UNIMALUNIMAL

Journal of Renewable Energy, Electrical, and Computer EngineeringJournal of Renewable Energy, Electrical, and Computer Engineering

Geothermal energy is mostly stored in the earths interior, cost-effective and reliable compared to other sustainable energies, such as solar, wind and nuclear energy. Geothermal energy or geothermal energy is a competitive alternative energy because it is available in very large potential, can be used in the long term, and is environmentally friendly. This research uses descriptive quantitative methods with a data analysis and mapping process approach. The articles used in this research were articles published in the 2018-2023 range, totaling 50 articles. The articles are collected and then saved in *.ris format. Next, researchers used VOSviewer. Furthermore, this application suggests that the use of applications using Vosviewer is an application that is widely used to search for the latest research. Therefore, in this research the topic of optimization and zeotropic mixture.

Based on the information presented above, it is clear that geothermal-based energy systems provide good results and are environmentally friendly, making them a viable alternative to replacing fossil fuels.The integration of geothermal energy with other heat sources in combined structures has demonstrated superior performance, especially in terms of economic feasibility and environmental impact.Inspired by these promising results, this research was motivated to carry out the design and analysis of a new geothermal-based system, coupled with the utilization of flue gas from a trigeneration power plant.

Berdasarkan latar belakang, metode, hasil, keterbatasan, dan juga bagian saran penelitian lanjutan, beberapa saran penelitian lanjutan yang dapat dikembangkan adalah sebagai berikut: Pertama, penelitian lebih lanjut dapat dilakukan untuk mengeksplorasi potensi penggunaan zeotropic mixture yang berbeda dalam sistem binary cycle, dengan mempertimbangkan karakteristik termodinamika dan ketersediaan fluida kerja. Hal ini dapat mengoptimalkan efisiensi sistem dan mengurangi dampak lingkungan. Kedua, penelitian dapat difokuskan pada pengembangan model simulasi yang lebih akurat untuk memprediksi kinerja sistem binary cycle dalam berbagai kondisi operasional, termasuk variasi temperatur sumber panas dan beban listrik. Model ini dapat digunakan untuk mengoptimalkan desain dan pengendalian sistem. Ketiga, penelitian dapat dilakukan untuk mengintegrasikan sistem binary cycle dengan sumber energi terbarukan lainnya, seperti energi surya atau biomassa, untuk menciptakan sistem energi yang lebih berkelanjutan dan efisien. Integrasi ini dapat meningkatkan keandalan pasokan energi dan mengurangi emisi gas rumah kaca.

  1. Frontiers | Thermo-Economic Comparison Between Organic Rankine Cycle and Binary-Flashing Cycle for Geothermal... Doi.Org/10.3389/Feart.2021.759872Frontiers Thermo Economic Comparison Between Organic Rankine Cycle and Binary Flashing Cycle for Geothermal Doi Org 10 3389 Feart 2021 759872
  2. Radware Bot Manager Captcha. radware manager captcha apologize ensure keep safe please confirm human... Doi.Org/10.1088/1757-899x/1098/3/032031Radware Bot Manager Captcha radware manager captcha apologize ensure keep safe please confirm human Doi Org 10 1088 1757 899x 1098 3 032031
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