IP Library Patent Application 17495536
Patent Application
App. No. 17/495,536

ENERGY CAPTURE DEVICE

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Quick Facts
Patent No.
US None
App. No.
17/495,536
Abstract

An energy capture device is disclosed. The energy capture device, notably, comprises a turbine and a static velocity increasing device, surrounded by an enclosure. The turbine is configured to receive air that has been sped up by the static velocity increasing device. The turbine is then able to convert the energy of fluid movement into electricity.

Claims (36)

1 . An energy capture device, comprising:

a turbine having a receiving end, an exhaust, and a rotational means for producing energy disposed therebetween,

wherein the rotational means for producing energy produces energy by air passing through the turbine;

a static velocity increasing device having a first end proximate to and in fluid communication with the turbine, and a second end, the first end having a first size and the second end having a second size, the second size being larger than the first size; and

a fan in fluid communication with the turbine,

wherein the fan is configured to accelerate a velocity of air in fluid communication therewith by pushing the air through the fan and towards the turbine.

2 . The energy capture device of claim 1 , wherein the fan is in fluid communication with air exhausted from the exhaust of the turbine.

3 . The energy capture device of claim 1 , further comprising an inverter and a turbine controller, each of which are configured such that the inverter and the turbine controller are in electronic communication with the turbine.

4 . The energy capture device of claim 3 , further comprising a battery, configured such that the battery is in electronic communication with the inverter and the turbine.

5 . The energy capture device of claim 4 , wherein the battery is further configured such that it is in electronic communication with the fan.

6 . The energy capture device of claim 5 , further comprising a solar panel, configured such that the solar panel is in electronic communication with the inverter and the battery.

7 . The energy capture device of claim 6 , further comprising a rack, upon which the turbine, the static velocity increasing device, the fan, the inverter, the turbine controller, the solar panel, and the battery are mounted.

8 . The energy capture device of claim 7 , wherein the energy capture device is located proximately to and in fluid communication with an air exhaust of a building.

9 . An energy capturing system, comprising a plurality of energy capture devices, each device comprising,

a turbine having a receiving end, an exhaust, and a rotational means for producing energy disposed therebetween,

wherein the rotational means for producing energy produces energy by air passing through the turbine;

a static velocity increasing device having a first end proximate to and in fluid communication with the turbine, and a second end, the first end having a first size and the second end having a second size, the second size being larger than the first size, and

a fan in fluid communication with the turbine,

wherein the fan is configured to accelerate a velocity of air in fluid communication therewith by pushing the air through the fan and towards the turbine

wherein the energy capturing system is mounted upon a rack.

10 . The energy capturing system of claim 9 , further comprising an enclosure disposed such that it surrounds the rack, wherein at least one wall of the enclosure is a mesh screen.

11 . The energy capturing system of claim 10 , wherein the energy capturing system is located proximately to, and in fluid communication with an exhaust to a building.

12 . The energy capturing system of claim 9 , wherein the turbine is a plurality of turbines connected in series.

13 . An energy capture device, comprising:

a plurality of turbines, each having a receiving end, an exhaust, and a rotational means for producing energy disposed therebetween,

wherein the rotational means for producing energy produces energy by air passing through the turbine,

and wherein the plurality of turbines is connected in series;

a static velocity increasing device having a first end proximate to and in fluid communication with the plurality of turbines, and a second end, the first end having a first size and the second end having a second size, the second size being larger than the first size; and

a fan in fluid communication with the plurality of turbines,

wherein the fan is configured to accelerate a velocity of air in fluid communication therewith by pushing the air through the fan.

14 . The energy capture device of claim 13 , wherein the fan is in fluid communication with air exhausted from the exhaust of the turbine.

15 . The energy capture device of claim 14 , further comprising an inverter and a turbine controller, each of which are configured such that the inverter and the turbine controller are in electronic communication with the turbine.

16 . The energy capture device of claim 15 , further comprising a battery, configured such that the battery is in electronic communication with the inverter and the turbine.

17 . The energy capture device of claim 16 , wherein the battery is further configured such that it is in electronic communication with the fan.

18 . The energy capture device of claim 17 , further comprising a solar panel, configured such that the solar panel is in electronic communication with the inverter and the battery.

19 . The energy capture device of claim 18 , further comprising a rack, upon which the turbine, the static velocity increasing device, the fan, the inverter, the turbine controller, the solar panel, and the battery are mounted.

Assignments (2)
SECURITY INTEREST Recorded Nov 18, 2025
From: ALTERNATIVE SUSTAINABILITY LLC; ALTERNATIVE SUSTAINABILITY IP LLC; ALTERNATIVE SUSTAINABILITY MANUFACTURING LLC
To: DARBY GROUP COMPANIES, INC.
Reel/Frame 072947/0079 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2022
From: STEVENS, JOHN A
To: ALTERNATIVE SUSTAINABILITY IP LLC
Reel/Frame 060815/0471 →