Extremal calculation problems of free convective movements in ventilated facades

Systems of ventilated facades recently gain the increasing popularity. First of all it is explained by multifunctionality of these systems. Ventilated facades not only give the buildings expressive architectural shape, but also provide protection of the building against external influences and effec...

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Main Authors: D.V. Nemova, V.A. Yemelyanova, D.R. Miftakhova
Format: Article
Language:English
Published: Peter the Great St. Petersburg Polytechnic University 2013-12-01
Series:Инженерно-строительный журнал
Subjects:
Online Access:http://www.engstroy.spb.ru/index_2013_08/07.pdf
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spelling doaj-20ae972cb7af490f805d6e3b831061732020-11-25T02:37:04ZengPeter the Great St. Petersburg Polytechnic UniversityИнженерно-строительный журнал2071-47262071-03052013-12-01438465310.5862/MCE.43.7Extremal calculation problems of free convective movements in ventilated facadesD.V. Nemova0V.A. Yemelyanova1D.R. Miftakhova2Saint-Petersburg State Polytechnical UniversitySaint-Petersburg State Polytechnical UniversitySaint-Petersburg State Polytechnical UniversitySystems of ventilated facades recently gain the increasing popularity. First of all it is explained by multifunctionality of these systems. Ventilated facades not only give the buildings expressive architectural shape, but also provide protection of the building against external influences and effectively cope with thermal protection. The main existing techniques for calculation of these critical structures are based on normative requirements. The hydraulic method of calculation of ventilated façade systems with the help of extremal problems is presented. Extreme conditions divide the actual and virtual movements of viscous air in vertical ventilation gaps. Their application leads to the weak formulations of limit problems convenient for an assessment of hydraulic elements of motion. The method was based on an extremal problem of Cross, the decision was provided by means of Krokko's equations. http://www.engstroy.spb.ru/index_2013_08/07.pdffree convective movementbarotropypressure lossestopologylimit problem
collection DOAJ
language English
format Article
sources DOAJ
author D.V. Nemova
V.A. Yemelyanova
D.R. Miftakhova
spellingShingle D.V. Nemova
V.A. Yemelyanova
D.R. Miftakhova
Extremal calculation problems of free convective movements in ventilated facades
Инженерно-строительный журнал
free convective movement
barotropy
pressure losses
topology
limit problem
author_facet D.V. Nemova
V.A. Yemelyanova
D.R. Miftakhova
author_sort D.V. Nemova
title Extremal calculation problems of free convective movements in ventilated facades
title_short Extremal calculation problems of free convective movements in ventilated facades
title_full Extremal calculation problems of free convective movements in ventilated facades
title_fullStr Extremal calculation problems of free convective movements in ventilated facades
title_full_unstemmed Extremal calculation problems of free convective movements in ventilated facades
title_sort extremal calculation problems of free convective movements in ventilated facades
publisher Peter the Great St. Petersburg Polytechnic University
series Инженерно-строительный журнал
issn 2071-4726
2071-0305
publishDate 2013-12-01
description Systems of ventilated facades recently gain the increasing popularity. First of all it is explained by multifunctionality of these systems. Ventilated facades not only give the buildings expressive architectural shape, but also provide protection of the building against external influences and effectively cope with thermal protection. The main existing techniques for calculation of these critical structures are based on normative requirements. The hydraulic method of calculation of ventilated façade systems with the help of extremal problems is presented. Extreme conditions divide the actual and virtual movements of viscous air in vertical ventilation gaps. Their application leads to the weak formulations of limit problems convenient for an assessment of hydraulic elements of motion. The method was based on an extremal problem of Cross, the decision was provided by means of Krokko's equations.
topic free convective movement
barotropy
pressure losses
topology
limit problem
url http://www.engstroy.spb.ru/index_2013_08/07.pdf
work_keys_str_mv AT dvnemova extremalcalculationproblemsoffreeconvectivemovementsinventilatedfacades
AT vayemelyanova extremalcalculationproblemsoffreeconvectivemovementsinventilatedfacades
AT drmiftakhova extremalcalculationproblemsoffreeconvectivemovementsinventilatedfacades
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