Thermal sensing system

US9766133B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9766133-B2
Application numberUS-201314079065-A
CountryUS
Kind codeB2
Filing dateNov 13, 2013
Priority dateNov 30, 2012
Publication dateSep 19, 2017
Grant dateSep 19, 2017

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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 temperature measurement system for a gasifier may employ a first stage gasifier with a refractory wall that defines a first stage gasifier volume. A protruding refractory brick may protrude from the first stage refractory wall and into a gaseous flow path of the first stage gasifier volume. The temperature sensor may reside completely through the refractory wall, which may be a plurality of brick layers, except for a tip end of a temperature sensor that may reside in a blind or non-through hole within the protruding refractory brick. The protruding refractory brick protrudes beyond a normal wall surface of the plurality of brick layers that defines the first stage gasifier volume. The protruding refractory brick may have a face that forms an angle that is not 90 degrees, such as 45 degrees, relative to the gaseous flow path of the fluid stream through the first stage gasifier volume.

First claim

Opening claim text (preview).

What is claimed is: 1. A temperature measurement system for a gasifier comprising: a refractory wall; a thermal sensor with a temperature sensing tip end that resides completely within the refractory wall; and a protruding refractory brick as part of the refractory wall, wherein the protruding refractory brick surrounds the temperature sensing tip in a blind hole where the protruding refractory brick forms an end wall; wherein the protruding refractory brick completely surrounds a tip end of the thermal sensor and resides in a fluid stream of the gasifier. 2. The temperature measurement system according to claim 1 , further comprising: a protruding refractory brick first face that faces into the fluid stream of the gasifier. 3. The temperature measurement system according to claim 2 , wherein the protruding refractory brick first face generally faces upstream relative to the fluid stream. 4. The temperature measurement system according to claim 3 , wherein the protruding refractory brick first face generally faces an angle that is not 90 degrees relative to a general flow path of the fluid stream. 5. The temperature measurement system according to claim 4 , wherein the protruding refractory brick further comprising: a protruding refractory brick second face that contacts a second refractory brick that forms a boundary of a first stage gasifier area. 6. The temperature measurement system according to claim 5 , further comprising: a protruding refractory brick third face that contacts a third refractory brick that forms a boundary of a first stage gasifier area. 7. The temperature measurement system according to claim 6 , further comprising: a protruding refractory brick fourth face that is generally parallel to the fluid stream of the gasifier. 8. The temperature measurement system according to claim 7 , wherein the protruding refractory brick first face has a first edge that contacts the second refractory brick, and the protruding refractory brick first face shares a second edge with the protruding refractory brick fourth face. 9. A temperature measurement system for a gasifier comprising: a first stage gasifier having a first stage refractory wall that defines a first stage gasifier volume; a second stage gasifier having a second stage refractory wall that defines a second stage gasifier volume; a protruding refractory brick that protrudes from the first stage refractory wall and toward the first stage gasifier volume; and a temperature sensor having a temperature sensing tip that resides within the protruding refractory brick in a blind hole where the protruding refractory brick forms an end wall. 10. The temperature measurement system according to claim 9 , further comprising: a plurality of brick layers that together form the first stage refractory wall, wherein the temperature sensor resides completely through the plurality of brick layers, except the protruding refractory brick. 11. The temperature measurement system according to claim 10 , wherein the protruding refractory brick protrudes from the plurality of brick layers and into the first stage gasifier volume. 12. The temperature measurement system according to claim 11 , the protruding refractory brick further comprising: a protruding refractory brick first face that forms an angle that is not 90 degrees relative to a general flow path of the fluid stream through the first stage gasifier volume. 13. The temperature measurement system according to claim 11 , wherein the protruding refractory brick first face forms an angle of approximately 45 degrees relative to a general flow path of the fluid stream through the first stage gasifier volume. 14. The temperature measurement system according to claim 13 , wherein the protruding refractory brick first face forms an angle of approximately 45 degrees relative to a general flow path of the fluid stream through the first stage gasifier volume. 15. The temperature measurement system according to claim 14 , wherein the temperature sensing tip resides in a portion of the protruding refractory brick that protrudes into the general flow path of the fluid stream through the first stage gasifier volume. 16. The temperature measurement system according to claim 15 , wherein the protruding refractory brick defines a blind hole within which the temperature sensing tip of the temperature sensor resides. 17. A temperature measurement system for a gasifier comprising: a first stage gasifier having a first stage refractory wall that defines a first stage gasifier volume; a second stage gasifier having a second stage refractory wall that defines a second stage gasifier volume; a temperature sensor having a temperature sensing tip; a protruding refractory brick that protrudes from the first stage refractory wall and toward the first stage gasifier volume, the protruding refractory brick defining a blind hole within which the temperature sensing tip of the temperature sensor resides where the protruding refractory brick forms an end wall. 18. The temperature measurement system according to claim 17 , further comprising: a protective metal sleeve surrounding the temperature sensor, wherein the temperature sensing tip of the temperature sensor resides in a portion of the protruding refractory brick that protrudes into a general flow path of the fluid stream through the first stage gasifier volume.

Assignees

Inventors

Classifications

  • of acid contaminants, e.g. acid gas removal · CPC title

  • combined with waste-heat boilers · CPC title

  • Physical processes, e.g. shredding, comminuting, chopping, sorting · CPC title

  • Controlling or regulating the gasification process · CPC title

  • with one stream being synthesis gas · CPC title

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What does patent US9766133B2 cover?
A temperature measurement system for a gasifier may employ a first stage gasifier with a refractory wall that defines a first stage gasifier volume. A protruding refractory brick may protrude from the first stage refractory wall and into a gaseous flow path of the first stage gasifier volume. The temperature sensor may reside completely through the refractory wall, which may be a plurality of b…
Who is the assignee on this patent?
Lummus Technology Inc
What technology area does this patent fall under?
Primary CPC classification G01K1/14. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Sep 19 2017 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).