Pemanfaatan Energi Matahari Berbasis Kompor Termodinamika Surya sebagai Solusi Memasak Berkelanjutan

Popi Purwanti, Nur Aysa, Giove Tesalonica Simamora, Maudina Shintiasari, Kresensia Mariana Dua

Abstract


The utilization of solar energy as an alternative energy source is becoming increasingly important amid rising energy demands and sustainability issues. This study examines the application of a thermodynamic solar cooker as an environmentally friendly cooking solution that efficiently harnesses solar radiation. The thermodynamic solar cooker operates by utilizing sunlight as an alternative heat source without relying on fossil fuels. This experiment aims to determine the cooker’s ability to heat water under different weather conditions. A parabolic reflector coated with aluminium foil is used to focus sunlight onto a central heating point. The results indicate that the device can increase water temperature optimally under clear weather, while its performance decreases during cloudy or overcast conditions. The electric heater powered by a solar panel provides additional support but cannot replace the primary role of direct sunlight. Overall, this device has strong potential as an efficient and eco-friendly solution, particularly in regions with high solar exposure and limited access to conventional energy sources.


References


Alatas, M. (2024). Sistem & Teknologi Plts Pembangkit Listrik Tenaga Surya Rooftop. Penerbit Tahta Media.

Al Hakim, R. R. (2020). Model energi Indonesia, tinjauan potensi energi terbarukan untuk ketahanan energi di Indonesia: Sebuah ulasan. ANDASIH Jurnal Pengabdian Kepada Masyarakat, 1(1).

ESMAP, International Energy Agency, International Renewable Energy Agency, United Nations Statistics Division, World Bank, & World

Health Organization. (2020). Tracking SDG7: The Energy Progress Report 2020.

Gunawan, S., Napitupulu, F. H., & Ambarita, H. (2018, October). Kajian Performansi Kompor Surya dengan Erythrytol Sebagai Pcm untuk Memasak Langsung dan Tidak Langsung. In Talenta Conference Series: Energy and Engineering (EE) (Vol. 1, No. 1, pp. 067-074).

Handoko, T., Suryani, A., & Lestari, D. (2020). Pemanfaatan energi surya dalam kehidupan sehari-hari. Jurnal Energi Terbarukan, 12(3), 45–52.

International Energy Agency. (2020a). Energy Efficiency 2020. OECD Publishing.

International Energy Agency. (2020b). Energy Technology Perspectives 2020. OECD Publishing.

International Energy Agency. (2020c). Global Energy Review 2020. OECD Publishing.

International Energy Agency. (2020d). World Energy Outlook 2020. Paris: IEA Publications.

Kementerian Energi dan Sumber Daya Mineral (ESDM). (2022). Potensi energi surya di Indonesia. Jakarta: Direktorat Jenderal EBTKE.

Mardwianta, B., Subarjo, A. H., & Cahyadi, R. D. (2023). Studi Ekperimental Penambahan Reflektor Datar Pada Kompor Tenaga Surya Tipe Parabolic. JURNAL SURYA ENERGY, 6(1), 31-40.

Muin, A., Veranika, R. M., & Badil, I. (2017). Perancangan kompor surya serbaguna dengan susunan absober yang bervariasi. Jurnal desiminasi teknologi, 5(1).

OECD. (2019). OECD Green Growth Policy Review of Indonesia 2019. OECD Publishing.

Putra, A., & Nugroho, B. (2021). Rancang bangun kompor parabola tenaga surya berbasis reflektor aluminium. Jurnal Teknologi Energi, 8(2), 100–108.

Rahman, S., Hidayat, F., & Santoso, D. (2022). Analisis kinerja kompor tenaga surya untuk daerah terpencil. Jurnal Inovasi Energi, 9(1), 12–20.

Sukardjo, W., & Rahman, T. (2021). Tantangan dan peluang energi terbarukan di Indonesia. Energi dan Lingkungan, 5(1), 1–10.

Sugiyono. (2019). Metode Penelitian Kuantitatif, Kualitatif, dan R&D. Bandung: Alfabeta.

Susilo, R. (2020). Pengembangan teknologi kompor surya untuk masyarakat pedesaan. Jurnal Pemberdayaan Teknologi,

(4), 55–64.

Tiyas, P. K., & Widyartono, M. (2020). Pengaruh efek suhu terhadap kinerja panel surya. Jurnal Teknik Elektro, 9(1).

Utami, S., & Dewi, K. (2021). Studi eksperimental kinerja kompor surya termodinamika pada kondisi cuaca berbeda. Jurnal Energi Alternatif, 11(2), 33–41.

World Energy Council. (2019a). Issues Monitor 2019. World Energy Council.

World Energy Council. (2019b). World Energy Resources 2019. London: WEC.


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