-for-papers#novel-structures-for-harnessing-deploying-and-storing-renewable-energy

    特刊投稿链接:https://www.editorialmanager.com/twst/default2.aspx

    文章投稿截至日期:2024年9月30日

     

    客座编辑:

    王宇航,重庆大学

    Yu-Hang Wang, Chongqing University, China

    徐    菲,重庆大学

    Fei Xu, Chongqing University, China

    Yordan Garbatov, University of Lisbon, Portugal

    Benjamin Schafer, Johns Hopkins University, USA