IP Library › Granted Patent US 12,049,752
Granted Patent B2
US 12,049,752 · App. 17/743,746 · Granted Jul 30, 2024

Adaptive building envelopes

Inventor: Hanan Tufashiey (Greenfield, IN)
E04B1/34B01D29/01C02F1/001A01G31/00C02F2103/001C02F2201/009H02S20/22
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12,049,752
App. No.
17/743,746
Granted
Jul 30, 2024
Kind
B2
Abstract

Adaptive buildings and building envelopes having a system of structural members which also function as one or more selectively independent fluidic transport systems. Fluids to be transported such as air, rainwater, potable water, irrigation water, and/or gray water, are moved about the adaptive buildings via the various fluidic transport systems to locations disposed about the adaptive buildings where they are used as needed. Such fluids are also selectively filtered and cleaned by a plurality of filter plate systems disposed about the structure.

Claims (74)

1. An adaptive building structure for providing structural support and fluidic transport, comprising:

an upper portion having a frustoconical shape;

a lower portion;

a middle portion operationally connected between the upper portion and the lower portion;

a first fluidic transport network extending from the lower portion to the upper portion, wherein the first fluidic transport network is hollow to transport a first fluid;

a second fluidic transport network extending from the lower portion to the upper portion, wherein the second fluidic transport network is hollow to transport a second fluid;

wherein the first fluid and the second fluid are different fluids;

wherein the first fluid is rainwater;

a rainwater collector operationally connected to the first fluidic transport network;

wherein the first fluidic transport network and the second fluidic transport network are mechanically connected together to provide structural support;

wherein the first fluidic transport network and the second fluidic transport network are fluidically isolated from one another to inhibit fluidic communication; and

a first filter plate operationally connected to the first fluidic transport network to filter the first fluid.

2. The adaptive building structure of claim 1 , further comprising:

wherein the first fluidic transport network is operationally connected to a fluidic storage tank disposed therein; and

at least one pump fluidically connected to the first fluidic transport network capable of pumping the first fluid from the fluidic storage tank to the upper portion.

3. The adaptive building structure of claim 1 , wherein the second fluidic transport network is configured to transport one of rainwater, ground water, gray water, surface water, and combinations thereof.

4. The adaptive building structure of claim 1 , wherein the second fluidic transport network is configured to transport air from the lower portion to the upper portion of the adaptive building structure.

5. The adaptive building structure of claim 4 , wherein the second fluidic transport network is fluidically connected to a second filter plate.

6. The adaptive building structure of claim 1 , further comprising:

at least one generally laterally disposed support structure operationally connected to the first fluidic transport network; and

wherein the at least one generally laterally disposed support structure includes at least one solar panel.

7. The adaptive building structure of claim 1 , further comprising:

at least one generally laterally disposed support structure operationally connected to the second fluidic transport network; and

wherein the at least one generally laterally disposed support structure includes at least one growing system selected from a hydroponic growing system, an aeroponic growing system, a vertical growing system, and combinations thereof.

8. The adaptive building structure of claim 7 , wherein water is provided to the at least one growing system on the at least one generally laterally disposed support structure from the second fluidic transport network.

9. The adaptive building structure of claim 1 , wherein:

the first fluidic transport network and the second fluidic transport network are mechanically connected together at a junction;

the junction has a filter plate structure;

the filter plate structure has a first side positioned along the first fluidic transport network;

the filter plate structure has a second side positioned along the second fluidic transport network;

the first side of the filter plate structure houses the first filter plate; and

the second side of the filter plate structure houses a second filter plate.

10. The adaptive building structure of claim 9 , further comprising:

a hollow structural member system extending into the filter plate structure proximal to the first filter plate and the second filter plate;

wherein the second filter plate is configured to filter the second fluid; and

wherein the hollow structural member system is configured to introduce air to aerate the first fluid and the second fluid to promote filtering.

11. The adaptive building structure of claim 1 , further comprising:

a lateral support structure operationally connected to the first fluidic transport network;

wherein the lateral support structure extends in a general lateral direction;

wherein the first fluidic transport network includes a first series of first hollow structural members configured to transport the first fluid;

wherein the first hollow structural members are hollow;

wherein the second fluidic transport network includes a second series of second hollow structural members configured to transport the second fluid;

wherein the second hollow structural members are hollow; and

wherein the first fluidic transport network and the second fluidic transport network are fluidically isolated from one another to inhibit fluidic communication between the first hollow structural members and the second hollow structural members.

12. An adaptive building exoskeleton for providing structural support and fluidic transport, comprising:

at least one fluidic transport network defining an interconnected upper, generally frustoconical portion, a lower portion, and a middle portion operationally connected to the upper portion and to the lower portion;

at least one laterally disposed support structure operationally connected to the at least one fluidic transport network;

wherein the at least one fluidic transport network includes a first fluidic transport network and a second fluidic transport network;

a rainwater collector operationally connected to the first fluidic transport network;

wherein the first fluidic transport network and the second fluidic transport network are mechanically connected together at a junction;

wherein the junction has a filter plate structure;

wherein the filter plate structure has a first side positioned along the first fluidic transport network;

wherein the first side of the filter plate structure houses one or more first filter plates;

wherein the first filter plates are configured to filter rainwater from the rainwater collector;

wherein the filter plate structure has a second side positioned along the second fluidic transport network;

wherein the second side of the filter plate structure houses one or more second filter plates; and

wherein the first filter plates and the second filter plates are configured for removal from the filter plate structure to facilitate cleaning.

13. The adaptive building exoskeleton of claim 12 , further comprising a turbine operationally connected to the rainwater collector for converting potential energy into electrical energy.

14. The adaptive building exoskeleton of claim 12 , further comprising:

wherein the first fluidic transport network is operationally connected to a fluidic storage tank disposed therein; and

at least one pump fluidically connected to the first fluidic transport network capable of pumping the first fluid from the fluidic storage tank to the upper portion.

15. The adaptive building exoskeleton of claim 12 , wherein the second fluidic transport network is configured to transport one of rainwater, ground water, gray water, surface water, and combinations thereof.

16. The adaptive building exoskeleton of claim 12 , wherein the second fluidic transport network is configured to transport air from the lower portion to the upper portion of the adaptive building exoskeleton.

17. The adaptive building exoskeleton of claim 12 , further comprising:

at least one generally laterally disposed support structure operationally connected to the first fluidic transport network; and

wherein the at least one generally laterally disposed support structure includes at least one solar panel.

18. The adaptive building exoskeleton of claim 12 , further comprising:

at least one generally laterally disposed support structure operationally connected to the first fluidic transport network; and

wherein the at least one generally laterally disposed support structure includes at least one growing system selected from a hydroponic growing system, an aeroponic growing system, a vertical growing system, and combinations thereof.

19. The adaptive building exoskeleton of claim 18 , wherein water is provided to the at least one growing system on the generally laterally disposed support structure from the first fluidic transport network.

20. The adaptive building exoskeleton of claim 12 , further comprising:

a hollow structural member system extending into the filter plate structure proximal to the first filter plates and the second filter plates;

wherein the second filter plates are configured to filter groundwater; and

wherein the hollow structural member system is configured to introduce air to aerate the rainwater and the groundwater to promote purification.

Continuity (2)
Provisional Application 63187963 · May 13, 2021
Related Publication 20220364352A1 · Nov 17, 2022