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Chemical technology --- fluidomechanica --- warmteoverdracht --- massa-overdracht --- kristallisatie --- (zie ook: warmtetransport) --- Fluid mechanics
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With complete coverage of the basic principles of heat transfer and a broad range of applications in a flexible format, Heat and Mass Transfer: A Practical Approach provides the perfect blend of fundamentals and applications. The text provides a highly intuitive and practical understanding of the material by emphasizing the physics and the underlying physical phenomena involved. Key: Text covers the standard topics of heat transfer with an emphasis on physics and real-world every day applications, while de-emphasizing the intimidating heavy mathematical aspects. This approach is designed to take advantage of students' intuition, making the learning process easier and more engaging. Key: The new edition will add helpful web-links for students. Key: 50% of the Homework Problems including design, computer, essay, lab-type, and FE problems are new or revised to this edition. Using a reader-friendly approach and a conversational writing style, the book is self-instructive and entertains while it teaches. It shows that highly technical matter can be communicated effectively in a simple yet precise language ~50% of the problems are new or revised to this edition. 378 total NEW problems.
heat exchangers --- warmtegeleiding --- massaoverdracht --- warmteoverdracht --- warmteleer --- thermodynamics --- Thermodynamics --- warmtewisselaars --- thermodynamica --- SI-eenheden --- conserveren --- convectie --- klimatisering --- koeltechniek --- voedingsmiddelentechnologie --- klimatisering (klimaatregeling) --- massa-overdracht --- warmtegeleidbaarheid --- warmtewisselaar --- (zie ook: warmteleer) --- (zie ook: warmtetransport) --- (zie ook: serpentine) --- Contains audio-visual material
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Chemical technology --- chemische ingenieurstechniek --- chemische procesindustrie --- fluidtechniek --- waterkoeling --- (zie ook: warmtetransport) --- fluïdisatie --- deeltjestechnologie --- sedimentatie --- filtraties --- Chemical engineering. --- destillatie --- extractie --- verdampen --- adsorptie --- kristallisatie --- absorptie --- drogen --- Fluides, Dynamique des --- Transfert de chaleur --- Transfert de masse --- Heat --- Mass transfer. --- Fluid dynamics. --- Dynamique des fluides. --- Transfert de chaleur. --- Transfert de masse. --- Transmission.
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Toegepaste Energieleer - wartme en stromingsleer behandelt de natuurkundige basis die nodig is om processen waarin energieomzetting en -transport plaatsvindt te analyseren. In dit boek worden zowel de warmteleer, de stromingsleer als het warmtetransport behandeld. Er is dus slechts één studieboek nodig die deze onderwerpen - in samenhang - behandelen. In de hoofdstukken over warmteleer komen de ideale gaswetten, omkeerbare en onomkeerbare toestandsveranderingen, kringprocessen en open systemen aan bod. De hoofdstukken van de stromingsleer behandelen stroming (van gas en vloeistof) in buizen en om lichamen in zowel stationaire als instationaire systemen. In de hoofdstukken over warmtetransport worden zowel stationaire als instationaire warmtetransportproblemen behandeld waarbij nader ingegaan wordt op de bepaling van warmteoverdrachtscoëfficiënten en het oplossen van stralingsnetwerken.
Machine elements --- warmtetransmissie --- Thermodynamics --- stoominstallatie --- warmteleer --- warmtegeleiding --- reologie --- thermodynamica --- werktuigbouwkunde --- warmteoverdracht --- Heat engines. Steam engines --- 532 --- 620.9 --- energietechnologie --- stromingsleer --- warmtetransport --- 53 --- Energietechnologie --- Stromingsleer : fysica --- Warmteleer --- vloeistofmechanica (hydromechanica)- theorie --- economie-energie in het algemeen --- Contains audio-visual material --- elektromechanica --- energieleer --- (zie ook: warmteoverdracht) --- (zie ook: warmtetransport) --- Warmtetechnieken --- Stromingsleer --- PXL-Tech 2019 --- natuurkunde --- energietechniek --- 536
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Retaining the successful format of the first edition and building on its solid grounding in the principles of renewable energy resources, this second edition has been revised in line with the latest advances in the field to include new technologies and an assessment of their impact. Considering each technology in depth from both scientific and environmental perspectives, it covers solar energy, photovoltaic, wind, wave, tidal and hydro power, biofuels, geothermals and more, as well as featuring a new chapter on institutional factors, including economics. In addition, extra worked problems and case studies are also provided to help readers put theory into practice. Reading and web-based material for further study is indicated after each chapter, making this text ideal, not only for practitioners, but also for students on multi-disciplinary masters degrees in science and engineering as well specialist modules in science and engineering first degrees.
biomassa --- zonne-energie --- hernieuwbare energie --- wind power --- Relation between energy and economics --- windenergie --- Renewable energy sources. --- hernieuwbare grondstoffen --- hydrodynamica --- warmteoverdracht --- zonnestraling --- zonneboiler --- zonne-energie systeem --- fotovoltaïsch systeem --- waterkracht --- windkrachtcentrale --- fotosynthese --- golfenergie --- getijdenenergie --- geothermische energie --- otec (ocean thermal energy conversion) --- biobrandstof --- energieopslag --- (zie ook: warmtetransport) --- (zie ook: biomassa vergassing) --- (zie ook: brandstof; plantaardige olie) --- (zie ook: eco-brandstof) --- Renewable energy sources --- Alternate energy sources --- Alternative energy sources --- Energy sources, Renewable --- Sustainable energy sources --- Power resources --- Renewable natural resources --- Agriculture and energy
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fluïdomechanica --- warmteoverdracht --- eindige volume methode --- CFD --- 532.5 --- 519.6 --- 681.3 *G18 --- algoritme --- CFD (computational fluid dynamics) --- computersimulatie --- convectie --- diffusie --- dynamica --- fluidomechanica --- turbulente stroming --- verbranding --- 681.3 *G18 Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- Partial differential equations: difference methods; elliptic equations; finite element methods; hyperbolic equations; method of lines; parabolic equations (Numerical analysis) --- 519.6 Computational mathematics. Numerical analysis. Computer programming --- Computational mathematics. Numerical analysis. Computer programming --- 532.5 Liquid motion. Hydrodynamics --- Liquid motion. Hydrodynamics --- (zie ook: warmtetransport) --- Finite volume method. --- Fluid dynamics --- Basic Sciences. Physics --- Data processing. --- Fluid Mechanics. --- Mathematical physics --- Fluid mechanics --- Finite volume method --- Computational fluid dynamics --- CFD (Computational fluid dynamics) --- Numerical analysis --- Data processing --- Computer simulation --- Computational fluid dynamics. --- Volumes finis, Méthodes de --- Fluides, Dynamique des --- Informatique
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Finite Difference Methods in Heat Transfer presents a clear, step-by-step delineation of finite difference methods for solving engineering problems governed by ordinary and partial differential equations, with emphasis on heat transfer applications. The finite difference techniques presented apply to the numerical solution of problems governed by similar differential equations encountered in many other fields. Fundamental concepts are introduced in an easy-to-follow manner.Representative examples illustrate the application of a variety of powerful and widely used finite difference techniques. The physical situations considered include the steady state and transient heat conduction, phase-change involving melting and solidification, steady and transient forced convection inside ducts, free convection over a flat plate, hyperbolic heat conduction, nonlinear diffusion, numerical grid generation techniques, and hybrid numerical-analytic solutions.
Numerical analysis --- Mathematical physics --- Thermodynamics --- 536.24 --- 664.8.036 --- 664.8.037 --- 57.087.1 --- Finite differences --- Heat --- -681.3*G14 --- warmteoverdracht --- warmtegeleidbaarheid --- Electromagnetic waves --- Physics --- Cold --- Combustion --- Fire --- Temperature --- Thermochemistry --- Differences, Finite --- Finite difference method --- Heat transfer. Heat exchange. Heat transmission --- Food preservation by heating --- Food preservation by refrigeration. Storage and transport of refrigerated food --- Biometry. Statistical study and treatment of biological data --- Transmission --- -Mathematics --- Quadrature and numerical differentiation: adaptive quadrature; equal intervalintegration; error analysis; finite difference methods; gaussian quadrature; iterated methods; multiple quadrature --- (zie ook: warmtetransport) --- Finite differences. --- Mathematics. --- 681.3*G14 Quadrature and numerical differentiation: adaptive quadrature; equal intervalintegration; error analysis; finite difference methods; gaussian quadrature; iterated methods; multiple quadrature --- 57.087.1 Biometry. Statistical study and treatment of biological data --- 664.8.037 Food preservation by refrigeration. Storage and transport of refrigerated food --- 664.8.036 Food preservation by heating --- 536.24 Heat transfer. Heat exchange. Heat transmission --- 681.3*G14 --- Transmission&delete& --- Mathematics
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