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This book is a collection of papers presented at the International Workshop on Geotechnical Natural Hazards held July 12-15, 2014, in Kitakyushu, Japan. The workshop was the sixth in the series of Japan-Taiwan Joint Workshops on Geotechnical Hazards from Large Earthquakes and Heavy Rainfalls, held under the auspices of the Asian Technical Committee No. 3 on Geotechnology for Natural Hazards of the International Society for Soil Mechanics and Geotechnical Engineering. It was co-organized by the Japanese Geotechnical Society and the Taiwanese Geotechnical Society. The contents of this book focus on geotechnical and natural hazard-related issues in Asia such as earthquakes, tsunami, rainfall-induced debris flows, slope failures, and landslides. The book contains the latest information and mitigation technology on earthquake- and rainfall-induced geotechnical natural hazards. By dissemination of the latest state-of-the-art research in the area, the information contained in this book will help researchers, designers, consultants, government officials, and academicians involved in the mitigation of natural hazards. The findings and other information provided here is expected to contribute toward the development of a new chapter in disaster prevention and mitigation of geotechnical structures.
SCRAP TIRE DERIVED GEOMATERIALS is a compilation of peer-reviewed papers presented at the International Workshop on Scrap Tire Derived Geomaterials (IW-TDGM 2007) in Yokosuka, Japan in March 2007.The workshop was the first ever international forum on scrap tire derived geomaterials (TDGM), bringing together people from various disciplines working in industry, academia and public sector to discuss the latest ideas and development in the field, and disseminating information about experiments, numerical modeling, design and practical applications related to scrap tire derived geomaterials (TDGM). In recent years emerging geomaterials derived from scrap tires have been receiving increasing attention and gaining acceptance as suitable and alternative geomaterials worldwide, since they provide cost-effective solutions to many practical problems.This book presents current research and describes advances. It reflects the international significance of such recycle materials and discusses the use of whole tires, tire shreds and tire chips, as well as tire chips mixed with soils and/or treated materials. SCRAP TIRE DERIVED GEOMATERIALS also includes discussion about the geoenvironmental impact and assessment, with case studies, novel concepts and field applications. It also contains information pertaining to mechanical properties and modeling. SCRAP TIRE DERIVED GEOMATERIALS provides a wealth of knowledge and information. It promotes the geotechnical approach for material recycling of tire derived geomaterials, contributing to a sustainable global environment. This book is aimed at people working in industry, academia and public sector, related to geotechnical engineering,waste reuse and management, sustainable construction and cost-performance.
This book is a collection of papers presented at the International Workshop on Geotechnical Natural Hazards held July 12-15, 2014, in Kitakyushu, Japan. The workshop was the sixth in the series of Japan-Taiwan Joint Workshops on Geotechnical Hazards from Large Earthquakes and Heavy Rainfalls, held under the auspices of the Asian Technical Committee No. 3 on Geotechnology for Natural Hazards of the International Society for Soil Mechanics and Geotechnical Engineering. It was co-organized by the Japanese Geotechnical Society and the Taiwanese Geotechnical Society. The contents of this book focus on geotechnical and natural hazard-related issues in Asia such as earthquakes, tsunami, rainfall-induced debris flows, slope failures, and landslides. The book contains the latest information and mitigation technology on earthquake- and rainfall-induced geotechnical natural hazards. By dissemination of the latest state-of-the-art research in the area, the information contained in this book will help researchers, designers, consultants, government officials, and academicians involved in the mitigation of natural hazards. The findings and other information provided here is expected to contribute toward the development of a new chapter in disaster prevention and mitigation of geotechnical structures.
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