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Multiphase flow and heat transfer have found a wide range of applications in nearly all aspects of engineering and science fields such as mechanical engineering, chemical and petrochemical engineering, nuclear engineering, energy engineering, material engineering, ocean engineering, mineral engineering, electronics and micro-electronics engineering, information technology, space technology, micro- and nano-technologies, biomedical and life science, etc. The Ebook series aims to present state-of-the-art review and research topics in all aspects of multiphase flow and heat transfer, which are co
Heat --- Multiphase flow. --- Transmission.
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This Ebook series presents state-of-the-art review and research topics in all aspects of multiphase flow and heat transfer, which are contributed by renowned scientists and researchers in various fields.
Multiphase flow --- Heat --- Research. --- Transmission
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Multiphase flow and heat transfer have found a wide range of applications in nearly all aspects of engineering and science fields such as mechanical engineering, chemical and petrochemical engineering, nuclear engineering, energy engineering, material engineering, ocean engineering, mineral engineering, electronics and micro-electronics engineering, information technology, space technology, micro- and nano-technologies, biomedical and life science, etc. The Ebook series aims to present state-of-the-art review and research topics in all aspects of multiphase flow and heat transfer, which are co
Heat --- Multiphase flow. --- Transmission.
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This short reference brings together several different branches of science and engineering and applies the knowledge to a chosen application: Charge Injection Systems. As such, the book provides a reasonably complete reference to the physical principles, the experimental and theoretical work, and also the to technology development both past and present. Overall the book gives a broad overview to the entire subject, picking the relevant information from the fields of electrostatics, fluid mechanics and engineering technology. The book is pitched at the technically literate level, for instance technical people in industry and graduate level students in science and engineering. It provides the reader with a basic introduction to the physical principles and references to established texts are given to provide a complete picture. Relevant material from the relevant academic fields are covered, but maintaining a focus on the theme of the book, namely: 'how do charge injection systems work' Charge Injection Systems is written for workers both in academic research and in industry.
Internal combustion engines. --- Internal combustion engines --- Mechanical Engineering --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Mechanical Engineering - General --- Heat-engines. --- Gas and oil engines --- Gas engines --- Engineering. --- Chemical engineering. --- Optics. --- Electrodynamics. --- Thermodynamics. --- Heat engineering. --- Heat transfer. --- Mass transfer. --- Fluid mechanics. --- Engineering Fluid Dynamics. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Industrial Chemistry/Chemical Engineering. --- Optics and Electrodynamics. --- Engines --- Heat engineering --- Thermodynamics --- Gas producers --- Heat-engines --- Motors --- Hydraulic engineering. --- Classical Electrodynamics. --- Chemistry, Industrial --- Engineering, Chemical --- Industrial chemistry --- Engineering --- Chemistry, Technical --- Metallurgy --- Construction --- Industrial arts --- Technology --- Engineering, Hydraulic --- Fluid mechanics --- Hydraulics --- Shore protection --- Dynamics --- Physics --- Light --- Mass transport (Physics) --- Transport theory --- Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer --- Heat --- Mechanical engineering --- Chemistry, Physical and theoretical --- Mechanics --- Quantum theory --- Hydromechanics --- Continuum mechanics
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The homogenization of single phase gases or liquids with chemical reactive components by mixing belongs to one of the oldest basic operations applied in chemical engineering. The design of equipment for mixing processes is still derived from measurements of the mixing time which is related to the applied methods of measurement and the special design of the test equipment itself. This book was stimulated by the Priority Program on "Flow Mixing" financially supported by the Deutsche Forschungsgemeinschaft (DFG). Results are improved modern methods for experimental research and visualization, for simulations and numerical calculations of mixing and chemical reactions in micro and macro scale of time and local coordinates. The results are aimed to improve the prediction of efficiencies and selectivities of chemical reactions in macroscopic scale. The book should give an understanding of the influence of the construction of different mixing equipment on to the momentum, heat and mass transfer as well as reaction processes running on microscopic scales of time and local coordinates. Newly developed methods of measurement are adjusted to the scales of the selected special transport and conversion processes. They allow a more detailed modeling of the mixing processes by the formulation of an appropriate set of momentum-, heat- and mass balance equations as well as boundary conditions in time and local coordinates together with constitutive equations and reaction kinetics equations as closure laws for numerical and analytical calculations. The improved and more detailed modeling leads to a major progress in predicting mixing processes on the different scales adjusted to transport and reaction processes in molecular, micro- and macro dimensions.
Laminar flow. --- Mixing. --- Turbulence. --- Civil & Environmental Engineering --- Chemical & Materials Engineering --- Civil Engineering --- Chemical Engineering --- Engineering & Applied Sciences --- Fluid dynamics. --- Blending --- Chemistry. --- Chemical engineering. --- Continuum physics. --- Thermodynamics. --- Heat engineering. --- Heat transfer. --- Mass transfer. --- Fluid mechanics. --- Industrial Chemistry/Chemical Engineering. --- Engineering Fluid Dynamics. --- Classical Continuum Physics. --- Engineering Thermodynamics, Heat and Mass Transfer. --- Dynamics --- Fluid mechanics --- Chemical engineering --- Fluid dynamics --- Hydrodynamics
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