Penerapan Sistem HVAC Efisien Energi melalui Edukasi dan Pendampingan pada Proyek Rumah Susun BIN-POLRI

Authors

  • Muhammad Arham Universitas Patria Artha
  • Syamsumarlin Taha Universitas Patria Artha
  • Asnefi Asnefi Universitas Patria Artha
  • Husni Mubarak Universitas Patria Artha
  • Akhsan Hamka Universitas Patria Artha
  • Sony Malino Universitas Patria Artha
  • Marten Rombe Akademi Maritim Indonesia AIPI

DOI:

https://doi.org/10.62383/harmoni.v2i3.2110

Keywords:

Design Builder, HVAC, IKE, Mechanical Ventilation, Thermal Comfort

Abstract

This community service activity aims to provide education and technical recommendations related to energy efficiency and thermal comfort in the BIN Apartment building through simulations using DesignBuilder software. The purpose of the activity is to analyze and optimize the building’s energy consumption and ensure thermal comfort for the residents. The simulation results show that the building's Energy Use Intensity (EUI) is relatively low for the residential category, based on calculations made by the BGH team. The air conditioning (AC) system in conditioned spaces meets the thermal comfort standards according to ASHRAE, ensuring comfortable living conditions in these areas. However, in unconditioned areas, such as the family room, the Predicted Mean Vote (PMV) value reaches 1.5 (hot), indicating thermal discomfort. To address this issue, mechanical ventilation is recommended, with the capacity to produce an average air velocity of at least 0.6 m/s, which will improve airflow and enhance thermal comfort. Alternatively, adding an additional AC unit can also be considered, though it would result in a 20% increase in energy consumption. The findings and recommendations of this activity are expected to provide valuable insights and assist partners in making informed technical decisions when designing efficient and comfortable HVAC systems for vertical state-owned residential buildings. Ultimately, this program aims to optimize both energy usage and comfort, contributing to sustainable building management practices in the future.

References

Chemweno, P., Pintelon, L., Horenbeek, A. V., Muchiri, P. 2015. Development of a risk assessment selection methodology for asset maintenance decision making: an analytic network process (ANP) approach. International Journal of Production Economics. Vol. 170, pp. 663-676.

Deng, X., Yang, X., Zhang, Y., Li, Y., Lu, Z. 2019. Risk propagation mechanisms and risk management strategies for a sustainable perishable products supply chain. Computers & Industrial Engineering. Vol. 135, pp. 1175-1187.

Ibanez, A. J. P., Bernal, J. M. M., Diego, M. J. C. D., Sanches, F. J. A. 2016. Expert system for predicting buildings service life under ISO 31000 standard. Application in architectural heritage. Journal of Cultural Heritage. Vol. 18,pp. 209-218.

J. L. K. Ho, P. H. C. Yuen, D. J. M. Lee. 2019. Sustainable Building Design and Energy Simulation: A Case Study Using DesignBuilder. Jurnal Sustainable Cities and Society. Vol. 45

Kamble, S. S., Gunasekaran, A., Gawankar, S. A. 2020. Achieving sustainable performance in a data-driven agriculture supply chain: a review for research and applications. International Journal of Production Economics. Vol. 219,pp. 179-194.

Olechowski, A., Oehmen, J., Seering, W., Daya, M. B. 2016. The professionalization of risk management: What role can the ISO 31000 risk management principles play. International Journal of Project Management. Vol. 34, No. 8, pp. 1568-1578.

Oliveira, U. R. D., Marins, F. A. S., Rocha, H. M., Salomon, V. A. P. 2017. The ISO 31000 standard in supply chain risk management. Journal of Cleaner Production. Vol. 151, pp. 616-633.

S. R. Bhatia, T. R. S. Horne, A. B. M. Rafique. 2016. Energy Performance and HVAC Systems A Simulation-Based Approach. Jurnal Energy and Buildings . Vol. 127

A. Aswin Salam, Muh. Syahril M, Muhammad Arham. 2023. “KARAKTERISTIK EKSPERIMENTAL DAN TEORITIS GETARAN BALOK KAYU LONTAR ( Borassus Flabellifer Linn ).” Jurnal Tematis (Teknologi, Manufaktur Dan Industri) 5(1):1–7.

Arham, Muhammad, and M. Ilham Nur. 2023. “Perancangan Pltmh Turbin Archimedes Screw Pada Kawasan Pedesaan Terpencil Dusun Cindakko Desa Bonto Somba Kec.Tompobulu Kab. Maros.” 5(1):17–22.

Njoroge, Edwin, and Muchelule Yusuf. 2020. “Project Management Triple Constraints and Performance of Indoor Network Coverage Enhancement Projects: A Case of Safaricom, Kenya.” International Journal of Economics, Commerce and Management 8(9):425–69.

Sameer Ahmed, Engr, and Sayed Fayaz Ahmed. 2020. “Why Are Triple Constraints Always Challenged? : Evidence From Construction Projects.” International Journal of Scientific & Technology Research 9(12).

Taha, Syamsumarlin, Irwan Syarif, Muh Rais, Rosihan Aminuddin, Andi Rakhmat Baharuddin, Muhammad Arham, and Jumiati Usman. 2024. “Migitasi Potensi Bahaya Dengan Mengadaptasi Metode Job Safety Analysis (JSA).” Jurnal Pengabdian Masyarakat 2(1):121–25.

Udding, Udding, Rifki Ardian Firdaus, Muhammad Arham, Muh. Annur Jimran, and M. Gimnastiar. 2021. “Analisis Sistem Production Separator Dengan Metode RAM (Reliability, Availability and Maintainability).” Dewantara Journal of Technology 2(2):57–62. doi: 10.59563/djtech.v2i2.131

Downloads

Published

2025-07-31

How to Cite

Muhammad Arham, Syamsumarlin Taha, Asnefi Asnefi, Husni Mubarak, Akhsan Hamka, Sony Malino, & Marten Rombe. (2025). Penerapan Sistem HVAC Efisien Energi melalui Edukasi dan Pendampingan pada Proyek Rumah Susun BIN-POLRI. Harmoni Sosial : Jurnal Pengabdian Dan Solidaritas Masyarakat, 2(3), 239–255. https://doi.org/10.62383/harmoni.v2i3.2110

Similar Articles

1 2 > >> 

You may also start an advanced similarity search for this article.