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Analisis Potensi Sumber Energi Panas Terhadap Pembangkit Listrik Tenaga Surya Di Kabupaten Batu Bara Menggunakan Software Vos Viewers Refiza, Refiza; Husaini, Muhammad Alwi; Syuhada, Ferry; Safitri, Indriani; Syafira, Nadira; Imran, Ali
Jurnal Teknik Mesin Sinergi Vol 22 No 1 (2024): April 2024
Publisher : Politeknik Negeri Ujung Pandang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.31963/sinergi.v22i1.4833

Abstract

Teknologi seperti nanokristal selulosa dapat meningkatkan efisiensi panel surya, meningkatkan kinerja dan umur panjang sel fotovoltaik, meningkatkan potensi pembangkit energi surya. Data cuaca, geografis, dan statistik tentang konsumsi energi listrik akan digunakan sebagai data sekunder dalam penelitian ini. Selain itu, penelitian ini akan memanfaatkan software vos viewers untuk memodelkan potensi energi panas matahari dan efisiensi pembangkit listrik tenaga matahari. Kabupaten Batu Bara memiliki potensi energi panas yang sangat menjanjikan untuk digunakan dalam pembangkit listrik tenaga matahari.Dengan sinar matahari yang melimpah sepanjang tahun, Kabupaten Batu Bara memiliki potensi yang besar untuk memanfaatkan energi panas matahari untuk menghasilkan energi terbarukan.
Penggunaan Sistem Hidrolik Untuk Meningkatkan Efisiensi Energi dan Performa Operasional Syahputra, Edy; Prabudi, Wisnu; Maqdis, Baitul; Syuhada, Ferry
Jurnal Mekanova : Mekanikal, Inovasi dan Teknologi Vol 10, No 2 (2024): Oktober
Publisher : universitas teuku umar

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.35308/jmkn.v10i2.10540

Abstract

This study examines the use of hydraulic systems in industrial equipment to improve energy efficiency and operational performance. Through a systematic literature review approach, this research analyzes various aspects of hydraulic system implementation in the context of modern industry. The results show that hydraulic systems offer significant advantages in terms of energy efficiency, with potential fuel savings of up to 40% and energy recovery efficiency reaching 53%. Various optimization strategies, including displacement control and implementation of Cyber-Physical Systems (CPS), prove effective in enhancing system performance. However, challenges such as high initial costs and the need for skilled labor still need to be addressed. Sustainability aspects are also a focus, with the use of bio-based hydraulic fluids that can reduce the carbon footprint by up to 30%. This study concludes that a deep understanding of the trade-offs between the benefits and challenges of hydraulic systems is crucial for effective and safe implementation across various industrial contexts. This research contributes significantly to the current understanding of the potential and challenges of using hydraulic systems to improve energy efficiency and operational performance in the industrial sector.Keywords— Hydraulic Systems, Energy Efficiency, Operational Performance