The Monte Carlo Methods in Atmospheric Optics

The Monte Carlo Methods in Atmospheric Optics PDF

Author: G.I. Marchuk

Publisher: Springer

Published: 2013-04-17

Total Pages: 218

ISBN-13: 3540352376

DOWNLOAD EBOOK →

This monograph is devoted to urgent questions of the theory and applications of the Monte Carlo method for solving problems of atmospheric optics and hydrooptics. The importance of these problems has grown because of the increas ing need to interpret optical observations, and to estimate radiative balance precisely for weather forecasting. Inhomogeneity and sphericity of the atmos phere, absorption in atmospheric layers, multiple scattering and polarization of light, all create difficulties in solving these problems by traditional methods of computational mathematics. Particular difficulty arises when one must solve nonstationary problems of the theory of transfer of narrow beams that are connected with the estimation of spatial location and time characteristics of the radiation field. The most universal method for solving those problems is the Monte Carlo method, which is a numerical simulation of the radiative-transfer process. This process can be regarded as a Markov chain of photon collisions in a medium, which result in scattering or absorption. The Monte Carlo tech nique consists in computational simulation of that chain and in constructing statistical estimates of the desired functionals. The authors of this book have contributed to the development of mathemati cal methods of simulation and to the interpretation of optical observations. A series of general method using Monte Carlo techniques has been developed. The present book includes theories and algorithms of simulation. Numerical results corroborate the possibilities and give an impressive prospect of the applications of Monte Carlo methods.

Short-Wave Solar Radiation in the Earth's Atmosphere

Short-Wave Solar Radiation in the Earth's Atmosphere PDF

Author: Irina N. Melnikova

Publisher: Springer Science & Business Media

Published: 2005

Total Pages: 324

ISBN-13: 9783540214526

DOWNLOAD EBOOK →

Based on data from an experiment which ran for ten years, this book summarizes the results of the Atmospheric Physics Department of the St. Petersburg University and the Main Geophysical Observatory. The processed data now forms a rich dataset of spectral values of radiative characteristics under different atmospheric conditions. The analysis of this database clearly shows that the solar radiative absorption in a dusty and cloudy atmosphere is significantly higher than assumed to date. Both graduate students of atmospheric sciences as well as scientists and researchers in the field of meteorology and climatology will find a wealth of new data and information in this monograph.

Theoretical Fundamentals of Atmospheric Optics

Theoretical Fundamentals of Atmospheric Optics PDF

Author: Yu. M. Timofeyev

Publisher: Cambridge Int Science Publishing

Published: 2008

Total Pages: 488

ISBN-13: 1904602258

DOWNLOAD EBOOK →

The book describes the theoretical fundamentals of atmospheric optics as a science of propagation, transformation and generation of electromagnetic radiation in the atmosphere from ultraviolet to microwave radiation. The main characteristics of the planets of the solar system and their atmospheres are given. The equation of the transfer of radiation in different spectral ranges, absorption of radiation by atmospheric gases and aerosol, molecular, aerosol and other types of nonresonant scattering, atmospheric refraction, reflection of radiation from the surface, and glow of the atmosphere are discussed. Methods of calculating radiation for the solar and thermal range of the spectrum are outlined. Problems of radiation energetics and remote probing of the atmosphere are discussed. 1. Solar system: planets and the Sun 2. Earth's atmosphere 3. Propagation of radiation in atmosphere 4. Molecular absorption in atmosphere 5. Scattering of light in atmosphere 6. Optical properties of underlying surfaces 7. Fundamentals of theory of transfer of natural radiation of atmosphere 8. Main concepts of theory of transfer of solar radiation 9. Radiation energetics of the atmosphereunderlying suface system 10. Radiation as a source of information on optical and physical parameters of planet atmospheres

Monte Carlo Method for Solving Inverse Problems of Radiation Transfer

Monte Carlo Method for Solving Inverse Problems of Radiation Transfer PDF

Author: V. S. Antyufeev

Publisher: Walter de Gruyter GmbH & Co KG

Published: 2014-07-24

Total Pages: 204

ISBN-13: 3110920301

DOWNLOAD EBOOK →

The Inverse and Ill-Posed Problems Series is a series of monographs publishing postgraduate level information on inverse and ill-posed problems for an international readership of professional scientists and researchers. The series aims to publish works which involve both theory and applications in, e.g., physics, medicine, geophysics, acoustics, electrodynamics, tomography, and ecology.

Applications of Monte Carlo Methods in Biology, Medicine and Other Fields of Science

Applications of Monte Carlo Methods in Biology, Medicine and Other Fields of Science PDF

Author: Charles J. Mode

Publisher: BoD – Books on Demand

Published: 2011-02-28

Total Pages: 442

ISBN-13: 9533074272

DOWNLOAD EBOOK →

This volume is an eclectic mix of applications of Monte Carlo methods in many fields of research should not be surprising, because of the ubiquitous use of these methods in many fields of human endeavor. In an attempt to focus attention on a manageable set of applications, the main thrust of this book is to emphasize applications of Monte Carlo simulation methods in biology and medicine.

Fundamentals of Atmospheric Radiation

Fundamentals of Atmospheric Radiation PDF

Author: Craig F. Bohren

Publisher: John Wiley & Sons

Published: 2006-08-21

Total Pages: 490

ISBN-13: 3527608370

DOWNLOAD EBOOK →

Meeting the need for teaching material suitable for students of atmospheric science and courses on atmospheric radiation, this textbook covers the fundamentals of emission, absorption, and scattering of electromagnetic radiation from ultraviolet to infrared and beyond. Much of the contents applies to planetary atmosphere, with graded discussions providing a thorough treatment of subjects, including single scattering by particles at different levels of complexity. The discussion of the simple multiple scattering theory introduces concepts in more advanced theories, such that the more complicated two-stream theory allows readers to progress beyond the pile-of-plates theory. The authors are physicists teaching at the largest meteorology department in the US at Penn State. The problems given in the text come from students, colleagues, and correspondents, and the figures designed especially for this book facilitate comprehension. Ideal for advanced undergraduate and graduate students of atmospheric science. * Free solutions manual available for lecturers at www.wiley-vch.de/supplements/