IP Library Granted Patent US 11,280,158
Granted Patent B2
US 11,280,158 · App. 16/536,871 · Granted Mar 22, 2022

Proppant dispensing system

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)
E21B34/06B65G27/16B65G2201/045E21B33/10E21B43/267
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Quick Facts
Patent No.
US 11,280,158
App. No.
16/536,871
Granted
Mar 22, 2022
Kind
B2
Abstract

A proppant container facilitates the transportation of wet sand for use in a hydraulic fracturing operation. The proppant container is provided with a system for dislodging the wet sand for subsequent use. This may be done by use of a vibrator or an umbrella valve. In another aspect, the proppant container may be used in combination with a rack having a wash system that slurries the proppant for delivery to a blender tub without necessarily resorting to use of a conveyor belt.

Claims (19)

1. In a sand distribution system that includes at least one roadable proppant container for use in transporting containerized sand and dispensing the containerized sand, the container having a top covering an interior that is defined by four rectilinear sidewalls descending to a hopper, the hopper discharging through a bottom discharge opening that is covered by a discharge gate, the discharge gate being selectively moveable between a closed position to place the container in a roadable state for the transportation of sand and an open position to provide sand for use in a hydraulic fracturing operation, the improvement comprising;

the proppant container being in a state that is filled with wet sand and made ready in a roadable condition while the gate is in the closed position; and

a vibrator assembly mounted directly contacting the proppant container to facilitate dispensation of wet sand when the wet sand is in the container and the gate is in the open position.

2. The sand distribution system of claim 1 , wherein the improvement further comprises the vibrator assembly contacting the hopper.

3. The sand distribution system of claim 1 , further comprising a conveyor sled having a conveyor belt, the improvement further comprising a-means for mitigating vibration transmitted from the proppant container to the conveyor belt.

4. The sand distribution system of claim 1 , wherein the improvement further comprises a plurality of vibrator assemblies mounted on each proppant container.

5. The sand distribution system of claim 1 , wherein the improvement further comprises a single vibrator mounted on the proppant container.

6. The sand distribution system of claim 1 , wherein the improvement further comprises an interior wash system arranged to facilitate the dispensation of sand from within the container.

7. The sand distribution system of claim 1 , wherein the improvement further comprises a flow controller operating programmatically in conjunction with pumps and sensors to operate the sand distribution system in an automated manner according to program instructions for making adjustments to meet a specification for frac fluid parameter requirements during the performance of a hydraulic fracturing operation.

8. The sand distribution system of claim 3 , wherein the means for mitigating includes a separate stand spaced apart from the conveyor sled such that space exists between the conveyor sled and the separate stand, the proppant container residing upon the separate stand.

9. The sand distribution system of claim 3 , wherein the means for mitigating includes the conveyor belt being fully supported by dampers that extend between the conveyor sled and the conveyor belt.

10. The sand distribution system of claim 1 , wherein the improvement further comprises the container having a supportive frame, and an interior space defined by a top, four opposed vertical sidewalls, and a bottom hopper with a discharge opening that is covered by the gate.

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

delivering a plurality of proppant containers filed with wet sand according to claim 1 to a location where a hydraulic fracturing operation is being performed, and

vibrating the proppant containers—to dispense the wet sand in support of the hydraulic fracturing operation.

12. The method of hydraulic fracturing according to claim 11 , where the method further comprises a step of washing the wet sand from within the plurality of containers onto a sand motive mechanism positioned beneath the proppant container.

13. The method of hydraulic fracturing according to claim 12 , wherein the sand motive mechanism is a drag link mechanism.

14. The method of hydraulic fracturing according to claim 12 , wherein the sand motive mechanism is a trough.

15. The method of hydraulic fracturing according to claim 12 , wherein the sand motive mechanism is a conveyor sled.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 5, 2022
From: OEHLER, MATTHEW; FISHER, MARC KEVIN; D'AGOSTINO, SCOTT JOSEPH; D'AGOSTINO, MARK JOHN; DORFMAN, BRIAN; SNYDER, CORY; MALONE, WILLIAM SCOTT
To: PROPPANT EXPRESS SOLUTIONS, LLC
Reel/Frame 060731/0579 →
Continuity (4)
Provisional Application 62876973 · Jul 22, 2019
Provisional Application 62720430 · Aug 21, 2018
Provisional Application 62717507 · Aug 10, 2018
Related Publication 20200048985A1 · Feb 13, 2020