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The Inverted Hydroelectric Dam is a system that generates electricity through the use of renewable energy and buoyant force. To accomplish this, the Inverted Hydroelectric Dam integrates renewable energy sources into its operation, such as wind energy and photovoltaic energy that are used in the compression and injection of air inside a partially submerged cylinder. Further, the system optimizes the use of residual energy in its operation, through low-channel hydroelectric plants (installed on the surface and fed by the water overflow) and with vertical axis wind turbines at the external outlet of the cylinder.

Advantages of the Inverted Hydroelectric Dam may be noted as follows:
1. Environmental sustainability: It uses renewable energy sources such as air and water, reducing dependence on fossil fuels and mitigating carbon emissions, contributing to the fight against climate change.
2. Versatility: It can be implemented in various locations, both in marine environments and inland waters, taking advantage of natural resources available in different environments.
3. Low visual and sound impact: Compared to other forms of power generation, such as wind farms or conventional power plants, the system has a reduced visual and sound impact.
4. Harnessing multiple energy sources: The integration of wind and photovoltaic energy to power air compressors diversifies generation sources, increasing system stability.
5. Flexibility of scale: It can be scaled to suit different power generation needs, from residential applications to larger-scale projects, depending on specific requirements.
6. Possible integration with other technologies: It can be combined with energy storage systems or with other forms of renewable generation to create more efficient hybrid systems.
7. Potential for diverse underwater applications: It can have applications in power generation for coastal communities, offshore platforms, ocean monitoring buoys, among others.
8. Reduction of energy dependence: Promotes energy independence by taking advantage of locally available natural resources, reducing dependence on conventional power grids.

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