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  • Books  (9)
  • Hydrology.  (7)
  • Geographic information systems.  (3)
  • Cham :Springer International Publishing :  (9)
  • English  (9)
  • French
  • 551.46  (9)
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  • Books  (9)
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  • English  (9)
  • French
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  • 1
    Keywords: Oceanography. ; Climatology. ; Geographic information systems. ; Ocean Sciences. ; Climate Sciences. ; Geographical Information System.
    Description / Table of Contents: Chapter 1 Introduction -- Part 1 Whitecap Parameterizations -- Chapter 2 Parameterizing Coverage using Sea Surface Imagery -- Chapter 3 Estimates of Whitecap Wave Breaking Energy Dissipation Rate from Measurements of Whitecap Coverage -- Chapter 4 Inferences to be Drawn from a Consideration of Power-Law Descriptions of Multiple Data Sets Each Comprised of Whitecap Coverage, WB and 10m-Elevation Wind Speed Measurements -- Chapter 5 Wave Breaking and Spray -- Chapter 6 Measurements of Air-Side Shear- and Wave-Induced Viscous Stress over Strongly Forced, Young Wind Waves -- Part 2 Whitecaps and Gas Transfer -- Chapter 7 What Controls Air-Sea Gas Exchange at Extreme Wind Speeds? Evidence from Laboratory Experiments -- Chapter 8 Studying the Role of Gas Bubbles on Air-Sea Gas Transfer Using Computer Models -- Chapter 9 The role of physical chemical properties of gases in whitecap facilitated Gas Transfer -- Chapter 10 Sea Spray and gas transfer -- Part 3 Whitecaps and Remote Sensing -- Chapter 11 Global Whitecap Coverage from Satellite Remote Sensing and Wave Modelling -- Chapter 12 The Case for Measuring Whitecaps Using Ocean Color and Initial Linkages to Subsurface Physics -- Chapter 13 Bright Oceans: Spectral differentiation of whitecaps, sea ice, plastics, and other flotsam -- Part 4 A Historical Perspective -- Chapter 14 Twixt Wind and Waves: A first-person account of the early years of the study of oceanic whitecaps.
    Abstract: This book provides the reader with the a comprehensive summary of the recent advances in the study of whitecaps. It is the first major publication focusing specifically on whitecaps and their role in a variety of climate-relevant air-sea interaction processes since the publication, in 1986, of Oceanic Whitecaps, and Their Role in Air-Sea Exchange Processes, edited by Edward Charles Monahan and Gearoid Mac Niocaill (published by Springer). This book also provides the interested reader with a review of the initial work done on this topic in the second half of the 20th Century.
    Type of Medium: Online Resource
    Pages: X, 290 p. 89 illus., 47 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030363710
    DDC: 551.46
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Oceanography. ; Sustainability. ; Water. ; Hydrology. ; Environmental health. ; Ocean Sciences. ; Sustainability. ; Water. ; Environmental Health.
    Description / Table of Contents: Introduction -- A Comprehensive Overview of SDG 14 -- Marine Solid Pollution -- Ocean Acidification And Sea Warming -- Fishing And Overfishing -- Reinventing Marine Exploitation -- Conservation And Restoration -- Science Monitoring And Scientific Outreach -- Conclusion.
    Abstract: This book focuses, in seven chapters, on the perspectives and solutions that different research groups offer to try to address problems related to SDG 14: Life Below Water. The different objectives developed in SDG 14 are treated independently, with an attempt to give a global vision of the issues. The mechanism used to select the book's content was through an Artificial Intelligence program, choosing articles related to the topics by means of keywords. The program selected those articles, and those that were not related to the topic or did not focus on SDG 14 were discarded by a subject matter expert. Obviously, the selection was partial and the entire subject is not covered, but the final product gives a very solid idea of how to orient ourselves to delve deeper into the topic of SDG 14 using published chapters and articles. The AI program itself selected the text of these contributions to show the progress in different topics related to SDG 14. This mode of operation will allow specialists (and non-specialists) to collect useful information for their specific research purposes in a short period of time. At a time when information is essential in order to move quickly by providing concrete answers to complex problems, this type of approach will become essential for researchers, especially for a subject as vast as SDG 14.
    Type of Medium: Online Resource
    Pages: VIII, 596 p. 1 illus. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031194672
    DDC: 551.46
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Oceanography. ; Physical geography. ; Geographic information systems. ; Ocean Sciences. ; Earth System Sciences. ; Geographical Information System.
    Description / Table of Contents: Chapter 1. The surface elevation probability distribution of nonlinear random waves -- Chapter 2. Statistical distribution sea surface slopes -- Chapter 3. On the dispersion relation of sea waves -- Chapter 4. Modeling the shape of the pulse reflected from the sea surface -- Chapter 5. Effect of long surface waves on the Bregg scattering of microwave -- Chapter 6. Impact of physical and chemical characteristics of the sea water on Bregg scattering of the radio waves -- Chapter 7. Measurements of statistical moments of sea surface slopes based on satellite sensing data -- Chapter 8. Contrast of optical images at the slick-ripple interface -- Chapter 9. Variability of the ocean-atmosphere interface as a light reflecting surface -- Chapter 10. Physical limitations on the accuracy of remote detection of wind speed over the sea.
    Abstract: This book considers the formation of the signal reflected from the sea surface when sensing in the radio and optical range. Currently, remote sensing from space is the main source of information about the processes taking place in the atmosphere and ocean. The correct interpretation of remote sensing data requires detailed information about the rough surface that forms the reflected signal. The first three chapters describe the statistical and spatial-temporal characteristics of the sea surface, focusing on the effects associated with the nonlinearity of sea surface waves. The analysis makes extensive use of data obtained by the authors on a stationary oceanographic platform located on the Black sea. In the next seven chapters, the authors analyze how the nonlinearity of waves affects the formation of a signal reflected from the sea surface. This book is geared for advanced level research in the general subject area of remote sensing and modeling as they apply to the coastal marine environment. It is of value to scientists and engineers involved in the development of methods and instruments of remote sensing, analysis and interpretation of data. It is useful for students who have decided to devote themselves to the study of the oceans.
    Type of Medium: Online Resource
    Pages: XIV, 222 p. 105 illus., 1 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030587529
    Series Statement: Springer Oceanography,
    DDC: 551.46
    Language: English
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  • 4
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Oceanography. ; Physical geography. ; Water. ; Hydrology. ; Geology. ; Ocean Sciences. ; Earth System Sciences. ; Earth System Sciences. ; Water. ; Geology.
    Description / Table of Contents: Stratified / rotating fluid dynamics of the atmosphere.– Ocean -- Development of the equations -- Basic and perturbed states -- Quasi-Geostrophic theory -- Internal waves -- Two-layer model -- Convection -- Boundary layers in stratified fluids -- Jets and buoyant plumes -- Diffusion and transport processes -- Equations for diffusion processes -- Simple models of turbulent diffusion and transport -- Shear flow dispersion -- Transport of suspended sediments -- Estuarine transport -- Simple ecosystem models -- Introduction -- Dynamics of ecosystems -- Ecosystem models.
    Abstract: This book develops a fundamental understanding of geophysical fluid dynamics based on a mathematical description of the flows of inhomogeneous fluids. It covers these topics: 1. development of the equations of motion for an inhomogeneous fluid 2. review of thermodynamics 3. thermodynamic and kinetic energy equations 4. equations of state for the atmosphere and the ocean, salt, and moisture effects 5. concepts of potential temperature and potential density 6. Boussinesq and quasi-geostrophic approximations 7. conservation equations for vorticity, mechanical and thermal energy instability theories, internal waves, mixing, convection, double-diffusion, stratified turbulence, fronts, intrusions, gravity currents Graduate students will be able to learn and apply the basic theory of geophysical fluid dynamics of inhomogeneous fluids on a rotating earth, including: 1. derivation of the governing equations for a stratified fluid starting from basic principles of physics 2. review of thermodynamics, equations of state, isothermal, adiabatic, isentropic changes 3. scaling of the equations, Boussinesq approximation, applied to the ocean and the atmosphere 4. examples of stratified flows at geophysical scales, steady and unsteady motions, inertia-gravity internal waves, quasi-geostrophic theory 5. vorticity and energy conservation in stratified fluids 6.boundary layer convection in stratified containers and basins.
    Type of Medium: Online Resource
    Pages: XVI, 323 p. 100 illus., 96 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030749347
    Series Statement: Springer Textbooks in Earth Sciences, Geography and Environment,
    DDC: 551.46
    Language: English
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  • 5
    Keywords: Oceanography. ; Water. ; Hydrology. ; Cogeneration of electric power and heat. ; Fossil fuels. ; Geology. ; Physical geography. ; Business. ; Management science. ; Ocean Sciences. ; Water. ; Fossil Fuel. ; Geology. ; Earth System Sciences. ; Business and Management.
    Description / Table of Contents: Part I. A History of gas hydrate research -- Chapter 1. Gas Hydrate Research: From the Laboratory to the Pipeline -- Chapter 2. Shallow gas hydrates near 64° N, off Mid-Norway: Concerns regarding drilling and production technologies -- Chapter 3. Finding and using the world’s gas hydrates -- Part II. Gas Hydrate Fundamentals -- Chapter 4. Seismic rock physics of gas-hydrate bearing sediments -- Chapter 5. Estimation of gas hydrates in the pore space of sediments using inversion methods -- Chapter 6. Electromagnetic applications in methane hydrate reservoirs -- Part III. Gas Hydrate Drilling for Research and Natural Resources -- Chapter 7. Hydrate Ridge - A gas hydrate system in a subduction zone setting -- Chapter 8. Northern Cascadia Margin gas hydrates – Regional geophysical surveying, IODP drilling Leg 311 and cabled observatory monitoring -- Chapter 9. Accretionary wedge tectonics and gas hydrate distribution in the Cascadia forearc -- Chapter 10. Bottom Simulating Reflections below the Blake Ridge, western North Atlantic Margin -- Chapter 11. A review of the exploration, discovery, and characterization of highly concentrated gas hydrate accumulations in coarse-grained reservoir systems along the Eastern Continental Margin of India -- Chapter 12. Ulleung Basin Gas Hydrate Drilling Expeditions, Korea: Lithologic characteristics of gas hydrate-bearing sediments -- Chapter 13. Bottom simulating reflections in the South China Sea -- Chapter 14. Gas hydrate and fluid related seismic indicators across the passive and active margins off SW Taiwan -- Chapter 15. Gas Hydrate Drilling in the Nankai Trough, Japan -- Chapter 16. Alaska North Slope Terrestrial Gas Hydrate Systems: Insights from Scientific Drilling -- Part IV -- Arctic -- Chapter 17. Gas Hydrates on Alaskan Marine Margins -- Chapter 18. Gas Hydrate related bottom-simulating reflections along the west-Svalbard margin, Fram Strait -- Chapter 19. Occurrence and distribution of bottom simulating reflections in the Barents Sea -- Chapter 20. Svyatogor Ridge - A gas hydrate system driven by crustal scale processes -- Chapter 21. Gas hydrate potential in the Kara Sea -- Part V. Greenland and Norwegian Sea -- Chapter 22. Geophysical indications of gas hydrate occurrence on the Greenland continental margins -- Chapter 23. Gas hydrates in the Norwegian Sea -- Part VI. North Atlantic. Chapter 24. U.S. Atlantic Margin Gas Hydrates -- Chapter 25. Gas Hydrates and submarine sediment mass failure: A case study from Sackville Spur, offshore Newfoundland -- Chapter 26. Bottom Simulating Reflections and Seismic Phase Reversals in the Gulf of Mexico -- Chapter 27. Insights into gas hydrate dynamics from 3D seismic data, offshore Mauritania -- Part VII. South Atlantic -- Chapter 28. Distribution and Character of Bottom Simulating Reflections in the Western Caribbean Offshore Guajira Peninsula, Colombia -- Chapter 29. Gas hydrate systems on the Brazilian continental margin -- Chapter 30. Gas hydrate on the southwest African continental margin -- Chapter 31. Shallow gas hydrates associated to pockmarks in the Northern Congo deep-sea fan, SW Africa -- Part VIII. Pacific -- Chapter 32. Gas hydrate-bearing province off eastern Sakhalin slope -- Chapter 33. Tectonic BSR Hypothesis in the Peruvian margin: A forgotten way to see marine gas hydrate systems at convergent margins -- Chapter 34. Gas hydrate and free gas along the Chilean Continental Margin -- Chapter 35. New Zealand’s Gas Hydrate Systems -- Part IX. Indic -- Chapter 36. First evidence of bottom simulation reflectors in the western Indian Ocean offshore Tanzania -- Part X. Mediterranean Sea -- Chapter 37. A Gas Hydrate System of Heterogenous Character in the Nile Deep-Sea Fan -- Part XI. Black Sea -- Chapter 38. Gas hydrate accumulations in the Black Sea -- Part XII. Lake Baikal -- Chapter 39. The position of gas hydrates in the sedimentary strata and in the geological structure of Lake Baikal -- Part XIII. Antarctic -- Chapter 40. Bottom Simulating Reflector in the western Ross Sea Antarctica -- Chapter 41. Bottom Simulating Reflectors along the Scan Basin, a deep-sea gateway between the Weddell Sea (Antarctica) and Scotia Sea -- Chapter 42. Bottom Simulating Reflections in Antarctica -- Part XIV. Where Gas Hydrate Dissociates Seafloor Microhabitats Flourish. Chapter 43. Integrating fine-scale habitat mapping and pore water analysis in cold seep research: A case study from the SW Barents Sea.
    Abstract: This world atlas presents a comprehensive overview of the gas-hydrate systems of our planet with contributions from esteemed international researchers from academia, governmental institutions and hydrocarbon industries. The book illustrates, describes and discusses gas hydrate systems, their geophysical evidence and their future prospects for climate change and continental margin geohazards from passive to active margins. This includes passive volcanic to non-volcanic margins including glaciated and non-glaciated margins from high to low latitudes. Shallow submarine gas hydrates allow a glimpse into the past from the Last Glacial Maximum (LGM) to modern environmental conditions to predict potential changes in future stability conditions while deep submarine gas hydrates remained more stable. This demonstrates their potential for rapid reactions for some gas hydrate provinces to a warming world, as well as helping to identify future prospects for environmental research. Three-dimensional and high-resolution seismic imaging technologies provide new insights into fluid flow systems in continental margins, enabling the identification of gas and gas escape routes to the seabed within gas hydrate environments, where seabed habitats may flourish. The volume contains a method section detailing the seismic imaging and logging while drilling techniques used to characterize gas hydrates and related dynamic processes in the sub seabed. This book is unique, as it goes well beyond the geophysical monograph series of natural gas hydrates and textbooks on marine geophysics. It also emphasizes the potential for gas hydrate research across a variety of disciplines. Observations of bottom simulating reflectors (BSRs) in 2D and 3D seismic reflection data combined with velocity analysis, electromagnetic investigations and gas-hydrate stability zone (GHSZ) modelling, provide the necessary insights for academic interests and hydrocarbon industries to understand the potential extent and volume of gas hydrates in a wide range of tectonic settings of continental margins. Gas hydrates control the largest and most dynamic reservoir of global carbon. Especially 4D, 3D seismic but also 2D seismic data provide compelling sub-seabed images of their dynamical behavior. Sub-seabed imaging techniques increase our understanding of the controlling mechanisms for the distribution and migration of gas before it enters the gas-hydrate stability zone. As methane hydrate stability depends mainly on pressure, temperature, gas composition and pore water chemistry, gas hydrates are usually found in ocean margin settings where water depth is more than 300 m and gas migrates upward from deeper geological formations. This highly dynamic environment may precondition the stability of continental slopes as evidenced by geohazards and gas expelled from the sea floor. This book provides new insights into variations in the character and existence of gas hydrates and BSRs in various geological environments, as well as their dynamics. The potentially dynamic behavior of this natural carbon system in a warming world, its current and future impacts on a variety of Earth environments can now be adequately evaluated by using the information provided in the world atlas. This book is relevant for students, researchers, governmental agencies and oil and gas professionals. Some familiarity with seismic data and some basic understanding of geology and tectonics are recommended.
    Type of Medium: Online Resource
    Pages: XXI, 514 p. 309 illus., 294 illus. in color. , online resource.
    Edition: 1st ed. 2022.
    ISBN: 9783030811860
    DDC: 551.46
    Language: English
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  • 6
    Keywords: Oceanography. ; Geographic information systems. ; Water. ; Hydrology. ; Pollution. ; Ecology Methodology. ; Ocean Sciences. ; Geographical Information System. ; Water. ; Pollution. ; Ecological Modelling.
    Description / Table of Contents: Chapter1. Detection of Coccolithophore bloom episodes in Algiers Bay using satellite and in-situ analysis -- Chapter2. Multiscale spatiotemporal NDVI mapping of salt marshes using Sentinel-2, Dove, and UAV imagery in the Bay of Mont-Saint-Michel, France -- Chapter3. Contribution of near and mid infrared wavebands to mapping fine-scale coastal ecogeomorphological features -- Chapter4. Monitoring land cover change in the south-eastern Baltic sea since the 1980s by remote sensing -- Chapter5. Assessment of land cover changes in the Allala watershed based on object based image analysis using Landsat and Sentinel-2 images -- Chapter6. Deep Learning based Bathymetry Mapping from Multispectral Satellite Data around Europa Island -- Chapter7. Assessment of coastal vulnerability to erosion risk using geospatial and remote sensing methods (case of Jerba Island, Tunisia) -- Chapter8. A Random Forest approach for evaluating forest cover changes outside dikes with Sentinel images -- Chapter9. Spatial monitoring of coastal protection dikes case-study of the touristic beach “Palm Beach, west-Algiers Algeria’’ -- Chapter10. Monitoring shoreline changes in the Vietnamese Mekong delta coastal zone using satellite images and wave reduction structures -- Chapter11. Automatic detection of hydrodynamical and biological indicators of the shoreline using a convolutional neural network -- Chapter12. Very high-resolution monitoring and evaluation of tidal and ecological restoration in Beaussais’ bay -- Chapter13. Assessment of shoreline change of Jerba Island based on remote sensing data and GIS using DSAS tools -- Chapter14. New insights into the shallow morpho-sedimentary patterns using high-resolution topo-bathymetric lidar: the case study of the Bay of Saint-Malo -- Chapter15. Spatial modeling of the benthic biodiversity using topo-bathymetric lidar and neural networks -- Chapter16. Local circalittoral rocky seascape structuring fish community: insights from a photogrammetric approach -- Chapter17. Local circalittoral rocky seascape structuring fish community: insights from a photogrammetric approach -- Chapter18. Increasing the nature-based coastal protection using bathymetric lidar, terrain classification, network modelling: reefs of Saint-Malo’s lagoon?.
    Abstract: This volume presents full paper contributions from the International Conference of European Spatial Data for Coastal and Marine Remote Sensing (EUCOMARE) 2022, with the support of the ERASMUS+ Programme of the European Union, held in Saint Malo, France. EUCOMARE aims to promote academic and technical exchange on coastal related studies including coastal environmental and socio-economic issues, with the use of European remotely sensed data. The book is an excellent resource for scientists, engineers, and programme managers eager to learn about the recent developments and achievements in the field of remote sensing applications on marine and coastal areas. Readers will learn about recent advances in sensors' radiometric, spatial, temporal and spectral resolution, as well as new data processing approaches in remote sensing for monitoring and mapping the various characteristics of marine, coastal and aquatic systems.
    Type of Medium: Online Resource
    Pages: XIX, 249 p. 135 illus., 124 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031162138
    DDC: 551.46
    Language: English
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  • 7
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Oceanography. ; Physical geography. ; Water. ; Hydrology. ; Ocean Sciences. ; Earth System Sciences. ; Water.
    Description / Table of Contents: 1. General Concepts Of Pollution and Pollutants and Their Nature (Natural And Man-Made Sources Of Pollution Of The World's Oceans) -- 2. Current Problems of The World Ocean Pollution By Microplastic -- 3. Current Problems of The World Ocean Pollution by Oil and Oil Products -- 4. Numerical Modeling Of The Hydrocarbon Spot Shape On The Water Surface -- 5. Oil Spill Response At Sea: Methods and Technologies -- 6. Marine Ecosystems and Features of Their Functioning.
    Abstract: This book provides information on the causes, consequences, and possible solutions to modern environmental problems associated with ocean pollution with a particular focus on the Back Sea. The oceans are a vast but fragile complex. In recent decades, it has become especially manifest when ocean pollution has reached an unparalleled situation. Meanwhile, not only the well-being of ecosystems depends on the state of ocean waters, but human civilization largely depends on the oceans as a consequence of environmental dependence. This book examines the consequences of pollutants such as oil and hydrocarbon products (including plastics and microplastics), water acidification, sewage, wastewaters discharge into the ocean, thermal pollution, nuclear pollution, and biological pollution. Beyond the types of pollutants and their consequences, this book outlines the state of the art of the legal situation internationally regarding ocean pollution. The authors also show the current pollution of the inland seas, taking as an example of the Black Sea (anthropogenic and natural sources of pollution, its shelf, and shallow waters as well as international legislation). A part of the book analyzes the main types of environmental monitoring of the oceans and their role in solving ocean pollution problems with a particular interest in the Black Sea. The book is of interest to specialists in ocean pollution, ecologists, oceanologists, students, and graduate students studying oceanography, marine ecology, current methods of environmental monitoring, and legal problems related to the oceans and seas pollution, as well as to anyone interested in modern problems of the oceans.
    Type of Medium: Online Resource
    Pages: XIV, 213 p. 42 illus., 26 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030618957
    Series Statement: Springer Oceanography,
    DDC: 551.46
    Language: English
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  • 8
    Keywords: Oceanography. ; Medical sciences. ; Physical geography. ; Water. ; Hydrology. ; Public health. ; Epidemiology. ; Ocean Sciences. ; Health Sciences. ; Earth System Sciences. ; Water. ; Public Health. ; Epidemiology.
    Description / Table of Contents: Chapter 1-Overview: Global Ocean Changes – Impact on Human Health -- Chapter 2-Marine Chemistry: Acidity, Salinity and Chemical Composition -- Chapter 3-Marine Phytoplankton and CO2 Balance -- Chapter 4-Deep Water Horizon and Petroleum Exploration -- Chapter 5-The Ocean’s Impact on Emerging Infectious Diseases -- Chapter 6-Diminishing Fisheries and Impact on Human Food Supplies -- Chapter 7-Decreasing Marine Biodiversity -- Chapter 8-Marine Pollutants -- Chapter 9-Marine Biopharmaceuticals -- Chapter 10-Oceans and Rapid Climate Change -- Chapter 11-Hurricanes and Monsoons -- Chapter 12-Arctic Communities and Declining Ice Flow -- Chapter 13-Estuaries and Coastal Ecosystems -- Chapter 14-Current Research Activities.
    Abstract: This book provides a complete and current overview of the correlation between ocean conditions and human health, publishing comprehensively for the first time on the direct interactions among oceanography, marine biology and impacts on human health. Specifically the text addresses how changing ocean conditions result in health impacts and disruptions, with a focus on cases in the USA. ­ The changing ocean conditions that are discussed include diminishing marine biodiversity, climactic changes such as intensified weather events, shifting sea currents and increasing sea temperature. The book addresses the resulting health issues brought about by these various ocean conditions, such as emerging infectious diseases, starvation and poisoning among impacted communities, toxic algae blooms, threatened ecosystems, and other future implications. ­ The text was developed in conjunction with scientists from Brown University, the University of Rhode Island, the University of Texas at Austin, the University of California at Riverside and Ochsner Health, all located in areas deeply impacted by the changing Oceans. ­ The book will be of interest to marine research scientists, health care professionals, students, and general enthusiasts of oceanography and health. .
    Type of Medium: Online Resource
    Pages: XXI, 180 p. 26 illus. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030550127
    Series Statement: Global Perspectives on Health Geography,
    DDC: 551.46
    Language: English
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  • 9
    Online Resource
    Online Resource
    Cham :Springer International Publishing :
    Keywords: Oceanography. ; Climatology. ; Physical geography. ; Water. ; Hydrology. ; Environmental sciences. ; Physics. ; Ocean Sciences. ; Climate Sciences. ; Earth System Sciences. ; Water. ; Environmental Physics.
    Description / Table of Contents: A Brief Review of Algebra and Calculus -- Some Properties and Kinematics of Fluids -- Equations Governing the Motion of a Fluid (the Equation of Motion) -- Flow of a Homogeneous Incompressible Viscous Fluid -- Rotating, Homogeneous, Incompressible Fluids -- Shallow Water Theory -- Quasi-geostrophic Theory.
    Abstract: This textbook develops a fundamental understanding of geophysical fluid dynamics by providing a mathematical description of fluid properties, kinematics and dynamics as influenced by earth’s rotation. Its didactic value is based on elaborate treatment of basic principles, derived equations, exemplary solutions and their interpretation. Both starting graduate students and experienced scientists can closely follow the mathematical development of the basic theory applied to the flow of uniform density fluids on a rotating earth, with (1) basic physics introducing the "novel" effects of rotation for flows on planetary scales, (2) simplified dynamics of shallow water and quasi-geostrophic theories applied to a variety of steady, unsteady flows and geophysical wave motions, demonstrating the restoring effects of Coriolis acceleration, earth’s curvature (beta) and topographic steering, (3) conservation of vorticity and energy at geophysical scales, and (4) specific applications to help demonstrate the ability to create and solve new problems in this very rich field. A comprehensive review of the complex geophysical flows of the ocean and the atmosphere is closely knitted with this basic description, intended to be developed further in the second volume that addresses density stratified geophysical fluid dynamics. .
    Type of Medium: Online Resource
    Pages: XVI, 287 p. 98 illus., 94 illus. in color. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030169732
    Series Statement: Springer Textbooks in Earth Sciences, Geography and Environment,
    DDC: 551.46
    Language: English
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