IP Library Granted Patent US 11,408,247
Granted Patent B2
US 11,408,247 · App. 16/852,174 · Granted Aug 9, 2022

Proppant dispensing system with knife-edge gate

Inventors: Matthew Oehler (Denver, CO); Marc Kevin Fisher (Castle Rock, CO); Ian Wilson (Denver, CO); Scott Joseph D'Agostino (Bozeman, MT); Mark John D'Agostino (Bozeman, MT); Brian Dorfman (Denver, CO); Cory Snyder (Denver, CO); William Scott Malone (Denver, CO)
Assignee: PROPPANT EXPRESS SOLUTIONS, LLC
E21B34/06B65G27/16B65G2201/045E21B33/10E21B43/267
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Quick Facts
Patent No.
US 11,408,247
App. No.
16/852,174
Granted
Aug 9, 2022
Kind
B2
Abstract

A proppant container facilitates the transportation of wet sand for use in a hydraulic fracturing operation. A metering conveyor is positioned between a blender tub and a proppant motive mechanism, such as a conveyor or wash system that receives discharge direct from proppant containers of the type normally used to transport sand in support of a hydraulic fracturing operation. The metering conveyor is fitted with equipment including a knife-edge gate that may be used to facilitate flow control operations.

Claims (25)

1. A system for dispensing proppant, comprising:

a conveyor having a belt that is endless and rotatable;

a hopper positioned over the belt for discharge of proppant onto the belt, the hopper having a top opening that tapers downwardly to a discharge opening located at a bottom of the hopper,

the hopper having at least one sidewall with a side opening therethrough,

the side opening rising along the sidewall to an elevation above the discharge opening;

a pair of opposed channels mounted on the system to taper downwardly along the at least one sidewall proximate the side opening;

a plate that is slidingly engaged within the pair of opposed channels to cover the side opening over a selected area of the side opening above the belt, the plate having a straight bottom edge; and

a clamp assembly configured to hold the plate at a fixed position with regard to the side opening with the straight bottom edge of the plate being retained at a fixed height when clamped above the belt such that

when the belt is rotating and proppant is discharging from the discharge opening and the side opening onto the belt, the proppant forms a ribbon of uniform thickness that is useful in volumetric rate calculations.

2. The system of claim 1 , wherein the opposed channels are mounted on the hopper.

3. The system of claim 1 , wherein the belt is positioned such that the belt is located beneath the discharge opening, and the clamp assembly is holding the plate at the fixed height above the belt to dispense a ribbon of proppant having a uniform thickness onto the belt.

4. The system of claim 3 , wherein the opposed vertical channels are mounted on the conveyor sled.

5. The system of claim 3 , the system further comprising a screw mechanism located at a rear section of the hopper remote from the plate, the screw mechanism being configured for selectively adjusting a height of the hopper above the belt.

6. The system of claim 1 , further comprising an automated flow controller utilizing program instructions for volumetric rate calculations based in part upon the thickness of the ribbon of proppant in providing proppant according to design specifications in support of a hydraulic fracturing operation.

7. The system of claim 1 , further comprising

a scale operably configured to sense weight carried by the belt, and

an automated flow controller utilizing program instructions for weight in motion calculations based in part upon sense measurements from the scale.

8. The system of claim 7 , further comprising a wire mesh covering the top of the hopper, the wire mesh being sized for removal of debris from proppant.

9. The system of claim 8 , including a vibrator assembly mounted to the hopper to facilitate flow of proppant through the wire mesh.

10. A method of hydraulic fracturing to stimulate a well, comprising:

delivering containers filed with wet sand to a location where a hydraulic fracturing operation is being performed, and

using the proppant delivery system according to claim 1 to dispense the wet sand in support of the hydraulic fracturing operation.

11. A method of hydraulic fracturing to stimulate a well, comprising:

delivering containers filed with wet sand to a location where a hydraulic fracturing operation is being performed, and

using the proppant delivery system according to claim 6 to dispense the wet sand in support of the hydraulic fracturing operation.

Assignments (5)
RELEASE OF SECURITY INTEREST Recorded Jun 26, 2023
From: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
To: PROPPANT EXPRESS SOLUTIONS, LLC
Reel/Frame 064058/0548 →
CORRECTIVE ASSIGNMENT TO CORRECT THE CONVEYING PARTY'S NAME FROM MARK KEVIN FISHER TO MARC KEVIN FISHER PREVIOUSLY RECORDED AT REEL: 053102 FRAME: 0942. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 8, 2022
From: OEHLER, MATTHEW; FISHER, MARC KEVIN; D'AGOSTINO, SCOTT JOSEPH; DORFMAN, BRIAN; D'AGOSTINO, MARK JOHN; SNYDER, CORY; MALONE, WILLIAM SCOTT
To: PROPPANT EXPRESS SOLUTIONS, LLC
Reel/Frame 061392/0023 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE SPELLING OF THE INVENTORS NAME PREVIOUSLY RECORDED AT REEL: 053102 FRAME: 0942. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 10, 2022
From: FISHER, MARC KEVIN
To: PROPPANT EXPRESS SOLUTIONS, LLC
Reel/Frame 060243/0151 →
SECURITY INTEREST Recorded Dec 31, 2021
From: PROPPANT EXPRESS SOLUTIONS, LLC
To: WELLS FARGO BANK, NATIONAL ASSOCIATION, AS ADMINISTRATIVE AGENT
Reel/Frame 058513/0475 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2020
From: OEHLER, MATTHEW; FISHER, MARK KEVIN; D'AGOSTINO, SCOTT JOSEPH; DORFMAN, BRIAN; D'AGOSTINO, MARK JOHN; SNYDER, CORY; MALONE, WILLIAM SCOTT
To: PROPPANT EXPRESS SOLUTIONS, LLC
Reel/Frame 053102/0942 →
Continuity (6)
Division PCTUS2019045952 · Aug 9, 2019
Division 16536871 · Aug 9, 2019
Provisional Application 62876973 · Jul 22, 2019
Provisional Application 62720430 · Aug 21, 2018
Provisional Application 62717507 · Aug 10, 2018
Related Publication 20200240238A1 · Jul 30, 2020
Cited By (1)
US 12,312,931