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Droplet Interactions and Spray Processes
  • Language: en
  • Pages: 312

Droplet Interactions and Spray Processes

This book provides a selection of contributions to the DIPSI workshop 2019 (Droplet Impact Phenomena & Spray Investigations) as well as recent progress of the Int. Research Training Group “DROPIT”.The DIPSI workshop, which is now at its thirteenth edition, represents an important opportunity to share recent knowledge on droplets and sprays in a variety of research fields and industrial applications. The research training group “DROPIT” is focused on droplet interaction technologies where microscopic effects influence strongly macroscopic behavior. This requires the inclusion of interface kinetics and/or a detailed analysis of surface microstructures. Normally, complicated technical processes cover the underlying basic mechanisms, and therefore, progress in the overall process modelling can hardly be gained. Therefore, DROPIT focuses on the underlying basic processes. This is done by investigating different spatial and/or temporal scales of the problems and by linking them through a multi-scale approach. In addition, multi-physics are required to understand e.g. problems for droplet-wall interactions, where porous structures are involved.

Drop Heating and Evaporation: Analytical Solutions in Curvilinear Coordinate Systems
  • Language: en
  • Pages: 403

Drop Heating and Evaporation: Analytical Solutions in Curvilinear Coordinate Systems

This book describes analytical methods for modelling drop evaporation, providing the mathematical tools needed in order to generalise transport and constitutive equations and to find analytical solutions in curvilinear coordinate systems. Transport phenomena in gas mixtures are treated in considerable detail, and the basics of differential geometry are introduced in order to describe interface-related transport phenomena. One chapter is solely devoted to the description of sixteen different orthogonal curvilinear coordinate systems, reporting explicitly on the forms of their differential operators (gradient, divergent, curl, Laplacian) and transformation matrices. The book is intended to guide the reader from mathematics, to physical descriptions, and ultimately to engineering applications, in order to demonstrate the effectiveness of applied mathematics when properly adapted to the real world. Though the book primarily addresses the needs of engineering researchers, it will also benefit graduate students.

High Performance Computing in Science and Engineering '21
  • Language: en
  • Pages: 516

High Performance Computing in Science and Engineering '21

This book presents the state-of-the-art in supercomputer simulation. It includes the latest findings from leading researchers using systems from the High Performance Computing Center Stuttgart (HLRS) in 2021. The reports cover all fields of computational science and engineering ranging from CFD to computational physics and from chemistry to computer science with a special emphasis on industrially relevant applications. Presenting findings of one of Europe’s leading systems, this volume covers a wide variety of applications that deliver a high level of sustained performance. The book covers the main methods in high-performance computing. Its outstanding results in achieving the best performance for production codes are of particular interest for both scientists and engineers. The book comes with a wealth of color illustrations and tables of results.

Lezioni di Termofisica
  • Language: it
  • Pages: 293

Lezioni di Termofisica

Il testo costituisce un tentativo di presentare gli argomenti propri del corso di Fisica Tecnica per allievi ingegneri in una forma essenziale. Il libro è diviso in tre parti di cui la prima sviluppa le basi teoriche della termodinamica classica secondo un approccio postulatorio, ritenuto ideale per l’essenzialità della trattazione; la seconda parte riporta le principali applicazioni della termodinamica ad argomenti di interesse per l’ingegneria; la terza parte è dedicata ai fenomeni di trasporto, ed in particolare ai meccanismi di scambio termico. L’auspicio degli Autori è che questo testo, che non ha la pretesa di riportare una trattazione esaustiva dei diversi argomenti trattati, possa comunque costituire uno strumento efficace per l’apprendimento dei contenuti del corso di Fisica Tecnica per ingegneri.

Bibliografia nazionale italiana
  • Language: it
  • Pages: 432

Bibliografia nazionale italiana

  • Type: Book
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  • Published: 2006
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  • Publisher: Unknown

None

Tensor Analysis and Elementary Differential Geometry for Physicists and Engineers
  • Language: en
  • Pages: 389

Tensor Analysis and Elementary Differential Geometry for Physicists and Engineers

  • Type: Book
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  • Published: 2016-08-16
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  • Publisher: Springer

This book presents tensors and differential geometry in a comprehensive and approachable manner, providing a bridge from the place where physics and engineering mathematics end, and the place where tensor analysis begins. Among the topics examined are tensor analysis, elementary differential geometry of moving surfaces, and k-differential forms. The book includes numerous examples with solutions and concrete calculations, which guide readers through these complex topics step by step. Mindful of the practical needs of engineers and physicists, book favors simplicity over a more rigorous, formal approach. The book shows readers how to work with tensors and differential geometry and how to appl...

Handbook of Atomization and Sprays
  • Language: en
  • Pages: 922

Handbook of Atomization and Sprays

Atomization and sprays are used in a wide range of industries: mechanical, chemical, aerospace, and civil engineering; material science and metallurgy; food; pharmaceutical, forestry, environmental protection; medicine; agriculture; meteorology and others. Some specific applications are spray combustion in furnaces, gas turbines and rockets, spray drying and cooling, air conditioning, powdered metallurgy, spray painting and coating, inhalation therapy, and many others. The Handbook of Atomization and Sprays will bring together the fundamental and applied material from all fields into one comprehensive source. Subject areas included in the reference are droplets, theoretical models and numerical simulations, phase Doppler particle analysis, applications, devices and more.

Four Laws That Drive the Universe
  • Language: en
  • Pages: 142

Four Laws That Drive the Universe

  • Type: Book
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  • Published: 2007-09-06
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  • Publisher: OUP Oxford

The laws of thermodynamics drive everything that happens in the universe. From the sudden expansion of a cloud of gas to the cooling of hot metal, and from the unfurling of a leaf to the course of life itself - everything is directed and constrained by four simple laws. They establish fundamental concepts such as temperature and heat, and reveal the arrow of time and even the nature of energy itself. Peter Atkins' powerful and compelling introduction explains what the laws are and how they work, using accessible language and virtually no mathematics. Guiding the reader from the Zeroth Law to the Third Law, he introduces the fascinating concept of entropy, and how it not only explains why your desk tends to get messier, but also how its unstoppable rise constitutes the engine of the universe.

Solved Problems in Mechanical Vibrations. Ediz. Integrale
  • Language: en
  • Pages: 216

Solved Problems in Mechanical Vibrations. Ediz. Integrale

  • Type: Book
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  • Published: 2021
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  • Publisher: Unknown

None

Bubbly Flows
  • Language: en
  • Pages: 354

Bubbly Flows

The book summarises the outcom of a priority research programme: 'Analysis, Modelling and Computation of Multiphase Flows'. The results of 24 individual research projects are presented. The main objective of the research programme was to provide a better understanding of the physical basis for multiphase gas-liquid flows as they are found in numerous chemical and biochemical reactors. The research comprises steady and unsteady multiphase flows in three frequently found reactor configurations, namely bubble columns without interiors, airlift loop reactors, and aerated stirred vessels. For this purpose new and improved measurement techniques were developed. From the resulting knowledge and data, new and refined models for describing the underlying physical processes were developed, which were used for the establishment and improvement of analytic as well as numerical methods for predicting multiphase reactors. Thereby, the development, lay-out and scale-up of such processes should be possible on a more reliable basis.