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Wind-induced Modulation of Spring Phytoplankton Blooms in the North Atlantic Derived from Satellite Observations

Wind-induced Modulation of Spring Phytoplankton Blooms in the North Atlantic Derived from Satellite Observations PDF Author: Rei Ueyama
Publisher:
ISBN:
Category :
Languages : en
Pages : 118

Book Description


Wind-induced Modulation of Spring Phytoplankton Blooms in the North Atlantic Derived from Satellite Observations

Wind-induced Modulation of Spring Phytoplankton Blooms in the North Atlantic Derived from Satellite Observations PDF Author: Rei Ueyama
Publisher:
ISBN:
Category :
Languages : en
Pages : 118

Book Description


Decadal-scale Shifts in North Atlantic Bloom Timing from Satellite Observations

Decadal-scale Shifts in North Atlantic Bloom Timing from Satellite Observations PDF Author: Emerson Allen Sirk
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
This study examines decade-scale shifts in annual phytoplankton bloom timing across the North Atlantic Ocean. Phytoplankton blooms in this region play a critical role in regulating the global carbon cycle and marine ecosystem dynamics. Decadal shifts in the mean timing of bloom onset, bloom termination and bloom duration were examined using 22 years of satellite-derived ocean color data. At higher latitudes in the North Atlantic, median bloom onset date was shifted 4.4 days later, median bloom termination was shifted 1.5 days earlier and median bloom duration shifted 3.6 days shorter. At lower latitudes in the North Atlantic, median bloom onset date was shifted 2.9 days earlier, there was no observed shift in median bloom termination and median bloom duration was shifted 3.6 days longer. Interdecadal trends in wind speeds in the North Atlantic have been documented in a recent study, offering an explanation for the observed shifts in bloom timing. This study produces a first look into recent decadal shifts in bloom timing that should continue to be monitored and studied as more satellite ocean color data are collected.

Science and Applications of Coastal Remote Sensing

Science and Applications of Coastal Remote Sensing PDF Author: Kevin Ross Turpie
Publisher: Frontiers Media SA
ISBN: 2889668320
Category : Science
Languages : en
Pages : 224

Book Description
IN MEMORIAL: This Research Topic is dedicated to our co-editor Dr. Tiffany Moisan, a well-regarded ocean color remote sensing scientist, who unexpectedly passed away during its preparation. Dr. Moisan was a dear friend, and upbeat and enthusiastic colleague and a scientist committed to the use of remote sensing to improve our understanding of marine microbiology and phytoplankton ecology. She was a strong supporter of the development of remote sensing capabilities and applications for coastal and inland waters, and we know that she would have wanted this Research Topic to provide her colleagues an opportunity to share and promote their work in this area. A voice in our community is now quiet. Let the chorus of our shared song continue with her memory. Dr. Tiffany Moisan is survived by her loving family, including her husband, Dr. John Moisan and her two daughters.

Discovering the Ocean from Space

Discovering the Ocean from Space PDF Author: Ian S. Robinson
Publisher: Springer Science & Business Media
ISBN: 3540683224
Category : Science
Languages : en
Pages : 678

Book Description
This book offers a survey of the contribution of satellite data to the study of the ocean, focusing on the special insights that only satellite data can bring to oceanography. Topics range from ocean waves to ocean biology, spanning scales from basins to estuaries. Some chapters cover applications to pure research while others show how satellite data can be used operationally for tasks such as pollution monitoring or oil-spill detection.

Phytoplankton Dynamics Studying Using Observation and Bio-physical Modeling

Phytoplankton Dynamics Studying Using Observation and Bio-physical Modeling PDF Author: Yi Xu
Publisher:
ISBN:
Category : Chlorophyll
Languages : en
Pages : 101

Book Description
Continental shelf phytoplankton bloom dynamics are associated with meteorological, oceanographic and coastal forcing mechanisms. Mixing related to stratification and de-stratification is a key process of the physical environment that can control the timing and magnitude of blooms. Using data from satellite, coastal ocean observatory and bio-physical model, this study investigated the seasonal and decadal variability of chlorophyll in the Mid-Atlantic Bight and how different forcing mechanisms affect the phytoplankton bloom. The temporal and spatial distribution of chlorophyll a in the MAB was quantified using satellite data collected by the Sea-viewing Wide Field of view Sensor (SeaWiFS). The MAB undergoes a fall-winter bloom in the middle-outer shelf region and spring bloom in the shelf-break region. The interannual variability of bloom magnitude is associated with wind-induced mixing. Mixing has been recognized as having an important role in influencing underwater light and nutrient budgets and thus regulating phytoplankton bloom. The ratio of light over mixed layer depth (MLD) was used to determine the trade-off effects of mixing on phytoplankton bloom activity. We find that a critical light value around 60 (W m-2) for the shelf region and 150 (W m-2) for the shelf-break front region in promoting maximum phytoplankton biomass and there is a predictable linear regression relationship between the critical light value and depth. The bio-physical model identified the wind-induced mixing, net heat flux and river run-off are the most important factors influencing water column stability. Sensitivity studies showed that the timing of the destratification and initiation of fall bloom was closely related to the wind forcing. The river's role in bringing buoyancy was significant in increasing phytoplankton bloom. The decadal declines in the seasonal satellite estimates of chlorophyll a concentrations have been observed in the fall and winter in the MAB and are hypothesized to reflect shifts in the Atlantic Multidecadal Oscillation (AMO) that alters wind stress, river discharge, and net heat flux. This work prototypes the integration of observation and modeling in a coastal environment and demonstrates the use of 3D coupled physical-biological model forced with realistic atmospheric forcing to study the phytoplankton dynamics in the MAB.

Unraveling Mechanisms Underlying Annual Plankton Blooms in the North Atlantic and Their Implications for Biogenic Aerosol Properties and Cloud Formation

Unraveling Mechanisms Underlying Annual Plankton Blooms in the North Atlantic and Their Implications for Biogenic Aerosol Properties and Cloud Formation PDF Author: Kristina Dee Anne Mojica
Publisher: Frontiers Media SA
ISBN: 288971652X
Category : Science
Languages : en
Pages : 314

Book Description


Canadian Journal of Fisheries and Aquatic Sciences

Canadian Journal of Fisheries and Aquatic Sciences PDF Author:
Publisher:
ISBN:
Category : Aquatic sciences
Languages : en
Pages : 720

Book Description


Why Ocean Colour?

Why Ocean Colour? PDF Author: Trevor Platt
Publisher:
ISBN:
Category : Biogeochemical cycles
Languages : en
Pages : 162

Book Description


Quantitative modelling of spatial variability in the north atlantic spring phytoplankton bloom

Quantitative modelling of spatial variability in the north atlantic spring phytoplankton bloom PDF Author: John Christopher Paul Hemmings
Publisher:
ISBN:
Category :
Languages : en
Pages : 278

Book Description


The Turbulent Ocean

The Turbulent Ocean PDF Author: S. A. Thorpe
Publisher: Cambridge University Press
ISBN: 9781139445795
Category : Science
Languages : en
Pages : 496

Book Description
The subject of ocean turbulence is in a state of discovery and development with many intellectual challenges. This book describes the principal dynamic processes that control the distribution of turbulence, its dissipation of kinetic energy and its effects on the dispersion of properties such as heat, salinity, and dissolved or suspended matter in the deep ocean, the shallow coastal and the continental shelf seas. It focuses on the measurement of turbulence, and the consequences of turbulent motion in the oceanic boundary layers at the sea surface and near the seabed. Processes are illustrated by examples of laboratory experiments and field observations. The Turbulent Ocean provides an excellent resource for senior undergraduate and graduate courses, as well as an introduction and general overview for researchers. It will be of interest to all those involved in the study of fluid motion, in particular geophysical fluid mechanics, meteorology and the dynamics of lakes.