1,204
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Energy-saving optimization based on residential building orientation and shape with multifactor coupling in the Tibetan areas of western Sichuan, China

ORCID Icon, &
Pages 1476-1491 | Received 03 Apr 2022, Accepted 27 May 2022, Published online: 12 Jun 2022

References

  • Abdou, N., Y. E. Mghouchi, S. Hamdaoui, N. E. Asri, and M. Mouqallid. 2021. “Multi-objective Optimization of Passive Energy Efficiency Measures for net-zero Energy Building in Morocco, Build.” Environment 204: 108141. doi:10.1016/j.buildenv.2021.108141.
  • Abreu-Harbich, L. V., L. C. Labaki, and A. Matzarakis. 2014. “Thermal Bioclimate as a Factor in Urban and Architectural Planning in Tropical climates-The Case of Campinas, Brazil.” Urban Ecosystems 17 (2): 489–500. doi:10.1007/s11252-013-0339-7.
  • Aksoy, U. T., and M. Inalli. 2006. “Impacts of Some Building Passive Design Parameters on Heating Demand for a Cold Region, Build.” Environment 41: 1742–1754. doi:10.1016/j.buildenv.2005.07.011.
  • Andrić, I., A. Pina, P. Ferrão, J. Fournier, B. Lacarrière, and O. Le Corre. 2017. “The Impact of Climate Change on Building Heat Demand in Different Climate Types.” Energy and Buildings 149: 225–234. doi:10.1016/j.enbuild.2017.05.047.
  • Ascione, F., N. Bianco, G. Maria Mauro, and D. F. Napolitano. 2019. “Building Envelope Design: Multi-objective Optimization to Minimize Energy Consumption, Global Cost and Thermal Discomfort. Application to Different Italian Climatic Zones.” Energy 174: 359–374. doi:10.1016/j.energy.2019.02.182.
  • Beausoleil-Morrison, I., M. Kummert, F. MacDonald, R. Jost, T. McDowell, and A. Ferguson. 2012. “Demonstration of the New ESP-r and TRNSYS co-simulator for Modelling Solar Buildings.” Energy Procedia 30: 505–514. doi:10.1016/j.egypro.2012.11.060.
  • Boukli Hacene, M. A., and N. E. Chabane Sari. 2020. “Energy Efficient Design Optimization of a Bioclimatic House.” Indoor and Built Environment 29 (2): 270–285. doi:10.1177/1420326X19856668.
  • Byrne, J., B. Shen, and X. Li. 1996. “The Challenge of Sustainability: Balancing China’s Energy, Economic and Environmental Goals.” Energy Policy 24 (5): 455–462. doi:10.1016/0301-4215(96)00011-0.
  • Cholewa, T., A. Malec, A. Siuta-Olcha, A. Smolarz, P. Muryjas, P. Wolszczak, Ł. Guz, M. R. Dudzińska, and K. Łygas. 2021. “On the Influence of Solar Radiation on Heat Delivered to Buildings for Heating.” Energies 14 (4): 1–16. doi:10.3390/en14040851.
  • Ciardiello, A., F. Rosso, J. Dell’Olmo, V. Ciancio, M. Ferrero, and F. Salata. 2020. “Multi-objective Approach to the Optimization of Shape and Envelope in Building Energy Design, Appl.” Energy 280: 115984. doi:10.1016/j.apenergy.2020.115984.
  • Crawley, D. B., J. W. Hand, M. Kummert, and B. T. Griffith. 2008. “Contrasting the Capabilities of Building Energy Performance Simulation Programs, Build.” Environment 43: 661–673. doi:10.1016/j.buildenv.2006.10.027.
  • Crawley, D. B., L. K. Lawrie, F. C. Winkelmann, W. F. Buhl, Y. J. Huang, C. O. Pedersen, R. K. Strand, et al. 2001. “EnergyPlus: Creating a new-generation Building Energy Simulation Program.” Energy and Buildings 33 (4): 319–331. doi:10.1016/S0378-7788(00)00114-6.
  • Delgarm, N., B. Sajadi, F. Kowsary, and S. Delgarm. 2016. “Multi-objective Optimization of the Building Energy Performance: A simulation-based Approach by Means of Particle Swarm Optimization (PSO.” Applied Energy 170: 293–303. doi:10.1016/j.apenergy.2016.02.141.
  • Dutta, A., A. Samanta, and S. Neogi. 2017. “Influence of Orientation and the Impact of External Window Shading on Building Thermal Performance in Tropical Climate.” Energy and Buildings 139: 680–689. doi:10.1016/j.enbuild.2017.01.018.
  • Energy, B., S. Programss, and D. Energyplus. 2012. “Comparison of Building Energy Simulation Programs: DeST, EnergyPlus and DOE-2, Build.” Science 25: 213–222. doi:10.13614/j.cnki.11-1962/tu.2012.s2.017.
  • Fallahtafti, R., and M. Mahdavinejad. 2015. “Optimisation of Building Shape and Orientation for Better Energy Efficient Architecture.” International Journal of Energy Sector Management 9 (4): 593–618. doi:10.1108/IJESM-09-2014-0001.
  • Fang, Y., and S. Cho. 2019. “Design Optimization of Building Geometry and Fenestration for Daylighting and Energy Performance, Sol.” Energy 191: 7–18. doi:10.1016/j.solener.2019.08.039.
  • Fang, Z., N. Li, B. Li, G. Luo, and Y. Huang. 2014. “The Effect of Building Envelope Insulation on Cooling Energy Consumption in Summer.” Energy and Buildings 77: 197–205. doi:10.1016/j.enbuild.2014.03.030.
  • Feng, F., Z. Li, Y. Ruan, and P. Xu. 2016. “An Empirical Study of Influencing Factors on Residential Building Energy Consumption in Qingdao City, China.” Energy Procedia 104: 245–250. doi:10.1016/j.egypro.2016.12.042.
  • Ferdyn-Grygierek, J., and K. Grygierek. 2017. “Multi-Variable Optimization of Building Thermal Design Using Genetic Algorithms.” Energies 10 (10): 1–20. doi:10.3390/en10101570.
  • Friedman, C., N. Becker, and E. Erell. 2014. “Energy Retrofit of Residential Building Envelopes in Israel: A cost-benefit Analysis.” Energy 77: 183–193. doi:10.1016/j.energy.2014.06.019.
  • Gagliano, A., F. Patania, F. Nocera, and C. Signorello. 2014. “Assessment of the Dynamic Thermal Performance of Massive Buildings.” Energy and Buildings 72: 361–370. doi:10.1016/j.enbuild.2013.12.060.
  • Geng, J. B., and Q. Ji. 2014. “Multi-perspective Analysis of China’s Energy Supply Security.” Energy 64: 541–550. doi:10.1016/j.energy.2013.11.036.
  • Gou, S., V. M. Nik, J. L. Scartezzini, Q. Zhao, and Z. Li. 2018. “Passive Design Optimization of newly-built Residential Buildings in Shanghai for Improving Indoor Thermal Comfort while Reducing Building Energy Demand.” Energy and Buildings 169: 484–506. doi:10.1016/j.enbuild.2017.09.095.
  • Harkouss, F., F. Fardoun, and P. H. Biwole. 2018. “Passive Design Optimization of Low Energy Buildings in Different Climates.” Energy 165: 591–613. doi:10.1016/j.energy.2018.09.019.
  • He, Q., D. Liu, X. Zhu, L. Yang, and J. Liu. 2015. “Study on Measuring the Indoor Thermal Environment of Tibetan Vernacular Houses on the Chuanxi Plateau.” Journal Xi’an Universität Architecture Technology 47: 402–406. doi:10.15986/j.1006-7930.2015.03.017.
  • Jalali, Z., E. Noorzai, and S. Heidari. 2020. “Design and Optimization of Form and Facade of an Office Building Using the Genetic Algorithm.” Science and Technology for the Built Environment 26 (2): 128–140. doi:10.1080/23744731.2019.1624095.
  • Khamma, T. R., and M. Boubekri. 2017. “Statistical Analysis of Impact of Building Morphology and Orientation on Its Energy Performance.” Journal Engineers Architecture 5: 15–25. doi:10.15640/jea.v5n1a2.
  • Lapisa, R. 2019. “The Effect of Building Geometric Shape and Orientation on Its Energy Performance in Various Climate Regions.” International Journal of GEOMATE 16 (53): 113–119. doi:10.21660/2019.53.94984.
  • Li, H., S. Wang, and H. Cheung. 2018. “Sensitivity Analysis of Design Parameters and Optimal Design for zero/low Energy Buildings in Subtropical Regions, Appl.” Energy 228: 1280–1291. doi:10.1016/j.apenergy.2018.07.023.
  • Li, W., L. Yang, Y. Ji, and P. Xu. 2019. “Estimating Demand Response Potential under Coupled Thermal Inertia of Building and air-conditioning System.” Energy and Buildings 182: 19–29. doi:10.1016/j.enbuild.2018.10.022.
  • Liu, Y., W. Zhou, X. Luo, D. Wang, X. Hu, and L. Hu. 2021. “Design and Operation Optimization of multi-source Complementary Heating System Based on Air Source Heat Pump in Tibetan Area of Western Sichuan, China.” Energy and Buildings 242: 110979. doi:10.1016/j.enbuild.2021.110979.
  • MacNaughton, P., U. Satish, J. G. C. Laurent, S. Flanigan, J. Vallarino, B. Coull, J. D. Spengler, and J. G. Allen. 2017. “The Impact of Working in a Green Certified Building on Cognitive Function and Health, Build.” Environment 114: 178–186. doi:10.1016/j.buildenv.2016.11.041.
  • Monteiro, H., F. Freire, and N. Soares. 2021. “Life Cycle Assessment of a South European House Addressing Building Design Options for Orientation, Window Sizing and Building Shape.” Journal of Building Engineering 39: 102276. doi:10.1016/j.jobe.2021.102276.
  • Ng, E. Y. Y., L. K. Poh, W. Wei, and T. Nagakura. 2001. “Advanced Lighting Simulation in Architectural Design in the Tropics.” Automation in Construction 10 (3): 365–379. doi:10.1016/S0926-5805(00)00053-4.
  • Oti, A. H., E. Kurul, F. Cheung, and J. H. M. Tah. 2016. “A Framework for the Utilization of Building Management System Data in Building Information Models for Building Design and Operation.” Automation in Construction 72: 195–210. doi:10.1016/j.autcon.2016.08.043.
  • Pacheco, R., J. Ordóñez, and G. Martínez. 2012. “Energy Efficient Design of Building: A Review, Renew.” Renewable and Sustainable Energy Reviews 16 (6): 3559–3573. doi:10.1016/j.rser.2012.03.045.
  • Pacheco-Torgal, F., and S. Jalali. 2011. “Nanotechnology: Advantages and Drawbacks in the Field of Construction and Building Materials, Constr.” Construction and Building Materials 25 (2): 582–590. doi:10.1016/j.conbuildmat.2010.07.009.
  • Pathirana, S., A. Rodrigo, and R. Halwatura. 2019. “Effect of Building Shape, Orientation, Window to Wall Ratios and Zones on Energy Efficiency and Thermal Comfort of Naturally Ventilated Houses in Tropical Climate.” International Journal of Energy and Environmental Engineering 10 (1): 107–120. doi:10.1007/s40095-018-0295-3.
  • Rian, I. M., and S. Asayama. 2016. “Computational Design of a nature-inspired Architectural Structure Using the Concepts of self-similar and Random Fractals.” Automation in Construction 66: 43–58. doi:10.1016/j.autcon.2016.03.010.
  • Saeed, S. A. R. 1987. “Indoor Climate as a Function of Building Orientation.” International Journal of Ambient Energy 8 (1): 41–47. doi:10.1080/01430750.1987.9675513.
  • Shi, X., Z. Tian, W. Chen, B. Si, and X. Jin. 2016. “A Review on Building Energy Efficient Design Optimization Rom the Perspective of Architects, Renew.” Renewable and Sustainable Energy Reviews 65: 872–884. doi:10.1016/j.rser.2016.07.050.
  • Sowell, E. F., and P. Haves. 2001. “Efficient Solution Strategies for Building Energy System Simulation.” Energy and Buildings 33 (4): 309–317. doi:10.1016/S0378-7788(00)00113-4.
  • Strachan, P. A., G. Kokogiannakis, and I. A. Macdonald. 2008. “History and Development of Validation with the ESP-r Simulation Program, Build.” Environment 43: 601–609. doi:10.1016/j.buildenv.2006.06.025.
  • Sun, Q., M. Li, J. Lu, and M. Liu. 2018. “Energy Consumption Analysis of College Dormitory Building Based on Multiple Linear Regression Method.” Journal Xi’an Universität Architecture Technology 50: 919–924. doi:10.15986/j.1006-7930.2018.06.024.
  • Tian, Z. C., W. Q. Chen, P. Tang, J. G. Wang, and X. Shi. 2015. “Building Energy Optimization Tools and Their Applicability in Architectural Conceptual Design Stage.” Energy Procedia 78: 2572–2577. doi:10.1016/j.egypro.2015.11.288.
  • Weißenberger, M., W. Jensch, and W. Lang. 2014. “The Convergence of Life Cycle Assessment and Nearly zero-energy Buildings: The Case of Germany.” Energy and Buildings 76: 551–557. doi:10.1016/j.enbuild.2014.03.028.
  • Yu, S., Y. Cui, X. Xu, and G. Feng. 2015. “Impact of Civil Envelope on Energy Consumption Based on EnergyPlus.” Procedia Engineering 121: 1528–1534. doi:10.1016/j.proeng.2015.09.130.
  • Zhai, Z. J., and J. M. Helman. 2019. “Implications of Climate Changes to Building Energy and Design, Sustain.” Sustainable Cities and Society 44: 511–519. doi:10.1016/j.scs.2018.10.043.
  • Zhang, L., L. Zhang, and Y. Wang. 2016. “Shape Optimization of free-form Buildings Based on Solar Radiation Gain and Space Efficiency Using a multi-objective Genetic Algorithm in the Severe Cold Zones of China, Sol.” Energy 132: 38–50. doi:10.1016/j.solener.2016.02.053.
  • Zhang, S., T. Hu, J. Li, C. Cheng, M. Song, B. Xu, and T. Baležentis. 2019. “The Effects of Energy Price, Technology, and Disaster Shocks on China’s Energy-Environment-Economy System.” Journal of Cleaner Production 207: 204–213. doi:10.1016/j.jclepro.2018.09.256.
  • Zhou, X., T. Hong, and D. Yan. 2014. “Comparison of HVAC System Modeling in EnergyPlus, DeST and DOE-2.1E, Build.” Simulation 7: 21–33. doi:10.1007/s12273-013-0150-7.