Electro-hydraulic hybrid drive sand-mixing equipment
11480040 · 2022-10-25
Assignee
Inventors
- Maomao HAN (Yantai, CN)
- Weiwei LIU (Yantai, CN)
- Yongcheng LIU (Yantai, CN)
- Yipeng WU (Yantai, CN)
- Shuwei LI (Yantai, CN)
- Shijun Song (Yantai, CN)
- Lianpan Duan (Yantai, CN)
Cpc classification
B01F2101/49
PERFORMING OPERATIONS; TRANSPORTING
B01F33/5013
PERFORMING OPERATIONS; TRANSPORTING
E21B43/2607
FIXED CONSTRUCTIONS
B01F35/3204
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The present invention discloses electro-hydraulic hybrid drive sand-mixing equipment, including a skid base, an electric motor, a hydraulic pump, a discharge centrifugal pump, a suction centrifugal pump, a mixing tank, a dry additive system, a liquid additive system, and a sand auger system. The electric motor, the hydraulic pump, the discharge centrifugal pump, the suction centrifugal pump, the mixing tank, the dry additive system, the liquid additive system, and the sand auger system are integrally skid mounted on the skid base. There are two electric motors, including a first electric motor and a second electric motor. The first electric motor drives the discharge centrifugal pump, and the second electric motor actuates the hydraulic pump, to drive the suction centrifugal pump, the mixing tank, the dry additive system, the liquid additive system, and the sand auger system. The electric motor is an integrated variable-frequency drive electric motor. Beneficial effects: Two integrated variable-frequency drive electric motors are applied. First, the setup of an independent variable-frequency drive cabinet is effectively omitted, that is, the overall size of the sand-mixing equipment is effectively reduced, so that it is more flexible and convenient to transport the equipment and arrange a well site. Next, a control system is simpler, thus optimizing the power matching of the sand-mixing equipment.
Claims
1. Electro-hydraulic hybrid drive sand-mixing equipment, comprising a skid base, two electric motors, a hydraulic pump, a discharge centrifugal pump, a suction centrifugal pump, a mixing tank, a dry additive system, a liquid additive system, and a sand auger system, wherein the electric motor, the hydraulic pump, the discharge centrifugal pump, the suction centrifugal pump, the mixing tank, the dry additive system, the liquid additive system, and the sand auger system are integrally skid mounted on the skid base, the two electric motors comprise a first electric motor and a second electric motor, the first electric motor is configured to drive the discharge centrifugal pump, the second electric motor actuates the hydraulic pump, to drive the suction centrifugal pump, the mixing tank, the dry additive system, the liquid additive system, and the sand auger system, and each of the electric motors is an integrated variable-frequency drive electric motor.
2. The electro-hydraulic hybrid drive sand-mixing equipment according to claim 1, wherein the electro-hydraulic hybrid drive sand-mixing equipment further comprises a suction manifold and a discharge manifold, and the suction manifold and the discharge manifold are separately disposed on a left side and a right side of the skid base.
3. The electro-hydraulic hybrid drive sand-mixing equipment according to claim 2, wherein the first electric motor is connected to the discharge centrifugal pump through a coupling, the first electric motor is disposed on a side of the discharge manifold, and the discharge manifold is disposed crossing above the first electric motor.
4. The electro-hydraulic hybrid drive sand-mixing equipment according to claim 1, wherein the second electric motor is disposed at a front end portion of the skid base.
5. The electro-hydraulic hybrid drive sand-mixing equipment according to claim 1, wherein the second electric motor actuates the hydraulic pump through a transfer case.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2) Where: 1. first electric motor, 2. second electric motor, 3. discharge centrifugal pump, 4 suction centrifugal pump, 5. mixing tank, 6. dry additive system, 7. liquid additive system, 8. sand auger system, 9. skid base, 10. discharge manifold, and 11. suction manifold.
DESCRIPTION OF THE EMBODIMENTS
(3) As shown in
(4) Working Principle:
(5) The discharge centrifugal pump 3 is directly driven by the first electric motor 1. An operator controls the rotational speed of the discharge centrifugal pump 3 in a control room to control the working displacement. The second electric motor 2 actuates the hydraulic pump through the transfer case, to drive the suction centrifugal pump 4, a stirrer of the mixing tank 5, the dry additive system 6, the liquid additive system 7, and the sand auger system 8. During working, an upstream fracturing base fluid is sucked from the suction port and is injected into the mixing tank 5 by the suction centrifugal pump 4. A proppant is conveyed into the mixing tank 5 by the sand auger system 8. A dry additive is conveyed into the mixing tank 5 by the dry additive system 6. The proppant, the fracturing base fluid, the dry additive, and the like are thoroughly mixed in the mixing tank 5 to form a fracturing fluid. The fracturing fluid is pressurized and conveyed by the discharge centrifugal pump 3 to downstream pumping equipment. According to working requirements, a liquid additive may be injected into the mixing tank 5, the suction manifold or the discharge manifold through the liquid additive system 7.
(6) It will be appreciated to persons skilled in the art that the present invention is not limited to the foregoing embodiments, which together with the context described in the specification are only used to illustrate the principle of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. All these changes and improvements shall fall within the protection scope of the present invention. The protection scope of the present invention is defined by the appended claims and equivalents thereof.