G8 Initiative: Structural Bamboo Products
G8 Initiative: Structural Bamboo Products
批准号:
1258574
负责人:
Lorna Gibson
金额:
$44.7万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2012
资助国家:
美国
项目状态:
已结题
起止时间:
2012-10-01 至 2017-03-31
中文摘要
美国国家科学基金会授予麻省理工学院(MIT)的这一奖项,用于资助参与八国集团研究理事会倡议(G8 Research Councils Initiative)竞争性选拔项目的美国研究人员。结构竹制品。这是美国国家科学基金会、加拿大国家科学与工程研究委员会(NSERC)、法国国家研究局(ANR)、德国德国科学促进会(DFG)、日本科学促进会(JSPS)、俄罗斯基础研究基金会(RFBR)和英国研究委员会(RCUK)之间的试点合作。支持在竞争基础上选出的由至少三个伙伴国家的研究人员组成的合作研究项目。这个与麻省理工学院、加拿大不列颠哥伦比亚大学和英国剑桥大学合作的国际项目为竹子开发了绿色建筑材料和建筑规范。中国、印度和巴西的经济发展迅速,对建筑材料的需求也在不断增加。钢铁和混凝土等传统建筑材料的生产是能源密集型和不可持续的:仅混凝土就占全球二氧化碳排放量的5%。竹子是一种生长迅速的可再生建筑材料,在这些国家广泛种植,但在现代建筑中尚未充分利用其潜力。它的机械性能与木材相似,但每公顷的产量是传统木材种植园的六倍。因此,结构竹制品,类似于胶合板、定向刨花板或胶合层压木制品,在迅速发展的国家具有巨大的潜力,可以部分取代能源密集型材料的使用。该项目旨在:描述竹子作为一种材料的机械性能;开发将竹片加工成结构产品(如板和梁)的方法;测试结构竹板和梁;建议对结构竹制品的现有木结构建筑规范进行调整;并评估使用结构竹制品建造的建筑物的能源性能和生命周期成本。如果成功,这项研究的结果将有助于建立知识基础和使用工程竹子,并通过开发可再生的、低碳的传统结构部件替代品来增加建筑产品的可持续性。竹制品结构建筑规范的制定将有助于更有效和更广泛地使用竹子作为建筑材料。了解结构性竹制品的能源投入有助于确定可能节约的领域。该项目还将有助于人力资源的发展,培养学生和博士后研究人员。
英文摘要
This NSF award to Massachusetts Institute of Technology (MIT) funds U.S. researchers participating in a project competitively selected by the G8 Research Councils Initiative ?Structural Bamboo Products.? This is a pilot collaboration among the U.S. National Science Foundation, the Canadian National Sciences and Engineering Research Council (NSERC), the French Agence Nationale de la Recherche (ANR), the German Deutsche Forschungsgemeinschaft (DFG), the Japan Society for the Promotion of Science (JSPS), the Russian Foundation for Basic Research (RFBR),and the United Kingdom Research Councils (RCUK), supporting collaborative research projects selected on a competitive basis that are comprised of researchers from at least three of the partner countries. This international project with MIT, the University of British Columbia (Canada) and the University of Cambridge (United Kingdom) develops green construction materials and building codes for bamboo. China, India and Brazil have rapidly expanding economies with increasing demand for building materials. The production of conventional construction materials such as steel and concrete is energy intensive and unsustainable: concrete alone accounts for 5% of global CO2 emissions. Bamboo is a fast growing, renewable building material widely cultivated in these countries but not utilized to its full potential in modern construction. Its mechanical properties are similar to wood but it produces up to six times as much mass per hectare as conventional timber plantations. Structural bamboo products, similar to plywood, oriented strand board, or glue-laminated wood products, therefore have enormous potential to partially replace the use of more energy intensive materials in rapidly developing countries. This project aims to: characterize the mechanical behavior of bamboo as a material; develop methods for processing pieces of bamboo into structural products such as panels and beams; test structural bamboo panels and beams; suggest adaptations to existing wood building codes for structural bamboo products; and assess the energy performance and life cycle costs of buildings made using structural bamboo products.If successful, the results of this research will contribute to the knowledge base and use of engineered bamboo and increase the sustainability of building products by the development of a renewable, lower-carbon alternative to conventional structural components. The development of building codes for structural bamboo products will contribute to the more efficient and widespread use of bamboo as a building material. Understanding energy inputs to structural bamboo products could help identify areas of possible savings. The project will also contribute towards the development of human resources, in training students and postdoctoral researchers.
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会议论文
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