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Echangeurs de chaleur --- Heat exchangers --- Warmtewisselaars --- Fouling.
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Heat exchangers --- Echangeurs de chaleur --- Heat exchangers.
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Heat exchangers --- Thermal hydraulics --- Échangeurs de chaleur --- Thermodynamique --- Hydraulique --- Échangeurs de chaleur. --- Échangeurs de chaleur
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Heat pipes. --- Technologie --- Technology --- Échangeurs de chaleur --- Technology. --- Échangeurs de chaleur --- Refrigeration and refrigerating machinery.
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This book presents the ideas and industrial concepts in compact heat exchanger technology that have been developed in the last 10 years or so. Historically, the development and application of compact heat exchangers and their surfaces has taken place in a piecemeal fashion in a number of rather unrelated areas, principally those of the automotive and prime mover, aerospace, cryogenic and refrigeration sectors. Much detailed technology, familiar in one sector, progressed only slowly over the boundary into another sector. This compartmentalisation was a feature both of the user industries themselves, and also of the supplier, or manufacturing industries. These barriers are now breaking down, with valuable cross-fertilisation taking place. One of the industrial sectors that is waking up to the challenges of compact heat exchangers is that broadly defined as the process sector. If there is a bias in the book, it is towards this sector. Here, in many cases, the technical challenges are severe, since high pressures and temperatures are often involved, and working fluids can be corrosive, reactive or toxic. The opportunities, however, are correspondingly high, since compacts can offer a combination of lower capital or installed cost, lower temperature differences (and hence running costs), and lower inventory. In some cases they give the opportunity for a radical re-think of the process design, by the introduction of process intensification (PI) concepts such as combining process elements in one unit. An example of this is reaction and heat exchange, which offers, among other advantages, significantly lower by-product production. To stimulate future research, the author includes coverage of hitherto neglected approaches, such as that of the Second Law (of Thermodynamics), pioneered by Bejan and co- workers. The justification for this is that there is increasing interest in life-cycle and sustainable approaches to industrial activity as a whole, often involving exergy (S
Heat exchangers. --- Echangeurs de chaleur --- ELSEVIER-B EPUB-LIV-FT --- Heat-engines. --- Engines --- Heat engineering --- Thermodynamics --- Chemical engineering --- Heat --- Refrigeration and refrigerating machinery --- Equipment and supplies --- Transmission
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Caloducs --- Centrale hydro-électrique. --- Constructions --- Dynamique des fluides. --- Heat exchangers. --- Interaction fluide-structure. --- Mathématiques de l'ingénieur. --- Réacteurs nucléaires --- Récipients sous pression --- Tubes --- Tuyauterie --- Vibration. --- couplage. --- ecoulement compressible. --- ecoulement incompressible. --- fluide. --- fonction propre. --- heat exchangers. --- methode valeur propre. --- onde Bloch. --- operateur continu. --- operateur lineaire. --- structure. --- theorie spectrale. --- viscosite. --- Échangeurs de chaleur --- Échangeurs de chaleur. --- Génie mécanique. --- Dynamique. --- Fluides, Dynamique des.
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nuclear physics --- Nuclear energy --- Thermodynamics --- Nuclear physics --- Heat engineering --- Heat recovery --- Heat exchangers --- Thermique --- Chaleur --- Echangeurs de chaleur --- Periodicals --- Périodiques --- Récupération --- Chemistry --- Engineering --- Chemical Engineering --- Physical Chemistry --- General and Others --- Mechanical Engineering --- thermodynamica --- kernenergie
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Researchers, practitioners, instructors, and students all welcomed the first edition of Heat Exchangers: Selection, Rating, and Thermal Design for gathering into one place the essence of the information they need-information formerly scattered throughout the literature. While retaining the basic objectives and popular features of the bestselling first edition, the second edition incorporates significant improvements and modifications. New in the Second Edition: Introductory material on heat transfer enhancement An application of the Bell-Delaware method New correlation for calculating heat transfer and friction coefficients for chevron-type plates Revision of many of the solved examples and the addition of several new ones The authors take a systematic approach to the subject of heat exchanger design, focusing on the fundamentals, selection, thermohydraulic design, design processes, and the rating and operational challenges of heat exchangers. It introduces thermal design by describing various types of single-phase and two-phase flow heat exchangers and their applications and demonstrates thermal design and rating processes through worked examples, exercises, and student design projects. Much of the text is devoted to describing and exemplifying double-pipe, shell-and-tube, compact, gasketed-plate heat exchanger types, condensers, and evaporators.
Heat exchangers. --- Echangeurs de chaleur --- warmtewisselaar --- warmteterugwinning --- bell-delaware methode --- Mechanical engineering --- Warmtewisselaars --- (zie ook: serpentine) --- (zie ook: warmterecuperatie) --- Heat exchangers --- Chemical engineering --- Heat --- Refrigeration and refrigerating machinery --- Equipment and supplies --- Transmission
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Heat exchangers --- Thermodynamics --- Echangeurs de chaleur --- Thermodynamique --- Design and construction --- Design et construction --- 621.4 --- -Heat exchangers --- -#TWER:BOEK --- Chemical engineering --- Heat --- Refrigeration and refrigerating machinery --- Heat engines (except steam engines) --- Equipment and supplies --- Transmission --- Design and construction. --- Thermodynamics. --- 621.4 Heat engines (except steam engines) --- #TWER:BOEK
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66.021.3 --- 66.021.4 --- Heat --- -Mass transfer --- Mass transport (Physics) --- Thermodynamics --- Transport theory --- Electromagnetic waves --- Physics --- Cold --- Combustion --- Fire --- Temperature --- Thermochemistry --- Mass transfer --- Heat transfer --- Transmission --- Mass transfer. --- Transmission. --- 66.021.3 Mass transfer --- 66.021.4 Heat transfer --- Thermal transfer --- Transmission of heat --- Energy transfer --- Échangeurs de chaleur --- Échangeurs de chaleur --- Transfert de chaleur --- Transfert de masse --- Diffusion
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