Electrical power plant
Abstract
An Electrical Power Plant (EPP) derives power through a semi-cone roof and platform serving as a source of distributed electrical/storage energy. Electric power is generated through renewable resource systems mounted upon and within the semi-cone roof. Two paths generate electrical power/heat. A Direct path uses solar panels and wind turbines. An Indirect path has a Compact Solar Heat Generator (CSHG) that generates electrical power and/or heat through a High Temperature Electrolysis (HTE) system to produce hydrogen and oxygen which are fed into Fuel Cells to produce electrical power, pure water and waste heat. The waste heat and pure water are then fed into the Computer Distributer Controller Tank (CDCT) as part of cogenerated energy. These paths are the power input to the EPP that provides a distributed source of electrical/storage power. The CDCT also provides a path for hot water to the Hot Water Heater or Boiler.
Claims
exact text as granted — not AI-modified1 . An electrical power plant, comprising:
a direct power generation system, including:
a vertical wind turbine;
a horizontal wind turbine; and
photovoltaic panels;
an indirect power generation system, including:
a compact solar heat generator;
a solar high-temperature electrolysis chamber, configured to electrolyze water to produce hydrogen and oxygen; and
a Fuel Cell, configured to be fueled by the hydrogen and oxygen from the solar high-temperature electrolysis chamber; and
a CIMC power plant.
2 . The electrical power plant of claim 1 , wherein the functions of the CIMC power plant include consolidating all the electrical power generation systems into a single unit to provide power to the local grid.
3 . The electrical power plant of claim 1 , wherein the functions of the CIMC power plant include tying together the internal working of the EPP, as well as treating the external components properly.
4 . The electrical power plant of claim 1 , wherein the functions of the CIMC power plant include monitoring the performance of all generator systems and report malfunctions of these systems; and
5 . The electrical power plant of claim 1 , wherein the functions of the CIMC power plant include controlling the system to allow the operator to make any changes necessary to insure proper operation of the system.
6 . The electrical power plant of claim 1 , wherein the photovoltaic panels are mounted on the roof of the structure on an elevated metal frame with an option for tracking the sun.
7 . The electrical power plant of claim 1 , wherein electrical power from the CIMC power plant is transmitted to users near the electrical power plant.
8 . The electrical power plant of claim 1 , wherein electrical power from the CIMC power plant is transmitted onto the main power grid.
9 . The electrical power plant of claim 1 , wherein the compact solar heat generator comprises a multiplicity of parabolic troughs, wherein each parabolic trough concentrates light onto a collecting pipe, thereby generating hot water.
10 . The electrical power plant of claim 9 , wherein the hot water from the collecting pipes is directed to a computer-driven controller tank (CDCT).
11 . The electrical power plant of claim 9 , wherein the hot water from the CDCT is directed to a pressurized boiler and/or hot water tank.
12 . The electrical power plant of claim 9 , wherein the hot water from the CDCT is directed to the solar high-temperature electrolysis chamber.
13 . An electrical power plant, comprising:
a direct power generation system, including:
a vertical wind turbine;
a horizontal wind turbine; and
photovoltaic panels, wherein the photovoltaic panels are mounted on the roof of the structure on an elevated metal frame with an option for tracking the sun;
an indirect power generation system, including:
a compact solar heat generator;
a solar high-temperature electrolysis chamber, configured to electrolyze water to produce hydrogen and oxygen; and
a fuel cell, configured to be fueled by the hydrogen and oxygen from the solar high-temperature electrolysis chamber; and
a CIMC power plant, wherein the functions of the CIMC power plant include:
consolidating all the electrical power generation systems into a single unit to provide power to local users;
tying together the internal working of the EPP, as well as treating the external components properly;
monitoring the performance of all generator systems and report malfunctions of these systems; and
controlling the system to allow the operator to make any changes necessary to insure proper operation of the system.
14 . The electrical power plant of claim 13 , wherein electrical power from the CIMC power plant is transmitted to users near the electrical power plant and/or onto the main power grid.
15 . The electrical power plant of claim 13 , wherein the compact solar heat generator comprises a multiplicity of parabolic troughs, wherein each parabolic trough concentrates light onto a collecting pipe, thereby generating hot water, and wherein the hot water from the collecting pipes is directed to a computer-driven controller tank (CDCT).
16 . The electrical power plant of claim 15 , wherein the hot water from the CDCT is directed to a pressurized boiler and/or hot water tank.
17 . The electrical power plant of claim 15 , wherein the hot water from the CDCT is directed to the solar high-temperature electrolysis chamber.Join the waitlist — get patent alerts
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