Reduction and predictability of natural disasters : proceedings of the workshop "Reduction and Predictability of Natural Disasters" held January 5-9, 1994 in Santa Fe, New Mexico

Author(s)

Bibliographic Information

Reduction and predictability of natural disasters : proceedings of the workshop "Reduction and Predictability of Natural Disasters" held January 5-9, 1994 in Santa Fe, New Mexico

editors, John B. Rundle, Donald L. Turcotte, William Klein

(Proceedings volume in the Santa Fe Institute studies in the sciences of complexity, v. 25)

Addison-Wesley, c1996

  • : hc
  • : pbk

Available at  / 16 libraries

Search this Book/Journal

Note

Includes bibliographical references and index

Description and Table of Contents

Volume

: hc ISBN 9780201870480

Description

}Within the past five years, the international community has recognized that it may be possible, through programs of systematic study, to devise means to reduce and mitigate the occurrence of a variety of devastating natural hazards. Among these disasters are earthquakes, volcanic eruptions, floods, and landslides. The importance of these studies is underscored by the fact that within fifty years, more than a third of the worlds population will live in seismically and volcanically active zones. The International Council of Scientific Unions, together with UNESCO and the World Bank, have therefore endorsed the 1990s as the International Decade of Natural Disaster Reduction (IDNDR), and are planning a variety of programs to address problems related to the predictability and mitigation of these disasters, particularly in third-world countries. Parallel programs have begun in a number of U.S. agencies.One of the most promising scientific avenues is to develop the capability to simulate these physical processes in the computer, Many of the recent models are nonlinear in significant ways, for example cellular automata or fractal growth models. They can thus be analyzed in a framework familiar to workers in complex system theory. It is often the case that the occurrence frequency of disaster events generated by the models follow power laws, perhaps with cutoffs. Thus there is a spectrum of event sizes, from small to large, that are presumably related by the nonlinear dynamics of the process. Simulation techniques can be used to study the fundamental physics of the process. Simulation techniques can be used to study the fundamental physics of the process, and most importantly, to develop means to predict the patterns of occurrence of large events in the models and to identify precursory phenomena. }

Table of Contents

  • Societal Effects of Natural Disasters
  • Scaling Laws for Natural Disaster Fatalities (S.P. Nishenko and C.C. Barton)
  • Global Fatalities from Earthquakes in the Past 2,000 Years: Prognosis for the Next 30 (R. Bilham)
  • Floods and Landslides
  • Diffusion-Limited Aggregation as a Paradigm for Modeling Dynamical Processes (L.M. Sander)
  • A Dynamical Systems Approach to Flood-Frequency Forecasting (D. L. Turcotte and K. Haselton)
  • Multiplicative Cascades and Spatial Variability in Rainfall, River Networks, and Floods (V.K. Gupta and E. Waymire)
  • Inference for a Channel Network Model and Implications for Flood Scaling
  • (B.M. Troutman)
  • Thickness Statistics of Sedimentary Layers Generated by Gravity-Driven Flows (D.H. Rothman and J.P. Grotzinger)
  • Earthquakes
  • Thoughts on Modeling and Prediction of Earthquakes (S.G. Eubank)
  • Complexity and Earthquake Forecasting (C.G. Sammis, D. Sornette, and H. Saleur)
  • On the Scaling of Average Slip with Rupture Dimensions of Earthquakes (S. Gross)
  • Rupture Characteristics, Recurrence, and Predictability in a Slider-Block Model for Earthquakes (J.B. Rundle, W. Klein, and S. Gross)
  • A Comparison of Simple Earthquake Models (A.V. Herz)
  • Spinodals and Scaling in Slider-Block Models (W. Klein, C. Ferguson, and J.B. Rundle)
  • A hierarchical Model for Precursory Seismic Activation (W.I. Newman, D.L. Turcotte, and A. Gabrielov)
  • Observation of Boltzmann Fluctuations in Stochastic, Massless Slider-Block Simulations (J.B. Rundle, W. Klein, and D. Turcotte)
  • Prediction Studies of Earthquake Fault Models and Applications to Seismic Catalogs (J. Carlson).
Volume

: pbk ISBN 9780201870497

Description

Within the past five years, the international community has recognized that it may be possible, through programs of systematic study, to devise means to reduce and mitigate the occurrence of a variety of devastating natural hazards. Among these disasters are earthquakes, volcanic eruptions, floods, and landslides. The importance of these studies is underscored by the fact that within fifty years, more than a third of the world's population will live in seismically and volcanically active zones. The International Council of Scientific Unions, together with UNESCO and the World Bank, have therefore endorsed the 1990s as the International Decade of Natural Disaster Reduction (IDNDR), and are planning a variety of programs to address problems related to the predictability and mitigation of these disasters, particularly in third-world countries. Parallel programs have begun in a number of U.S. agencies.

Table of Contents

Preface /J. B. Rundle, B. Klein, and D. L. Turcotte -- Societal Effects of Natural Disasters -- Scaling Laws for Natural Disaster Fatalities /S. F. Nishenko and C. C. Barton -- Global Fatalities from Earthquakes in the Pt 2000 Years: Prognosis for the Next /R. Bilham -- Floods and Landslides -- Diffusion-Limited Aggregation as a Paradigm for Modeling Dynamical Processes /L. M. Sander -- A Dynamical Systems Approach to Flood-Frequency Forecasting /D. L. Turcotte and K. Haselton -- Multiplicative Cascades and Spatial Variability in Rainfall, River Networks, and Floods /V. K. Gupta and E. Wayrnire -- Inference for a Channel Network Model and Implications for Flood Scaling /B. M. Troutman -- Thickness Statistics of Sedimentary Layers Generated by Gravity-Driven Flows /D. H. Rothman and J. P. Grotzinger -- Earthquakes -- Thoughts on Modeling and Prediction of Earthquakes /S. C. Eubank -- Complexity and Earthquake Forecasting /C. C. Sammis, D. Sornette, and H. SaZeur -- on the Scaling of Average Slip with Rupture Dimensions of Earthquakes /S. Gross -- Rupture Characteristics , Recurrence , and Predict ability in a Slider-Block Model for Earthquakes /Ja B. Rundle. W. Klein. and S. Gross -- A Comparison of Simple Eqrthquake Models: -- Self- Organized Criticality vs . Intermittent P hose Locking /A . V. He rz -- Spinodals and Scaling in Slider-Block Models /w. Klein, C. Ferguson, and J. B. Rundle -- A Hierarchical Model for Precursory Seismic Activation /w. L Newman, D. L. Turcotte, and A. Gabrielov -- Observation of Boltzmann Fluctuations in Stochastic, Massless Slider-Block Simulations /J. B. Rundle, W. Klein, and D. L. Turcotte -- Prediction Studies of Earthquake Falut Models and Applicat ions to Seismic Catalogs /J. Carison -- Index.

by "Nielsen BookData"

Related Books: 1-1 of 1

Details

  • NCID
    BA29220363
  • ISBN
    • 0201870487
    • 0201870495
  • LCCN
    95051857
  • Country Code
    us
  • Title Language Code
    eng
  • Text Language Code
    eng
  • Place of Publication
    Reading, Mass.
  • Pages/Volumes
    xv, 304 p.
  • Size
    24 cm
  • Classification
  • Subject Headings
  • Parent Bibliography ID
Page Top