Modeling Perspective of the Physical-Biological Response of the California Current to ENSO

Modeling Perspective of the Physical-Biological Response of the California Current to ENSO

Author: Nathalí Cordero Quirós

Publisher:

Published: 2020

Total Pages: 97

ISBN-13:

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The California Current System (CCS) is one of the most productive regions in the whole world, and as such, one of the most studied as well. Observational records throughout the years have shown scientists that CCS is under the influence of major climate events such as El Niño Southern Oscillation (ENSO). Yet there are still many questions regarding the exact mechanisms trough which ENSO teleconnections imprint variability in the physical conditions of the CCS, and how this further impacts the California Current Ecosystem (CCE). The focus of this dissertation is to shed light over the regional expressions of ENSO over the CCS, and how physical-biogeochemical interactions drive a coherent response associated with El Niño and La Niña events. The first part describes the response of the CCS to ENSO as captured by one coarse resolution model and one eddy-resolving high-resolution model. The findings help to better understand the mechanistic response of the CCS to ENSO and build on the existing framework for ecosystem predictability. A key result from the first part is that the cooling of the CCS associated with La Niña is more consistent than the warming associated with El Niño. Also, with the high-resolution model we are able to show the bottom-up response of the CCE, and the diversity in the response among different trophic groups. The last part focuses on proposing new avenues for future research to untangle the intricate components of the CCE response that are associated with mesoscale activity, and how they are affected by ENSO variability.


El Niño Southern Oscillation in a Changing Climate

El Niño Southern Oscillation in a Changing Climate

Author: Michael J. McPhaden

Publisher: John Wiley & Sons

Published: 2020-11-24

Total Pages: 528

ISBN-13: 1119548128

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Comprehensive and up-to-date information on Earth’s most dominant year-to-year climate variation The El Niño Southern Oscillation (ENSO) in the Pacific Ocean has major worldwide social and economic consequences through its global scale effects on atmospheric and oceanic circulation, marine and terrestrial ecosystems, and other natural systems. Ongoing climate change is projected to significantly alter ENSO's dynamics and impacts. El Niño Southern Oscillation in a Changing Climate presents the latest theories, models, and observations, and explores the challenges of forecasting ENSO as the climate continues to change. Volume highlights include: Historical background on ENSO and its societal consequences Review of key El Niño (ENSO warm phase) and La Niña (ENSO cold phase) characteristics Mathematical description of the underlying physical processes that generate ENSO variations Conceptual framework for understanding ENSO changes on decadal and longer time scales, including the response to greenhouse gas forcing ENSO impacts on extreme ocean, weather, and climate events, including tropical cyclones, and how ENSO affects fisheries and the global carbon cycle Advances in modeling, paleo-reconstructions, and operational climate forecasting Future projections of ENSO and its impacts Factors influencing ENSO events, such as inter-basin climate interactions and volcanic eruptions 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 from this Q&A with the editors.


Circulation in the Coastal Ocean

Circulation in the Coastal Ocean

Author: G.T. Csanady

Publisher: Springer Science & Business Media

Published: 1982-09-30

Total Pages: 300

ISBN-13: 9789027714008

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For some time there has existed an extensive theoretical literature relating to tides on continental shelves and also to the behavior of estuaries. Much less attention was traditionally paid to the dynamics of longer term, larger scale motions (those which are usually described as circulation') over continental shelves or in enclosed shallow seas such as the North American Great Lakes. This is no longer the case: spurred on by other disciplines, notably biological oceanography, and by public concern with the environment, the physical science of the coastal ocean has made giant strides during the last two decades or so. Today, it is probably fair to say that coastal ocean physics has come of age as a deduc tive quantitative science. A well developed body of theoretical models exist, based on the equations of fluid motion, which have been related to observed currents, sea level variations, water properties, etc. Quantitative parameters required in using the models to predict e.g. the effects of wind or of freshwater influx on coastal currents can be estimated within reasonable bounds of error. While much remains to be learned, and many exciting discoveries presumably await us in the future, the time seems appropriate to summarize those aspects of coastal ocean dynamics relevant to 'circulation' or long term motion.


Oceanobs'19: An Ocean of Opportunity. Volume III

Oceanobs'19: An Ocean of Opportunity. Volume III

Author: Tong Lee

Publisher: Frontiers Media SA

Published: 2020-12-31

Total Pages: 867

ISBN-13: 2889631206

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This eBook is a collection of articles from a Frontiers Research Topic. Frontiers Research Topics are very popular trademarks of the Frontiers Journals Series: they are collections of at least ten articles, all centered on a particular subject. With their unique mix of varied contributions from Original Research to Review Articles, Frontiers Research Topics unify the most influential researchers, the latest key findings and historical advances in a hot research area! Find out more on how to host your own Frontiers Research Topic or contribute to one as an author by contacting the Frontiers Editorial Office: frontiersin.org/about/contact.


Remote Sensing of Coastal Aquatic Environments

Remote Sensing of Coastal Aquatic Environments

Author: Richard L. Miller

Publisher: Springer Science & Business Media

Published: 2007-03-22

Total Pages: 378

ISBN-13: 9781402030994

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This book provides extensive insight on remote sensing of coastal waters from aircraft and space-based platforms. The primary focus of the book is optical remote sensing using passive instruments, to measure and analyze the coastal aquatic environment. The authors have gathered information from a variety of sources, to help non-specialists grasp new techniques and technology, to quickly produce useful data


Colour and Light in the Ocean

Colour and Light in the Ocean

Author: Victor Martinez-Vicente

Publisher: Frontiers Media SA

Published: 2020-03-26

Total Pages: 403

ISBN-13: 2889634213

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CLEO publications in Frontiers in Marine Science Foreword Josef Aschbacher, Director of ESA’s Earth Observation Programmes Satellite data have drastically changed the view we have of the oceans. Covering about 70% of Earth’s surface, oceans play a unique role for our planet and for our life – but large areas remain unexplored and are difficult to reach. Since the 1980s, Earth-orbiting satellites have helped to observe what is happening at the ocean surface. Sensors like CZCS, AVHRR, SeaWifs and MODIS provided the first ocean colour data from space. Starting in 2002, ESA's Medium Resolution Imaging Spectrometer (MERIS) on-board the environmental satellite Envisat, provided detailed information on phytoplankton biomass and concentrations of other matter in the global oceans. These satellite observations laid the groundwork for studying the marine environment and how it responds to climate change, and the research community has since delivered information on the variability of marine ecosystems. Part of this work is reflected in this stunning collection of peer-reviewed publications presented at the workshop, Colour and Light in the Ocean from Earth Observation (CLEO), held at ESA’s ESRIN site in Frascati, Italy, on 6–8 September 2016. The event attracted more than 160 participants from all over the world, including remote sensing experts, marine ecosystem modelers, in-situ observers and users of Earth observation data. Scientifically, the meeting covered applications in climate studies over primary productivity and ocean dynamics, to pools of carbon and phytoplankton diversity at global and regional scales. It also demonstrated the potential of Earth observation and its contribution to modern oceanography. Looking to the future, new satellites developed by ESA under the coordination of the European Commission will further our scientific and operational observations of the seas. With Sentinel-3A in orbit and its twin Sentinel-3B following in 2017, there is a new category of data available for operational oceanographic applications and climate studies for years to come. These data are free and easy to access by anyone interested. Looking at the role of oceans in our daily lives, I am sure that this collection of scientific excellence will be valued by scientists of today and will inspire the next generation to carry these ideas into the future.