Heating, cooling, lighting: sustainable design methods for architects
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Hoboken, N.J.
John Wiley & Sons
2009
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Ausgabe: | 3. ed. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | Includes bibliographical references and index Includes bibliographical references and index |
Beschreibung: | XIX, 698 S. Ill., graph. Darst. |
ISBN: | 9780470048092 |
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245 | 1 | 0 | |a Heating, cooling, lighting |b sustainable design methods for architects |c Norbert Lechner |
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264 | 1 | |a Hoboken, N.J. |b John Wiley & Sons |c 2009 | |
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500 | |a Includes bibliographical references and index | ||
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650 | 4 | |a Air conditioning | |
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Datensatz im Suchindex
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adam_text | THIRD EDITION HEATING, COOLING, LIGHTING: SUSTAINABLE DESIGN METHODS FOR
ARCHITECTS NORBERT LECHNER @ WILEY JOHN WILEY &. SONS, INC. CONTENTS- 41
13 55 FOREWORD TO THE FIRST EDITION XIII FOREWORD TO THE THIRD EDITION
XV PREFACE XVII ACKNOWLEDGMENTS XIX 1 _ HEATING, COOLLNG, AND L1GHTING
AS FORM-GIVERS IN ARCHITECTURE 1.1 INTRODUCTION 2 1.2 VEMACULAR AND
REGIONAL AREHITEETURE 3 1.3 FORMAL AREHITEETURE 5 1.4 THE ARCHITECTURAL
APPROACH 7 1.5 DYNAMIC VERSUS STATIE BUILDINGS 10 1.6 PASSIVE
SURVIVABILITY 10 1.7 ENERGY AND AREHITEETURE 10 1.8 AREHITEETURE AND
HEATING, COOLING, AND LIGHTING 11 1.9 CONCLUSION 12 2 _ SUSTAINABLE
DESIGN 2.1 EASTER ISLAND: LEAMING FROM THE PAST 14 2.2 SUSTAINABLE
DESIGN 14 2.3 REUSE, RECYDE, AND REGENERATE BY DESIGN 16 2.4 THE GREEN
MOVEMENT 16 2.5 POPULATION AND SUSTAINABILITY 17 2.6 GROWTH 18 2.7
EXPONENTIAL GROWTH 18 2.8 THE AMOEBA ANALOGY 19 2.9 SUPPLY VERSUS
EFFICIENCY 20 2.10 SUSTAINABLE-DESIGN ISSUES 20 2.11 CLIMATE CHANGE 21
2.12 THE GLOBAL GREENHOUSE 23 2.13 THE OZONE HOLE 24 2.14 EFFICIENCY 24
2.15 ENERGY SOURCES 25 2.16 ANCIENT GREEEE: A HISTORICAL EXAMPLE 25 2.17
NONRENEWABLE ENERGY SOURCES 25 VII 2.18 RENEWABLE ENERGY SOURCES 29 2.19
HYDROGEN 36 2.20 CONCLUSION 38 3 _ BASIC PRINCLPLES 3.1 INTRODUCTION 42
3.2 HEAT 42 3.3 SENSIBLE HEAT 42 3.4 LATENT HEAT 43 3.5 EVAPORATIVE
COOLING 43 3.6 CONVECTION 44 3.7 TRANSPORT 44 3.8 ENERGY-TRANSFER
MEDIUMS 45 3.9 RADIATION 45 3.10 GREENHOUSE EFFEET 46 3.11 EQUILIBRIUM
TEMPERATURE OF A SURFAEE 47 3.12 MEAN RADIANT TEMPERATURE 48 3.13 HEAT
FLOW 48 3.14 HEAT SINK 49 3.15 HEAT CAPACITY 49 3.16 THERMAL RESISTANEE
50 3.17 HEAT-FLOW COEFFICIENT 50 3.18 TIME LAG 50 3.19 INSULATING EFFECT
OF MASS 51 3.20 ENERGY CONVERSION 51 3.21 COMBINED HEAT AND POWER 52
3.22 FUEL CELLS 52 3.23 EMBODIED ENERGY 53 3.24 CONCLUSION 54 4 _
THERMAL COMFORT 4.1 BIOLOGICAL MAEHINE 56 4.2 THERMAL BARRIERS 57 4.3
METABOLIE RATE 59 4.4 THERMAL CONDITIONS OF THE ENVIRONMENT 60 4.5 THE
PSYEHROMETRIC CHART 60 4.6 DEW POINT AND WET-BULB TEMPERATURES 62 4.7
HEAT CONTENT OF AIR 63 4.8 THERMAL COMFORT 64 VI II CONTENTS 177 7.7
DESIGN GUIDELINES FOR DIRECT-GAIN SYSTEMS 156 7.8 EXAMPLE 158 7.9 TROMBE
WALL SYSTEMS 158 7.10 DESIGN GUIDELINES FAR TROMBE WALL SYSTEMS 163 7.11
EXAMPLE 163 7.12 SUNSPACES 163 7.13 BALCOMB HOUSE 164 7.14 SUNSPACE
DESIGN GUIDELINES 166 7.15 COMPARISON OF THE THREE MAIN PASSIVE HEATING
SYSTEMS 168 7.16 GENERAL CONSIDERATIONS FOR PASSIVE SOLAR SYSTEMS 168
7.17 HEAT-STORAGE MATERIALS 171 7.18 OTHER PASSIVE HEATING SYSTEMS 172
7.19 CONCLUSION 174 8~_~ __ ~~_ PHOTOVOLTAICS AND ACTIVE SOLAR 71 131
SHIFTING OF THE COMFORT ZONE 65 CLOTHING AND COMFORT 66 STRATEGIES 67
CONCLUSION 68 INTRODUCTION 72 CLIMATE 72 MICROCLIMATE 75 CLIMATIC
ANOMALIES 77 CLIMATE REGIONS OF THE UNITED STATES 78 EXPLANATIONS OF THE
CLIMATIC DATA TABLES 79 ADDITIONAL CLIMATE INFORMATION 87 CLIMATE
INFORMATION FOR OTHER COUNTRIES 87 CLIMATE DATA TABLES 88 DESIGN
STRATEGIES 122 4.9 4.10 4.11 4.12 5.1 5.2 5.3 5.4 5.5 5.6 5.7 5.8 5.9
5_~ __ ~ ~ CLIMATE 6_~_~ __ SOLAR GEOMETRY 6.1 INTRODUETION 132 6.2 THE
SUN 132 6.3 ELLIPTICAL ORBIT 132 6.4 TILT OF THE EARTH S AXIS 133 6.5
CONSEQUENCES OF THE ALTITUDE ANGLE 134 6.6 WINTER 135 6.7 THE SUN
REVOLVES AROUND THE EARTH! 135 6.8 SKY DOME 135 6.9 DETERMINING ALTITUDE
AND AZIMUTH ANGLES 6.10 SOLAR TIME 137 6.11 HORIZONTAL SUN-PATH DIAGRAMS
137 6.12 VERTICAL SUN-PATH DIAGRAMS 139 6.13 SUN-PATH MODELS 141 6.14
SOLAR SITE-EVALUATION TOOLS 142 6.15 HELIODONS 142 6.16 SUNDIALS FOR
MODEL TESTING 143 6.17 CONCEPTUALLY CLEAR HELIODONS 145 6.18 CONCLUSION
145 7_ PASSIVE SOLAR 7.1 HISTORY 148 7.2 SOLAR IN AMERICA 148 7.3 SOLAR
HEMICYCLE 150 7.4 LATEST REDISCOVERY OFPASSIVE SOLAR 151 7.5 PASSIVE
SOLAR 152 7.6 DIRECT-GAIN SYSTEMS 153 136 147 8.1 8.2 8.3 8.4 8.5 8.6
8.7 8.8 8.9 8.10 8.11 8.12 8.13 8.14 8.15 8.16 8.17 8.18 8.19 8.20 8.21
8.22 8.23 8.24 8.25 8.26 INTRODUETION 178 THE ALMOST IDEAL ENERGY SOURCE
178 HISTORY OF PV 178 THE PV CELL 180 TYPES OF PV SYSTEMS 181 BALANCE OF
SYSTEM EQUIPMENT 182 BUILDING-INTEGRATED PHOTOVOLTAICS 182 ORIENTATION
AND TILT 184 ROOFS CLAD WITH PV 185 FACADES CLAD WITH PV 186 GLAZING AND
PV 186 PV SHADING DEVICES 188 PV: PART OF THE SECOND TIER 188 SIZING A
PV SYSTEM 189 FINDING THE PV ARRAY SIZE FAR A STAND-ALONE BUILDING BY
THE SHORT CALCULATION METHOD 190 DESIGN GUIDELINES 191 THE PROMISE OF PV
192 THE COST EFFEETIVENESS OF PV AND ACTIVE SOLAR APPLICATIONS 192
ACTIVE SOLAR SWIMMING- POOL HEATING 195 SOLAR HOT-WATER SYSTEMS 195
SOLAR HOT-AIR COLLECTARS 197 DESIGNING AN AETIVE SOLAR SYSTEM 198
ACTIVE/PASSIVE SOLAR SYSTEMS 200 PREHEATING OF VENTILATION AIR 201 THE
FUTURE OF ACTIVE SOLAR 204 CONCLUSION 204 CONTENTS IX 10 _ PASSIVE
COOLING 257 12.1 INTRODUCTION 344 12.2 LIGHT 346 12.3
REFLECTANCE(FRANSMITTANCE 349 12.4 COLOR 350 12.5 VISION 353 12.6
PERCEPTION 354 12.7 PERFORMANCE OF A VISUAL TASK 357 12.8
CHARACTERISTICS OF THE VISUAL TASK 358 12.9 ILLUMINATION LEVEL 359 12.10
BRIGHTNESS RATIOS 361 12.11 GLARE 362 12.12 EQUIVALENT SPHERICAL
ILLUMINATION 366 12.13 ACTIVITY NEEDS 367 12.14 BIOLOGICAL NEEDS 370
12.15 LIGHT AND HEALTH 373 12.16 THE POETRY OFLIGHT 373 12.17 RULES FOR
LIGHTING DESIGN 374 12.18 CAREER POSSIBILITIES 375 12.19 CONCLUSION 375
11.1 INTRODUCTION 296 11.2 SITE SELECTION 299 11.3 SOLAR ACCESS 300 11.4
SHADOW PATTERNS 305 11.5 SITE PLANNING 308 11.6 SOLAR ZONING 312 11.7
PHYSICAL MODELS 315 11.8 WIND AND SITE DESIGN 317 11.9 PLANTS AND
VEGETATION 323 11.10 GREEN ROOFS 328 11.11 LAWNS 331 11.12 LANDSCAPING
332 11.13 COMMUNITY DESIGN 338 11.14 COOLING OUR COMMUNITIES 340 11.15
CONCLUSION 340 10.11 RADIANT COOLING 285 10.12 EVAPORATIVE COOLING 287
10.13 COOL TOWERS 289 10.14 EARTH COOLING 290 10.15 DEHUMIDIFICATION
WITH A DESICCANT 293 10.16 CONCLUSION 293 12, _ L1GHTING 343 11 _ SITE
DESIGN, COMMUNITY PLANI JII JG, AND LANDSCAPING 295 207 9.1 HISTORY OF
SHADING 208 9.2 SHADING 213 9.3 FIXED EXTERIOR SHADING DEVICES 217 9.4
MOVABLE SHADING DEVICES 219 9.5 SHADING PERIODS OF THE YEAR 223 9.6
HORIZONTALOVERHANGS 227 9.7 DESIGN OF HORIZONTAL OVERHANGS-BASIC METHOD
228 9.8 SHADING DESIGN FOR SOUTH WINDOWS 230 9.9 DESIGN GUIDELINES FOR
FIXED SOUTH OVERHANGS 230 9.10 DESIGN GUIDELINES FOR MOVABLE SOUTH
OVERHANGS 232 9.11 SHADING FOR EAST AND WEST WINDOWS 233 9.12 DESIGN OF
EAST AND WEST HORIZONTALOVERHANGS 235 9.13 DESIGN OF SLANTED VERTICAL
FINS 236 9.14 DESIGN OFFINS ON NORTH WINDOWS 236 9.15 DESIGN GUIDELINES
FOR EGGCRATE SHADING DEVICES 237 9.16 SPECIAL SHADING STRATEGIES 238
9.17 SHADING OUTDOOR SPACES 241 9.18 USING PHYSICAL MODELS FOR SHADING
DESIGN 244 9.19 GLAZING AS THE SHADING ELEMENT 247 9.20 INTERIOR SHADING
DEVICES 249 9.21 SHADING COEFFICIENT AND SOLAR HEAT-GAIN COEFFICIENT 250
9.22 REFLECTION FROM ROOFS AND WALLS 251 9.23 CONCLUSION 253 10.1
INTRODUCTION TO COOLING 258 10.2 HISTORICAL AND INDIGENOUS USE OF
PASSIVE COOLING 258 10.3 PASSIVE COOLING SYSTEMS 267 10.4 COMFORT
VENTILATION VERSUS NIGHT-FLUSH COOLING 267 10.5 BASIC PRINCIPLES OF AIR
FLOW 267 10.6 AIR FLOW THROUGH BUILDINGS 271 10.7 EXAMPLE OFVENTILATION
DESIGN 278 10.8 COMFORT VENTILATION 281 10.9 NIGHT-FLUSH COOLING 282
10.10 SMART FACADES AND ROOFS 284 9 _ SHADING AND LIGHT COLORS 379 X
CONTENTS 13_~ __ ~ __ DAYLIGHTING 13.1 HISTORY OF DAYLIGHTING 380 13.2
WHY DAYLIGHTING? 384 13.3 THE NATURE OF DAYLIGHT 386 13.4 CONCEPTUAL
MODEL 389 13.5 ILLUMINATION AND THE DAYLIGHT FACTOR 390 13.6 LIGHT
WITHOUT HEAT? 391 13.7 COOL DAYLIGHT 392 13.8 GOALS OFDAYLIGHTING 393
13.9 BASIC DAYLIGHTING STRATEGIES 394 13.10 BASIC WINDOW STRATEGIES 397
13.11 ADVANCED WINDOW STRATEGIES 401 13.12 WINDOW GLAZING MATERIALS 406
13.13 TOP LIGHTING 407 13.14 SKYLIGHT STRATEGIES 408 13.15 CLERESTORIES,
MONITORS, AND LIGHT SCOOPS 412 13.16 SPECIAL DAYLIGHTING TECHNIQUES 418
13.17 TRANSLUCENT WALLS AND ROOFS 422 13.18 ELECTRIC LIGHTING AS A
SUPPLEMENT TO DAYLIGHTING 424 13.19 PHYSICAL MODELING 426 13.20
GUIDELINES FOR DAYLIGHTING 431 13.21 CONCLUSION 431 14 ~ __ ELECTRIC
LIGHTING 433 14.1 HISTORY OF LIGHT SOURCES 434 14.2 LIGHT SOURCES 435
14.3 INCANDESCENT AND HALOGEN LAMPS 437 14.4 DISCHARGE LAMPS 438 14.5
FLUORESCENT LAMPS 439 14.6 HIGH INTENSITY DISCHARGE LAMPS (MERCURY,
METAL HALIDE, AND HIGH PRESSURE SODIUM) 441 14.7 COMPARISON OF THE MAJOR
LIGHTING SOURCES 443 14.8 SOLID STATE LIGHTING 443 14.9 LUMINAIRES 445
14.10 LENSES, DIFFUSERS, AND BAFFLES 445 14.11 LIGHTING SYSTEMS 448
14.12 REMOTE-SOURCE LIGHTING SYSTEMS 450 14.13 VISUALIZING LIGHT
DISTRIBUTION 451 14.14 ARCHITEETURAL LIGHTING 454 14.15 OUTDOOR LIGHTING
456 14.16 EMERGENCY LIGHTING 457 14.17 CONTROLS 457 14.18 MAINTENANCE
458 14.19 RULES FOR ENERGY-EFFICIENT ELEETRIC LIGHTING DESIGN 458 14.20
CONCLUSION 459 15 ~ __ THE THERMAL ENVELOPE: KEEPING WARM AND STAYING
COOL 461 15.1 BACKGROUND 462 15.2 HEAT LOSS 463 15.3 HEAT GAIN 465 15.4
SOLAR REFLECTIVITY (ALBEDO) 466 15.5 COMPACTNESS, EXPOSED AREAL AND
THERMAL PLANNING 467 15.6 INSULATION MATERIALS 470 15.7 THE THERMAL
ENVELOPE 475 15.8 HEAT BRIDGES 482 15.9 WINDOWS 484 15.10 MOVABLE
INSULATION 489 15.11 INSULATING EFFECT FROM THERMAL MASS 489 15.12 EARTH
SHELTERING 491 15.13 INFILTRATION AND VENTILATION 496 15.14 MOISTURE
CONTROL 497 15.15 RADON 501 15.16 APPLIANCES 501 15.17 CONCLUSION 502
16_~~~ __ MECHANICAL EQUIPMENT FOR HEATING AND COOLING 505 16.1
INTRODUCTION 506 16.2 HEATING 506 16.3 THERMAL ZONES 509 16.4 HEATING
SYSTEMS 509 16.5 ELECTRIC HEATING 511 16.6 HOT-WATER (HYDRONIC) HEATING
512 16.7 HOT-AIR SYSTEMS 515 16.8 COOLING 518 16.9 REFRIGERATION CYCLES
519 16.10 HEAT PUMPS 521 16.11 GEO-EXCHANGE 522 16.12 COOLING SYSTEMS
523 16.13 AIR CONDITIONING FOR SMALL BUILDINGS 527 16.14 AIR
CONDITIONING FOR LARGE MULTISTORY BUILDINGS 530 16.15 DESIGN GUIDELINES
FOR MECHANICAL SYSTEMS 538 16.16 AIR SUPPLY (DUCTS AND DIFFUSERS) 539
CONTENTS XI 631 16.17 VENTILATION 543 16.18 ENERGY-EFFICIENT VENTILATION
SYSTEMS 544 16.19 AIR FILTRATION AND ODOR REMOVAL 547 16.20 SPECIAL
SYSTEMS 547 16.21 INTEGRATED AND EXPOSED MECHANIEAL EQUIPMENT 547 16.22
CONCLUSION 551 APPENDIX F _ SUN-PATH MODELS F.1 INTRODUCTION 631 F.2
DIRECTIONS FOR CONSTRUCTING A SUN-PATH MODEL 631 555 641 17 _ (ASE
STUDIES APPENDIX G _ COMPUTER SOFTWARE USEFUL FOR THE SCHEMATIC DESIGN
STAGE 645 17.1 INTRODUCTION 556 17.2 THE REAL GOODS SOLAR LIVING CENTER
556 17.3 THE URBAN VILLA 562 17.4 THE EMERALD PEOPLE S UTILITY DISTRIET
HEADQUARTERS 565 17.5 COLORADO MOUNTAIN COLLEGE 567 17.6 GREGORY BATESON
BUILDING 571 17.7 COMMERZBANK 578 17.8 PHOENIX CENTRAL LIBRARY 582 G.1
INTRODUCTION 641 G.2 ECOTECT 641 G.3 ENERGY SCHEMING 3.0 641 GA
ENERGY-LOTM 641 G.5 UCLA ENERGY DESIGN TOOLS 642 APPENDIX H _ SITE
EVALUATION TOOLS 587 APPENDIX A _ HORIZONTAL SUN-PATH DIAGRAMS H.1
INTRODUCTION 645 H.2 THE SOLAR PATHFINDER 645 H.3 THE SUNEYE* 645 HA THE
SUN LOCATOR 646 H.5 DO-IT-YOURSELF SOLAR SITE EVALUATOR 646 599 APPENDIX
B _ VERTICAL SUN-PATH DIAGRAMS APPENDIX I HELIODONS 653 611 617 663 661
1.1 INTRODUCTION 653 1.2 THE SUN SIMULATOR HELIODON 653 1.3 THE SUN
EMULATOR HELIODON 653 104 THE TABLETOP HELIODON 654 1.5 THE BOWLING BALL
HELIODON 657 1.6 OTHER SOURCES OF HELIODONS 659 APPENDIX K _ RESOURCES
APPENDIX J _ EDUCATIONAL OPPORTUN/TIES IN ENERGY-CONSCIOUS DESIGN D.1
PROPORTIONAL-SHADOW METHOD 617 D.2 SIMILAR-TRIANGLE METHOD 617 D.3 45
RIGHT-TRIANGLE METHOD 618 D.4 TRIGONOMETRIE METHOD 618 D.5 TOOLS FOR
MEASURING VERTIEAL ANGLES 619 APPENDIX C _ SOLAR ALTITUDE AT ID AZIMUTH
ANGLES APPENDIX D _ METHODS FOR ESTIMATING THE HEIGHT OF TREES,
BUILDINGS, ETE. 621 APPENDIX E _ SUNDIALS K.1 BOOKS 663 K.2 JOURNALS 663
K.3 VIDEOS 663 675 667 671 XII CONTENTS K.4 CD-ROMS 664 K.5
ORGANIZATIONS 664 APPENDIX L __ ~~_ TABLES OF R*VALUES L.I R-VALUES FOR
TYPICAL BUILDING MATERIALS 668 L.2 R-VALUES OF AIR SPACES 670 L.3
THENNAL RESISTANCES FOR SLAB DOORS 670 APPENDIX M~_~ __ CONVERSION
FACTORS BETWEEN THE INCH*POUND (I-P) AND SYSTEM INTERNATIONAL (SI)
SYSTEMS APPENDIX N _ THE WATER TABLE FOR VENTILATION STUDIES N.I
INTRODUCTION 675 N.2 CONSTRUCTION OF A WATER TABLE 675 BIBLIOGRAPHY 679
INDEX 685
|
any_adam_object | 1 |
author | Lechner, Norbert |
author_facet | Lechner, Norbert |
author_role | aut |
author_sort | Lechner, Norbert |
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building | Verbundindex |
bvnumber | BV035256399 |
callnumber-first | T - Technology |
callnumber-label | TH7222 |
callnumber-raw | TH7222 |
callnumber-search | TH7222 |
callnumber-sort | TH 47222 |
callnumber-subject | TH - Building Construction |
classification_rvk | ZH 3080 |
ctrlnum | (OCoLC)209789797 (DE-599)BVBBV035256399 |
dewey-full | 697 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 697 - Heating, ventilating & air-conditioning |
dewey-raw | 697 |
dewey-search | 697 |
dewey-sort | 3697 |
dewey-tens | 690 - Construction of buildings |
discipline | Architektur Bauingenieurwesen |
edition | 3. ed. |
format | Book |
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id | DE-604.BV035256399 |
illustrated | Illustrated |
indexdate | 2024-07-09T21:29:46Z |
institution | BVB |
isbn | 9780470048092 |
language | English |
lccn | 2008027971 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-017061980 |
oclc_num | 209789797 |
open_access_boolean | |
owner | DE-Aug4 DE-83 |
owner_facet | DE-Aug4 DE-83 |
physical | XIX, 698 S. Ill., graph. Darst. |
publishDate | 2009 |
publishDateSearch | 2009 |
publishDateSort | 2009 |
publisher | John Wiley & Sons |
record_format | marc |
spelling | Lechner, Norbert Verfasser aut Heating, cooling, lighting sustainable design methods for architects Norbert Lechner 3. ed. Hoboken, N.J. John Wiley & Sons 2009 XIX, 698 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Includes bibliographical references and index Heating Air conditioning Lighting Lichttechnik (DE-588)4035633-4 gnd rswk-swf Klimagerechtes Bauen (DE-588)4125387-5 gnd rswk-swf Heizung (DE-588)4024271-7 gnd rswk-swf Klimatechnik (DE-588)4031177-6 gnd rswk-swf Energiebewusstes Bauen (DE-588)4113437-0 gnd rswk-swf Haustechnik (DE-588)4113858-2 gnd rswk-swf Heizung (DE-588)4024271-7 s Klimatechnik (DE-588)4031177-6 s Lichttechnik (DE-588)4035633-4 s Klimagerechtes Bauen (DE-588)4125387-5 s 1\p DE-604 Haustechnik (DE-588)4113858-2 s Energiebewusstes Bauen (DE-588)4113437-0 s 2\p DE-604 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017061980&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk 2\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Lechner, Norbert Heating, cooling, lighting sustainable design methods for architects Heating Air conditioning Lighting Lichttechnik (DE-588)4035633-4 gnd Klimagerechtes Bauen (DE-588)4125387-5 gnd Heizung (DE-588)4024271-7 gnd Klimatechnik (DE-588)4031177-6 gnd Energiebewusstes Bauen (DE-588)4113437-0 gnd Haustechnik (DE-588)4113858-2 gnd |
subject_GND | (DE-588)4035633-4 (DE-588)4125387-5 (DE-588)4024271-7 (DE-588)4031177-6 (DE-588)4113437-0 (DE-588)4113858-2 |
title | Heating, cooling, lighting sustainable design methods for architects |
title_auth | Heating, cooling, lighting sustainable design methods for architects |
title_exact_search | Heating, cooling, lighting sustainable design methods for architects |
title_full | Heating, cooling, lighting sustainable design methods for architects Norbert Lechner |
title_fullStr | Heating, cooling, lighting sustainable design methods for architects Norbert Lechner |
title_full_unstemmed | Heating, cooling, lighting sustainable design methods for architects Norbert Lechner |
title_short | Heating, cooling, lighting |
title_sort | heating cooling lighting sustainable design methods for architects |
title_sub | sustainable design methods for architects |
topic | Heating Air conditioning Lighting Lichttechnik (DE-588)4035633-4 gnd Klimagerechtes Bauen (DE-588)4125387-5 gnd Heizung (DE-588)4024271-7 gnd Klimatechnik (DE-588)4031177-6 gnd Energiebewusstes Bauen (DE-588)4113437-0 gnd Haustechnik (DE-588)4113858-2 gnd |
topic_facet | Heating Air conditioning Lighting Lichttechnik Klimagerechtes Bauen Heizung Klimatechnik Energiebewusstes Bauen Haustechnik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017061980&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT lechnernorbert heatingcoolinglightingsustainabledesignmethodsforarchitects |