Mechanical Behavior Dependence on Geotextiles Interweave Configuration Used in Coastal Restoration
デジタルデータあり(科学技術振興機構)
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- 資料種別
- 記事
- タイトル
- 著者・編者
- Carlos Rolando RIOS-SOBERANISTakenobu SAKAIShuichi WAKAYAMAEmilio PEREZ-PACHECOJorge Carlos CANTO-PINTO
- 著者標目
- タイトル(掲載誌)
- Advanced experimental mechanics / Editorial board for advanced experimental mechanics [編]
- 巻号年月日等(掲載誌)
- 9:2024.8
- 掲載巻
- 9
- 掲載ページ
- 3-10
- 掲載年月日(W3CDTF)
- 2024-08
- ISSN(掲載誌)
- 2189-4752
- ISSN-L(掲載誌)
- 2189-4752
- 出版事項(掲載誌)
- Niigata : The Japanese Society for Experimental Mechanics
- 出版地(国名コード)
- JP
- 本文の言語コード
- eng
- NDLC
- 対象利用者
- 一般
- 所蔵機関
- 国立国会図書館
- 請求記号
- Z63-D560
- 連携機関・データベース
- 国立国会図書館 : 国立国会図書館雑誌記事索引
- 書誌ID(NDLBibID)
- 033783720
- 整理区分コード
- 632
- 要約等
- <p>Geotubes are the most used technology for coastal recovery due to erosion and, because of the lower price and easier installation, geotextile tube systems can be good alternatives for hydraulic and coastal structures. Geotubes can suffer damage due to cuts in fibers and other components, formation of holes, abrasion originating a reduction in mechanical resistance. On the other hand, when filled in-situ by hydraulic pumping is assumed that tensile stresses act directionally due to the hydraulic pressure and the tensile force in the geosynthetic tube. Therefore, it is important to understand the mechanical behavior as well as to identify the stages during the damage process. A mechanical vital role is sustained by the textile architecture and configuration since stresses will be transferred along the textiles. This paper exhibits the full mechanical characterization of two geotextiles made of polyethilenethereftalate (PET) and polypropylene (PP) respectively, both with different interweave architecture. Results found that textile geometry is crucial for bearing stresses and depend on the acting direction. Acoustic emission technique was employed to identify the mechanism of failure that supported the mechanical characterization findings.</p>
- DOI
- 10.11395/aem.24-0017
- オンライン閲覧公開範囲
- インターネット公開
- 連携機関・データベース
- 科学技術振興機構 : J-STAGE
- 要約等
- <p>Geotubes are the most used technology for coastal recovery due to erosion and, because of the lower price and easier installation, geotextile tube systems can be good alternatives for hydraulic and coastal structures. Geotubes can suffer damage due to cuts in fibers and other components, formation of holes, abrasion originating a reduction in mechanical resistance. On the other hand, when filled in-situ by hydraulic pumping is assumed that tensile stresses act directionally due to the hydraulic pressure and the tensile force in the geosynthetic tube. Therefore, it is important to understand the mechanical behavior as well as to identify the stages during the damage process. A mechanical vital role is sustained by the textile architecture and configuration since stresses will be transferred along the textiles. This paper exhibits the full mechanical characterization of two geotextiles made of polyethilenethereftalate (PET) and polypropylene (PP) respectively, both with different interweave architecture. Results found that textile geometry is crucial for bearing stresses and depend on the acting direction. Acoustic emission technique was employed to identify the mechanism of failure that supported the mechanical characterization findings.</p>
- DOI
- 10.11395/aem.24-0017
- 連携機関・データベース
- 国立情報学研究所 : CiNii Research
- 提供元機関・データベース
- Japan Link Center雑誌記事索引データベース
- 書誌ID(NDLBibID)
- 033783720