Optimal design of an Origami-inspired kinetic façade by balancing composite motion optimization for improving daylight performance and energy efficiency
Tài liệu tham khảo
Al-Masrani, 2018, Design optimisation of solar shading systems for tropical office buildings: challenges and future trends, Solar Energy. Elsevier, 170, 849, 10.1016/j.solener.2018.04.047
Al-Masrani, 2019, 195
Barozzi, 2016, The sustainability of adaptive envelopes: developments of kinetic architecture, vol. 155, 275
Bui, 2020, An artificial neural network (ANN) expert system enhanced with the electromagnetism-based firefly algorithm (EFA) for predicting the energy consumption in buildings, Energy. Elsevier Ltd, 190, 116370
Choi, 2017, Method of deriving shaded fraction according to shading movements of kinetic façade, Sustainability, 9, 1449, 10.3390/su9081449
Christoffersen, 2000, Daylight in Buildings-A source book on daylighting systems and components
Cimmino, 2017, Composite solar façades and wind generators with tensegrity architecture’, Composites Part B: Engineering, Elsevier, 115, 275
Al Dakheel, 2017, Building applications, opportunities and challenges of active shading systems: a state-of-the-art review, Energies, 10, 1672, 10.3390/en10101672
Elghazi, 2015, Simulation driven design for kinetic system; optimize kaleidocycle façade configuration for daylighting adequacy in hot arid climates, 182
Gilewski, 2014, A comparative study of Origami inspired folded plates, Procedia Engineering, 91, 220, 10.1016/j.proeng.2014.12.050
Hosseini, 2019, A morphological approach for kinetic façade design process to improve visual and thermal comfort: review’, Building and Environment, Elsevier, 153, 186
Hosseini, 2019, Interactive kinetic façade: improving visual comfort based on dynamic daylight and occupant’s positions by 2D and 3D shape changes, Building and Environment. Elsevier Ltd, 165, 106396, 10.1016/j.buildenv.2019.106396
Hu, 2014, Using diva for assessing climate-based leed daylight credit, vol. 1, 674
Jalali, 2020, Design and optimization of form and facade of an office building using the genetic algorithm’, Science and Technology for the Built Environment, Taylor & Francis, 26, 128
Klepeis, 2001, The National Human Activity Pattern Survey (NHAPS): a resource for assessing exposure to environmental pollutants, J Expo Anal Environ Epidemiol, 11, 231, 10.1038/sj.jea.7500165
Körner, 2018, 1
Le-Duc, 2020, Balancing composite motion optimization, Information Sciences. Elsevier Inc., 520, 250, 10.1016/j.ins.2020.02.013
Le, 2019, A novel hybrid method combining electromagnetism-like mechanism and firefly algorithms for constrained design optimization of discrete truss structures, Computers & Structures. Elsevier Ltd, 212, 20, 10.1016/j.compstruc.2018.10.017
Majed, 2013, 1
Megahed, 2017, Origami folding and its potential for architecture students, The Design Journal. Routledge, 20, 279, 10.1080/14606925.2017.1270511
Moloney, 2011
Morgan, 2015, A preliminary process for origami-adapted design, 1
Morgan, 2016, An approach to designing origami-adapted aerospace mechanisms, J Mech Des, 138
Pauley, 2004, Lighting for the human circadian clock: recent research indicates that lighting has become a public health issue, Med Hypotheses, 63, 588, 10.1016/j.mehy.2004.03.020
Pesenti, 2015, Kinetic solar skin: a responsive folding technique, Energy Procedia. Elsevier B.V., 70, 661, 10.1016/j.egypro.2015.02.174
Pesenti, 2015, Shaping an origami shading device through visual and thermal simulations, Energy Procedia. Elsevier B.V., 78, 346, 10.1016/j.egypro.2015.11.663
Pesenti, 2018, Exploration of adaptive origami shading concepts through integrated dynamic simulations, J Architect Eng, 24
Schleicher, 2015, A methodology for transferring principles of plant movements to elastic systems in architecture, Computer-Aided Design. Elsevier Ltd, 60, 105, 10.1016/j.cad.2014.01.005
Sheikh, 2019, Adaptive biomimetic facades: enhancing energy efficiency of highly glazed buildings, Frontiers of Architectural Research. Elsevier Ltd, 8, 319, 10.1016/j.foar.2019.06.001
Tabadkani, 2019, ‘Integrated parametric design of adaptive facades for user’s visual comfort’, Automation in Construction. Elsevier, 106, 102857, 10.1016/j.autcon.2019.102857
Tabadkani, 2018, Daylighting and visual comfort of oriental sun responsive skins: a parametric analysis, Building Simulation, 11, 663, 10.1007/s12273-018-0433-0
Tachi, 2016, vol. 5, 253
2019, 147
Wagdy, 2015, The balance between daylighting and thermal performance based on exploiting the kaleidocycle typology in hot arid climate of aswan, Egypt, 300
Waseef, 2017, Towards a new classification for responsive kinetic facades, 2017’
Yi, 2020, 3D-printed attachable kinetic shading device with alternate actuation: use of shape-memory alloy (SMA) for climate-adaptive responsive architecture, Automation in Construction. Elsevier, 114, 103151, 10.1016/j.autcon.2020.103151
Francis, 2014, From Crease Pattern to Product: Considerations to Engineering Origami-Adapted Designs International Design Engineering Technical Conferences and Computers and Information in Engineering
Ahmad, 2019, Kinetic facade as a tool for energy efficiency, Int J Eng Res Rev, 7, 1