Efektivitas Penambahan Aditif Pasir Silika pada Paraffin Wax untuk Media Penyimpan Panas Water Heater
DOI:
https://doi.org/10.55606/jurritek.v4i3.6735Keywords:
Automation System, Temperature Control, Water Heater, Paraffin Wax, Heat StorageAbstract
This research develops an automated temperature control system for water heaters, that is both efficient and stable, driven by the need for energy-saving heating solutions, particularly for marine applications. The main objective was to create an automatic system capable of maintaining water temperature within an optimal range while maximizing energy efficiency through the use of thermal storage materials. The methodology involved an on-off control system based on a microcontroller as the main controller, capable of processing temperature sensor data in real time. This system intelligently activates and deactivates the heater to keep the water temperature stable. Paraffin wax was used as a latent heat storage medium, playing a crucial role in gradually storing and releasing thermal energy to support temperature stability. An automatic water heater system based on the ESP32 microcontroller with an on-off control mechanism was successfully designed using paraffin wax combined with silica sand as a thermal storage medium. The addition of silica sand significantly enhanced heat conductivity and temperature stability. Test results showed a substantial reduction in energy consumption, with daily savings reaching Rp12,762.88, equivalent to 67% of total daily energy costs. Over a one-year period, the total savings amounted to Rp4,658,103.20, demonstrating that the paraffin wax–silica sand combination is highly effective in improving energy efficiency and reducing long-term operational costs.
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References
Abhat, A. (1981). Performance Studies of a Finned Heat Pipe Latent Heat Thermal Energy Storage System. Pergamon Press, 541–546.
Ardiansya, H., Setiawan, H., & Harijanto, B. (2022). Rekayasa Pembangkit Listrik Tenaga Bayu HYBRID Portable Secara Real Time Berbasis IoT untuk Penyuplai Kebutuhan Listrik. Jurnal Elkasista, 3, Mei 2022. ISSN: 2723-1291.
Arsenyeva, O. et al. (2023). Review of Developments in Plate Heat Exchanger Heat Transfer Enhancement for Single-Phase Applications in Process Industries. Energies, 16(13).
Fauziah, N., Munazilin, A., & Santoso, F. (2024). Rancang Bangun Sistem Pengontrol Irigasi Otomatis Menggunakan Mikrokontroler Arduino Uno. G-Tech: Jurnal Teknologi Terapan, 8(3), 1464–1473.
Guntara, V.C. (2021). Rancang Bangun Alat Penggiling dan Pengering Cabai Menggunakan Atmega 328. Journal of Energy and Electrical Engineering, 3(1), 39–45.
Katsuki, H., Furuta, S., Watari, T., & Komarneni, S. (2005). ZSM-5 Zeolite/Porous Carbon Composite: Conventional- and Microwave-Hydrothermal Synthesis from Carbonized Rice Husk. Microporous and Mesoporous Materials, 86, 145–151.
Kustiawan, E. (2018). Meningkatkan Efisiensi Peralatan dengan Menggunakan Solid State Relay (SSR) dalam Pengaturan Suhu Pack Pre-Heating Oven (PHO). CIR Jurnal STT YUPPENTEK, 9(1), 1–6.
Mukhlis, Y., & Yapie, A.K. (2010). Pemanas dengan Sistem Pendeteksi Suhu Otomatis dan Pengaman Kebocoran Panas. Jurnal Ilmiah Teknologi dan Rekayasa, 13(3), 186–192.
Okpatrioka, O. (2023). Research and Development (R&D) Penelitian yang Inovatif dalam Pendidikan. Dharma Acariya Nusantara: Jurnal Pendidikan, Bahasa,dan Budaya, 1(1), 86–100.
Prayogo, T., & Budiman, B. (2009). Survei Potensi Pasir Kuarsa di Daerah Ketapang, Provinsi Kalimantan Barat. Jurnal Sains dan Teknologi Indonesia, 11(2), 126–132.
Ramadhani, A. (2016). Water Temperature Control Using PID Control System Based on LabVIEW. Telekontran: Jurnal Ilmiah Telekomunikasi, Kendali, dan Elektronika Terapan, 4(2), 35–46.
Sharma, A., & Chen, C.R. (2009). Solar Water Heating System with Phase Change Materials. International Review of Chemical Engineering (I.RE.CH.E.), 1(4), 297–307.
Sharma, A., Tyagi, V.V., Chen, C.R., & Buddhi, D. (2009). Review on ThermalEnergy Storage with Phase Change Materials and Applications. Renewable and Sustainable Energy Reviews (RSER), 13(10), 318–345.
Ummah, M.S. (2019). Analisis Unjuk Kerja Pemanas Air Surya dengan Aditif Pasir Silika pada Parafin Wax sebagai Material Penyimpan Panas Laten. Sustainability (Switzerland), 11(1), 1–14.
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