Self-organized Criticality and Predictability in Atmospheric Flows

The Quantum World of Clouds and Rain

Nonfiction, Science & Nature, Science, Physics, Chaotic Behavior, Other Sciences, Meteorology
Cover of the book Self-organized Criticality and Predictability in Atmospheric Flows by Amujuri Mary Selvam, Springer International Publishing
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Amujuri Mary Selvam ISBN: 9783319545462
Publisher: Springer International Publishing Publication: May 5, 2017
Imprint: Springer Language: English
Author: Amujuri Mary Selvam
ISBN: 9783319545462
Publisher: Springer International Publishing
Publication: May 5, 2017
Imprint: Springer
Language: English

This book presents a new concept of General Systems Theory and its application to atmospheric physics. It reveals that energy input into the atmospheric eddy continuum, whether natural or manmade, results in enhancement of fluctuations of all scales, manifested immediately in the intensification of high-frequency fluctuations such as the Quasi-Biennial Oscillation and the El-Nino–Southern Oscillation cycles. Atmospheric flows exhibit self-organised criticality, i.e. long-range correlations in space and time manifested as fractal geometry to the spatial pattern concomitant with an inverse power law form for fluctuations of meteorological parameters such as temperature, pressure etc. Traditional meteorological theory cannot satisfactorily explain the observed self-similar space time structure of atmospheric flows. A recently developed general systems theory for fractal space-time fluctuations shows that the larger-scale fluctuation can be visualised to emerge from the space-time averaging of enclosed small-scale fluctuations, thereby generating a hierarchy of self-similar fluctuations manifested as the observed eddy continuum in power spectral analyses of fractal fluctuations. The interconnected network of eddy circulations responds as a unified whole to local perturbations such as global-scale response to El-Nino events.

The general systems theory model predicts an inverse power law form incorporating the golden mean τ for the distribution of space-time fluctuation patterns and for the power (variance) spectra of the fluctuations. Since the probability distributions of amplitude and variance are the same, atmospheric flows exhibit quantumlike chaos. Long-range correlations inherent to power law distributions of fluctuations are identified as nonlocal connection or entanglement exhibited by quantum systems such as electrons or photons. The predicted distribution is close to the Gaussian distribution for small-scale fluctuations, but exhibits a fat long tail for large-scale fluctuations. Universal inverse power law for fractal fluctuations rules out unambiguously linear secular trends in climate parameters.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

This book presents a new concept of General Systems Theory and its application to atmospheric physics. It reveals that energy input into the atmospheric eddy continuum, whether natural or manmade, results in enhancement of fluctuations of all scales, manifested immediately in the intensification of high-frequency fluctuations such as the Quasi-Biennial Oscillation and the El-Nino–Southern Oscillation cycles. Atmospheric flows exhibit self-organised criticality, i.e. long-range correlations in space and time manifested as fractal geometry to the spatial pattern concomitant with an inverse power law form for fluctuations of meteorological parameters such as temperature, pressure etc. Traditional meteorological theory cannot satisfactorily explain the observed self-similar space time structure of atmospheric flows. A recently developed general systems theory for fractal space-time fluctuations shows that the larger-scale fluctuation can be visualised to emerge from the space-time averaging of enclosed small-scale fluctuations, thereby generating a hierarchy of self-similar fluctuations manifested as the observed eddy continuum in power spectral analyses of fractal fluctuations. The interconnected network of eddy circulations responds as a unified whole to local perturbations such as global-scale response to El-Nino events.

The general systems theory model predicts an inverse power law form incorporating the golden mean τ for the distribution of space-time fluctuation patterns and for the power (variance) spectra of the fluctuations. Since the probability distributions of amplitude and variance are the same, atmospheric flows exhibit quantumlike chaos. Long-range correlations inherent to power law distributions of fluctuations are identified as nonlocal connection or entanglement exhibited by quantum systems such as electrons or photons. The predicted distribution is close to the Gaussian distribution for small-scale fluctuations, but exhibits a fat long tail for large-scale fluctuations. Universal inverse power law for fractal fluctuations rules out unambiguously linear secular trends in climate parameters.

More books from Springer International Publishing

Cover of the book Biosemiotic Medicine by Amujuri Mary Selvam
Cover of the book Gas Separation Membranes by Amujuri Mary Selvam
Cover of the book Integrating Information and Communication Technologies in English for Specific Purposes by Amujuri Mary Selvam
Cover of the book Sustainable High Rise Buildings in Urban Zones by Amujuri Mary Selvam
Cover of the book Scientific Computing by Amujuri Mary Selvam
Cover of the book The Physics of Semiconductors by Amujuri Mary Selvam
Cover of the book Proactive and Dynamic Network Defense by Amujuri Mary Selvam
Cover of the book Publics, Elites and Constitutional Change in the UK by Amujuri Mary Selvam
Cover of the book A Group Theoretic Approach to Quantum Information by Amujuri Mary Selvam
Cover of the book Euro-Par 2017: Parallel Processing by Amujuri Mary Selvam
Cover of the book Environmental Policy, Non-Product Related Process and Production Methods and the Law of the World Trade Organization by Amujuri Mary Selvam
Cover of the book Computer and Computing Technologies in Agriculture X by Amujuri Mary Selvam
Cover of the book Embracing the Ivory Tower and Stained Glass Windows by Amujuri Mary Selvam
Cover of the book Alleviating World Suffering by Amujuri Mary Selvam
Cover of the book Extended Abstracts Spring 2013 by Amujuri Mary Selvam
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy