Evaluasi Kenyamanan Termal Masjid Baitul Musyahadah Kota Banda Aceh

Mirza Fuady, Andrian Kevin, Nasrullah Ridwan, Buraida Buraida, Rizal Munadi

Abstract


Many mosques in the city of Banda Aceh have used artificial ventilation systems to achieve thermal comfort conditions in the interior of the mosque. Meanwhile, the Baitul Musyahadah Mosque, which is classified as a large mosque in Banda Aceh City, currently still maintains an open mosque building design and utilizes a natural ventilation system. In this community service activity, field research was carried out with the aim of evaluating thermal comfort in the interior of the Baitul Musyahadah Mosque. The research method uses a quantitative descriptive approach by collecting data through field observations and measurements, according to variables that influence thermal comfort including air temperature, air humidity and wind speed. The results obtained regarding the thermal comfort conditions of the space in the Baitul Musyahadah Mosque are (a) the average value of the effective temperature in the building falls within the limits of a warm comfortable sensation; (b) the average value of air humidity in the building is within comfortable limits; (c) the wind speed value in the room is very weak. Furthermore, based on the results of the analysis and simulation of thermal comfort in the mosque, improvements to the opening aspects which influence increasing wind speed in the mosque are recommended to support passive thermal comfort.


Keywords


Banda Aceh City; Baitul Musyahadah Mosque; open mosque design; thermal comfort

References


Anonim. (2014). Keputusan Direktur Jenderal Bimbingan Masyarakat Islam No. DJ. II /802 Tahun 2014 Tentang Standar Pembinaan Manajemen Masjid.

Arifin, IN., & Hidayat, MS. (2018). Pengaruh Bukaan Terhadap Kinerja Termal pada Masjid Jenderal Sudirman. Jurnal Arsitektur, Bangunan, & Lingkungan, 7 (2).

ASHRAE. (2003). Standard 55-2003, Thermal Environmental Condition for Human Occupancy (ASHRAE standard 55-56). ASHRAE. Atlanta US.

BMKG. (2022), Data Cuaca BMKG Stasiun Meteorologi Sultan Iskandar Muda.

BSN. (2001). Standar Nasional Indonesia Nomor 03-6572-2001, tentang Tata Cara Perancangan Sistem Ventilasi dan Pengkondisian Udara pada Bangunan Gedung.

Hidayat, S. (2011). Kenyamanan Thermal Pada Bangunan Kampus Studi Kasus Pada Kampus Universitas Mercu Buana. Jurnal IImiah PASTI, V (3).

Hildegardis & Wara (2021). Hubungan yang dibentuk Faktor Iklim, Desain Bangunan, Psikologis dan Fisik Fisiologis Terhadap Kinerja Termal Bangunan di Wilayah Beriklim Tropis Kering di Kabupaten Sikka, Nusa Tenggara Timur. Prosiding Seminar Nasional Sains dan Teknik Undana (Sainstek).

Karyono. (2001). Penelitian Kenyamanan Termis di Jakarta Sebagai Acuan Suhu Nyaman Manusia Indonesia. Jurnal Dimensi Teknik Arsitektur, 29 (1).

Lippsmeier, G. (1994). Bangunan Tropis. Erlangga. Jakarta.

Sari, LH., Izziah, Irwansyah, M., & Meutia, E. (2016). Buku Ajar Sains Arsitektur. Syiah Kuala University Press. Darussalam, Banda Aceh.

Szokolay, S.V. (1973). Manual of Tropical Housing and Building. Bombay. Orient Langman.

Talarosha, B. (2005). Menciptakan Kenyamanan Thermal dalam Bangunan. Jurnal Sistem Teknik Industri, 6 (3).

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).


Full Text: PDF

DOI: 10.24815/pesare.v2i1.37556

Refbacks

  • There are currently no refbacks.


Copyright (c) 2024 Mirza Fuady

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.