US2018320905A1PendingUtilityA1

Hearth oven

Assignee: Jade Range LLCPriority: Dec 23, 2016Filed: Jul 3, 2018Published: Nov 8, 2018
Est. expiryDec 23, 2036(~10.4 yrs left)· nominal 20-yr term from priority
F24C 3/087F24C 3/128F24C 3/025A21B 1/40A21B 1/33
43
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Claims

Abstract

An oven is provided. The oven includes a housing comprising a baking surface and an enclosure. The baking surface extends within the housing and includes side apertures with a first plurality of in-shot burners that extend through each aperture, wherein during operation heated combustion gas from the burners is directed toward the roof of the enclosure during operation. The oven additionally includes a box disposed below the baking surface with an interior that is in thermal communication with the baking surface, wherein the box supports a burner that is oriented such that heated combustion gas from the burners flows through the box and a portion of the heat from combustion is transferred through the baking surface.

Claims

exact text as granted — not AI-modified
1 . An oven, comprising:
 a housing comprising a baking surface, right and left side walls, a rear wall and a roof collectively defining an enclosure, the housing further comprising an opening through a front wall of the housing to allow access to the enclosure,   wherein the baking surface extends within the housing and extends between the right and left side walls and extends between the front wall and the rear wall, the baking surface includes a thickness, the baking surface comprises an elongate right aperture proximate to the right wall and an elongate left aperture proximate to the left side wall, wherein the baking surface is formed as a continuous monolithic member and does not have any seams or joints therein,   wherein the baking surface is silicon carbide cement,   further comprising a plurality of in-shot burners extending through the elongate right aperture and a plurality of in-shot burners extending through the elongate left aperture.   
     
     
         2 . The oven of  claim 2 , wherein the plurality of in-shot burners are each disposed at an acute angle with respect to a vertical axis within the housing of the oven,
 further comprising a first shroud with a side wall extending above an upper surface of the baking surface and extending along a perimeter of the elongate right aperture and a second shroud with a side wall extending above the upper surface of the baking surface and extending along a perimeter of the elongate left aperture, wherein the side wall of the first shroud is disposed at a first acute angle with respect to a vertical axis within the housing, such that the side wall extends with a vector component extending toward a center of the baking surface, and the side wall of the second shroud is disposed at a second acute angle with respect to the vertical axis of the housing, such that the side wall extends with a vector component extending toward the center of the baking surface.   
     
     
         3 . The oven of  claim 1 , wherein the baking surface receives one or more thermocouples embedded within the baking surface. 
     
     
         4 . The oven of  claim 3 , wherein a first thermocouple of the one or more thermocouples is positioned proximate to the left to right centerline of the baking surface. 
     
     
         5 . The oven of  claim 4 , wherein other thermocouples of the one or more thermocouples are positioned outboard of the first thermocouple on a right side of the left to right centerline and still other thermocouples of the one or more thermocouples are positioned outboard of the first thermocouple on a left side of the left to right centerline. 
     
     
         6 . The oven of  claim 3 , further comprising a controller that receives a signal from the one or more thermocouples representative of the measured temperature of the one or more thermocouples, wherein the controller is configured to control the operation of a plurality of in-shot burners extending through the elongate left aperture and to control the operation of a plurality of in-shot burners extending through the elongate right aperture, wherein the controller controls the operation of the plurality of in-shot burners based upon the measured temperature of the one more thermocouples in comparison with a desired temperature of the enclosure. 
     
     
         7 . The oven of  claim 5 , wherein the desired temperature of the enclosure is established by the user or is understood by the controller in furtherance of a recipe programmed into the controller. 
     
     
         8 . The oven of  claim 1 , further comprising a box disposed below a bottom surface of the baking surface, wherein the box includes a volume that is in thermal communication with the bottom surface of the baking surface, wherein the box includes at least one burner that when operating generates heat that at least a portion of which is transferred to the baking surface. 
     
     
         9 . An oven, comprising:
 a housing comprising a baking surface, right and left side walls, a rear wall and a roof collectively defining an enclosure, the housing further comprising an opening through a front wall of the housing to allow access to the enclosure,   wherein the baking surface extends within the housing and extends between the right and left side walls and extends between the front wall and the rear wall, the baking surface includes a thickness, the baking surface comprises an elongate right aperture proximate to the right wall and an elongate left aperture proximate to the left side wall, wherein a first plurality of in-shot burners extend through the elongate right aperture and a second plurality of in-shot burners extend through the elongate left aperture, wherein during operation heated combustion gas from the burners is directed toward the roof of the enclosure during operation,   further comprising a box disposed below the baking surface with an interior that is in thermal communication with the baking surface, wherein the box supports a burner that is oriented such that heated combustion gas from the burners flows through the box and a portion of the heat from combustion is transferred through the baking surface.   
     
     
         10 . The oven of  claim 9 , wherein the first plurality of in-shot burners are disposed at a first acute angle with respect to a horizontal plane through a top surface of the baking surface, and the second plurality of in-shot burners are disposed at a second acute angle with respect to a horizontal plane through the top surface of the baking surface. 
     
     
         11 . The oven of  claim 10 , wherein the plurality of first in-shot burners and the plurality of second in-shot burners are arranged such that, during operation, combustion gas from each for the first and second plurality of burners interacts with each other within the enclosure. 
     
     
         12 . The oven of  claim 11 , wherein the combustion gas from each of the first and second plurality of in-shot burners travels within the enclosure with a generally looped flow such that a portion of the combustion gas that leaves the first plurality of in-shot burners returns to the first plurality of in-shot burners. 
     
     
         13 . The oven of  claim 9 , wherein the baking surface receives one or more thermocouples embedded within the baking surface. 
     
     
         14 . The oven of  claim 13 , wherein a first thermocouple of the one or more thermocouples is positioned proximate to the left to right centerline of the baking surface, wherein other thermocouples of the one or more thermocouples are positioned outboard of the first thermocouple on a right side of the left to right centerline and still other thermocouples of the one or more thermocouples are positioned outboard of the first thermocouple on a left side of the left to right centerline. 
     
     
         15 . The oven of  claim 13 , further comprising a controller that receives a signal from each of the one or more thermocouples that is representative of the measured temperature of the respective one or more thermocouples, wherein the controller is configured to control the operation of a plurality of in-shot burners extending through the elongate left aperture and to control the operation of a plurality of in-shot burners extending through the elongate right aperture, wherein the controller controls the operation of the plurality of in-shot burners based upon the measured temperature of the one more thermocouples in comparison with a desired temperature of the enclosure. 
     
     
         16 . The oven of  claim 9 , further comprising a rear aperture through the baking surface, wherein a portion of the rear aperture provides a path for combustion products from the burner disposed within the box to reach the enclosure. 
     
     
         17 . The oven of  claim 16 , wherein the rear aperture further includes a tube burner disposed therein or therethrough such that, during operation, flames from the tube burner extend from the rear aperture and toward or into the enclosure. 
     
     
         18 . The oven of  claim 9 , wherein the baking surface is formed as a continuous monolithic member and does not have any seams or joints therein, wherein the baking surface is silicon carbide cement. 
     
     
         19 . The oven of  claim 15 , wherein one or more of the other thermocouples positioned outboard of the first thermocouple on the right side of the left to right centerline through the baking surface is disposed vertically above the box, and one or more of the other thermocouples positioned outboard of the first thermocouple on the right side of the left to right centerline through the baking surface is disposed horizontally outboard of the box. 
     
     
         20 . The oven of  claim 9 . wherein the roof of the housing partially defines the enclosure and is disposed vertically above the first plurality of in-shot burners is disposed at an acute angle with respect to the top surface of the baking surface, wherein the roof that is disposed vertically above the first plurality of in-shot burners is disposed at a curved orientation such that the magnitude of the acute angle changes from a position vertically above the plurality of in-shot burners and extending toward a right to left centerline of the roof, with the magnitude of the acute angle decreasing as the roof travels toward the right to left centerline of the roof.

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