LEADER 01185nam 2200373 450 001 000009116 005 20050718115300.0 010 $a88-7005-386-5 100 $a20011210d1977----km-y0itay0103----ba 101 0 $aita 102 $aIT 200 1 $aTeoria dei sistemi$fSergio Rinaldi 210 $aMilano$cCLUP$dc1977 215 $a490 p.$d24 cm. 225 1 $aScienza dei sistemi e dell'informazione 606 $aSistemi$xTeorie 676 $a003$v(20. ed.)$9Sistemi 700 1$aRinaldi,$bSergio$01721 801 0$aIT$bUniversitą della Basilicata - B.I.A.$gRICA$2unimarc 912 $a000009116 996 $aTeoria dei sistemi$977760 997 $aUNIBAS BAS $aMONING BAS $aMONOGR BAS $aINGEGNERIA CAT $aSTD004$b01$c20011210$lBAS01$h1210 CAT $aTORRE$b20$c20020429$lBAS01$h1305 CAT $c20050601$lBAS01$h1754 CAT $abatch$b01$c20050718$lBAS01$h1050 CAT $c20050718$lBAS01$h1109 CAT $c20050718$lBAS01$h1139 CAT $c20050718$lBAS01$h1153 FMT Z30 -1$lBAS01$LBAS01$mBOOK$1BASA2$APolo Tecnico-Scientifico$2DID$BDidattica$3PTS.s3.p30.4$635252$5I35252$820011210$f04$FPrestabile Didattica LEADER 05457nam 22006611 450 001 9910789589203321 005 20230803033139.0 010 $a3-03813-977-7 035 $a(CKB)3710000000025553 035 $a(EBL)1873051 035 $a(SSID)ssj0001189825 035 $a(PQKBManifestationID)11669430 035 $a(PQKBTitleCode)TC0001189825 035 $a(PQKBWorkID)11179273 035 $a(PQKB)10733982 035 $a(MiAaPQ)EBC1873051 035 $a(Au-PeEL)EBL1873051 035 $a(CaPaEBR)ebr10777910 035 $a(OCoLC)897641272 035 $a(EXLCZ)993710000000025553 100 $a20131021h20132013 uy 0 101 0 $aeng 135 $aur|n|---||||| 181 $ctxt 182 $cc 183 $acr 200 10$aEnvibuild 2012 $eselected, peer reviewed papers from the enviBUILD 2012, October 25-26, 2012 and the Building Performance Simulation Conference 2012, November 8-9, 2012, Brno, Czech Republic /$fedited by Milos? Kalousek, Martin Ne?mec?ek, Luka?s? Chuchma 210 1$aDurnten-Zurich :$cTrans Tech Publications Ltd.,$d[2013] 210 4$d©2013 215 $a1 online resource (318 p.) 225 1 $aAdvanced materials research,$x1022-6680 ;$vvolume 649 300 $aDescription based upon print version of record. 311 $a3-03785-596-7 320 $aIncludes bibliographical references and index. 327 $aenviBUILD 2012; Preface and Committees; Table of Contents; Chapter 1: Near Zero Energy Buildings; Airtightness of Buildings in Slovakia; Energy Concept Design of Zero Energy Buildings; Impact of Internal Thermal Insulation Systems on Static Behaviour of Exterior Walls; The Evaluation of Nearly Zero Energy Buildings in the Czech Republic; The Specifics of the Real Estate Market of the Low- and Passive Energy Buildings; Chapter 2: Quality of Indoor Environment; A New Building System Made of Glass Fiber Reinforced Mineral Matrix Composites 327 $aAerodynamic Mode of Double-Skin Transparent Fac?ade with Narrow Physical Cavity and its Influence on Indoor Environment in the Summer SeasonEffect of Air Heating System Distribution on Temperature Stratification in a Room; Analysis of an Indoor Environment in Year-Round Operation; Analysis of the Behavior of Glass Claddings; Analysis of the Influence of Geometrical Thermal Bridges and their Elimination by Using a Composite Material Based on Secondary Raw Materials; Comparing Methods for Calculating Thermal Stability of Rooms 327 $aComparison of Temperatures in the Corner of Wall Footing through 2D and 3D ViewsComputer Simulations of Room Acoustics in Sporting Facilities; Differences Ug - Values of Glazing Measured In Situ with the Influence Factors of the Internal Environment; Effect of the Geometric Solution of Cladding on the Quality of the Indoor Microclimate; Envelope Structures of Low Energy Wooden Houses Considering Indoor Climate; Experimental Timber Frames House EXDR1 327 $aIndoor Environment State of Classrooms Situated in the Loft Spaces of Civil Engineering Faculty TU in Kosice - Dynamic Analysis Using Design BuilderAssessing the Risk Relative to Indoor Environment Quality in Education Buildings; Measuring Methodology and Results of Heat-Air-Moisture Performances at Building Envelope Levels; Microscopic Filamentous Fungi in Buildings, Preventing their Occurrence and their Remediation Using Nanofibers; New Materials and Assessment of Ventilation Efficiency Floors; Optimisation of the Design of Daylight Guidance Systems Including Measurement Methodology 327 $aPerceived Loudness of Sound Transmitted through Light Weight and Heavy Weight WallsProblematic of Humidity Degradation of Plaster with Indoor Fresco Decoration in Romanesque Rotunda in Znojmo; Quasistationary and Dynamic Simulation of Summer Overheating of Passive Timber House; Regeneration of Precast Panel Buildings in Terms of its Effect on Daylight; Selected Problems of Renovated Apartment Buildings Entrances in Slovakia; Simulation of Indoor Climate and Energy Consumption of Primary School 327 $aThe Importance of a Fan Location in the Front Door in Measuring of the Air Permeability by the Blower Door Test 330 $aIndoor quality of buildings has a direct impact on its inhabitants. The design of a building needs should include a healthy environment and if possible include application of building materials which are free of harmful substances and allow a low energy design. The building industry nowadays should concentrate on low energy buildings and put emphasis on natural materials and renewable resources, so todays aim is to decrease the energy requirements and contribute to a healthier indoor environment in buildings and to sustainable development. The peer reviewed papers are grouped as follows: Chapt 410 0$aAdvanced materials research ;$vv. 649. 606 $aBuildings$xPerformance$vCongresses 610 1 $aEnviBUILD 610 1 $aBuilding performance simulation 615 0$aBuildings$xPerformance 676 $a690.08 701 $aChuchma$b Luka?s?$01534791 701 $aKalousek$b Milos?$01534792 701 $aNe?mec?ek$b Martin$01534793 712 12$aBuilding Performance Simulation Conference$f(2012 :$eBrno, Czech Republic) 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910789589203321 996 $aEnvibuild 2012$93782602 997 $aUNINA