Analisis Desain Bukaan Ventilasi Terhadap Arah Aliran Angin pada Rumah Tinggal

Authors

  • Archie Gilliant Misman Universitas Sam Ratulangi
  • Sangkertadi Sangkertadi Universitas Sam Ratulangi, Indonesia
  • Cynthia E. V. Wuisang Universitas Sam Ratulangi, Indonesia

DOI:

https://doi.org/10.37971/radial.v13i1.446

Keywords:

CFD, Openings Design, Thermal Comfort, Wind-Induced Air Motion, Home

Abstract

This research aims to analyze the effect of the design of ventilation in residential houses at the Royal Residence on the direction of incoming wind flow to increase indoor thermal comfort. The research was carried out using quantitative methods, where values ​​were taken by direct measurements at the location and then analyzed using CFD simulations Cradle CFD and Energy 2D. The research results show that the existing ventilation design of Casement Top Hung produces an average indoor wind speed of 0.281 m/s, not good enough to flow air into the room evenly, the Vertically Pivoted type produces an average wind speed of 1.28 m/s, and the air is channeled evenly so that the wind that enters the room provides thermal comfort to the occupants. The direction of the opening greatly influences the speed and distribution of incoming air to support air comfortable for people. The landscape greatly affects the placement of openings and the types of windows where wind can be spread throughout the room evenly to provide thermal comfort for occupants. These results can be used as an evaluation in trends of selection window types and for further research in improving the thermal comfort of residential in different landscape environmental conditions.

References

Amin, M., Danusputra, H., & Prianto, E. (2004). Pengaruh Bukaan Terhadap Kenyamanan Thermal pada Bangunan Publik di Daerah Tropis. Jurnal Unimus, 1– 13.
Anisa B.A., M.S Adhitama., & Agung M.N. (2017).Pengaruh Bukaan Terhadap Kenyamanan Termal Pada Ruang Hunian Rumah Susun Aparna Surabaya. Jurnal Mahasiswa Jurusan Arsitektur Universitas Brawijaya, 5, 4.
Damastuti, N., & Nasihien, R. D. (2017). Simulasi Kecepatan Angin dengan CFD Untuk Mengetahui Tingkat Kenyamanan Thermal Masjid Narotama II-1 II-2, 9, 1-4.
Dhiyathalla, L., Gandarum, D. N., & Lahji, K. (2022). Pengaruh Karakteristik Bukaan dan Orientasi Bangunan Terhadap Kenyamanan Termal Pada Ruang Kelas SMPN 3 Carita. Prosiding Seminar Intelektual Muda, 3(2), 131-139.
Gosal, P., Sangkertadi., & Wuisang, C. (2023). Pengaruh Pohon Terhadap Kenyamanan Termal dalan Hunian Beriklim Tropis Lembab dengan Kasus di Kota Manado. Jurnal Mahasiswa Jurusan Arsitektur.
Hamzah, Baharuddin & Rahim, Ramli & Ishak, Muhammad & Latif, Sahabuddin. (2017). Kinerja Sistem Ventilasi Alami Ruang Kuliah. Jurnal Lingkungan Binaan Indonesia. Jurnal Lingkungan Binaan Indonesia, 6, 51-58. https://doi.org/10.32315/jlbi.6.1.51
Hamzah, Baharuddin, Rosady Mulyadi, & Samsuddin Amin. (2016) Analisis Kenyamanan Termal Ruang Kelas Sekolah Dasar Di Kota Makassar Studi Kasus SD Unggulan Toddopuli. Prosiding Temu Ilmiah IPLBI, 1, 1–6.
Karyono, T. H. (2000). Report on thermal comfort and building energy studies in Jakarta – Indonesia. Building and Environment, 35(1), 77-90. https://doi.org/10.1016/S0360-1323(98)00066-3
Kindangen, J. I. (2003). Pengaruh Tipe Jendela Terhadap Pola Aliran Udara Dalam Ruang. Dimensi Teknik Arsitektur, 31(2), 158-162. http://puslit.petra.ac.id/~puslit/journals/
Kindangen, J. I. (2005). Investigasi Pola Aliran Udara Dalam Bangunan Bertingkat Akibat Pengaruh Penghalang di Depan dan di Belakangnya. Dimensi Teknik Arsitektur, 33(1), 172-176. http://puslit.petra.ac.id/~puslit/journals/
Lestari, D. S. (2011). Kondisi Kenyamanan Thermal Bangunan Gereja Blenduk Semarang. Jurnal Teknik Sipil dan Arsitektur, 10(14). https://ejournal.utp.ac.id/index.php/JTSA/article/view/226
Prianto, E., & Depecker, P. (2002). Characteristic Of Airflow As The Effect Of Balcony, Opening Design And Internal Division On Indoor Velocity: A Case Study Of Traditional Dwelling In Urban Living Quarter In Tropical Humid Region. Energy and Buildings, 34(4), 401-409. https://doi.org/10.1016/S0378-7788(01)00124-4.
Razak, H. (2015). Pengaruh Karakteristik Ventilasi dan Lingkungan Terhadap Tingkat Kenyaman Termal Ruang Kelas SMPN di Jakarta Selatan. AGORA Jurnal Penelitian Dan Karya Ilmiah Arsitektur Usakti Jurnal Penelitian Dan Karya Ilmiah Arsitektur Usakti, 15(2), 1-18. https://doi.org/10.25105/agora.v15i2.2024
Razak, Humairoh., Gandarum, Dedes Nur., & Juwana, Jimmy Siswanto. (2015). Pengaruh Karakteristik Ventilasi dan Lingkungan terhadap Tingkat Kenyamanan Termal Ruang Kelas SMPN di Jakarta Selatan. AGORA, Jurnal Arsitektur, 15, 2.
Sangkertadi. (2012). Pengaruh Kecepatan Angin Terhadap Tingkat Kenyamanan Termal di Ruang Luar Iklim Tropis Lembab. Jurnal Lingkungan Binaan Indonesia, 1, 2.
Sangkertadi, S., Syafriny, R., Wuisang, C. E. V., & Zahra, Z. (2022). Influence of landscape material properties on microclimate change in a tropical area with case in Manado City. IOP Conference Series: Earth and Environmental Science, 1007(1). https://doi.org/10.1088/1755-1315/1007/1/012006
Sangkertadi, S., Syafriny, R., Wuisang, C.E.V. (2023). Thermophysical Properties of Landscape Material and Its Effect on Daytime Outdoor Thermal Comfort in Tropical City. In: Krüger, E.L., Karunathilake, H.P., Alam, T. (eds) Resilient and Responsible Smart Cities. Advances in Science, Technology & Innovation. Springer, Cham. https://doi.org/10.1007/978-3-031-20182-0_10
Santoso, E. I. (2012). Kenyamanan Termal Indoor pada Bangunan di Daerah Beriklim Tropis Lembab. Indonesian Green Technology, 1(1), 13-19. https://media.neliti.com/media/publications/63463-ID-kenyamanan-termal-indoor-pada-bangunan-d.pdf
Susanti, L., dan Nike Aulia. 2013. Evaluasi kenyamanan Termal Ruang Sekolah SMA Negeri di Kota Padang. Jurnal Optimasi Sistem Industri. ISSN : 2088- 4842, 12(1), 310-316.
Vidiyanti, C., Siswanto, R., & Ramadhan, F. (2020). Pengaruh Bukaan Terhadap Pencahayaan Alami Dan Penghawaan Alami Pada Masjid Al Ahdhar Bekasi. Jurnal Arsitektur ZONASI, 3(1), 20–33. https://doi.org/10.17509/jaz.v3i1.18621
Buchori, Luqman. (2011). Perpindahan Panas. Semarang: UNPID.
Budihardjo, Eko. (1998). Sejumlah Masalah Permukiman Kota. Bandung.
Fanger, P.O. (1970). Thermal Comfort Analysis and Application in Environmental Engineering. USA : McGraw-Hill Book Co.
Fry, M., & Drew, J. (1956). Tropical Architecture in the Humid Zone. New York : Reinhold Publishing.
Heinz Frick. (1998). Dasar-dasar Eko Arsitektur. Yogyakarta : Kanisius.
Heinz Frick, Tri Hesti Mulyani. (2006). Arsitektur Ekologis, Konsep Arsitektur Ekologis di Iklim Tropis, Penghijauan Kota dan Kota Ekologis, serta Energi Terbarukan. Yogyakarta: Kanisius.
Holman, J & P. Jasjfi E. (2002). Perpindahan Kalor. Jakarta: Erlangga. Idham, N. C. (2016). Arsitektur dan Kenyamanan Termal. Yogyakarta: Andi Yogyakarta.
Koeningsberger, O.H., Ingersoll, T, G., Mayhew, A., & Szokolay, S,V. (1974). Manual of tropical housing and building, Part one, Climate design. London : Longman.
Latifah, N. L. (2015). Fisika Bangunan 1. Edisi Pertama. Jakarta Timur : Griya Kreasi.
Sangkertadi. (2012). Perhitungan Ventilasi dan Kenyamanan Termis Pada Bangunan Tropis. Edisi Pertama. Manado : PT Waja Utama.
Sangkertadi. (2013). Kenyamanan Termis di Ruang Luar Beriklim Tropis Lembab. Bandung : Alfabeta.
Satwiko, Prasasto. (2009). Fisika Bangunan. Yogyakarta: C.V. Andi Offset.
Sugini. (2014). Kenyamanan Termal Ruang; Konsep dan Penerapan pada Desain. Edisi Pertama. Yogyakarta : Graha Ilmu.
Suparno, S. M. (2007). Perencanaan dan Pengembangan Perumahan. Yogyakarta: C.V. Andi Offset.
Szokolay, S. V. (1980). Environmental Sciences Handbook for Architects and Builders. Lancaster [etc.] : Construction Press.

Downloads

Published

2025-06-01