Study of Bioclimatic Architecture as A Basis for The Formation of A Sports Center in Batu City

Authors

  • Abdul Rohman Universitas 17 Agustus 1945 Surabaya, Indonesia
  • Febby Rahmatullah Masruchin Universitas 17 Agustus 1945 Surabaya, Indonesia
  • Retno Hastijanti Universitas 17 Agustus 1945 Surabaya, Indonesia

DOI:

https://doi.org/10.58526/jsret.v5i2.1155

Keywords:

Bioclimatic Architecture, Sport Center, Thermal Comfort

Abstract

This study examines bioclimatic architecture as the basis for developing a Sport Center in Batu City. The city’s mountain climate, moderate temperatures, and favorable natural ventilation potential provide an opportunity to implement climate-responsive design. This research used a descriptive qualitative approach through literature review, climatic analysis, and evaluation of sports facility requirements. The findings indicate that building orientation, cross ventilation, solar control, vegetation integration, daylight utilization, and environmentally friendly materials can significantly improve thermal comfort while reducing energy consumption. The proposed Sport Center concept emphasizes adaptation to local climate conditions and sustainable architectural strategies. The study concludes that bioclimatic architecture can serve as an effective design framework for sports facilities in Batu City because it enhances environmental performance, user comfort, and long-term sustainability. The results provide a reference for planners, architects, and local governments in developing energy-efficient sports infrastructure.

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References

DeKay, M., & Brown, G. Z. (2014). Sun, Wind and Light.(pp. e. 41).

Creswell, J. W., & Creswell, J. D. (2017). Research design: Qualitative, quantitative, and mixed methods approaches. Sage publications.

Emmanuel, R. (2012). An urban approach to climate sensitive design: Strategies for the tropics. Taylor & Francis.

Givoni, B. (1998). Climate considerations in building and urban design. John Wiley & Sons.

Hyde, R., Groenhout, N., Barram, F., & Yeang, K. (2015). Sustainable Retrofitting of Commercial Buildings: Warm Climates. Routledge.

Koenigsberger, O. H., Ingersol, T. G., Alan, M., & Szokolay, S. V. (1974). Manual of tropical housing and building. Part 1. Climatic Design. A historically significant study of climate-responsive design methods and passive design principles.

Lechner, N. (2014). Heating, cooling, lighting: Sustainable design methods for architects. John wiley & sons.

Siregar, B. A. (2015). Desain Selubung Bangunan Dan Kenyamanan Termal Di Indonesia. no. November, 1-5.

Olgyay, V. (2015). Design with climate: bioclimatic approach to architectural regionalism. Princeton university press.

Permatasari, N. (2024). Strategi penerapan prinsip arsitektur bioklimatik pada iklim tropis terhadap kenyamanan termal dan efisiensi energi bangunan. Filosofi: Publikasi Ilmu Komunikasi, Desain, Seni Budaya, 1(4), 277-300.

Rahim, N. A., & Ali, A. H. M. (2024). COMPARATIVE ANALYSIS OF BUILDING ENERGY PERFORMANCE IN MALAYSIA: A MULTIPLE LINEAR REGRESSION STUDY ON GREEN VS. CONVENTIONAL BUILDINGS. Journal of Energy and Safety Technology (JEST), 7(2), 54-82.

Szokolay, S. V. Introduction to architectural science: the basis of sustainable design. 2014. Great Britain: Elsevier, 327.

Yeang, K. (1999). The green skyscraper: the basis for designing sustainable intensive buildings. (No Title).

Yeang, K. (2019). Saving the planet by design: reinventing our world through ecomimesis. Routledge.

Vale, B., & Vale, R. (2014). “Principles of Green Architecture”: from Green Architecture (1991). In Sustainable Urban Development Reader (pp. 318-322). Routledge.

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Published

2026-06-13

How to Cite

Rohman, A., Masruchin, F. R., & Hastijanti, R. (2026). Study of Bioclimatic Architecture as A Basis for The Formation of A Sports Center in Batu City . Journal of Scientific Research, Education, and Technology (JSRET), 5(2), 1695–1699. https://doi.org/10.58526/jsret.v5i2.1155