Molecular Simulation Studies on Thermophysical Properties

With Application to Working Fluids

Nonfiction, Science & Nature, Science, Physics, Thermodynamics, Technology, Engineering, Mechanical
Cover of the book Molecular Simulation Studies on Thermophysical Properties by Gabriele Raabe, Springer Singapore
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: Gabriele Raabe ISBN: 9789811035456
Publisher: Springer Singapore Publication: February 17, 2017
Imprint: Springer Language: English
Author: Gabriele Raabe
ISBN: 9789811035456
Publisher: Springer Singapore
Publication: February 17, 2017
Imprint: Springer
Language: English

This book discusses the fundamentals of molecular simulation, starting with the basics of statistical mechanics and providing introductions to Monte Carlo and molecular dynamics simulation techniques. It also offers an overview of force-field models for molecular simulations and their parameterization, with a discussion of specific aspects. The book then summarizes the available know-how for analyzing molecular simulation outputs to derive information on thermophysical and structural properties. Both the force-field modeling and the analysis of simulation outputs are illustrated by various examples. Simulation studies on recently introduced HFO compounds as working fluids for different technical applications demonstrate the value of molecular simulations in providing predictions for poorly understood compounds and gaining a molecular-level understanding of their properties. This book will prove a valuable resource to researchers and students alike.

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

This book discusses the fundamentals of molecular simulation, starting with the basics of statistical mechanics and providing introductions to Monte Carlo and molecular dynamics simulation techniques. It also offers an overview of force-field models for molecular simulations and their parameterization, with a discussion of specific aspects. The book then summarizes the available know-how for analyzing molecular simulation outputs to derive information on thermophysical and structural properties. Both the force-field modeling and the analysis of simulation outputs are illustrated by various examples. Simulation studies on recently introduced HFO compounds as working fluids for different technical applications demonstrate the value of molecular simulations in providing predictions for poorly understood compounds and gaining a molecular-level understanding of their properties. This book will prove a valuable resource to researchers and students alike.

More books from Springer Singapore

Cover of the book High Speed Railway Track Dynamics by Gabriele Raabe
Cover of the book Japanese Contractors in Overseas Markets by Gabriele Raabe
Cover of the book Topological Structure of the Solution Set for Evolution Inclusions by Gabriele Raabe
Cover of the book Minimization of Climatic Vulnerabilities on Mini-hydro Power Plants by Gabriele Raabe
Cover of the book Classroom Writing Assessment and Feedback in L2 School Contexts by Gabriele Raabe
Cover of the book Decentralization and Development of Sri Lanka Within a Unitary State by Gabriele Raabe
Cover of the book Korean Modernization and Uneven Development by Gabriele Raabe
Cover of the book Aswan High Dam Resettlement of Egyptian Nubians by Gabriele Raabe
Cover of the book Data Science Landscape by Gabriele Raabe
Cover of the book Materials, Energy and Environment Engineering by Gabriele Raabe
Cover of the book Bariatric Surgical Practice Guide by Gabriele Raabe
Cover of the book Nitrate Esters Chemistry and Technology by Gabriele Raabe
Cover of the book The Kyoto Manifesto for Global Economics by Gabriele Raabe
Cover of the book Reactive Oxygen Species and Antioxidant Systems in Plants: Role and Regulation under Abiotic Stress by Gabriele Raabe
Cover of the book Real-Time Visual Effects for Game Programming by Gabriele Raabe
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