Thermal battery heat transfer coil
US-2024401818-A1 · Dec 5, 2024 · US
US9834364B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9834364-B2 |
| Application number | US-201414778251-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 18, 2014 |
| Priority date | Mar 18, 2013 |
| Publication date | Dec 5, 2017 |
| Grant date | Dec 5, 2017 |
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Disclosed is a storage tank for molten salts, preferably of the thermocline type. The tank is provided with an insulation on the inside, which is provided by molten salts captured and retained in an appropriate metal structure. The metal structure has openings allowing molten salts to flow into it, and may consist of metal supports that hold elements which allow retaining molten salts, such as a structured packing, metal boxes, or gutter wall.
Opening claim text (preview).
The invention claimed is: 1. A storage tank for molten salts, said storage tank comprising an annular metal wall defining a first inner surface and, adjacent to and substantially parallel to said first inner surface, a metal structure defining a second inner surface, with said second inner surface defining the tank's storage volume for molten salts; and wherein a compartmentalized insulation space comprising a plurality of separate void spaces is present between said first and second surfaces; wherein the second inner surface is provided with a plurality of openings configured to allow molten salts to flow from said storage volume into said plurality of void spaces in said insulation space; wherein the metal structure comprises a plurality of annular supports spaced apart over the length of the wall, said annular supports carrying elements providing the void spaces; and (a) wherein the elements are steel boxes, said steel boxes comprising at least one hole for the entry of molten salts; or (b) wherein the elements comprise an annular vertical wall positioned on the annular supports, with the vertical walls taken together forming the second inner surface, and the annular supports and vertical walls form a plurality of annular gutters, with the height of the verticals walls being smaller than the distance between two adjacent annular supports. 2. A storage tank according to claim 1 , wherein the plurality of void spaces is arranged so as to result in a compartmentalization of the insulation space into compartments bordering on the second inner surface. 3. The storage tank of claim 2 wherein said storage tank is configured for vertical orientation in operation and has a bottom and a top; and wherein the insulation space has different compartments from bottom to top. 4. A storage tank according to claim 1 , wherein molten salts are retained in said insulation space. 5. A storage tank according to claim 4 , being of the thermocline type comprising hot and cold molten salts, the hot molten salts having a temperature between 450° C. and 550° C. and the cold molten salts having a temperature between 200° C. and 300° C. 6. A storage tank according to claim 4 , wherein the molten salts are selected from the group consisting of sodium nitrate, sodium nitrite, potassium nitrate, and mixtures thereof. 7. A storage tank according to claim 6 , wherein the molten salts are a mixture of sodium nitrate and potassium nitrate. 8. A storage tank according to claim 4 , wherein molten salts are retained in void spaces. 9. A storage tank according to claim 1 , wherein an inert insulating material is present in said insulation space, in addition to the molten salts. 10. A method to insulate a molten salts storage tank holding molten salts in a storage volume, comprising the following steps: (1) provide the storage tank of claim 1 ; and (2) retain molten salts in a stagnant manner in the compartmentalized insulation space of the storage tank. 11. The storage tank of claim 1 wherein the elements are steel boxes, said steel boxes comprising at least one hole for the entry of molten salts. 12. The storage tank of claim 1 wherein the elements comprise an annular vertical wall positioned on the annular supports, with the vertical walls taken together forming the second inner surface, and the annular supports and vertical walls form a plurality of annular gutters, with the height of the verticals walls being smaller than the distance between two adjacent annular supports.
Thermal insulation; Thermal decoupling · CPC title
using liquid heat storage material · CPC title
provided with liquid material between double walls · CPC title
using molten salts or liquid metals · CPC title
Cross-Sectional Technologies · mapped topic
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