Muutke küpsiste eelistusi

E-raamat: Energy Modeling and Computations in the Building Envelope

(European Polytechnical University, Construction of Buildings and Facilities Department, Bulgaria)
  • Formaat: 332 pages
  • Ilmumisaeg: 27-Aug-2015
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781498723220
  • Formaat - PDF+DRM
  • Hind: 59,79 €*
  • * hind on lõplik, st. muud allahindlused enam ei rakendu
  • Lisa ostukorvi
  • Lisa soovinimekirja
  • See e-raamat on mõeldud ainult isiklikuks kasutamiseks. E-raamatuid ei saa tagastada.
  • Formaat: 332 pages
  • Ilmumisaeg: 27-Aug-2015
  • Kirjastus: CRC Press Inc
  • Keel: eng
  • ISBN-13: 9781498723220

DRM piirangud

  • Kopeerimine (copy/paste):

    ei ole lubatud

  • Printimine:

    ei ole lubatud

  • Kasutamine:

    Digitaalõiguste kaitse (DRM)
    Kirjastus on väljastanud selle e-raamatu krüpteeritud kujul, mis tähendab, et selle lugemiseks peate installeerima spetsiaalse tarkvara. Samuti peate looma endale  Adobe ID Rohkem infot siin. E-raamatut saab lugeda 1 kasutaja ning alla laadida kuni 6'de seadmesse (kõik autoriseeritud sama Adobe ID-ga).

    Vajalik tarkvara
    Mobiilsetes seadmetes (telefon või tahvelarvuti) lugemiseks peate installeerima selle tasuta rakenduse: PocketBook Reader (iOS / Android)

    PC või Mac seadmes lugemiseks peate installima Adobe Digital Editionsi (Seeon tasuta rakendus spetsiaalselt e-raamatute lugemiseks. Seda ei tohi segamini ajada Adober Reader'iga, mis tõenäoliselt on juba teie arvutisse installeeritud )

    Seda e-raamatut ei saa lugeda Amazon Kindle's. 

Energy Modeling and Computations in the Building Envelope instills a deeper understanding of the energy interactions between buildings and the environment, based on the analysis of transfer processes operating in the building envelope components at the microscopic level. The author:Proposes a generalized physics model that describes these interactions at the microscopic level via the macroscopic characteristics of the building envelopePresents mathematical models that utilize classical analytical tools and can be used to perform quantitative predictions of the consequences of the energy interactionsReveals easy-to-apply engineering methods concerning the design and inspection of the building envelope, taking into account the effects of energy on the envelopeEnergy Modeling and Computations in the Building Envelope provides comprehensive coverage of this environmentally and economically important topic, from the physics of energy transfer to its numerical estimation. The book is especially useful to those looking to increase building energy efficiency, decrease the consumption of primary energy carriers, and raise the ecological sustainability of construction products.

Arvustused

" does an excellent job at enlightening the practicing engineer in a difficult, but exciting area dealing with building efficiency, energy, and design." Darrell W. Pepper, University of Nevada, Las Vegas, USA

" describes detailed theoretical and numerical analysis of the microscale energy and heat transfer processes in the solid materials for buildings, particularly envelopes." Cheng-Xian (Charlie) Lin, Florida International University, Miami, USA

"This book is a valuable contribution to the worlds of science and of practice, a service to building and environmental protection and, herewith, to the next generations." International Journal of Energy Optimization and Engineering, April-June 2015

Introduction: The Buildings Envelopea Component of the Building Energy
System. Physics of Energy Conversions in the Building Envelope at Microscopic
Level. Design of a Model of Energy Exchange Running between the Building
Envelope and the Surroundings: Gradient of Free Energy Potential. Definition
of the Macroscopic Characteristics of Transfer. Numerical Study of Transport
in Building Envelope Components. Initial and Boundary Conditions of a Solid
Wall Element. Engineering Methods of Estimating the Effect of the
Surroundings on the Building Envelope: Control of the Heat Transfer through
the Building Envelope (Arrangement of the Thermal Resistances within a
Structure Consisting of Solid Wall Elements). Application (Solved Tasks and
Tables).
Alexander V. Dimitrov is a professional lecturer with 35 years of experience in four different universities. In addition to universities in Bulgaria, Professor Dimitrov has lectured and studied at leading scientific laboratories and institutes, including the Luikov Heat and Mass Transfer Institute of the Belarusian Academy of Sciences in Minsk; the Lawrence Berkeley National Laboratory, Environmental Energy Technology Division; the University of Nevada Las Vegas College of Engineering; and Stanford University in California. He has authored more than 100 scientific articles and eight books (including three in English), and earned two scientific degrees: Ph.D and D.Sc.