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The 21st century will present unprecedented challenges. Already in its first decade we have seen the dramatic impact of two systemic risks, that of climate change and that of the financial crisis. The cause but also the solution to these crises lies in a deeper understanding of the underlying factors and int- dependencies. New ways must be found to overcome deep obstacles and find common solutions to seemingly intractable problems. The water crisis in the Middle East is a central challenge of the 21st century. The future of the people of the region depends on finding lasting solutions. Due to the exhaustion and pollution of available sources, compounded by climate change, demographic change and economic development, the pressures of water resource management will grow. New solutions must urgently be found as business as usual is not sustainable. This book provides vital new insights into possible elements of a sustainable future in one key area, that of the Jordan River and Dead Sea Basin. The future development of the Jordanian, Palestinian and Israeli people depends on finding a just and sustainable system of water resource management in this Basin. Given the potential for regional and other conflicts arising out of tensions over water, the ramifications are wider and even global in significance. This volume provides fresh regional and international perspectives which greatly assist in our understanding of the issues and their possible resolution.
The 21st century will present unprecedented challenges. Already in its first decade we have seen the dramatic impact of two systemic risks, that of climate change and that of the financial crisis. The cause but also the solution to these crises lies in a deeper understanding of the underlying factors and int- dependencies. New ways must be found to overcome deep obstacles and find common solutions to seemingly intractable problems. The water crisis in the Middle East is a central challenge of the 21st century. The future of the people of the region depends on finding lasting solutions. Due to the exhaustion and pollution of available sources, compounded by climate change, demographic change and economic development, the pressures of water resource management will grow. New solutions must urgently be found as business as usual is not sustainable. This book provides vital new insights into possible elements of a sustainable future in one key area, that of the Jordan River and Dead Sea Basin. The future development of the Jordanian, Palestinian and Israeli people depends on finding a just and sustainable system of water resource management in this Basin. Given the potential for regional and other conflicts arising out of tensions over water, the ramifications are wider and even global in significance. This volume provides fresh regional and international perspectives which greatly assist in our understanding of the issues and their possible resolution.
This book presents the results of the Interdisciplinary Research Group "Society – Water – Technology" of the Berlin-Brandenburg Academy of Sciences and Humanities. It describes interdisciplinary evaluation criteria for major water engineering projects (MWEPs) and portrays an application to the Lower Jordan Valley (Middle East) and the Fergana Valley (Central Asia). Both areas are characterised by transboundary conflicts, by challenges due to demographic and climate change and by political and societal pressures. Based on the findings, the book provides recommendations for science and political decisions makers as well as for international financing institutions. In addition, it outlines research gaps from an interdisciplinary perspective. In the past, MWEPs have been used as an instrument to cope with the demands of growing populations and to enhance development progress. Experiences with MWEPs have shown that a purely technical approach has not always brought about the desired results. In many cases, MWEPs have even resulted in negative implications for society and environment. Therefore, improved management strategies and enhanced technologies for a sustainable water resource management system are a prerequisite to meet present and future challenges. And, moreover, the continuous evaluation and optimisation of these measures is, likewise, a must.
This report contains a collection of papers from a workshopâ€"Strengthening Science-Based Decision-Making for Sustainable Management of Scarce Water Resources for Agricultural Production, held in Tunisia. Participants, including scientists, decision makers, representatives of non-profit organizations, and a farmer, came from the United States and several countries in North Africa and the Middle East. The papers examined constraints to agricultural production as it relates to water scarcity; focusing on 1) the state of the science regarding water management for agricultural purposes in the Middle East and North Africa 2) how science can be applied to better manage existing water supplies to optimize the domestic production of food and fiber. The cross-cutting themes of the workshop were the elements or principles of science-based decision making, the role of the scientific community in ensuring that science is an integral part of the decision making process, and ways to improve communications between scientists and decision makers.
This atlas aims to provide the reader with key pointers for a spatial analysis of the social, economic and political dynamics at work in Jordan, an exemplary country of the Middle East complexities. Being a product of seven years of scientific cooperation between Ifpo, the Royal Jordanian Geographic Center and the University of Jordan, it includes the contributions of 48 European, Jordanian and International researchers. A long historical part followed by sections on demography, economy, social disparities, urban challenges and major town and country planning, sheds light on the formation of Jordanian territories over time. Jordan has always been looked on as an exception in the Middle East due to the political stability that has prevailed since the country’s Independence in 1946, despite the challenge of integrating several waves of Palestinian, Iraqi and - more recently - Syrian refugees. Thanks to this stability and the peace accord signed with Israel in 1994, Jordan is one of the first countries in the world for development aid per capita.
Located 400 meters below sea level, at the tectonically active irregular boundary between the Mediterranean and Arabic plates, the Dead Sea is the site of many interesting phenomena. It provides a modern analog for ancient pull-apart basins and allows researchers to examine the process of evaporite deposition from deep water. It also offers insight into the adaptive ability of the life form living in the hypersaline brine. This book, based on a conference held in Tel Aviv in December 1993, focuses on the geophysics, geochemistry, hydrology, and climatology of the Dead Sea region.
Foreword -- Preface -- Acronyms & units of measurement -- Introduction to the inventory -- Shared water resources in Western Asia -- Key findings -- Overview & methodology: Surface water -- Euphrates River Basin -- Shared tributaries of the Euphrates River -- Tigris River Basin -- Shared tributaries of the Tigris River -- Shatt al Arab, Karkheh and Karun Rivers -- Jordan River Basin -- Orontes River Basin -- Nahr El Kabir Basin -- Qweik River Basin -- Overview & methodology: Groundwater -- Saq-Ram Aquifer System (West) -- Wajid Aquifer System -- Tawila-Mahra/Cretaceous Sands: Wasia-Biyadh-Aruma Aquifer System (South) -- Sakaka-Rutba: Wasia-Biyadh-Aruma Aquifer System (North) -- Rub'al Khali: Umm er Radhuma-Dammam Aquifer System (South) -- Gulf Umm er Radhuma-Dammam Aquifer System (Centre) -- Widyan-Salman: Umm er Radhuma-Dammam Aquifer System (North) -- Wadi Sirhan Basin: Tawil-Quaternary Aquifer System -- Anti-Lebanon -- Western Aquifer Basin -- Coastal Aquifer Basin -- Yarmouk Basin: Basalt Aquifer System (West) -- Azraq-Dhuleil Basin: Basalt Aquifer System (South) -- Taurus-Zagros -- Jezira Tertiary Limestone Aquifer System -- Jezira Basin: Neogene Aquifer System (North-West): Upper and Lower Fars -- Dibdibba Delta Basin Neogene Aquifer System (South-East): Dibdibba-Kuwait Group
Quaternary of the Levant presents up-to-date research achievements from a region that displays unique interactions between the climate, the environment and human evolution. Focusing on southeast Turkey, Lebanon, Syria, Jordan and Israel, it brings together over eighty contributions from leading researchers to review 2.5 million years of environmental change and human cultural evolution. Information from prehistoric sites and palaeoanthropological studies contributing to our understanding of 'out of Africa' migrations, Neanderthals, cultures of modern humans, and the origins of agriculture are assessed within the context of glacial-interglacial cycles, marine isotope cycles, plate tectonics, geochronology, geomorphology, palaeoecology and genetics. Complemented by overview summaries that draw together the findings of each chapter, the resulting coverage is wide-ranging and cohesive. The cross-disciplinary nature of the volume makes it an invaluable resource for academics and advanced students of Quaternary science and human prehistory, as well as being an important reference for archaeologists working in the region.
This book takes a two-staged approach to contribute to the contemporary Integrated Water Resources Management (IWRM) research. First it investigates sub-basin-scale IWRM modelling and scenario planning. The Jordanian Wadi Shueib is used as exemplary case study. Then, it develops a framework to collaboratively manage planning and decision making knowledge on the basis of semantic web technologies. Future IWRM initiatives can benefit from the valuable insights achieved in the presented study.