Aightm8 / Water-Wave-Funneling-Power-Generator

A renewable energy solution that harnesses sea wave power in a new way
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How does the Water Wave Funneling Power Generator (WWFPG) differ from existing wave power generation systems, and what inspired the concept? #1

Open jordanmaliki opened 3 months ago

jordanmaliki commented 3 months ago

The Water Wave Funneling Power Generator (WWFPG) distinguishes itself from existing wave power generation systems in several key aspects, primarily inspired by the natural phenomenon of tidal bores. Here are the key differences and the inspiration behind the concept:

Differences from Existing Wave Power Generation Systems: Funneling Mechanism:

Unlike traditional systems that utilize buoys or turbines directly exposed to the open sea, the WWFPG incorporates a funneling mechanism. The funnel channels water waves into a confined space, creating a constriction that increases the energy per unit area. Generator Region Configuration:

The generator region of the WWFPG consists of buoys and generator units (Point absorbers) that oscillate with the sea waves. This oscillatory motion is converted into circular motion by a crank mechanism, which is then used to generate electrical energy. Enclosed Structure:

The WWFPG encloses the waves from the sides and the bottom as they pass through the inlet, funnel, and generator region. This enclosed structure helps in controlling and enhancing the energy capture from the waves. Secondary Applications:

The concept includes the potential for various secondary applications, such as trash collection, integration of small wind turbines or solar panels, research and meteorology data collection, and recreational use. Cost-Effectiveness:

The WWFPG is designed to be more cost-effective than traditional wave power systems, as the generator region covers a smaller area while maintaining efficiency. Inspiration from Tidal Bore Phenomena: The inspiration for the WWFPG comes from observing tidal bore phenomena, where tides propagate into rivers, causing a sudden increase in water level and creating powerful waves. The concept takes this natural occurrence and adapts it to harness the energy of ocean waves in a controlled and efficient manner.

Tidal bores demonstrate the potential to increase energy density by channeling waves into a confined space. The WWFPG leverages this idea to enhance the efficiency of wave power generation while addressing the challenges and limitations associated with existing systems.

In summary, the WWFPG draws inspiration from the dynamic behavior of tidal bores and introduces a novel approach to wave power generation, focusing on funneling mechanisms, enclosed structures, and additional applications to make the system more versatile and cost-effective.

Aightm8 commented 3 months ago

Hi Jordan,

Its been a long time since I have been active on GitHub. Or in developing novel concepts in general. And noone ever really became involved in them. So this update came as a surprise to me.

What was even more surprising is that you took the time to learn and express your understanding of the WWFPG in writing a summary. And you understood it so well, at the time of putting it together I thought people might have a hard time really getting it but I tried to explain it as well as I could. I see now that at least one person got it.

I see that you are new to GitHub and this is the first thing you got involved in. I'm curious as to what brought you to it and why you found interest in it. I'm also curious as to how you found it in the first place because it's so obscure.

Would love to hear back from you!

Thank you. Raven.

On Sat, Mar 9, 2024, 1:51 p.m. jordanmaliki @.***> wrote:

The Water Wave Funneling Power Generator (WWFPG) distinguishes itself from existing wave power generation systems in several key aspects, primarily inspired by the natural phenomenon of tidal bores. Here are the key differences and the inspiration behind the concept:

Differences from Existing Wave Power Generation Systems: Funneling Mechanism:

Unlike traditional systems that utilize buoys or turbines directly exposed to the open sea, the WWFPG incorporates a funneling mechanism. The funnel channels water waves into a confined space, creating a constriction that increases the energy per unit area. Generator Region Configuration:

The generator region of the WWFPG consists of buoys and generator units (Point absorbers) that oscillate with the sea waves. This oscillatory motion is converted into circular motion by a crank mechanism, which is then used to generate electrical energy. Enclosed Structure:

The WWFPG encloses the waves from the sides and the bottom as they pass through the inlet, funnel, and generator region. This enclosed structure helps in controlling and enhancing the energy capture from the waves. Secondary Applications:

The concept includes the potential for various secondary applications, such as trash collection, integration of small wind turbines or solar panels, research and meteorology data collection, and recreational use. Cost-Effectiveness:

The WWFPG is designed to be more cost-effective than traditional wave power systems, as the generator region covers a smaller area while maintaining efficiency. Inspiration from Tidal Bore Phenomena: The inspiration for the WWFPG comes from observing tidal bore phenomena, where tides propagate into rivers, causing a sudden increase in water level and creating powerful waves. The concept takes this natural occurrence and adapts it to harness the energy of ocean waves in a controlled and efficient manner.

Tidal bores demonstrate the potential to increase energy density by channeling waves into a confined space. The WWFPG leverages this idea to enhance the efficiency of wave power generation while addressing the challenges and limitations associated with existing systems.

In summary, the WWFPG draws inspiration from the dynamic behavior of tidal bores and introduces a novel approach to wave power https://electriciandiary.com/ generation, focusing on funneling mechanisms, enclosed structures, and additional applications to make the system more versatile and cost-effective.

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