1. Abasi M, Tahbaz M, Vafaee R. Introducing an Innovative Variable Building Layers System (V.B.L.S). Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2015 Jun 10;5(2):43-54. [Persian] https://dorl.net/dor/20.1001.1.23224991.1394.5.2.1.4. Available at: https://bsnt.modares.ac.ir/article-2-4530-en.html [
Article]
2. Ahmadi J, Mahdavinejad M, Asadi S. Folded double-skin façade (DSF): in-depth evaluation of fold influence on the thermal and flow performance in naturally ventilated channels. International Journal of Sustainable Energy. 2021 Jun 16:1-30. https://doi.org/10.1080/14786451.2021.1941019 [
Article] [
DOI]
3. Ahmadi J, Mahdavinejad M, Kalyanova Larsen O, Aram F, Oghazian F, Mosavi A. A Compendious Investigation of Double Skin Façade Structural Element Impacts on Flow and Heat Transfer in Hot-Dry Climates. Available at SSRN 4449201. https://dx.doi.org/10.2139/ssrn.4449201 [
Article] [
DOI]
4. Ahmadi J, Mahdavinejad M, Larsen OK, Zhang C, Zarkesh A, Asadi S. Evaluating the different boundary conditions to simulate airflow and heat transfer in Double-Skin Facade. In Building Simulation 2022 May;15(5):799-815. Tsinghua University Press. https://doi.org/10.1007/s12273-021-0824-5 [
Article] [
DOI]
5. KURU, Aysu, Philip OLDFIELD , Stephen BONSER , Francesco FIORITO , Biomimetic adaptive building skins: Energy and environmental regulation in buildings, Energy & Buildings. 2019. https://doi.org/10.1016/j.enbuild.2019.109544 [
Article] [
DOI]
6. Alilou M, Mahdavinejad M. The Effect of CCT on Vitality and Population Absorption in Urban Area: Case Study of the Safavi Bridge Urban Area in Karaj, Iran. Light & Engineering (Svetotekhnika), Moscow. 2022 Sep 1;30(5): 81-91. Available at: https://l-e-journal.com/en/journals/light-engineering-30-5/light-engineering-30-5-2022-paper-version/ [
Article]
7. Martín-Gómez, César, Amaia Zuazua-Ros, Javier Bermejo-Busto, Enrique Baquero, Rafael Miranda, Cristina Sanz, Potential strategies offered by animals to implement in buildings' energy performance: Theory and practice, Frontiers of Architectural Research (2019) 8, 17–31. https://doi.org/10.1016/j.foar.2018.12.002 [
Article] [
DOI]
8. Aanuoluwapo, Oguntona Olusegun, Aigbavboa Clinton Ohis, Biomimetic strategies for climate change mitigation in the built environment, Energy Procedia 105. 2017;3868 – 3875. https://doi.org/10.1016/j.egypro.2017.03.792 [
Article] [
DOI]
9. Nour ElDin N, Abdou A, Abd ElGawad I. Biomimetic Potentials for Building Envelope Adaptation in Egypt, Procedia Environmental Sciences 34. 2016; 375 – 386. https://doi.org/10.1016/j.proenv.2016.04.033 [
Article] [
DOI]
10. Bahramipanah A, Kia A. Quranic Interpretation of Holy Light Idea in Islamic and Iranian Architecture of Safavid Era. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning. 2020 Dec 10;10(4):287-293. [Persian] https://dorl.net/dor/20.1001.1.23224991.1399.10.4.7.9. Available at: https://bsnt.modares.ac.ir/article-2-46308-en.html [
Article]
11. Gehan.A.N. Radwan & Arch. Nouran Osama, BIOMIMICRY, AN APPROACH, FOR ENERGY EFFICIENT BUILDING SKIN DESIGN. Procedia Environmental Sciences 34. 2016; 178 – 189. https://doi.org/10.1016/j.proenv.2016.04.017 [
Article] [
DOI]
12. Bolouhari S, Barbera L, Etessam I. Learning Traditional Architecture for Future Energy-Efficient Architecture in the Country; Case Study: Yazd City. Naqshejahan - Basic Studies and New Technologies of Architecture and Planning, 2020 Sep 10;10(2):85-93. [Persian] https://dorl.net/dor/20.1001.1.23224991.1399.10.2.3.1 [
Article]
13. Diba D. Contemporary architecture of Iran. Architectural Design. 2012 May;82(3):70-9. https://doi.org/10.1002/ad.1406 [
Article] [
DOI]
14. Martins E, Rocha MS, Silva TH, Reis RL. Remarkable body architecture of marine sponges as biomimetic structure for application in tissue engineering. Marine-derived biomaterials for tissue engineering applications. 2019:27-50. Available at: https://link.springer.com/chapter/10.1007/978-981-13-8855-2_2 [
Article]
15. Fang, James K.H., Christine A. Rooks, Cathinka M. Krogness, Tina Kutti, Friederike Hoffmann, Raymond J. Bannister, Impact of particulate sediment, bentonite and barite (oil-drilling waste) on net fluxes of oxygen and nitrogen in Arctic-boreal sponges, Environmental Pollution 238 (2018) 948-958, https://doi.org/10.1016/j.envpol.2017.11.092 [
Article] [
DOI]
16. 16. Hendry, Katharine R., Lucie Cassarino, Stephanie L. Bates, Timothy Culwick, Molly Frost a, Claire Goodwin b, Kerry L. Howell, Silicon isotopic systematics of deep-sea sponge grounds in the North Atlantic, Quaternary Science Reviews 210 (2019) 1e14. https://doi.org/10.1016/j.quascirev.2019.02.017 [
Article] [
DOI]
17. SANDFORD, FLOYD, Physical and Chemical Analysis of the Siliceous Skeletons in Six Sponges of Two Groups (Demospongiae and Hexactinellida), MICROSCOPY RESEARCH AND TECHNIQUE 62:336–355 (2003), https://doi.org/10.1002/jemt.10400 [
Article] [
DOI]
18. Schoeppler V, Reich E, Vacelet J, Rosenthal M, Pacureanu A, Rack A, Zaslansky P, Zolotoyabko E, Zlotnikov I. Shaping highly regular glass architectures: A lesson from nature. Science Advances. 2017 Oct 18;3(10):eaao2047. https://www.science.org/doi/full/10.1126/sciadv.aao2047 [
Article]
19. Müller WE, Wang X, Burghard Z, Bill J, Krasko A, Boreiko A, Schloßmacher U, Schröder HC, Wiens M. Bio-sintering processes in hexactinellid sponges: fusion of bio-silica in giant basal spicules from Monorhaphis chuni. Journal of structural biology. 2009 Dec 1;168(3):548-61. https://doi.org/10.1016/j.jsb.2009.08.003 [
Article] [
DOI]
20. Masse S, Pisera A, Laurent G, Coradin T. A solid state NMR investigation of recent marine siliceous sponge spicules. Minerals. 2016 Mar 10;6(1):21. https://doi.org/10.3390/min6010021 [
Article] [
DOI]
21. Diba D. L'Iran et l'architecture contemporaine. Mimar (Singapore). 1991;38:20-25. [French] Available at: francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=19648743 [
Article]
22. Werner, Peter, Horst Blumtritt , Igor Zlotnikov, Andreas Graff, Yannicke Dauphin, Peter Fratzl, Electron microscope analyses of the bio-silica basal spicule from the Monorhaphis chuni sponge, Journal of Structural Biology 191 (2015) 165–174. http://dx.doi.org/10.1016/j.jsb.2015.06.018 [
Article] [
DOI]
23. Eslamirad N, Kolbadinejad SM, Mahdavinejad M, Mehranrad M. Thermal comfort prediction by applying supervised machine learning in green sidewalks of Tehran. Smart and Sustainable Built Environment. 2020 Apr 28; 9(4):361-374. https://doi.org/10.1108/SASBE-03-2019-0028 [
Article] [
DOI]
24. Croce, Gianluca, Alberto Frache, Marco Milanesio, Leonardo Marchese, Mauro Causa , Davide Viterbo, Alessia Barbaglia, Vera Bolis, Giorgio Bavestrello, Carlo Cerrano,§ Umberto Benatti, Marina Pozzolini, Marco Giovine, and Heinz Amenitsch, Structural Characterization of Siliceous Spicules from Marine Sponges, Biophysical Journal Volume 86 January 2004 526–534 . https://doi.org/10.1016/S0006-3495(04)74131-4 [
Article] [
DOI]
25. Binnewerg, B., M. Schubert, A. Voronkina, et al., Marine biomaterials: Biomimetic and pharmacological potential of cultivated Aplysina aerophoba marine demosponge, Materials Science & Engineering C (2019). https://doi.org/10.1016/j.msec.2019.110566 [
Article] [
DOI]
26. Drozdov AL, Andreykin NA, Dorofeev AG, Structure and physico-chemical properties of organosilicon crystal-like composite spicules of the glass sponge Hyalonema sieboldi, Materials Research Bulletin (2018). https://doi.org/10.1016/j.materresbull.2018.05.011 [
Article] [
DOI]
27. Esmaeilian Toussi H, Etesam I, Mahdavinejad M. The Application of Evolutionary Algorithms and Shape Grammar in the Design Process Based upon Traditional Structures. The Monthly Scientific Journal of Bagh-e Nazar, 2021 May;18(95):19-36. https://doi.org/10.22034/BAGH.2019.161797.3914 [
Article] [
DOI]
28. Fakhr BV, Mahdavinejad M, Rahbar M, Dabaj B. Design Optimization of the Skylight for Daylighting and Energy Performance Using NSGA-II. Journal of Daylighting. 2023 May 23;10(1):72-86. (doi: 10.15627/jd.2023.6) Available at: https://solarlits.com/jd/10-72 [
Article]
29. Fallahtafti R, Mahdavinejad M. Window geometry impact on a room's wind comfort. Engineering, Construction and Architectural Management. 2021 Mar 24;28(9):2381-2410. https://doi.org/10.1108/ECAM-01-2020-0075 [
Article] [
DOI]
30. Ghomeshi M, Pourzargar M, Mahdavinejad M. A Healthy Approach to Post-COVID Reopening of Sugar Factory of Kahrizak, Iran. InINTERNATIONAL SYMPOSIUM: New Metropolitan Perspectives 2022 (pp. 2638-2647). Springer, Cham. https://doi.org/10.1007/978-3-031-06825-6_252 [
Article] [
DOI]
31. Goharian A, Daneshjoo K, Mahdavinejad M, Yeganeh M. Voronoi geometry for building facade to manage direct sunbeams. Journal of Sustainable Architecture and Civil Engineering. 2022 Oct 26;31(2):109-24. https://doi.org/10.5755/j01.sace.31.2.30800 [
Article] [
DOI]
32. Nadhira A, Sutton MD, Botting JP, Muir LA, Gueriau P, King A, Briggs DEG, Siveter DJ, Siveter DJ. 2019 Three-dimensionally preserved soft tissues and calcareous hexactins in a Silurian sponge: implications for early sponge evolution. R. Soc. open sci. 6: 190911. http://dx.doi.org/10.1098/rsos.190911 [
Article] [
DOI]
33. Goharian A, Daneshjoo K, Shaeri J, Mahdavinejad M, Yeganeh M. A designerly approach to daylight efficiency of central light-well; combining manual with NSGA-II algorithm optimization. Energy. 2023 Apr 17:127402. https://doi.org/10.1016/j.energy.2023.127402 [
Article] [
DOI]
34. Zhang Y, Reed BW, Chung FR, Koski KJ. Mesoscale elastic properties of marine sponge spicules. Journal of Structural Biology. 2016 Jan 1;193(1):67-74. http://dx.doi.org/10.1016/j.jsb.2015.11.009 [
Article] [
DOI]
35. Pineda MC, Strehlow B, Duckworth A, Doyle J, Jones R, Webster NS. Effects of light attenuation on the sponge holobiont-implications for dredging management. Scientific Reports. 2016 Dec 13;6(1):39038. https://doi.org/10.1038/srep39038 [
Article] [
DOI]
36. Goharian A, Mahdavinejad M, Bemanian M, Daneshjoo K. Designerly optimization of devices (as reflectors) to improve daylight and scrutiny of the light-well’s configuration. Building Simulation. 2021 Oct 9 (pp. 1-24). Tsinghua University Press. https://doi.org/10.1007/s12273-021-0839-y [
Article] [
DOI]
37. Goharian A, Mahdavinejad M. A novel approach to multi-apertures and multi-aspects ratio light pipe. Journal of Daylighting. 2020 Sep 16;7(2):186-200. https://doi.org/10.15627/jd.2020.17 [
Article] [
DOI]
38. Nkandu MI, Alibaba HZ. Biomimicry as an alternative approach to sustainability. Architecture Research. 2018 Jan;8(1):1-1. Available at: https://www.researchgate.net/profile/Halil-Alibaba/publication/323573055_Biomimicry_as_an_Alternative_Approach_to_Sustainability/links/5a9e65e70f7e9bc35fd01e94/Biomimicry-as-an-Alternative-Approach-to-Sustainability.pdf?origin=journalDetail&_tp=eyJwYWdlIjoiam91cm5hbERldGFpbCJ9 [
Article]
39. Goodarzi P, Ansari M, Rahimian FP, Mahdavinejad M, Park C. Incorporating sparse model machine learning in designing cultural heritage landscapes. Automation in Construction. 2023 Nov 1;155:105058. https://doi.org/10.1016/j.autcon.2023.105058 [
Article] [
DOI]
40. Hadianpour M, Mahdavinejad M, Bemanian M, Haghshenas M, Kordjamshidi M. Effects of windward and leeward wind directions on outdoor thermal and wind sensation in Tehran. Building and Environment. 2019 Mar 1;150:164-180. https://doi.org/10.1016/j.buildenv.2018.12.053 [
Article] [
DOI]
41. Monn MA, Kesari H. Enhanced bending failure strain in biological glass fibers due to internal lamellar architecture. Journal of the Mechanical Behavior of Biomedical Materials. 2017 Dec 1;76:69-75. http://dx.doi.org/10.1016/j.jmbbm.2017.05.032 [
Article] [
DOI]
42. Kulchin YN, Bukin OA, Voznesenskii SS, Galkina AN, Gnedenkov SV, Drozdov AL, Kuryavyi VG, Mal'Tseva TL, Nagornyi IG, Sinebryukhov SL, Cherednichenko AI. Optical fibres based on natural biological minerals—sea sponge spicules. Quantum Electronics. 2008 Jan 31;38(1):51. https://iopscience.iop.org/article/10.1070/QE2008v038n01ABEH013579/meta [
Article]
43. 43. Yuan, Yanping, Xiaoping Yu, Xiaojiao Yang, Yimin Xiao, Bo Xiang, Yi Wang, Bionic building energy efficiency and bionic green architecture: A review, Renewable and Sustainable Energy Reviews 74 (2017) 771–787 , http://dx.doi.org/10.1016/j.rser.2017.03.004 [
Article] [
DOI]
44. Eltaweel A, Yuehong SU. Parametric design and daylighting: A literature review. Renewable and Sustainable Energy Reviews. 2017 Jun 1;73:1086-103. http://dx.doi.org/10.1016/j.rser.2017.02.011 [
Article] [
DOI]
45. Mirniazmandan S, Rahimianzarif E. Biomimicry, an approach toward sustainability of high-rise buildings. Iranian Journal of Science and Technology, Transactions A: Science. 2018 Dec;42:1837-46. https://link.springer.com/article/10.1007/s40995-017-0397-4 [
Article]
46. Haghshenas M, Hadianpour M, Matzarakis A, Mahdavinejad M, Ansari M. Improving the suitability of selected thermal indices for predicting outdoor thermal sensation in Tehran. Sustainable Cities and Society. 2021 Jul 27:103205. https://doi.org/10.1016/j.scs.2021.103205 [
Article] [
DOI]
47. Heidari F, Mahdavinejad M, Werner LC, Roohabadi M, Sarmadi H. Biocomputational Architecture Based on Particle Physics. Front. Energy Res. 2021 July 08;9:620127. https://doi.org/10.3389/fenrg.2021.620127 [
Article] [
DOI]
48. Shaeri J, Mahdavinejad M, Vakilinejad R, Bazazzadeh H, Monfared M. Effects of sea-breeze natural ventilation on thermal comfort in low-rise buildings with diverse atrium roof shapes in BWh regions. Case Studies in Thermal Engineering. 2023 Jan 1;41:102638. https://doi.org/10.1016/j.csite.2022.102638 [
Article] [
DOI]
49. Dezfuli RR, Bazazzadeh H, Taban M, Mahdavinejad M. Optimizing stack ventilation in low and medium-rise residential buildings in hot and semi-humid climate. Case Studies in Thermal Engineering. 2023 Oct 28:103555. https://doi.org/10.1016/j.csite.2023.103555 [
Article] [
DOI]
50. Mahdavinejad M, Bazazzadeh H, Mehrvarz F, Berardi U, Nasr T, Pourbagher S, Hoseinzadeh S. The impact of facade geometry on visual comfort and energy consumption in an office building in different climates. Energy Reports. 2024 Jun 1;11:1-7. https://doi.org/10.1016/j.egyr.2023.11.021 [
Article] [
DOI]
51. Gharaati F, Mahdavinejad M, Nadolny A, Bazazzadeh H. Sustainable Assessment of Built Heritage Adaptive Reuse Practice: Iranian Industrial Heritage in the Light of International Charters. The Historic Environment: Policy & Practice. 2023 Oct 4:1-35. https://doi.org/10.1080/17567505.2023.2261328 [
Article] [
DOI]