IP Library Granted Patent US 12710200
Granted Patent B2
US 12710200 · App. 19/277,500 · Granted Aug 18, 2026

Solar assisted electricity generating unit

Inventor: Ambokile Adio (Point Fortin, TT)
Assignee: ADIO INNOVATIVE LIMITED
F24S10/40F24S23/77F24S30/40F24S60/30F24S80/52F24S2023/84F24S2080/503
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Quick Facts
Patent No.
US 12710200
App. No.
19/277,500
Granted
Aug 18, 2026
Kind
B2
Abstract

The technology described herein relates to, among other topics, a power system using solar assisted equipment that significantly reduces the amount of fossil fuels burned in the energy production process. The technology described in this disclosure relates to providing a constant flow of thermal heated water to a boiler (e.g., heated using a fossil fuel), which in turn provides steam to operate an electricity generator. The thermal heated water raises the temperature of the water used for creating steam thus reducing the overall boil time (and consequently reducing the amount of time fossil fuels are being consumed).

Claims (53)

1 . A system configured to generate electricity, the system comprising:

a first storage tank configured to hold a liquid;

a pre-heat system;

a second storage tank configured to hold the liquid;

a boiler; and

an energy source, wherein the pre-heat system comprises:

one or more pre-heat tanks for heating the liquid;

an encasing at least partially surrounding the one or more pre-heat tanks; and

one or more support components configured to support the encasing and cause the encasing to move, wherein

one or more input pipes connect the first storage tank to the pre-heat system,

one or more output pipes connect the pre-heat system to the second storage tank,

the first storage tank provides the liquid to the pre-heat system using the one or more input pipes, and

the pre-heat system is configured to heat the liquid and provide the heated liquid to the second storage tank using the one or more output pipes.

2 . The system of claim 1 , wherein the encasing includes a cuboid structure.

3 . The system of claim 2 , wherein the cuboid structure includes at least one wall made of a transparent material configured to allow light into the encasing.

4 . The system of claim 2 , wherein the cuboid structure includes at least one wall made of a heat generating material configured to reflect light within the encasing and generate heat.

5 . The system of claim 1 , wherein the one or more support components include cone-shaped supports configured to elevate the encasing and/or cause the encasing to move.

6 . The system of claim 5 , wherein the cone-shaped supports elevate the encasing at a 45° angle to maximize light input to the encasing.

7 . The system of claim 1 , wherein the encasing includes a spherical structure.

8 . The system of claim 1 , wherein the encasing includes a pyramidal structure.

9 . The system of claim 1 , further comprising:

at least one boiler; and

at least one fuel source.

10 . The system of claim 1 , further comprising:

at least one turbine; and

at least one generator.

11 . A system configured to generate heated water, the system comprising:

a first storage tank configured to hold water;

a pre-heat system; and

a second storage tank configured to hold the water, wherein the pre-heat system comprises:

one or more pre-heat tanks for heating the water;

an encasing at least partially surrounding the one or more pre-heat tanks; and

one or more support components configured to support the encasing and cause the encasing to move, wherein

one or more input pipes connect the first storage tank to the pre-heat system,

one or more output pipes connect the pre-heat system to the second storage tank,

the first storage tank provides the water to the pre-heat system using the one or more input pipes, and

the pre-heat system is configured to heat the water and provide the heated water to the second storage tank using the one or more output pipes.

12 . The system of claim 11 , wherein the encasing includes a cuboid structure.

13 . The system of claim 12 , wherein the cuboid structure includes at least one wall made of a transparent material configured to allow light into the encasing.

14 . The system of claim 12 , wherein the cuboid structure includes at least one wall made of a heat generating material configured to reflect light within the encasing and generate heat.

15 . The system of claim 11 , wherein the one or more support components include cone-shaped supports configured to elevate the encasing and/or cause the encasing to move.

16 . A pre-heat system configured to heat water, the pre-heat system comprising:

one or more pre-heat tanks for heating the water;

an encasing at least partially surrounding the one or more pre-heat tanks; and

one or more support components configured to support the encasing and cause the encasing to move, wherein

one or more input pipes connect a first storage tank to the pre-heat system,

one or more output pipes connect the pre-heat system to a second storage tank,

the water is provided to the pre-heat system using the one or more input pipes, and

the pre-heat system is configured to heat the water and provide the heated water to the second storage tank using the one or more output pipes.

17 . The pre-heat system of claim 16 , wherein the encasing includes a cuboid structure.

18 . The pre-heat system of claim 17 , wherein the cuboid structure includes at least one wall made of a transparent material configured to allow light into the encasing.

19 . The pre-heat system of claim 17 , wherein the cuboid structure includes at least one wall made of a heat generating material configured to reflect light within the encasing and generate heat.

20 . The pre-heat system of claim 16 , wherein the one or more support components include cone-shaped supports configured to elevate the encasing and/or cause the encasing to move.