Acknowledgements |
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ECD Architects |
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Preface: Prof. Wolfgang Feist (Universtity of Innsbruck) |
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ix | |
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2 | (1) |
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3 | (1) |
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4 | (1) |
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5 | (1) |
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5 | (1) |
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6 | (2) |
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8 | (1) |
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1.8 Finding a way forward |
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9 | (1) |
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1.9 The importance of human comfort |
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10 | (1) |
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11 | (5) |
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2.1 Background to Passivhaus |
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16 | (1) |
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16 | (1) |
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2.3 Passivhaus and thermal comfort |
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16 | (1) |
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2.4 Passive House Planning Package (PHPP) |
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17 | (1) |
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2.5 An introduction to EnerPHit |
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18 | (1) |
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2.6 Certification options |
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18 | (1) |
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2.7 Certification option 1 |
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19 | (1) |
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2.8 Certification option 2 |
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19 | (1) |
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2.9 Other ultra-low-energy standards |
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20 | (2) |
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2.10 Other sustainable building refurbishment standards |
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22 | (1) |
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2.11 Innovative solutions in retrofit: Energiesprong |
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23 | (1) |
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2.12 Statutory compliance in the UK |
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23 | (2) |
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2.13 The importance of quality control |
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25 | (1) |
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2.14 The role of renewable energy |
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25 | (1) |
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2.15 Step-by-step retrofit |
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26 | (1) |
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26 | (4) |
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3.0 The challenges of EnerPHit |
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30 | (1) |
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3.2 Achieving a successful retrofit |
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30 | (2) |
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3.3 Understanding the barriers to retrofit |
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32 | (2) |
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3.4 The specific challenges of heritage buildings |
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34 | (2) |
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3.5 Overcoming the practical challenges of EnerPHit |
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36 | (1) |
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3.6 Optimising the thermal envelope: external walls |
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37 | (3) |
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3.7 Optimising the thermal envelope: ground floor |
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40 | (1) |
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3.8 Optimising the thermal envelope: roof |
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40 | (1) |
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3.9 Optimising the thermal envelope: windows and doors |
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41 | (1) |
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3.10 Optimising the thermal envelope: solar gain/shade |
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41 | (1) |
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3.11 Optimising airtightness |
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42 | (1) |
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3.12 Optimising ventilation systems |
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42 | (1) |
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3.13 Optimising the building form |
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43 | (1) |
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43 | (3) |
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4.0 Step-by-step to EnerPHit |
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4.1 A background to planned maintenance |
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46 | (1) |
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4.2 Funding retrofit: the danger of political change |
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46 | (2) |
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4.3 Funding retrofit: the danger of modest gains |
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48 | (1) |
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4.4 The EuroPHit project: aims and outcomes |
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49 | (1) |
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4.5 The EnerPHit retrofit plan and incremental improvement |
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49 | (2) |
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4.6 Pre-certification for step-by-step retrofit |
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51 | (1) |
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4.7 Aligning planned maintenance and step-by-step retrofit to EnerPHit |
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51 | (1) |
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4.8 The economics of step-by-step retrofit |
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52 | (1) |
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4.9 A case study in step-by-step EnerPHit: Stella Maris House |
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53 | (6) |
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4.10 Implications for building management |
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59 | (1) |
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4.11 BIM as a tool for step-by-step retrofit |
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60 | (1) |
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61 | (3) |
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5.1 Does retrofit matter? |
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64 | (1) |
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5.2 EnerPHit as a retrofit target |
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64 | (2) |
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5.3 District heating systems and EnerPHit |
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66 | (2) |
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5.4 The capital cost of EnerPHit |
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68 | (2) |
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5.5 EnerPHit comfort standard |
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70 | (3) |
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5.6 EnerPHit Quality Standard |
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73 | (1) |
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5.7 Eight reasons to target EnerPHit |
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73 | (1) |
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5.8 Does EnerPHit certification matter? |
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74 | (1) |
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74 | (1) |
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5.10 Implementing EnerPHit for all |
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75 | (1) |
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76 | (4) |
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6.0 Residential case studies |
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6.1 Achieving EnerPHit in the residential sector |
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80 | (6) |
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6.2 Wilmcote House, Portsmouth, UK: affordable housing |
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86 | (8) |
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6.3 Rochestown, Phase 2, Dun Laoghaire, Ireland: sheltered housing |
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94 | (6) |
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6.4 Ergli Vocational School, Latvia: student housing |
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100 | (4) |
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6.5 105 Willow Street, Brooklyn, New York, USA: private owner-occupied |
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104 | (10) |
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6.6 2 Gloucester Place Mews, London, UK: Private rent, listed building |
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114 | (8) |
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7.0 Commercial case studies |
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7.1 Achieving EnerPHit in the commercial sector |
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122 | (6) |
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7.2 Evangelical Church, Heinsberg, Nordrhein Westfalen, Germany: public/community |
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128 | (8) |
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7.3 University of Innsbruck, Tirol, Austria: higher education |
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136 | (8) |
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7.4 Sparkasse Bank, Gross Umstadt, Hesse, Germany: offices |
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144 | (10) |
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8.1 How to approach EnerPHit |
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154 | (1) |
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8.2 The practical challenges of EnerPHit |
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155 | (8) |
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8.3 How to deliver EnerPHit |
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163 | (4) |
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167 | (1) |
Postscript: Prof. Anne Power (London School of Economics) |
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168 | (2) |
Image Credits |
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170 | (1) |
Bibliography |
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171 | (4) |
References |
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175 | (5) |
Index |
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180 | |