Energy-Efficient Building Design Future Benchmarks
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1 Fachbereich Architektur Technische Universität Darmstadt Energy-Efficient Building Design Future Benchmarks Dipl. Ing. Isabell Schäfer Fachgebiet Entwerfen und Energiffizientes Bauen [FG] Prof. Manfred Hegger Wohnbebauung, Brendeland Kristoffersen 1
2 01 Background + Potentials 02 Energy Efficient Design 03 State Of The Art - Example Projects 04 Résumé Plusenergy Home Solar Decathlon 2007 Minimum Impact House 2 Gliederung
3 > Background + Potentials 3 0 Gliederung
4 ~ dead people Katrina ~ $ 4 Background I Climate Change - Consequences
5 50% site energy traffic buildings industry 5 Background I Energy Consumption Of Buildings
6 + 60% (2030) 6 Background I Increase Of Emerging Nation
7 50 % 7 Background I Material Consumption
8 60 % 8 Background I Waste Accumulation
9 19,0 m² >> 44,0 m² 9 Background I Development Of Living Space Kapsel Hotel, Tokyo
10 129 ha/d 10 Background I Land Consumption Kapsel Hotel, Tokyo
11 66a 1903 first controlled engine powered flight Orville Wright spent 12 seconds in the air and covered a distance of 37m. Spd: 10,8 km/h first manned moon landing The Apollo-11-Mission circled in 8 days and 3 hours 30 times around the moon and covered the distance from earth to moon with 10,8 km per second. Spd: km/h. 11 Background I Development Of Technical Performance
12 66a? ~ 1903 = 26l/m 2 a ~ 1969 = 23l/m 2 a 12 Background I Development Of Building Performance
13 > Energy-Efficient Design 13 0 Gliederung
14 14 Energy-Efficient Design I Development Of Building Energy Consumption
15 boundary conditions energy optimized building concept evaluation climate use minimize energy consumption ecology (CO2-emssion) economics (life cycle costs) law design optimize energy supply cultur (acceptability) architecture (design quality) 15 Energy-Efficient Design I Integral Planning
16 minimize energy consumption (building shell) optimize energy supply (tech. equipment) heating conserve thermal energy efficiently gain and storage thermal energy cooling avoid overheating use efficient cooling lighting use natural lighting optimize artificial lighting ventilation energy use natural ventilation conserve electric energy use efficient mechanical ventilation decentralize energy production use renewable energy energy efficiency renewable energy 16 Energy-Efficient Design I 10 Points Of Energy Building Design
17 > State Of The Art - Example Projects 17 0 Gliederung
18 01 Ausgangssituation 02 Grundlagen EnEV energiffiziente Neubauten energiffiziente Altbauten > Plusenery Home Solar Decathlon Strategien des Energiffizienten und Nachhaltigen Bauens 18
19 The Competition International University Competition U.S.Department of Energy 3rd time after 2005 and 2002 Year 2015 Prototype Home German Innovation, Research and Design National Mall, Washington D.C visitors 19 Solar Decathlon 2007 I Competition
20 - principle of layers -core -platform 20 Solar Decathlon 2007 I Building Design
21 working space living area 21 Solar Decathlon 2007 I Building Design
22 kitchen 22 Solar Decathlon 2007 I Building Design
23 bed dinner table 23 Solar Decathlon 2007 I Building Design
24 barhroom 24 Solar Decathlon 2007 I Building Design
25 porch 25 Solar Decathlon 2007 I Building Design
26 Passive Technologies Integral Planning Active Systems 26 Solar Decathlon 2007 I Energy Concept
27 Passive Technologies 27 Solar Decathlon 2007 I Energy Concept
28 Passive Technologies. compact building 28 Solar Decathlon 2007 I Energy Concept
29 Passive Technologies. compact building. highly insulated shell 29 Solar Decathlon 2007 I Energy Concept
30 triple glasing U-value: 0,5 W/m2K quadruple glasing U-value: 0,3 W/m2K 30 Solar Decathlon 2007 I Energy Concept
31 Passive Technologies. compact building. highly insulated shell. Overheating protection, passive solar gains 31 Solar Decathlon 2007 I Energy Concept
32 Passive Technologies. compact building. highly insulated shell. Overheating protection, passive solar gains. thermal mass through Phase Changing Materials 32 Solar Decathlon 2007 I Energy Concept
33 Passive Technologies. compact building. highly insulated shell. Overheating protection, passive solar gains. thermal mass through Phase Changing Materials.nightly cross ventilation 33 Solar Decathlon 2007 I Energy Concept
34 Ti Tx Passive Technologies. compact building. highly insulated shell. Overheating protection, passive solar gains. thermal mass through Phase Changing Materials. nightly cross ventilation. passive cooling system 34 Solar Decathlon 2007 I Energy Concept
35 35 Solar Decathlon 2007 I Energy Concept
36 PCM 500 Liter Tank 36 Solar Decathlon 2007 I Energy Concept
37 Active Systems 37 Solar Decathlon 2007 I energetic concept
38 Active Systems. photovoltaic-modules 38 Solar Decathlon 2007 I energetic concept
39 Roof: 40 Sunpower SPR-215 moduls 3 angle flat roof integration performance: 9kWp Porch: 6 Scheuten glas-glas-moduls with transparent PV-Cells Sunscrn, weather protection & energy gain performance: 2kWp 39 Solar Decathlon 2007 I Energy Concept
40 - total: 48 frame elements / 1488 lamellae - with PV: 34 frame elements / 1054 lamellae - performance: east/west: 0,5 kwp, south 1kWp 40 Solar Decathlon 2007 I Energy Concept
41 Active Systems. photovoltaic-modules. solarthermal collectors 41 Solar Decathlon 2007 I Energy Concept
42 Active Systems. photovoltaic-modules. solarthermal collectors. compact device, heat pump, heat storage tank, heat recovery 42 Solar Decathlon 2007 I Energy Concept
43 Active Systems. photovoltaic-modules. solarthermal collectors. compact device, heat pump, heat storage tank, heat recovery. energy-efficient appliances 43 Solar Decathlon 2007 I Energy Concept
44 Active Systems. photovoltaic-modules. solarthermal collectors. compact device, heat pump, heat storage tank, heat recovery. energy-efficient appliances. energy-efficient lighting 44 Solar Decathlon 2007 I Energy Concept
45 45 Solar Decathlon 2007 I Washington 2007
46 46 Solar Decathlon 2007 I Washington 2007
47 47
48 01 Ausgangssituation 02 Grundlagen EnEV energiffiziente Neubauten energiffiziente Altbauten > Minimum Impact House 03 Strategien des Energiffizienten und Nachhaltigen Bauens 48
49 49 MIH I Research Project I Development Of An Sustainable Prototype Home
50 50 MIH I Research Project I Development Of An Sustainable Prototype Home
51 51 MIH I Design Development
52 52 MIH I Life Cycle Analysis
53 53 MIH I Comparison
54 54 MIH I Life Cycle Analysis
55 55 MIH I Energy Concept
56 56 MIH I Energy Concept (Sabina)
57 57 MIH I Energy Concept (MIH)
58 58 MIH I Life Cycle Analysis
59 59 MIH I Life Cycle Analysis
60 60 MIH I Infrastructure
61 61 MIH I Life Cycle Analysis
62 Quelle: Energie Atlas; Hegger et. al.; MIH I Energy Consumption - Density
63 Quelle: Energie Atlas; Hegger et. al.; MIH I Energy Consumption - Density
64 64
65 65
66 01 Ausgangssituation 02 Grundlagen EnEV energiffiziente Neubauten energiffiziente Altbauten > Résumé 03 Strategien des Energiffizienten und Nachhaltigen Bauens 66
67 Ich danke für Ihre Aufmerksamkeit! 67 Ausblick
68 Those who work on the future, Will never be unoccupied! Dr. Franz Alt 68
69 Thank you for your attention. Dipl. Ing. Isabell Schäfer Fachgebiet Entwerfen und Energiffizientes Bauen [FG] Fachbereich Architektur Technische Universität Darmstadt darmstadt.de 69
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