IP Library Granted Patent US 12680437
Granted Patent B2
US 12680437 · App. 19/085,141 · Granted Jul 14, 2026

Multi-well blending system

Inventors: Wesley John Warren (Duncan, OK); Chad A. Fisher (Duncan, OK)
Assignee: Halliburton Energy Services, Inc.
E21B43/2607B01F23/59B01F35/7176E21B43/267B01F2101/49
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Quick Facts
Patent No.
US 12680437
App. No.
19/085,141
Granted
Jul 14, 2026
Kind
B2
Abstract

A blending unit is provided. The blending unit comprises two or more discharge pumps. Each of the two or more discharge pumps has a suction inlet fluidly connected to a common proppant fluid supply via a concentrated proppant inlet line, and a discharge outlet fluidly connected to a blender outlet line. Each of the two or more discharge pumps also has an injection port upstream of the discharge pump and configured to inject substantially proppant-free fluid into the concentrated proppant inlet line, an injection port downstream from the discharge pump and configured to inject substantially proppant-free fluid into the blender outlet line, or both the injection port upstream of the discharge pump and the injection port downstream from the discharge pump.

Claims (28)

1 . A blending unit comprising:

a first discharge pump downstream from a blender tub and having a suction inlet fluidly connected to the blender tub via a concentrated proppant inlet line, a discharge outlet fluidly connected to a blending unit outlet line, and (i) an injection port upstream of the first discharge pump and downstream from the blender tub and configured to inject substantially proppant-free fluid into the concentrated proppant inlet line, (ii) an injection port downstream from the first discharge pump and configured to inject substantially proppant-free fluid into the blending unit outlet line, or (iii) both the injection port upstream of the first discharge pump and downstream from the blender tub and the injection port downstream from the first discharge pump;

a first substantially proppant-free supply pump having a suction inlet fluidly connected to a substantially proppant-free fluid supply source and a discharge outlet fluidly connected to (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port downstream from the first discharge pump, or (iii) thereof; and

a second substantially proppant-free supply pump having a suction inlet fluidly connected to the substantially proppant-free fluid supply source and a discharge outlet fluidly connected to (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port downstream from the first discharge pump, or (iii) a combination thereof.

2 . The blending unit of claim 1 , further comprising:

a second discharge pump downstream from the blender tub and having a suction inlet fluidly connected to the blender tub via a concentrated proppant inlet line, a discharge outlet fluidly connected to a blending unit outlet line, and (i) an injection port upstream of the second discharge pump downstream from the blender tub and configured to inject substantially proppant-free fluid into the concentrated proppant inlet line, (ii) an injection port downstream from the first discharge pump and configured to inject substantially proppant-free fluid into the blending unit outlet line, or (iii) both the injection port upstream of the second discharge pump and downstream from the blender tub and the injection port downstream from the second discharge pump.

3 . The blending unit of claim 2 , wherein the discharge outlet of the first substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the second discharge pump and downstream from the blender tub, (iii) the injection port downstream from the second discharge pump, or (iii) both the injection port upstream of the second discharge pump and downstream from the blender tub and the injection port downstream from the second discharge pump.

4 . The blending unit of claim 3 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the second discharge pump and downstream from the blender tub, (iii) the injection port downstream from the second discharge pump, or (iii) both the injection port upstream of the second discharge pump and downstream from the blender tub and the injection port downstream from the second discharge pump.

5 . The blending unit of claim 4 , further comprising:

a third discharge pump downstream from the blender tub and having a suction inlet fluidly connected to the blender tub via a concentrated proppant inlet line, a discharge outlet fluidly connected to a blending unit outlet line, and (i) an injection port upstream of the third discharge pump and downstream from the blender tub and configured to inject substantially proppant-free fluid into the concentrated proppant inlet line, (ii) an injection port downstream from the third discharge pump and configured to inject substantially proppant-free fluid into the blending unit outlet line, or (iii) both the injection port upstream of the third discharge pump and downstream from the blender tub and the injection port downstream from the third discharge pump.

6 . The blending unit of claim 5 , wherein the discharge outlet of the first substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the third discharge pump and downstream from the blender tub, (iii) the injection port downstream from the third discharge pump, or (iii) both the injection port upstream of the third discharge pump and downstream from the blender tub and the injection port downstream from the third discharge pump.

7 . The blending unit of claim 5 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the third discharge pump and downstream from the blender tub, (iii) the injection port downstream from the third discharge pump, or (iii) both the injection port upstream of the third discharge pump and downstream from the blender tub and the injection port downstream from the third discharge pump.

8 . The blending unit of claim 5 , further comprising a second crossover line fluidly connecting the discharge outlet of second discharge pump with the blending unit outlet line of the third discharge pump.

9 . The blending unit of claim 8 , further comprising a second crossover valve positioned on the second crossover line and configured to open to permit or close to prevent fluid flow between the second discharge pump and the blending unit outlet line of the third discharge pump.

10 . The blending unit of claim 5 , wherein the discharge outlet of the first substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port upstream from the second discharge pump and downstream from the blender tub, and (iii) the injection port upstream of the third discharge pump and downstream from the blender tub.

11 . The blending unit of claim 10 , wherein the discharge outlet of the second substantially proppant-free supply pump is further fluidly connected to the blender tub.

12 . The blending unit of claim 10 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port upstream from the second discharge pump and downstream from the blender tub, and (iii) the injection port upstream of the third discharge pump and downstream from the blender tub.

13 . The blending unit of claim 12 , wherein the discharge outlet of the first substantially proppant-free supply pump is further fluidly connected to the blender tub and wherein the discharge outlet of the second substantially proppant-free supply pump is further fluidly connected to the blender tub.

14 . The blending unit of claim 5 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port upstream from the second discharge pump and downstream from the blender tub, and (iii) the injection port upstream of the third discharge pump and downstream from the blender tub.

15 . The blending unit of claim 14 , wherein the discharge outlet of the first substantially proppant-free supply pump is further fluidly connected to the blender tub.

16 . The blending unit of claim 5 , wherein the discharge outlet of the first substantially proppant-free supply pump is fluidly connected to the blender tub and at least two of (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port upstream from the second discharge pump and downstream from the blender tub, or (iii) the injection port upstream of the third discharge pump and downstream from the blender tub.

17 . The blending unit of claim 16 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to the blender tub and at least two of (i) the injection port upstream of the first discharge pump and downstream from the blender tub, (ii) the injection port upstream from the second discharge pump and downstream from the blender tub, or (iii) the injection port upstream of the third discharge pump and downstream from the blender tub.

18 . The blending unit of claim 2 , further comprising a first crossover line fluidly connecting the discharge outlet of second discharge pump with the blending unit outlet line of the first discharge pump.

19 . The blending unit of claim 18 , further comprising a first crossover valve positioned on the first crossover line and configured to open to permit or close to prevent fluid flow between the second discharge pump and the blending unit outlet line of the first discharge pump.

20 . The blending unit of claim 2 , wherein the discharge outlet of the first substantially proppant-free supply pump is fluidly connected to the blender tub and at least one of (i) the injection port upstream of the first discharge pump and downstream from the blender tub or (ii) the injection port upstream from the second discharge pump and downstream from the blender tub.

21 . The blending unit of claim 20 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to the blender tub and at least one of (i) the injection port upstream of the first discharge pump and downstream from the blender tub or (ii) the injection port upstream from the second discharge pump and downstream from the blender tub.

22 . The blending unit of claim 2 , wherein the discharge outlet of the second substantially proppant-free supply pump is fluidly connected to the blender tub and at least one of (i) the injection port upstream of the first discharge pump and downstream from the blender tub or (ii) the injection port upstream from the second discharge pump and downstream from the blender tub.

23 . The blending unit of claim 1 , wherein the discharge outlet of the first substantially proppant-free supply pump is further fluidly connected to the blender tub and wherein the discharge outlet of the second substantially proppant-free supply pump is further fluidly connected to the blender tub.