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Due to favorable conditions in Ethiopia (water power, wind power, photovoltaics, geothermal energy) for power generation, the country avoids exploiting and importing fossil fuels as much as possible. As Ethiopia is a quickly developing country, the demand for electricity grows by 30% each year. [1]
The station comprises 29 energy-generating wind mills, each rated at 3.45 megawatts capacity, for a total of 100 megawatts at maximum output. The generated energy will be integrated into Ethiopia's national electricity grid, through a substation to be built by the state-owned EEP, with a loan of US$10 million, borrowed from the African ...
Ethiopia plans 800 MW of wind power. [11] As the dry season is also the windy season, wind power is a good complement to hydropower. Ethiopia has benefitted from the creation and sustainment of two large wind power systems. In October 2013 the largest wind farm on the continent, the Adama plants, started capturing energy in Ethiopia.
The highest subsidy price that was still awarded was 6.00 ct/kWh. [111] In a bid for onshore wind farm projects, an average payment of 5.71 ct/kWh was achieved, and 4.29 ct/kWh in a second bidding round. In 2019, there were bids for new offshore wind farms in the United Kingdom, with costs as low as 3.96 pence per kWh (4.47 ct). [112]
Agucadoura Wave Farm in Portugal. The following page lists most power stations that run on wave power, however there are not many operational at present as wave energy is still a nascent technology. A longer list of proposed and prototype wave power devices is given on List of wave power projects.
In 2018, access of electricity in Ethiopia reached 45%, and power generation, especially hydropower, tripled in a decade from about 850 MW to above 2,000 MW. [12] [13] According to the World Bank, [14] power outage of Ethiopia occurred 8.2 times in a
Azura is a wave power device developed by Azura Wave Power in New Plymouth. A version was tested in Hawaii from 2015 for several years, with the aim of scaling up to create utility scale power for the grid. This was found to be too expensive, so Azura are now working on a smaller-scale device to produce both electricity and potable water. [1]
The Wave Dragon is an overtopping WEC concept developed in Denmark since 1998, with a 1:4.5 scale prototype tested between 2003 and 2010. With the Wave Dragon, large wing reflectors focus waves up a ramp into an offshore reservoir. The water returns to the ocean by the force of gravity via hydroelectric generators. [99] [100]
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