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Book Crustal Magmatic System Evolution

Download or read book Crustal Magmatic System Evolution written by Matteo Masotta and published by John Wiley & Sons. This book was released on 2021-05-11 with total page 29 pages. Available in PDF, EPUB and Kindle. Book excerpt: A comprehensive picture of the architecture of crustal magmatic systems The composition of igneous rocks – their minerals, melts, and fluids – reveals the physical and chemical conditions under which magmas form, evolve, interact, and move from the Earth’s mantle through the crust. These magma dynamics affect processes on the surface including crustal growth and eruptive behaviour of volcanoes. Crustal Magmatic System Evolution: Anatomy, Architecture, and Physico-Chemical Processes uses analytical, experimental, and numerical approaches to explore the diversity of crustal processes from magma differentiation and assimilation to eruption at the surface. Volume highlights include: Physical and chemical parameterization of crustal magmatic systems Experimental, theoretical and modelling approaches targeting crustal magmatic processes Timescales of crustal magmatic processes, including storage, recharge, and ascent through volcanic conduits The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals. Find out more about this book in a Q&A with the Editors.

Book Magmatic Systems

    Book Details:
  • Author : Michael P. Ryan
  • Publisher : Academic Press
  • Release : 1994-08-26
  • ISBN : 0080959911
  • Pages : 427 pages

Download or read book Magmatic Systems written by Michael P. Ryan and published by Academic Press. This book was released on 1994-08-26 with total page 427 pages. Available in PDF, EPUB and Kindle. Book excerpt: With its integrated and cohesive coverage of the current research, Magmatic Systems skillfully explores the physical processes, mechanics, and dynamics of volcanism. The text utilizes a synthesized perspective--theoretical, experimental, and observational--to address the powerful regulatory mechanisms controlling the movement of melts and cooling, with emphasis on mantle plumes, mid-ocean ridges, and intraplate magmatism. Further coverage of subduction zone magmatism includes:Fluid mechanics of mixed magma migrationInternal structure of active systemsGrain-scale melt flowRheology of partial meltsNumerical simulation of porous media melt migrationNonlinear (chaotic and fractal) processes in magma transportIn all, Magmatic Systems will prove invaluable reading to those in search of an interdisciplinary perspective on this active topic. Key Features* Fluid mechanics of magma migration from surface region to eruption site* Internal structure of active magmatic systems* Grain-scale melt flow in mantle plumes and beneath mid-ocean ridges* Physics of magmatic systems and magma dynamics

Book Chemical  Physical and Temporal Evolution of Magmatic Systems

Download or read book Chemical Physical and Temporal Evolution of Magmatic Systems written by L. Caricchi and published by Geological Society of London. This book was released on 2015-11-06 with total page 227 pages. Available in PDF, EPUB and Kindle. Book excerpt: Our understanding of the physical and chemical processes that regulate the evolution of magmatic systems has improved tremendously since the foundations were laid down 100 years ago by Bowen. The concept of crustal magma chambers has progressively evolved from molten-rock vats to thermally, chemically and physically heterogeneous reservoirs that are kept active by the periodic injection of magma. This new model, while more complex, provides a better framework to interpret volcanic activity and decipher the information contained in intrusive and extrusive rocks. Igneous and metamorphic petrology, geochemistry, geochronology, and numerical modelling, all contributed towards this new picture of crustal magmatic systems. This book provides an overview of the wide range of approaches that can nowadays be used to understand the chemical, physical and temporal evolution of magmatic and volcanic systems.

Book Volcanic and Igneous Plumbing Systems

Download or read book Volcanic and Igneous Plumbing Systems written by Steffi Burchardt and published by Elsevier. This book was released on 2018-05-09 with total page 356 pages. Available in PDF, EPUB and Kindle. Book excerpt: Volcanic and Igneous Plumbing Systems: Understanding Magma Transport, Storage, and Evolution in the Earth's Crust synthesizes research from various geoscience disciplines to examine volcanic and igneous plumbing systems (VIPS) in-depth. VIPS comprise a network of magma transport and storage features in the Earth’s crust. These features include dykes, sills and larger magma bodies that form the pathway and supply system of magma beneath active volcanoes. Combining basic principles with world-class research and informative illustrations, this unique reference presents a holistic view of each topic covered, including magma transport, magma chambers, tectonics and volcanism. Addressing a variety of approaches to these topics, this book offers researchers and academics in the Earth Science fields, such as geophysics, volcanology and igneous petrology the information they need to apply the information to their own disciplines. Provides an easily understandable overview of current research on volcanic and igneous plumbing systems Includes full color illustrations to increase understanding Covers fundamental information needed to optimize comprehension Features a field example from world-class research in each chapter, including photographs and maps

Book Dynamic Magma Evolution

    Book Details:
  • Author : Francesco Vetere
  • Publisher : John Wiley & Sons
  • Release : 2021-01-07
  • ISBN : 1119521130
  • Pages : 224 pages

Download or read book Dynamic Magma Evolution written by Francesco Vetere and published by John Wiley & Sons. This book was released on 2021-01-07 with total page 224 pages. Available in PDF, EPUB and Kindle. Book excerpt: Explores the complex physico-chemical processes involved in active volcanism and dynamic magmatism Understanding the magmatic processes responsible for the chemical and textural signatures of volcanic products and igneous rocks is crucial for monitoring, forecasting, and mitigating the impacts of volcanic activity. Dynamic Magma Evolution is a compilation of recent geochemical, petrological, physical, and thermodynamic studies. It combines field research, experimental results, theoretical approaches, unconventional and novel techniques, and computational modeling to present the latest developments in the field. Volume highlights include: Crystallization and degassing processes in magmatic environments Bubble and mineral nucleation and growth induced by cooling and decompression Kinetic processes during magma ascent to the surface Magma mixing, mingling, and recharge dynamics Geo-speedometer measurement of volcanic events Changes in magma rheology induced by mineral and volatile content The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals.

Book Evolution of Magmatic Systems in the Ocean Crust and in Layered Intrusions

Download or read book Evolution of Magmatic Systems in the Ocean Crust and in Layered Intrusions written by and published by . This book was released on 2001 with total page pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Volcanic Eruptions and Their Repose  Unrest  Precursors  and Timing

Download or read book Volcanic Eruptions and Their Repose Unrest Precursors and Timing written by National Academies of Sciences, Engineering, and Medicine and published by National Academies Press. This book was released on 2017-07-24 with total page 135 pages. Available in PDF, EPUB and Kindle. Book excerpt: Volcanic eruptions are common, with more than 50 volcanic eruptions in the United States alone in the past 31 years. These eruptions can have devastating economic and social consequences, even at great distances from the volcano. Fortunately many eruptions are preceded by unrest that can be detected using ground, airborne, and spaceborne instruments. Data from these instruments, combined with basic understanding of how volcanoes work, form the basis for forecasting eruptionsâ€"where, when, how big, how long, and the consequences. Accurate forecasts of the likelihood and magnitude of an eruption in a specified timeframe are rooted in a scientific understanding of the processes that govern the storage, ascent, and eruption of magma. Yet our understanding of volcanic systems is incomplete and biased by the limited number of volcanoes and eruption styles observed with advanced instrumentation. Volcanic Eruptions and Their Repose, Unrest, Precursors, and Timing identifies key science questions, research and observation priorities, and approaches for building a volcano science community capable of tackling them. This report presents goals for making major advances in volcano science.

Book Volcanotectonics

    Book Details:
  • Author : Agust Gudmundsson
  • Publisher : Cambridge University Press
  • Release : 2020-04-30
  • ISBN : 1107024951
  • Pages : 601 pages

Download or read book Volcanotectonics written by Agust Gudmundsson and published by Cambridge University Press. This book was released on 2020-04-30 with total page 601 pages. Available in PDF, EPUB and Kindle. Book excerpt: Explains and illustrates volcanic structures, products and processes, with worked examples and exercises, for students and professionals.

Book Dynamic Magma Evolution

    Book Details:
  • Author : Francesco Vetere
  • Publisher : John Wiley & Sons
  • Release : 2021-01-07
  • ISBN : 1119521130
  • Pages : 224 pages

Download or read book Dynamic Magma Evolution written by Francesco Vetere and published by John Wiley & Sons. This book was released on 2021-01-07 with total page 224 pages. Available in PDF, EPUB and Kindle. Book excerpt: Explores the complex physico-chemical processes involved in active volcanism and dynamic magmatism Understanding the magmatic processes responsible for the chemical and textural signatures of volcanic products and igneous rocks is crucial for monitoring, forecasting, and mitigating the impacts of volcanic activity. Dynamic Magma Evolution is a compilation of recent geochemical, petrological, physical, and thermodynamic studies. It combines field research, experimental results, theoretical approaches, unconventional and novel techniques, and computational modeling to present the latest developments in the field. Volume highlights include: Crystallization and degassing processes in magmatic environments Bubble and mineral nucleation and growth induced by cooling and decompression Kinetic processes during magma ascent to the surface Magma mixing, mingling, and recharge dynamics Geo-speedometer measurement of volcanic events Changes in magma rheology induced by mineral and volatile content The American Geophysical Union promotes discovery in Earth and space science for the benefit of humanity. Its publications disseminate scientific knowledge and provide resources for researchers, students, and professionals.

Book Timescales of Magmatic Processes

Download or read book Timescales of Magmatic Processes written by Anthony Dosseto and published by John Wiley & Sons. This book was released on 2011-06-24 with total page 553 pages. Available in PDF, EPUB and Kindle. Book excerpt: Quantifying the timescales of current geological processes is critical for constraining the physical mechanisms operating on the Earth today. Since the Earth’s origin 4.55 billion years ago magmatic processes have continued to shape the Earth, producing the major reservoirs that exist today (core, mantle, crust, oceans and atmosphere) and promoting their continued evolution. But key questions remain. When did the core form and how quickly? How are magmas produced in the mantle, and how rapidly do they travel towards the surface? How long do magmas reside in the crust, differentiating and interacting with the host rocks to yield the diverse set of igneous rocks we see today? How fast are volcanic gases such as carbon dioxide released into the atmosphere? This book addresses these and other questions by reviewing the latest advances in a wide range of Earth Science disciplines: from the measurement of short-lived radionuclides to the study of element diffusion in crystals and numerical modelling of magma behaviour. It will be invaluable reading for advanced undergraduate and graduate students, as well as igneous petrologists, mineralogists and geochemists involved in the study of igneous rocks and processes.

Book Evolution of a Long lived Magmatic System Leading to Caldera forming Eruptions in the Jemez Mountains Volcanic Field  USA

Download or read book Evolution of a Long lived Magmatic System Leading to Caldera forming Eruptions in the Jemez Mountains Volcanic Field USA written by Jie Wu and published by . This book was released on 2020 with total page 156 pages. Available in PDF, EPUB and Kindle. Book excerpt: Two caldera-forming rhyolitic supereruptions have occurred at the Jemez Mountains volcanic field (JMVF), producing the Otowi (1.60 Ma) and Tshirege (1.25 Ma) members of the Bandelier Tuff. The magma petrogenesis preceding the two supereruptions was examined via systematic studies of mineral chemistry and zircon geochronology of pre-caldera and caldera-forming volcanic products. The Otowi supereruption was preceded by ~10 m.y. of dominantly intermediate to silicic volcanism (i.e., the 10-7 Ma Paliza Canyon, the 8-7 Ma La Grulla Plateau, and the 5.5-2 Ma Tschicoma formations). Mineral disequilibria and compositional diversity suggest that these were products of magma mixing between multiple mafic components formed from AFC processes in a deep “hot zone”, and a middle-crustal-derived silicic component, either in the deep crust or in a mush formed within the shallow crust. The pre-caldera magmas evolved towards cooler and more oxidized conditions as they gradually propagated into shallower crust. This eventually modified the original crust to form a transcrustal magmatic system over several million years. Reactivation of the system at 5.5 Ma after ~0.5 m.y. tectonic-related cooling, led to formation of the long-lived Tshicoma dacitic magma bodies, each characterized by a series of separate melt/crystal domains with >1 m.y. lifespan. Elevated magma supply after ~2 Ma destabilized this system and coalesced isolated melt lenses and recycled plutons in the upper crust to produce the Otowi supereruption. After evacuation of the Otowi magma, rapid influx of new magma under high supply rates re-primed the system in just 350 ka to produce the Tshirege supereruption. This change from slow to fast magma accumulation rates reflects thermal and chemical maturation of the crust, and correlates to elevated magma supply rate, aided by the previous supereruption. Based on the geochemical results, five magmatic cycles with variable longevity were found to describe the system history. It appears that once established, a transcrustal magmatic system may cool off slowly and re-charge rapidly. With this prerequisite, magma supply rate (and/or tectonics) governs two types of magmatic cycles at the JMVF, either producing long periods of low rates of eruption with small rhyolite events and mixed intermediate products, or catastrophic caldera-forming eruptions.

Book Granite Petrogenesis and Geodynamics

Download or read book Granite Petrogenesis and Geodynamics written by J. Gregory Shellnutt and published by Frontiers Media SA. This book was released on 2021-03-04 with total page 238 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Physical Geology of High level Magmatic Systems

Download or read book Physical Geology of High level Magmatic Systems written by Christoph Breitkreuz and published by Geological Society of London. This book was released on 2004 with total page 266 pages. Available in PDF, EPUB and Kindle. Book excerpt: European geologists, many from former Soviet bloc countries, present 14 studies they delivered at an October 2002 workshop in Freiberg, Germany on the physical geology of sub-volcanic systems. The subject has not been so thoroughly examined since 1970, they say, and could be of interest to igneous petrologists, volcanologists, structural geologists

Book Crystal Archives of Magmatic Processes

Download or read book Crystal Archives of Magmatic Processes written by Teresa Ubide and published by Frontiers Media SA. This book was released on 2021-10-13 with total page 261 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Book Crust Mantle and Lithosphere Asthenosphere Boundaries

Download or read book Crust Mantle and Lithosphere Asthenosphere Boundaries written by Gianluca Bianchini and published by Geological Society of America. This book was released on 2017-05-10 with total page 226 pages. Available in PDF, EPUB and Kindle. Book excerpt: This 10-chapter volume encompasses contributions from a wide spectrum of Earth science disciplines, including geophysics, geodynamics, geochemistry, and petrology, to provide an overview of the nature and evolution of the crust-mantle and lithosphere-asthenosphere boundaries in different tectonic settings, combining studies that exploit different types of data and interpretative approaches. The integration of geochemical, geophysical, and geodynamic data sets and their interpretation provides a state-of-the-art summary of current understanding, and will serve as a blueprint for future research activities.

Book Ocean Island Volcanoes  Genesis  Evolution and Impact

Download or read book Ocean Island Volcanoes Genesis Evolution and Impact written by Adriano Pimentel and published by Frontiers Media SA. This book was released on 2020-06-08 with total page 180 pages. Available in PDF, EPUB and Kindle. Book excerpt: Ocean island volcanoes constitute some of the most prominent and rapidly-formed features on Earth, and yet they cannot be explained by conventional plate tectonics. Although typically associated with intraplate settings (hotspots), these volcanoes also occur in different geodynamic settings (near mid-ocean ridges). The nature of ocean island magmatism is still the subject of intense debate within the geological community. Traditionally it has been linked to the presence of mantle plumes at depth (e.g. Hawaii), although the interaction with plate tectonics is also recognized to play a significant role (e.g. Azores, Galápagos). Magma compositions may range from basaltic to more differentiated, which consequently is accompanied by striking changes in the eruption style from effusive-dominated to highly explosive volcanism. Understanding how these magmas evolve and how volcanic processes act at ocean island volcanoes are key issues of modern volcanology. Moreover, the growth of ocean island volcanoes from their rise on the seafloor as seamounts, to island emergence and subsequent formation of shield volcanoes (and in some cases large caldera volcanoes) is governed by multiple interrelated changes. It is well known that competing processes model ocean island volcanoes during alternating and/or coeval periods of construction and destruction. The geological evolution of these volcanoes results from the balance among volcanism, intrusions, tectonics, subsidence/uplift, mass wasting, sedimentation, and subaerial and wave erosion. A better knowledge of the interplay between these processes is crucial to obtain a more comprehensive understanding of the evolution of such volcanoes, and to the eventual formulation of a unified model for ocean island evolution. Ocean islands are especially vulnerable to volcanic eruptions and other geological hazards on account of their typical small size, rough topography and isolation, which make risk management and evacuation difficult. Volcanic eruptions, in particular, may have a significant impact on local populations, infrastructures, economy and even on the global climate. It is therefore fundamental to monitor these volcanoes with complementary geophysical, geodetic and geochemical techniques in order to forecast future eruptions and their impacts. However, the assessment of volcanic hazards on ocean islands is challenging due to the large variety of phenomena involved (e.g. lava flows, tephra fallout, pyroclastic density currents, lahars, gas emissions). Different approaches are used to assess volcanic hazards, either based on empirical methods or sophisticated numerical models, focusing on a single phenomenon or the combination of different hazards. This Frontiers Research Topic aims to promote discussion within the scientific community, representing an important step forward in our knowledge of ocean island volcanoes in order to serve as a reference for future research.