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Daniel Cóstola
Daniel Cóstola
Verified email at strath.ac.uk
Title
Cited by
Cited by
Year
Climate adaptive building shells: State-of-the-art and future challenges
RCGM Loonen, M Trèka, D Cóstola, JLM Hensen
Renewable and sustainable energy reviews 25, 483-493, 2013
6972013
Review of external convective heat transfer coefficient models in building energy simulation programs: Implementation and uncertainty
M Mirsadeghi, D Costola, B Blocken, JLM Hensen
Applied thermal engineering 56 (1-2), 134-151, 2013
3752013
Overview of pressure coefficient data in building energy simulation and airflow network programs
D Costola, B Blocken, JLM Hensen
Building and environment 44 (10), 2027-2036, 2009
2952009
Review of methods for climatic zoning for building energy efficiency programs
A Walsh, D Cóstola, LC Labaki
Building and Environment 112, 337-350, 2017
1242017
Framework for assessing the performance potential of seasonally adaptable facades using multi-objective optimization
C Kasinalis, RCGM Loonen, D Cóstola, JLM Hensen
Energy and Buildings 79, 106-113, 2014
1212014
Simulation-based support for product development of innovative building envelope components
R Loonen, S Singaravel, M Trèka, D Cóstola, JLM Hensen
Automation in Construction 45, 86-95, 2014
1082014
Development of surrogate models using artificial neural network for building shell energy labelling
AP Melo, D Cóstola, R Lamberts, JLM Hensen
Energy Policy 69, 457-466, 2014
1022014
Uncertainty in airflow rate calculations due to the use of surface-averaged pressure coefficients
D Cóstola, B Blocken, M Ohba, JLM Hensen
Energy and Buildings 42 (6), 881-888, 2010
902010
Analysis of control strategies for thermally activated building systems under demand side management mechanisms
A Arteconi, D Costola, P Hoes, JLM Hensen
Energy and Buildings 80, 384-393, 2014
812014
Multi-year and reference year weather data for building energy labelling in north Italy climates
G Pernigotto, A Prada, D Cóstola, A Gasparella, JLM Hensen
Energy and Buildings 72, 62-72, 2014
802014
Heating and cooling energy demand in underground buildings: potential for saving in various climates and functions
C Van Dronkelaar, D Cóstola, RA Mangkuto, JLM Hensen
Energy and Buildings 71, 129-136, 2014
672014
Assessing the accuracy of a simplified building energy simulation model using BESTEST: The case study of Brazilian regulation
AP Melo, D Cóstola, R Lamberts, JLM Hensen
Energy and Buildings 45, 219-228, 2012
582012
Comparison of three climatic zoning methodologies for building energy efficiency applications
A Walsh, D Cóstola, LC Labaki
Energy and Buildings 146, 111-121, 2017
562017
Performance-based validation of climatic zoning for building energy efficiency applications
A Walsh, D Cóstola, LC Labaki
Applied energy 212, 416-427, 2018
462018
Ventilação por ação do vento no edifício: procedimentos para quantificação
D Cóstola
Universidade de São Paulo, 2006
442006
Unsteady natural ventilation at model scale—Flow reversal and discharge coefficients of a short stack and an orifice
D Costola, DW Etheridge
Building and Environment 43 (9), 1491-1506, 2008
362008
Performance simulation of climate adaptive building shells-Smart Energy Glass as a case study
R Loonen, M Trcka, D Cóstola, JLM Hensen
8th International Conference on System Simulation in Buildings (SSB 2010 …, 2010
272010
Aplicação de CFD para o cálculo de coeficientes de pressão externos nas aberturas de um edifício
D Cóstola, MP Alucci
Ambiente Construído 11, 145-158, 2011
242011
Assessing the performance potential of climate adaptive greenhouse shells
C Lee, P Hoes, D Cóstola, JLM Hensen
Energy 175, 534-545, 2019
222019
Pressure coefficient simulated by CFD for wind-driven ventilation analysis
D Cóstola, M Alucci
222007
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