IP Library Patent Application 15406276
Patent Application
App. No. 15/406,276

THERMAL INSULATION COMPOSITE FOR SOLAR THERMAL TOWER, SOLAR THERMAL TOWER AND ENERGY GENERATION SYSTEM

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Patent No.
US None
App. No.
15/406,276
Abstract

A thermal insulation composite for thermally insulating a solar tower includes at least one thermal insulation layer and at least one thermally expandable layer is disclosed. Further disclosed is a solar tower and a solar thermal energy generation system including the thermal insulation composite. The solar thermal energy generation system uses concentrated solar energy to produce electrical energy.

Claims (52)

1 . A thermal insulation composite comprising:

a support layer;

a thermal insulation layer; and

a thermally expandable gasket member.

2 . The thermal insulation support layer of claim 1 , wherein the thermal insulation layer comprises a thermal insulation paper layer and a thermal insulation board layer.

3 . The thermal insulation support layer of claim 1 , comprising a retaining member.

4 . The thermal insulation composite of claim 3 comprising, in order:

said support layer;

said thermal insulation paper layer;

said thermal insulation board layer;

said thermally expandable gasket layer;

said retaining member; and

at least one elongated fastener passing through said support, paper, board and gasket layers and said retaining member.

5 . The thermal insulation composite of claim 4 , wherein said support layer comprises a support plate.

6 . The thermal insulation composite of claim 5 , wherein said support plate comprises a metal, a metal alloy or a composite material.

7 . The thermal insulation composite of claim 6 , wherein said metal alloy comprises steel.

8 . The thermal insulation composite of claim 6 , wherein said thermal insulation board comprises inorganic fibers selected from the group consisting of high alumina polycrystalline fibers, ceramic fibers, mullite fibers, glass fibers, biosoluble fibers, quartz fibers, silica fibers, and combinations thereof.

9 . The thermal insulation composite of claim 8 , wherein said high alumina polycrystalline fibers comprise the fiberization product of about 72 to about 100 weight percent alumina and about 0 to about 28 weight percent silica.

10 . The thermal insulation system of claim 8 , wherein said ceramic fibers comprise alumino-silicate fibers comprising the fiberization product of about 45 to about 72 weight percent alumina, and about 28 to about 55 weight percent silica.

11 . The thermal insulation composite of claim 8 , wherein said biosoluble fibers comprise magnesia-silica fibers comprising the fiberization product of about 65 to about 86 weight percent silica, from about 14 to about 35 weight percent magnesia, and about 5 weight percent of less impurities.

12 . The thermal insulation composite of claim 8 , wherein said magnesia-silica fibers comprise the fiberization product of about 70 to about 86 weight percent silica, about 14 to about 30 weight percent magnesia, and about 5 weight percent or less impurities.

13 . The thermal insulation composite of claim 12 , wherein said magnesia-silica fibers comprise the fiberization product of about 70 to about 80 weight percent silica, about 18 to about 27 weight percent magnesia, and 0 to 4 weight percent impurities.

14 . The thermal insulation composite of claim 8 , wherein said biosoluble fibers comprise calcia-magnesia-silica fibers comprising the fiberization product of about 45 to about 90 weight percent silica, greater than 0 to about 45 weight percent calcia, and greater than 0 to about 35 weight percent magnesia.

15 . The thermal insulation composite of claim 14 , wherein said calcia-magnesia-silica fibers comprise the fiberization product of about 60 to about 70 weight percent silica, from about 16 to about 35 weight percent calcia, and from about 4 to about 19 weight percent magnesia.

16 . The thermal insulation composite of claim 15 , wherein said calcia-magnesia-silica fibers comprise the fiberization product of about 61 to about 67 weight percent silica, from about 27 to about 33 weight percent calcia, and from about 2 to about 7 weight percent magnesia.

17 . The thermal insulation composite of claim 7 , wherein said thermal insulation paper comprises inorganic fibers selected from the group consisting of high alumina polycrystalline fibers, ceramic fibers, mullite fibers, glass fibers, biosoluble fibers, quartz fibers, silica fibers, and combinations thereof.

18 . The thermal insulation composite of claim 17 , wherein said high alumina polycrystalline fibers comprise the fiberization product of about 72 to about 100 weight percent alumina and about 0 to about 28 weight percent silica.

19 . The thermal insulation composite of claim 17 , wherein said ceramic fibers comprise alumino-silicate fibers comprising the fiberization product of about 45 to about 72 weight percent alumina, and about 28 to about 55 weight percent silica.

20 . The thermal insulation composite of claim 17 wherein said biosoluble fibers comprise magnesia-silica fibers comprising the fiberization product of about 65 to about 86 weight percent silica, from about 14 to about 35 weight percent magnesia, and about 5 weight percent of less impurities.

21 . The thermal insulation composite of claim 17 , wherein said magnesia-silica fibers comprise the fiberization product of about 70 to about 86 weight percent silica, about 14 to about 30 weight percent magnesia, and about 5 weight percent or less impurities.

22 . The thermal insulation composite of claim 21 , wherein said magnesia-silica fibers comprise the fiberization product of about 70 to about 80 weight percent silica, about 18 to about 27 weight percent magnesia, and 0 to 4 weight percent impurities.

23 . The thermal insulation composite of claim 17 , wherein said biosoluble fibers comprise calcia-magnesia-silica fibers comprising the fiberization product of about 45 to about 90 weight percent silica, greater than 0 to about 45 weight percent calcia, and greater than 0 to about 35 weight percent magnesia.

24 . The thermal insulation composite of claim 23 , wherein said calcia-magnesia-silica fibers comprise the fiberization product of about 60 to about 70 weight percent silica, from about 16 to about 35 weight percent calcia, and from about 4 to about 19 weight percent magnesia.

25 . The thermal insulation composite of claim 24 , wherein said calcia-magnesia-silica fibers comprise the fiberization product of about 61 to about 67 weight percent silica, from about 27 to about 33 weight percent calcia, and from about 2 to about 7 weight percent magnesia.

26 . The thermal insulation composite of claim 17 , wherein said thermally expandable gasket layer comprises inorganic fibers, intumescent material, and a binder.

27 . The thermal insulation composite of claim 26 , wherein said inorganic fibers are selected from the group consisting of high alumina polycrystalline fibers, ceramic fibers, mullite fibers, glass fibers, biosoluble fibers, quartz fibers, silica fibers, and combinations thereof.

28 . The thermal insulation composite of claim 27 , wherein said inorganic fibers comprise low biopersistant alkaline earth silicate wool fibers.

29 . The thermal insulation composite of claim 28 , wherein said intumescent material is selected from the group consisting of unexpanded vermiculite, expandable graphite, hydrobiotite, water-swelling tetrasilicic flourine mica, alkaline metal silicates, or mixtures thereof.

30 . The thermal insulation composite of claim 29 , wherein said intumescent material comprises unexpanded vermiculite.

31 . The thermal insulation composite of claim 30 , wherein said retaining member comprises a washer.

32 . A solar energy tower comprising:

a tower; and

at least one thermal insulation composite as claimed in claim 4 , wherein said thermal insulation composite is attached to the tower.

33 . A solar thermal power generation system comprising:

at least one heliostat;

a tower;

a solar energy receiver positioned near the top of said tower; and

at least one thermal insulation composite as claimed in claim 4 , wherein said thermal insulation composite is attached to the tower.

34 . The solar thermal power generation system of claim 31 , comprising a plurality of heliostats arranged in an array in a solar energy collection field.

35 . The solar thermal power generation system of claim 34 , wherein said plurality of heliostats are mirrors.

36 . The solar thermal power generation system of claim 35 , wherein said receiver comprises a water boiler.

37 . The solar thermal power generation system of claim 36 , wherein said water boiler is in fluid communication with a steam-powered turbine.

Assignments (9)
RELEASE OF FIRST LIEN SECURITY INTEREST IN PATENT COLLATERAL AT REEL/FRAME NO. 47909/0937 Recorded Oct 2, 2024
From: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
To: UNIFRAX I LLC
Reel/Frame 069103/0582 →
RELEASE OF SECURITY INTEREST IN PATENT COLLATERAL AT REEL/FRAME NO. 49014/0755 Recorded Oct 4, 2021
From: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
To: UNIFRAX I LLC
Reel/Frame 057710/0669 →
RELEASE OF SECOND LIEN SECURITY INTEREST RECORDED AT REEL 044393, FRAME 0273 Recorded Dec 17, 2018
From: GOLDMAN SACHS LENDING PARTNERS LLC
To: UNIFRAX I LLC
Reel/Frame 047940/0758 →
RELEASE OF FIRST LIEN SECURITY INTEREST RECORDED AT REEL 042166, FRAME 0201 Recorded Dec 15, 2018
From: GOLDMAN SACHS LENDING PARTNERS LLC
To: UNIFRAX I LLC
Reel/Frame 048919/0384 →
FIRST LIEN PATENT SECURITY AGREEMENT Recorded Dec 14, 2018
From: UNIFRAX I LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
Reel/Frame 047909/0937 →
SECOND LIEN PATENT SECURITY AGREEMENT Recorded Dec 14, 2018
From: UNIFRAX I LLC
To: MORGAN STANLEY SENIOR FUNDING, INC., AS COLLATERAL AGENT
Reel/Frame 049014/0755 →
SECURITY INTEREST Recorded Nov 7, 2017
From: UNIFRAX I LLC
To: GOLDMAN SACHS LENDING PARTNERS LLC, AS COLLATERAL AGENT
Reel/Frame 044393/0273 →
SECURITY INTEREST Recorded Apr 5, 2017
From: UNIFRAX I LLC
To: GOLDMAN SACHS LENDING PARTNERS LLC
Reel/Frame 042166/0201 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2017
From: FERNANDO, JOSEPH A; BRADLEY, BRIAN; WAZNY, GREG
To: UNIFRAX I LLC
Reel/Frame 041213/0386 →