Nome |
# |
Application of Building Typologies for Modelling the Energy Balance of the Residential Building Stock., file e384c42e-1bc3-d4b2-e053-9f05fe0a1d67
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801
|
Building Typology Brochure – Italy. Fascicolo sulla Tipologia Edilizia Italiana., file e384c42e-0b81-d4b2-e053-9f05fe0a1d67
|
791
|
Data Integration Driven Ontology Design, Case Study Smart City, file e384c42e-2ae3-d4b2-e053-9f05fe0a1d67
|
733
|
Prestazione energetica di edifici in condizioni estive: l'effetto dell'isolamento termico, file e384c42e-f73b-d4b2-e053-9f05fe0a1d67
|
653
|
Improving energy modeling of large building stock through the development of archetype buildings, file e384c42e-13c3-d4b2-e053-9f05fe0a1d67
|
464
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Tracking of Energy Performance Indicators in Residential Building Stocks – Different Approaches and Common Results - EPISCOPE Synthesis Report No. 4, file e384c42e-fa3e-d4b2-e053-9f05fe0a1d67
|
410
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The Rebound Effect after the Energy Refurbishment of Residential Buildings towards High Performances, file e384c42f-5a3c-d4b2-e053-9f05fe0a1d67
|
381
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Scenario Analyses Concerning Energy Efficiency and Climate Protection in Regional and National Residential Building Stocks.
Examples from Nine European Countries. - EPISCOPE Synthesis Report No. 3, file e384c42e-f3bd-d4b2-e053-9f05fe0a1d67
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330
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A New Methodology for Assessing the Energy Consumption of Building Stocks, file e384c42f-8919-d4b2-e053-9f05fe0a1d67
|
307
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Tracking the energy refurbishment processes in residential building stocks. The pilot case of Piedmont region., file e384c42e-c829-d4b2-e053-9f05fe0a1d67
|
304
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National scientific report on the TABULA activities in Italy, file e384c42e-1dc8-d4b2-e053-9f05fe0a1d67
|
285
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The significant imbalance of nZEB energy need for heating and cooling in Italian climatic zones, file e384c42f-d92a-d4b2-e053-9f05fe0a1d67
|
280
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The Energy Performance Assessment of nZEBs: Limitations of the Quasi-Steady State Approach, file e384c42e-f93a-d4b2-e053-9f05fe0a1d67
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266
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Verification of the new Ministerial Decree about minimum requirements for the energy performance of buildings, file e384c42f-88ab-d4b2-e053-9f05fe0a1d67
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253
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Assessment of cost-optimal energy performance requirements for the Italian residential building stock, file e384c42e-32a6-d4b2-e053-9f05fe0a1d67
|
250
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A new thermal analysis by numerical simulation to investigate the energy performance of buildings, file e384c42e-108b-d4b2-e053-9f05fe0a1d67
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248
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Refurbishment of the residential building stock toward the nearly-zero energy target through the application of the building typology, file e384c42f-8d3d-d4b2-e053-9f05fe0a1d67
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241
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Improving summer energy performance of highly insulated buildings through the application of a thermal analysis by numerical simulation, file e384c42e-2a73-d4b2-e053-9f05fe0a1d67
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230
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A new procedure of energy audit and cost analysis for the transformation of a school into a nearly zero-energy building, file e384c42f-f32d-d4b2-e053-9f05fe0a1d67
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208
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Energy cost and discount rate influence on the optimal packages of energy efficiency measures., file e384c42e-6baf-d4b2-e053-9f05fe0a1d67
|
199
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Confronto tra prestazione energetica invernale ed estiva negli edifici ad elevato isolamento termico, file e384c430-2a9e-d4b2-e053-9f05fe0a1d67
|
185
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Building Typology Brochure – Italy. Fascicolo sulla Tipologia Edilizia Italiana. Nuova edizione., file e384c42e-f95a-d4b2-e053-9f05fe0a1d67
|
135
|
Cost-optimal analysis of Italian office buildings through the application of a quasi-steady state model validated by detailed dynamic simulation, file e384c42e-f394-d4b2-e053-9f05fe0a1d67
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118
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The dynamic model of EN ISO 52016-1 for the energy assessment of buildings compared to simplified and detailed simulation methods, file e384c432-1ce2-d4b2-e053-9f05fe0a1d67
|
113
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La riqualificazione energetica del patrimonio edilizio residenziale europeo: il progetto di ricerca EPISCOPE, file e384c42f-c5bd-d4b2-e053-9f05fe0a1d67
|
85
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L'avanzamento della riqualificazione energetica del patrimonio edilizio residenziale regionale (Regione Piemonte, IT). Report Nazionale. Seconda Edizione., file e384c42e-f965-d4b2-e053-9f05fe0a1d67
|
82
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Transformation of an Office Building into a Nearly Zero Energy Building (nZEB): Implications for Thermal and Visual Comfort and Energy Performance, file e384c430-7d35-d4b2-e053-9f05fe0a1d67
|
64
|
Dynamic simulation to identify cost-optimal energy requirements for the Italian building stock, file e384c432-1ce3-d4b2-e053-9f05fe0a1d67
|
59
|
Application of Dynamic Numerical Simulation to Investigate the Effects of Occupant Behaviour Changes in Retrofitted Buildings, file e384c430-4432-d4b2-e053-9f05fe0a1d67
|
49
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Comparison Between the EN ISO 52016-1 Hourly Calculation Method and a Fully Detailed Dynamic Simulation, file e384c432-7e2f-d4b2-e053-9f05fe0a1d67
|
49
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Social housing in Italy: energy audit and dynamic simulation towards a nZEB policy, file e384c432-2b75-d4b2-e053-9f05fe0a1d67
|
46
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Dynamic simulation of existing buildings: considerations on the model calibration, file e384c432-1ce7-d4b2-e053-9f05fe0a1d67
|
44
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On the Cost-Optimal Design: Comparison of Quasi-Steady-State and Dynamic Simplified Methods of Calculation of H/C Energy Needs, file e384c430-3be6-d4b2-e053-9f05fe0a1d67
|
39
|
Optimized solutions for thermal and visual comfort in the design of a nearly zero-energy building, file e384c432-1ce8-d4b2-e053-9f05fe0a1d67
|
39
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Reference Building Approach Combined with Dynamic Simulation in Designing nZEBs, file e384c430-26b3-d4b2-e053-9f05fe0a1d67
|
36
|
On the compliance of thermal performance requirements for highly insulated building units, file e384c432-0b43-d4b2-e053-9f05fe0a1d67
|
36
|
On the Limits of the Quasi-Steady-State Method to Predict the Energy Performance of Low-Energy Buildings, file e384c430-9e52-d4b2-e053-9f05fe0a1d67
|
32
|
Sensitivity analysis of the thermal energy need of a residential building assessed by means of the EN ISO 52016 simplified dynamic method, file e384c433-0b8d-d4b2-e053-9f05fe0a1d67
|
32
|
Accuracy of Simplified Modelling Assumptions on External and Internal Driving Forces in the Building Energy Performance Simulation, file e384c434-5e0f-d4b2-e053-9f05fe0a1d67
|
30
|
A Methodology to Investigate the Deviations between Simple and Detailed Dynamic Methods for the Building Energy Performance Assessment, file e384c432-e2d2-d4b2-e053-9f05fe0a1d67
|
24
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A comparative analysis of different future weather data for building energy performance simulation, file e384c433-439d-d4b2-e053-9f05fe0a1d67
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24
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Cost-effective transformation of Italian building stock, file e384c432-151d-d4b2-e053-9f05fe0a1d67
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22
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Validation of the simplified heat conduction model of EN ISO 52016-1, file e384c434-0d8f-d4b2-e053-9f05fe0a1d67
|
20
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Analysing the future energy performance of residential buildings in the most populated Italian climatic zone: A study of climate change impacts, file e384c434-5e10-d4b2-e053-9f05fe0a1d67
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20
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Determinazione dei fattori di ombreggiatura per l'applicazione della metodologia di calcolo del fabbisogno termico annuale degli edifici, file e384c42e-0247-d4b2-e053-9f05fe0a1d67
|
12
|
Building Stock Energy Models and ICT Solutions for Urban Energy Systems, file e384c433-187b-d4b2-e053-9f05fe0a1d67
|
12
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Climate change impact on the future performance of Nearly Zero Energy Buildings : a case study base analysis, file 1a069eed-6462-4ae8-aaea-b68427fdda3d
|
10
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Building Stock Energy Models and ICT Solutions for Urban Energy Systems, file e384c433-0669-d4b2-e053-9f05fe0a1d67
|
9
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Renovation of a social house into a NZEB: Use of renewable energy sources and economic implications, file e384c432-5966-d4b2-e053-9f05fe0a1d67
|
8
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Energy refurbishment of the Italian residential building stock: energy and cost analysis through the application of the building typology, file e384c42f-5c94-d4b2-e053-9f05fe0a1d67
|
7
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Energy and environmental payback times for an NZEB retrofit, file e384c430-6c3f-d4b2-e053-9f05fe0a1d67
|
6
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The influence of the building energy retrofit on the occupant behaviour: results of a survey in a pilot case in Torino, file e384c431-e086-d4b2-e053-9f05fe0a1d67
|
6
|
The application of the EN ISO 52016 standard and its Italian National Annex to assess the heating and cooling needs of a reference office building, file 509d1a6d-6501-4b40-8d59-e7bf0e3e01ca
|
5
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Data analytics for occupancy pattern learning to reduce the energy consumption of HVAC systems in office buildings, file e384c430-76b0-d4b2-e053-9f05fe0a1d67
|
5
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Improvements of simplified hourly models for the energy assessment of buildings: The application of EN ISO 52016 in Italy, file a6a554c5-dc87-4d81-8659-3375081e90d7
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4
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Refurbishment trends of the residential building stock: analysis of a regional pilot case in Italy, file e384c42f-6086-d4b2-e053-9f05fe0a1d67
|
4
|
On the improvement of indoor environmental quality, energy performance and costs for a commercial nearly zero-energy building, file e384c434-1ecc-d4b2-e053-9f05fe0a1d67
|
4
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The Effect of the External Driving Forces Modelling on the Calculated Building Energy Need Through the Use of Dynamic Simulation, file 8d233e19-b791-44f3-84ae-8cf9056527b6
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3
|
Supporting climate-neutral cities with urban energy modeling: a review of building retrofit scenarios, focused on decision-making, energy and environmental performance, and cost, file 8f0e9471-802c-44e6-80ec-efdeb5c6de81
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3
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The application of EN ISO 52016-1 to assess building cost-optimal energy performance levels in Italy, file 0a6e41e5-9606-4787-bbdc-7bd7a1f690b3
|
2
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Modelling of heat generators: technical standards vs detailed dynamic simulation tools, file 1b2b6c5e-2b3d-4471-82c7-e350ff069adb
|
2
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Calibrating the Dynamic Energy Simulation Model for an Existing Building: Lessons Learned from a Collective Exercise, file 6f49a0e6-e975-4898-beb3-885e2cd5390d
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2
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L’effetto del raffrescamento con ventilazione meccanica sulla prestazione degli edifici residenziali italiani nel contesto del cambiamento climatico, file 7df6ae38-cda4-4d6c-86da-0ee687f2e259
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2
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La ristrutturazione edilizia secondo la Tassonomia dell’UE: un approccio metodologico per la verifica degli obiettivi di sostenibilità, file 81756c82-36fe-4a2a-8874-be5d098a7b66
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2
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Use of reference buildings to assess the energy saving potentials of the residential building stock: the experience of TABULA Project., file e384c42e-2927-d4b2-e053-9f05fe0a1d67
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2
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Data structuring for the ontological modelling of urban energy systems: The experience of the SEMANCO project, file e384c42e-3818-d4b2-e053-9f05fe0a1d67
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2
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Integration of Thermal and Visual Comfort in the Retrofit of Existing Buildings: Transformation of an office building into a nZEB, file e384c430-bb81-d4b2-e053-9f05fe0a1d67
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2
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Renovation of a social house into a NZEB: Use of renewable energy sources and economic implications, file e384c432-5163-d4b2-e053-9f05fe0a1d67
|
2
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Building simulation 2019: 16th IBPSA international conference and exhibition, file e384c434-1edd-d4b2-e053-9f05fe0a1d67
|
2
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Assessing the Climate Resilience of Passive Cooling Solutions for Italian Residential Buildings, file 28fd7d76-8f40-4b52-980d-c92323a45d1e
|
1
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Hourly-Simplified Calculation to Identify Cost-Optimal Energy Performance Requirements for the Italian Building Stock, file 9ec18afa-6237-4b22-a975-7982e0cfe611
|
1
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Energy saving potential by retrofitting residential buildings in Europe, file e384c42e-22b4-d4b2-e053-9f05fe0a1d67
|
1
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Costs-Benefits Analysis of Building Renovation, file e384c430-878d-d4b2-e053-9f05fe0a1d67
|
1
|
Energy benchmarking and monitoring, file e384c432-07df-d4b2-e053-9f05fe0a1d67
|
1
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Requisiti di prestazione energetica e implicazioni sul costo globale: analisi del fabbisogno termico estivo degli edifici e della copertura da fonti rinnovabili, file e384c432-133d-d4b2-e053-9f05fe0a1d67
|
1
|
Totale |
9.141 |