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Power for MARA
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ElQuator Technology for MARA
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s STAND-ALONE MICRO-HYDRO SYSTEM CROSS SECTIONMICRO-HYDRO SYSTEM CROSS SECTIONMICRO-HYDRO SYSTEM CRO
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POWERING MARA WITH HYDRO & WIND ENERGY
Reliable & Sustainable Energy Source by
Our Stand-alone Micro-Hydro can stand on its own and able to produce any amount of energy as it designed for.
The system is simple as described in Wikipedia as pump hydro. There is mathematics in this that needs to be abide - power in and power out minus lost in transmission is the well-known factor. We use small amounts of energy to produce more energy and take advantage of the kinetic energy of water To make it simple in this resume, we use from 22% to 28% of the total power produced to have the 100% outcome from the main generator. We drop the water from a minimum height of 15 meters and at an angle of 35 degrees. The water run along a pipe size dimensioned to the speci " cations for the outcome. The pipes have small impellers along with it to produce DC power to storage. When the water hits the main Pelton turbine, the turbine will rotate. The rotations go to the generator that produces AC power into either a synchronizer or controller, transformer and then to the grid. The synchronizer or controller use to make sure the HZ, AMP, and voltage are the required speci " cations. The water reaches in the upper reservoir after leaving the main turbine Pelton. From here it will be guided to the 4 + 2 meter Pryter impeller gate system, before sending it back to the top reservoir at 15 meters up. The Pryter Impleller gate system is only for the power to return to the pump systems. It is when 22% to 28% of the power produced is used back to push the water back into the reservoir for the next cycle. It also acts as the backup system when needed if there is a break down to the system. On the other hand, the Stand-alone Micro-hydro system has a lot of components. The main parts of the system are the AC generators and AC pumps, metal pipes in a various dimension and length; Pelton and Pryter impeller are the key part of the system. Size of the pipes matches the head and water speed. Control unit is custom made depends to project. H beam and ankle iron are 80% of the system's structure which can be recycled easily.
SYSTEM WORLD for the
MINIMAL SPACING
Small footprint with high kW output equates to an extremely favorable size to power ratio. This negates the need to own or acquire huge land space.
Plants and trees are the natural carbon capture tools PRESERVING NATUREAND FARMLAND Leave the land and nature as it should be – A windmill is suitable anywhere, be it on the farmland, rural or mountainous landscape.
One location, two outcome – Sharing the same space in producing food and power. More greens for the environment – World will be able to reduce carbon emission naturally if we do not sacrifice our nature for polluted energy production systems.
Saving on high-cost power delivering – Minimizing investment for power transfer cables and facilities. Small footprint with high yield – Maximizing space for efficient energy production. Intelligent placement – Able to deliver power as and where it is needed.
STRATEGIC PLACEMENT
Be there, be near
GO SMALL
Easy maintenance – high accessibility for easy reach. Easy installation – install at any location without use of heavy machinery. Fit anywhere where power is needed – suitable in any geographical location that have wind speed.
STORAGE TECHNINONLOVGAYTIVE STORAGE TECHNOLOGY
The world is better with the latest technology in energy storage
Non-lithium power storage means less negative environmental impact. Disposal of battery cells are flammable and more toxic, harmful to the environment and life. Vanadium Redox Flow Battery which have a longer cycle of 20,000 charges/discharge, is a great substitute for energy storage with comparatively much better performance. Toxicity of oxides can be neutralized with a ratio of 8liter of salts : 1 liter of Vanadium electrolytes.
WIND >Page 1 Page 2 Page 3 Page 4 Page 5 Page 6 Page 7 Page 8 Page 9 Page 10 Page 11 Page 12
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