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Passive Cooling of Buildings- [electronic resource]
Passive Cooling of Buildings- [electronic resource]

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자료유형  
 단행본
Control Number  
n862610441
International Standard Book Number  
9781134254828 (electronic bk.)
International Standard Book Number  
1134254822 (electronic bk.)
Library of Congress Call Number  
TH7687.5
Dewey Decimal Classification Number  
697.93
Main Entry-Personal Name  
Asimakopoulos, D.
Publication, Distribution, etc. (Imprint  
Hoboken : Taylor and Francis, 2013
Physical Description  
1 online resource (485 pages).
Series Statement  
BEST (Buildings Energy and Solar Technology)
Formatted Contents Note  
완전내용Cover; Half Title; Title Page; Copyright Page; Table of Contents; Preface; 1 Cooling in buildings; Historical development; Buildings and energy consumption for cooling; Current technology of air-conditioning systems; Current technology for natural ventilation in buildings; Conclusions; References; 2 Passive cooling of buildings; Benefits of passive cooling; Passive cooling strategies; Cooling potential -- limitations; Epilogue; References; 3 The Mediterranean climate; Geographical characteristics; Solar radiation; The air temperature; Relative humidity; Characteristics of the wind; Cloudiness.
Formatted Contents Note  
완전내용SunshineMeteorological measures to represent environmental stress; Cooling degree days; Thom's discomfort index; References; Additional reading; 4 Microclimate; Climate and microclimate; Topography as climate modifier; Urban forms as climate modifiers; Climate and design requirements; References; 5 Urban design; Stages of urban design; Building design; References; 6 Thermal comfort; The influencing parameters; Psychrometrics; Thermal equilibrium of the human body; Comfort indices; Prediction of thermal comfort; References; Appendix A; Appendix B; 7 Cooling load of buildings.
Formatted Contents Note  
완전내용Factors affecting the cooling loadMethods for calculating the cooling load in buildings; Calculation of monthly averaged cooling load; A simplified manual method for calculating cooling loads; References; 8 Heat attenuation; The role of thermal mass; Heat transfer mechanisms; Parameters influencing thermal mass effectiveness; Calculations of thermal mass effectiveness; Case studies; References; Appendix A; Appendix B; 9 Natural ventilation; Natural ventilation; Empirical/simplified methods for estimating ventilation rates in a single-zone building.
Formatted Contents Note  
완전내용Natural convection heat and mass transfer through large internal openingsMultizone modelling; Night ventilation; References; Appendix A; Appendix B; Appendix C; Appendix D; 10 Solar control; Description of solar geometry; Prediction of sun's position; Graphical design tools; Solar control review; Solar control issues; Solar control techniques; References; Further reading; Appendix A; Appendix B; 11 Ground cooling; Ground cooling by direct contact; Earth-to-air heat exchangers; Conclusions; References; Appendix A; Appendix B; 12 Evaporative cooling; Physics of evaporative cooling.
Formatted Contents Note  
완전내용Evaporative cooling systemsPerformance of evaporative cooling devices; Conclusions; References; Appendix; 13 Radiative cooling; Physical principles of radiative cooling; Radiative cooling systems; Modelling the flat-plate radiative cooler; Potential of radiative cooling; Problems related to radiative cooling; Conclusions; References; Further reading; Appendix A; Appendix B; 14 Simplified methods for passive cooling applications; Cooling requirements of air-conditioned (a/c) buildings; Cooling requirements of naturally ventilated (n/v) buildings.
General Note  
Cooling requirements of buildings equipped with earth-to-air heat exchangers (buried pipes).
Summary, Etc.  
요약Energy use in buildings in the EU represents about 40% of the total annual energy consumption. With greater awareness of the need to reduce energy consumption comes a growth of interest in passive cooling, particularly as an alternative to air-conditioning. This book describes the fundamentals of passive cooling together with the principles and formulae necessary for its successful implementation. The material is comprised largely of information and results compiled under the SAVE European Research Programme.
Subject Added Entry-Topical Term  
Ventilation
Subject Added Entry-Topical Term  
Buildings Energy conservation
Subject Added Entry-Topical Term  
Air conditioning
Subject Added Entry-Topical Term  
TECHNOLOGY & ENGINEERING Construction Heating, Ventilation & Air Conditioning.
Subject Added Entry-Topical Term  
Air conditioning.
Subject Added Entry-Topical Term  
Buildings Energy conservation.
Subject Added Entry-Topical Term  
Ventilation.
Added Entry-Personal Name  
Santamouris, M.
Additional Physical Form Entry  
Print versionAsimakopoulos, D. Passive Cooling of Buildings. Hoboken : Taylor and Francis, ©2013 9781873936474
Series Added Entry-Uniform Title  
BEST (Buildings Energy and Solar Technology)
Electronic Location and Access  
로그인을 한후 보실 수 있는 자료입니다.
Control Number  
joongbu:441455

MARC

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■24510▼aPassive  Cooling  of  Buildings▼h[electronic  resource]
■260    ▼aHoboken▼bTaylor  and  Francis▼c2013
■300    ▼a1  online  resource  (485  pages).
■336    ▼atext▼btxt▼2rdacontent
■337    ▼acomputer▼bc▼2rdamedia
■338    ▼aonline  resource▼bcr▼2rdacarrier
■4901  ▼aBEST  (Buildings  Energy  and  Solar  Technology)
■5050  ▼aCover;  Half  Title;  Title  Page;  Copyright  Page;  Table  of  Contents;  Preface;  1  Cooling  in  buildings;  Historical  development;  Buildings  and  energy  consumption  for  cooling;  Current  technology  of  air-conditioning  systems;  Current  technology  for  natural  ventilation  in  buildings;  Conclusions;  References;  2  Passive  cooling  of  buildings;  Benefits  of  passive  cooling;  Passive  cooling  strategies;  Cooling  potential  --  limitations;  Epilogue;  References;  3  The  Mediterranean  climate;  Geographical  characteristics;  Solar  radiation;  The  air  temperature;  Relative  humidity;  Characteristics  of  the  wind;  Cloudiness.
■5058  ▼aSunshineMeteorological  measures  to  represent  environmental  stress;  Cooling  degree  days;  Thom's  discomfort  index;  References;  Additional  reading;  4  Microclimate;  Climate  and  microclimate;  Topography  as  climate  modifier;  Urban  forms  as  climate  modifiers;  Climate  and  design  requirements;  References;  5  Urban  design;  Stages  of  urban  design;  Building  design;  References;  6  Thermal  comfort;  The  influencing  parameters;  Psychrometrics;  Thermal  equilibrium  of  the  human  body;  Comfort  indices;  Prediction  of  thermal  comfort;  References;  Appendix  A;  Appendix  B;  7  Cooling  load  of  buildings.
■5058  ▼aFactors  affecting  the  cooling  loadMethods  for  calculating  the  cooling  load  in  buildings;  Calculation  of  monthly  averaged  cooling  load;  A  simplified  manual  method  for  calculating  cooling  loads;  References;  8  Heat  attenuation;  The  role  of  thermal  mass;  Heat  transfer  mechanisms;  Parameters  influencing  thermal  mass  effectiveness;  Calculations  of  thermal  mass  effectiveness;  Case  studies;  References;  Appendix  A;  Appendix  B;  9  Natural  ventilation;  Natural  ventilation;  Empirical/simplified  methods  for  estimating  ventilation  rates  in  a  single-zone  building.
■5058  ▼aNatural  convection  heat  and  mass  transfer  through  large  internal  openingsMultizone  modelling;  Night  ventilation;  References;  Appendix  A;  Appendix  B;  Appendix  C;  Appendix  D;  10  Solar  control;  Description  of  solar  geometry;  Prediction  of  sun's  position;  Graphical  design  tools;  Solar  control  review;  Solar  control  issues;  Solar  control  techniques;  References;  Further  reading;  Appendix  A;  Appendix  B;  11  Ground  cooling;  Ground  cooling  by  direct  contact;  Earth-to-air  heat  exchangers;  Conclusions;  References;  Appendix  A;  Appendix  B;  12  Evaporative  cooling;  Physics  of  evaporative  cooling.
■5058  ▼aEvaporative  cooling  systemsPerformance  of  evaporative  cooling  devices;  Conclusions;  References;  Appendix;  13  Radiative  cooling;  Physical  principles  of  radiative  cooling;  Radiative  cooling  systems;  Modelling  the  flat-plate  radiative  cooler;  Potential  of  radiative  cooling;  Problems  related  to  radiative  cooling;  Conclusions;  References;  Further  reading;  Appendix  A;  Appendix  B;  14  Simplified  methods  for  passive  cooling  applications;  Cooling  requirements  of  air-conditioned  (a/c)  buildings;  Cooling  requirements  of  naturally  ventilated  (n/v)  buildings.
■500    ▼aCooling  requirements  of  buildings  equipped  with  earth-to-air  heat  exchangers  (buried  pipes).
■520    ▼aEnergy  use  in  buildings  in  the  EU  represents  about  40%  of  the  total  annual  energy  consumption.  With  greater  awareness  of  the  need  to  reduce  energy  consumption  comes  a  growth  of  interest  in  passive  cooling,  particularly  as  an  alternative  to  air-conditioning.  This  book  describes  the  fundamentals  of  passive  cooling  together  with  the  principles  and  formulae  necessary  for  its  successful  implementation.  The  material  is  comprised  largely  of  information  and  results  compiled  under  the  SAVE  European  Research  Programme.
■5880  ▼aPrint  version  record.
■650  0▼aVentilation
■650  0▼aBuildings▼xEnergy  conservation
■650  0▼aAir  conditioning
■650  7▼aTECHNOLOGY  &  ENGINEERING▼xConstruction▼xHeating,  Ventilation  &  Air  Conditioning.▼2bisacsh
■650  7▼aAir  conditioning.▼2fast▼0(OCoLC)fst00802264
■650  7▼aBuildings▼xEnergy  conservation.▼2fast▼0(OCoLC)fst00841028
■650  7▼aVentilation.▼2fast▼0(OCoLC)fst01165252
■655  4▼aElectronic  books.
■7001  ▼aSantamouris,  M.
■77608▼iPrint  version▼aAsimakopoulos,  D.▼tPassive  Cooling  of  Buildings.▼dHoboken  :  Taylor  and  Francis,  ©2013▼z9781873936474
■830  0▼aBEST  (Buildings  Energy  and  Solar  Technology)
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