IP Library Granted Patent US 12,636,628
Granted Patent B2
US 12,636,628 · App. 17/534,602 · Granted May 26, 2026

Electrically driven oilfield blender system

Inventor: Edwin E. Wilson (Colleyville, TX)
Assignee: Twin Disc, Inc.
B01F35/3204B01F23/51B01F23/53B01F23/59B01F27/90B01F35/32045B01F35/331B01F35/7176B01F35/71775B01F35/7544E21B43/2607B01F2101/49
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Quick Facts
Patent No.
US 12,636,628
App. No.
17/534,602
Granted
May 26, 2026
Kind
B2
Abstract

An electrically driven oilfield blender system is configured to utilize electric motors as electric prime movers to prepare frac slurry and move the frac slurry to an oilfield pressure pumping system or pressure pumper that pumps the frac slurry into a subterranean formation. Each of the prime mover electric motors may operate at a fixed or constant rated speed and may be connected to a transmission that can drive a device such as a feed pump for a mixing tub or an auxiliary device at a variable speed. An electro-hydraulic motor start system includes an electric motor that powers a hydraulic pump. The hydraulic pump drives hydraulic motors that pre-rotate the prime mover electric motors to their rated speeds before they are energized.

Claims (54)

1 . An electrically driven oilfield blender system for preparing a slurry used by an oilfield pressure pumping system that delivers the slurry into a subterranean formation, the blender system comprising:

a mixing tub that receives multiple constituents of the slurry;

a mixing tub agitator that mixes the multiple constituents in the tub to prepare the slurry;

a first electric motor that includes an output section provides power for delivering at least one of the multiple constituents to the mixing tub;

a start motor mounted to the first electric motor output section;

a transmission arranged in a power path between the first electric motor and the mixing tub for selectively delivering power from the first electric motor in a downstream direction; and

a second electric motor that communicates with the start motor and delivers power to the first electric motor to pre-rotate the first electric motor independent of the transmission by way of the start motor before the first electric motor is energized so the first electric motor is energized while rotating.

2 . The electrically driven oilfield blender of claim 1 , further comprising:

an electro-hydraulic motor start system with the second electric motor defining a prime mover of the electro-hydraulic motor start system.

3 . The electrically driven oilfield blender of claim 2 , the electro-hydraulic motor start system comprising:

a hydraulic pump driven by the second electric motor;

a hydraulic motor that defines the start motor and is driven by the hydraulic pump and mounted to pre-rotate the first electric motor.

4 . The electrically driven oilfield blender of claim 3 , wherein:

the at least one constituent is a frac fluid;

the first electric motor defines a wet feed electric motor that provides power for delivering the frac fluid into the mixing tub; and

the blender further comprises:

a third electric motor that defines an auxiliary electric motor that delivers power to drive at least one of:

a conveying device that delivers at least one of the multiple constituents into the mixing tub;

a pump that delivers the slurry from the mixing tub to the oilfield pressure pumping system; and

an agitator drive that rotates blades of the agitator.

5 . The electrically driven oilfield blender of claim 4 , wherein:

the hydraulic pump defines a hydraulic start pump;

the hydraulic motor defines a first hydraulic start motor mounted for pre-rotating the wet feed electric motor; and

the electro-hydraulic motor start system further comprises a second hydraulic start motor and wherein the second hydraulic start motor:

is driven by the hydraulic start pump; and

is mounted to pre-rotate the auxiliary electric motor before the auxiliary electric motor is energized so the auxiliary electric motor is energized while rotating.

6 . The electrically driven oilfield blender of claim 5 , wherein the auxiliary motor includes an auxiliary motor output section and the blender further comprises:

the conveying device that delivers the at least one of the multiple constituents;

the pump that delivers the slurry from the mixing tub to the oilfield pressure pumping system;

the agitator drive that rotates blades of the agitator; and

multiple auxiliary pumps mounted to the auxiliary motor output section for hydraulically driving respective ones of:

an auger as the conveying device to deliver frac sand into the mixing tub;

a pumping system feed pump as the pump that delivers the slurry from the mixing tub to the oilfield pressure pumping system; and

the agitator drive that rotates the blades of the agitator.

7 . An electrically driven oilfield blender system comprising:

a blender mixing system for preparing a frac slurry for use in subterranean fracturing of a geological formation, the electrically driven oilfield blender system including:

a wet additive system providing a frac fluid used to make the frac slurry;

a dry additive system providing frac sand used to make the frac slurry; and

a mixing tub that receives and mixes the frac fluid and frac sand to make the frac slurry;

a blender drive system that provides power to the blender mixing system to make the frac slurry, the blender drive system including:

a wet feed drive including a wet feed electric motor that powers a tub feed pump that directs the frac fluid from the wet additive system to the mixing tub;

an auxiliary drive including an auxiliary electric motor that powers an auger that directs the frac sand from the dry additive system to the mixing tub;

a motor start drive including:

a start drive electric motor that powers pre-rotation of each of the wet feed electric motor and the auxiliary electric motor; and

a mode selector valve arranged between the motor start drive and each of the wet feed electric motor and the auxiliary electric motor, wherein the mode selector valve is actuatable to selectively deliver power from the motor start drive to each of the wet feed electric motor and the auxiliary electric motor as a function of an operational mode of the electrically driven oilfield blender system.

8 . The electrically driven oilfield blender of claim 7 , wherein the start drive electric motor pre-rotates each of the wet feed electric motor and the auxiliary electric motor so that:

the wet feed electric motor is rotated before being energized so the wet feed electric motor is energized while rotating; and

the auxiliary electric motor is rotated before being energized so the auxiliary electric motor is energized while rotating.

9 . The electrically driven oilfield blender of claim 8 , wherein each of the wet feed electric motor and the auxiliary electric motor is rotated to its respective rated speed before its energization and is connected to an electrical power source DoL (Direct on Line) during energization.

10 . The electrically driven oilfield blender of claim 9 , wherein the motor start drive is defined within an electro-hydraulic motor start system, further comprising:

a hydraulic pump that defines a start drive pump that provides hydraulic power that pre-rotates each of the wet feed electric motor and the auxiliary electric motor.

11 . The electrically driven oilfield blender of claim 10 , the electro-hydraulic motor start system further comprising:

a first hydraulic start motor hydraulically connected to the start drive pump and mounted for pre-rotating the wet feed electric motor; and

a second hydraulic start motor hydraulically connected to the start drive pump and mounted for pre-rotating the auxiliary electric motor.

Assignments (2)
SECURITY INTEREST Recorded Apr 9, 2025
From: BMO BANK N.A.
To: BANK OF MONTREAL
Reel/Frame 070794/0172 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2021
From: WILSON, EDWIN E.
To: TWIN DISC, INC.
Reel/Frame 058238/0642 →
Continuity (2)
Provisional Application 63118119 · Nov 25, 2020
Related Publication 20220161212A1 · May 26, 2022
References Cited (22)
US 4311395A · Douthitt · 1982 [cited by examiner]
US 4707644A · Miller · 1987 [cited by examiner]
US 7649286B2 · Manning · 2010 [cited by examiner]
US 10221856B2 · Hernandez et al. · 2019 [cited by applicant]
US 11891884B2 · Wilson · 2024 [cited by examiner]
US 20020047416A1 · Oliveira · 2002 [cited by examiner]
US 20060052903A1 · Bassett · 2006 [cited by applicant]
US 20080296909A1 · DiPasquale, Jr. · 2008 [cited by examiner]
US 20140158345A1 · Jang · 2014 [cited by examiner]
US 20140318144A1 · Lazzeri · 2014 [cited by examiner]
US 20150275891A1 · Chong · 2015 [cited by examiner]
US 20160263983A1 · Christ · 2016 [cited by examiner]
US 20160294265A1 · Head · 2016 [cited by examiner]
US 20160348479A1 · Oehring et al. · 2016 [cited by applicant]
US 20170051732A1 · Hemandez · 2017 [cited by examiner]
US 20170226842A1 · Omont et al. · 2017 [cited by applicant]
US 20190010793A1 · Hinderliter · 2019 [cited by examiner]
US 20200400005A1 · Han · 2020 [cited by examiner]
US 20210301815A1 · Chretien · 2021 [cited by examiner]
CN 101702602A · 2010 [cited by examiner]
WO 2020214934 · 2020 [cited by applicant]
Multicomp. (2018). Direct-On-Lin (DOL) Motor Starter. https://www.farnell.com/datasheets/2602750.pdf. (Year: 2018). [cited by examiner]