Compositions and methods for plaster-based thermal grout

US12351518B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12351518-B2
Application numberUS-202318540358-A
CountryUS
Kind codeB2
Filing dateDec 14, 2023
Priority dateDec 14, 2023
Publication dateJul 8, 2025
Grant dateJul 8, 2025

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A grout composition includes a grout binder comprising calcium sulfate, the grout binder constituting from about 25.0 weight percent to about 99.0 weight percent of the grout composition, and at least one thermal conductivity additive comprising graphite. A grout formed from the grout composition has a thermal conductivity greater than about 1.0 W/m·K. Related grout slurries formed from the grout composition, grouts, and methods of grouting a wellbore are also disclosed.

First claim

Opening claim text (preview).

What is claimed is: 1. A grout composition, comprising: a grout binder comprising calcium sulfate, the grout binder constituting from about 25.0 weight percent to about 99.0 weight percent of the grout composition; at least one thermal conductivity additive comprising graphite; and at least one retarder comprising borax and ethylenediamine tetra(methylene phosphonic acid), wherein a ratio of borax to ethylenediamine tetra(methylene phosphonic acid) in the at least one retarder is within a range of from about 5.0:1.0 to about 10.0:1.0. 2. The grout composition of claim 1 , wherein the calcium sulfate comprises calcium sulfate hemihydrate. 3. The grout composition of claim 1 , wherein the calcium sulfate constitutes at least about 60.0 weight percent of the grout composition. 4. The grout composition of claim 1 , wherein a weight percent of the graphite in the grout composition is within a range of from about 0.1 weight percent to about 75.0 weight percent. 5. The grout composition of claim 1 , wherein the graphite constitutes greater than about 30.0 weight percent of the grout composition. 6. The grout composition of claim 1 , wherein the grout binder further comprises at least one of bentonite or sand. 7. The grout composition of claim 1 , wherein the grout composition is formulated and configured to, when mixed with water to form a grout, forms a grout exhibiting a modulus of elasticity within a range of from about 2.0 GPa to about 8.0 GPa. 8. The grout composition of claim 1 , wherein a ratio of the calcium sulfate to the graphite is within a range of from about 1.5:1.0 to about 2.5:1.0. 9. A grout slurry composition, comprising: water; at least one grout binder comprising at least about 50 weight percent calcium sulfate; at least one thermal conductivity additive comprising graphite, wherein the grout slurry composition has a density within a range of from about 1,050 kg/m 3 to about 1,450 kg/m 3 and a viscosity within a range of from about 10 cP to about 1,000 cP at about 25° C.; and at least one retarder comprising borax and ethylenediamine tetra(methylene phosphonic acid), wherein the at least one retarder is within a range of from about 0.01 weight percent to about 4.0 weight percent based on the grout slurry composition not including the water. 10. The grout slurry of claim 9 , wherein a density of the grout slurry is within a range of from about 1,375 kg/m 3 to about 1,440 kg/m 3 . 11. The grout slurry of claim 9 , wherein a thermal conductivity of a grout formed from the grout slurry is within a range of from about 1.73 W/m·K (about 1.0 BTU/hr·ft·° F.) to about 5.19 W/m·K (about 3.0 BTU/hr·ft·° F.). 12. The grout slurry of claim 9 , wherein a weight percent of the graphite not including the water is within a range of from about 10.0 weight percent to about 20.0 weight percent. 13. The grout slurry of claim 9 , wherein the calcium sulfate comprises calcium sulfate hemihydrate. 14. A method of grouting a shallow geothermal wellbore, the method comprising: pumping a grout slurry in a wellbore extending through an earth formation between surfaces of the earth formation defining the wellbore and a thermal transfer pipe, the grout slurry having a density within a range of from about 1,050 kg/m 3 to about 1,450 kg/m 3 and comprising: water; at least about 25.0 weight percent calcium sulfate hemihydrate based on the grout slurry composition not including the water; and at least about 10.0 weight percent graphite based on the grout slurry composition not including the water; at least one retarder comprising borax and ethylenediamine tetra(methylene phosphonic acid), wherein a ratio of borax to ethylenediamine tetra(methylene phosphonic acid) in the at least one retarder is within a range of from about 5.0:1.0 to about 10.0:1.0; and setting the grout slurry to form a grout having a thermal conductivity within a range of from about 1.0 W/m·K to about 10.0 W/m·K. 15. The method of claim 14 , wherein pumping a grout slurry in a wellbore comprises pumping a grout slurry comprising at least about 70.0 weight percent based on the grout slurry composition not including the water calcium sulfate hemihydrate in the wellbore.

Assignees

Inventors

Classifications

  • Grouts, e.g. injection mixtures for cables for prestressed concrete · CPC title

  • Calcium sulfate hemi-hydrate with a specific crystal form · CPC title

  • for the density · CPC title

  • for the thermal conductivity, e.g. K-factors · CPC title

  • for the viscosity · CPC title

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What does patent US12351518B2 cover?
A grout composition includes a grout binder comprising calcium sulfate, the grout binder constituting from about 25.0 weight percent to about 99.0 weight percent of the grout composition, and at least one thermal conductivity additive comprising graphite. A grout formed from the grout composition has a thermal conductivity greater than about 1.0 W/m·K. Related grout slurries formed from the gro…
Who is the assignee on this patent?
Schlumberger Technology Corp
What technology area does this patent fall under?
Primary CPC classification C09K8/467. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jul 08 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).