Construction of Electrical Power Generation using Hybrid Renewable Energy for Local Communities

Hartono, Mesakh Kristia and Hendriana, Dena (2018) Construction of Electrical Power Generation using Hybrid Renewable Energy for Local Communities. Bachelor thesis, Swiss German University.

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Abstract

In recent years, small scale power generation using renewable energy has been recognized as suitable option for energy access in rural areas due to uneconomical grid extension. Electrical generation as part of community development is done in Serpong area because of energy potential, easy access and research permit. Development of renewable energy generations with 3 sources includes water, solar radiation and wind has been done. Planning process includes surveys of location and estimation of renewable energy potential in Serpong area. Data collection related to renewable energy potential is done in qualitative and quantitative manner using measuring instrument to get wind speed and water debit. Qualitative is done by interviewing local community related to availability of resources throughout the year. 700 W generic wind turbine is used as a tool of experiment. High variability of wind resources makes system can’t work as expected (only about 100W power produced).2 kWp solar panels system is installed to demonstrate solar system which consists of 8pcs of 250Wp solar panels. In this experiment, solar power generation can generate up to 1,5kWs with variation in sun orientation and clouds . For water energy, small dam is made on run off river with head about 3.5 m with an average 12 L/s. It can reach max 21 L/s and 4 L/s at the lowest. Open flume water turbine with 600 W rated power is used to generate electricity from available water resources.

Item Type: Thesis (Bachelor)
Uncontrolled Keywords: Feasibility Study; Renewable Energy; Small Scale Electrical Generation
Subjects: T Technology > TJ Mechanical engineering and machinery > TJ807 Renewable energy sources
T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK3091 Electric power transmission
Divisions: Faculty of Engineering and Information Technology > Department of Mechatronics Engineering
Depositing User: Astuti Kusumaningrum
Date Deposited: 31 May 2020 15:23
Last Modified: 31 May 2020 15:23
URI: http://repository.sgu.ac.id/id/eprint/756

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