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Coral and Speleothem Reconstructions of Early Holocene Ocean-atmosphere Dynamics in Southern Australasia

Coral and Speleothem Reconstructions of Early Holocene Ocean-atmosphere Dynamics in Southern Australasia PDF Author: Julie Mazerat
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
Reconstructing the impacts of abrupt climate change on the Indo-Pacific Warm Pool, the Australasian monsoon, and El Nino-Southern Oscillation, and their teleconnections to higher latitudes, is crucial for understanding the role of the tropics in global climate change. The main objective of this thesis is to use geochemical tracers in skeletons of modern and fossil Porites corals from Alor, Indonesia, and a speleothem record from the island of Flores nearby, to explore the climatic response of southern Indonesia to the abrupt cold event 8,200 years ago originating in the North Atlantic region, referred to as the 8.2 ka event. The early Holocene interval before, during and after the 8.2ka event was investigated using 5-year resolution Sr/Ca and d18O records for eight fossil corals with U-series ages spanning 8.5ka to 7.8ka (thousand years before the present). Relative to today, fossil coral Sr/Ca-SSTs from 8.4 to 8.0 ka indicate slightly warmer SSTs and higher residual d18O (Dd18O) values suggesting drier conditions. These results compare well with other Australasian oceanic and atmospheric records, however the high-resolution Alor coral records also show gradual cooling of SSTs starting at 8.3ka and an abrupt 1.5-2C cooling at 8.0 ka associated with the 8.2ka event. Also, the speleothem record from Flores shows sharp increases in d18O, d13C, Mg/Ca and Sr/Ca around 8.4ka and 7.9ka, indicating drier/cooler conditions on land during the 8.2 ka event. High-resolution analysis of the Alor corals confirms these results. The lack of a clear antiphased interhemispheric increase in monsoon rainfall around Alor and Flores, as observed in South American records of the 8.2ka event, may be due to anomalously cool SSTs in the Indonesian maritime continent at that time. The interannual and seasonal characteristics of the El Nino-Southern Oscillation (ENSO) during the early Holocene and 8.2ka event were explored via frequency analysis, threshold analysis, and analysis of the annual cycles of SST and rainfall to gain information about changes in the ENSO frequency and magnitude during different background climate states. High-resolution analysis of coral Sr/Ca and d18O show that ENSO events were suppressed during the early Holocene, though not as much as indicated by other palaeo-ENSO records and modelling studies. The coral records also show that the frequency, duration and intensity of El Nino events was greater during the 8.2ka event compared to the early Holocene ENSO climate state. A synthesis of the causes and mechanisms driving the 8.2 ka event suggests that definitive conclusions cannot be drawn about the role of the Atlantic Meridional Overturning Circulation because such a mechanism cannot explain the long duration of the 8.2ka climate anomaly, nor the fact that many records show an onset of climatic deterioration well before the abrupt 8.2ka event in the North Atlantic. Therefore, the 8.2 ka event is probably best interpreted in terms of a recurrent cycle of climatic deteriorations whose impact was amplified around 8.2ka by massive meltwater discharge into the North Atlantic.

Coral and Speleothem Reconstructions of Early Holocene Ocean-atmosphere Dynamics in Southern Australasia

Coral and Speleothem Reconstructions of Early Holocene Ocean-atmosphere Dynamics in Southern Australasia PDF Author: Julie Mazerat
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description
Reconstructing the impacts of abrupt climate change on the Indo-Pacific Warm Pool, the Australasian monsoon, and El Nino-Southern Oscillation, and their teleconnections to higher latitudes, is crucial for understanding the role of the tropics in global climate change. The main objective of this thesis is to use geochemical tracers in skeletons of modern and fossil Porites corals from Alor, Indonesia, and a speleothem record from the island of Flores nearby, to explore the climatic response of southern Indonesia to the abrupt cold event 8,200 years ago originating in the North Atlantic region, referred to as the 8.2 ka event. The early Holocene interval before, during and after the 8.2ka event was investigated using 5-year resolution Sr/Ca and d18O records for eight fossil corals with U-series ages spanning 8.5ka to 7.8ka (thousand years before the present). Relative to today, fossil coral Sr/Ca-SSTs from 8.4 to 8.0 ka indicate slightly warmer SSTs and higher residual d18O (Dd18O) values suggesting drier conditions. These results compare well with other Australasian oceanic and atmospheric records, however the high-resolution Alor coral records also show gradual cooling of SSTs starting at 8.3ka and an abrupt 1.5-2C cooling at 8.0 ka associated with the 8.2ka event. Also, the speleothem record from Flores shows sharp increases in d18O, d13C, Mg/Ca and Sr/Ca around 8.4ka and 7.9ka, indicating drier/cooler conditions on land during the 8.2 ka event. High-resolution analysis of the Alor corals confirms these results. The lack of a clear antiphased interhemispheric increase in monsoon rainfall around Alor and Flores, as observed in South American records of the 8.2ka event, may be due to anomalously cool SSTs in the Indonesian maritime continent at that time. The interannual and seasonal characteristics of the El Nino-Southern Oscillation (ENSO) during the early Holocene and 8.2ka event were explored via frequency analysis, threshold analysis, and analysis of the annual cycles of SST and rainfall to gain information about changes in the ENSO frequency and magnitude during different background climate states. High-resolution analysis of coral Sr/Ca and d18O show that ENSO events were suppressed during the early Holocene, though not as much as indicated by other palaeo-ENSO records and modelling studies. The coral records also show that the frequency, duration and intensity of El Nino events was greater during the 8.2ka event compared to the early Holocene ENSO climate state. A synthesis of the causes and mechanisms driving the 8.2 ka event suggests that definitive conclusions cannot be drawn about the role of the Atlantic Meridional Overturning Circulation because such a mechanism cannot explain the long duration of the 8.2ka climate anomaly, nor the fact that many records show an onset of climatic deterioration well before the abrupt 8.2ka event in the North Atlantic. Therefore, the 8.2 ka event is probably best interpreted in terms of a recurrent cycle of climatic deteriorations whose impact was amplified around 8.2ka by massive meltwater discharge into the North Atlantic.

Coral Reconstructions of Mid-Holocene Ocean-atmosphere Variability in the Western Pacific Warm Pool

Coral Reconstructions of Mid-Holocene Ocean-atmosphere Variability in the Western Pacific Warm Pool PDF Author: Helen Victoria McGregor
Publisher:
ISBN:
Category : Corals
Languages : en
Pages : 146

Book Description


Coral-based Reconstructions of Southern Caribbean Climate During the Mid- to Late Holocene

Coral-based Reconstructions of Southern Caribbean Climate During the Mid- to Late Holocene PDF Author: Cyril Giry
Publisher:
ISBN:
Category :
Languages : en
Pages : 0

Book Description


Multi-proxy Coral Reconstruction of Holocene Climate and Reef Growth in the Eastern Indian Ocean

Multi-proxy Coral Reconstruction of Holocene Climate and Reef Growth in the Eastern Indian Ocean PDF Author: Nerilie Jane Abram
Publisher:
ISBN:
Category : Climatic changes
Languages : en
Pages : 262

Book Description


Encyclopedia of Quaternary Science

Encyclopedia of Quaternary Science PDF Author: Cary Mock
Publisher: Newnes
ISBN: 0444536426
Category : Science
Languages : en
Pages : 3883

Book Description
The second revised edition of the Encyclopedia of Quaternary Science, Four Volume Set, provides both students and professionals with an up-to-date reference work on this important and highly varied area of research. There are lots of new articles, and many of the articles that appeared in the first edition have been updated to reflect advances in knowledge since 2006, when the original articles were written. The second edition will contain about 375 articles, written by leading experts around the world. This major reference work is richly illustrated with more than 3,000 illustrations, most of them in colour. Research in the Quaternary sciences has advanced greatly in the last 10 years, especially since topics like global climate change, geologic hazards and soil erosion were put high on the political agenda. This second edition builds upon its award-winning predecessor to provide the reader assured quality along with essential updated coverage Contains 357 broad-ranging articles (4310 pages) written at a level that allows undergraduate students to understand the material, while providing active researchers with a ready reference resource for information in the field. Facilitates teaching and learning The first edition was regarded by many as the most significant single overview of Quaternary science ever, yet Editor-in-Chief, Scott Elias, has managed to surpass that in this second edition by securing even more expert reviews whilst retaining his renowned editorial consistency that enables readers to navigates seamlessly from one unfamiliar topic to the next

El Niño Southern Oscillation in a Changing Climate

El Niño Southern Oscillation in a Changing Climate PDF Author: Michael J. McPhaden
Publisher: John Wiley & Sons
ISBN: 1119548128
Category : Science
Languages : en
Pages : 528

Book Description
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.

Paleoclimate, Global Change and the Future

Paleoclimate, Global Change and the Future PDF Author: Keith D. Alverson
Publisher: Springer Science & Business Media
ISBN: 3642558283
Category : Science
Languages : en
Pages : 242

Book Description
This book provides a synthesis of the past decade of research into global changes that occurred in the earth system in the past. Focus is achieved by concentrating on those changes in the Earth's past environment that best inform our evaluation of current and future global changes and their consequences for human populations. The book stands as a ten year milestone in the operation of the Past Global Changes (PAGES) Project of the International Geosphere-Biosphere Programme (IGBP). It seeks to provide a quantitative understanding of the Earth’s environment in the geologically recent past and to define the envelope of natural environmental variability against which anthropogenic impacts on the Earth System may be assessed. A set of color overhead transparencies based on the figures in the book is available free on the PAGES website (www.pages-igbp.org) for use in teaching and lecturing.

Spectral Analysis for Physical Applications

Spectral Analysis for Physical Applications PDF Author: Donald B. Percival
Publisher: Cambridge University Press
ISBN: 9780521435413
Category : Mathematics
Languages : en
Pages : 616

Book Description
This book is an up-to-date introduction to univariate spectral analysis at the graduate level, which reflects a new scientific awareness of spectral complexity, as well as the widespread use of spectral analysis on digital computers with considerable computational power. The text provides theoretical and computational guidance on the available techniques, emphasizing those that work in practice. Spectral analysis finds extensive application in the analysis of data arising in many of the physical sciences, ranging from electrical engineering and physics to geophysics and oceanography. A valuable feature of the text is that many examples are given showing the application of spectral analysis to real data sets. Special emphasis is placed on the multitaper technique, because of its practical success in handling spectra with intricate structure, and its power to handle data with or without spectral lines. The text contains a large number of exercises, together with an extensive bibliography.

Past Climate Variability through Europe and Africa

Past Climate Variability through Europe and Africa PDF Author: Richard W. Battarbee
Publisher: Springer Science & Business Media
ISBN: 1402021208
Category : Science
Languages : en
Pages : 653

Book Description
This book focuses on two complementary time-scales, the Holocene (approximately the last 11,500 years) and the last glacial-interglacial cycle (approximately the last 130,000 years) to synthesize evidence of climate variability at the regional and continental scale across Europe and Africa. This is the first examination of historical climate variations at such a scale, and thus sets a benchmark for future research.

Earth's Climate Response to a Changing Sun

Earth's Climate Response to a Changing Sun PDF Author: Katja Matthes
Publisher:
ISBN: 9782759818495
Category : Business & Economics
Languages : en
Pages : 0

Book Description
For centuries, scientists have been fascinated by the role of the Sun in the Earth's climate system. Recent discoveries, outlined in this book, have gradually unveiled a complex picture, in which our variable Sun affects the climate variability via a number of subtle pathways, the implications of which are only now becoming clear. This handbook provides the scientifically curious, from undergraduate students to policy makers with a complete and accessible panorama of our present understanding of the Sun-climate connection. 61 experts from different communities have contributed to it, which reflects the highly multidisciplinary nature of this topic. The handbook is organised as a mosaic of short chapters, each of which addresses a specific aspect, and can be read independently. The reader will learn about the assumptions, the data, the models, and the unknowns behind each mechanism by which solar variability may impact climate variability. None of these mechanisms can adequately explain global warming observed since the 1950s. However, several of them do impact climate variability, in particular on a regional level. This handbook aims at addressing these issues in a factual way, and thereby challenge the reader to sharpen his/her critical thinking in a debate that is frequently distorted by unfounded claims.