Hydraulic fracturing control assembly to detect pump cavitation or pulsation

US11542802B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11542802-B2
Application numberUS-202217676541-A
CountryUS
Kind codeB2
Filing dateFeb 21, 2022
Priority dateJun 24, 2020
Publication dateJan 3, 2023
Grant dateJan 3, 2023

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

Systems and methods for monitoring, detecting, and/or intervening with respect to cavitation and pulsation events during hydraulic fracturing operations may include a supervisory controller. The supervisory controller may be configured to receive pump signals indicative of one or more of pump discharge pressure, pump suction pressure, pump speed, or pump vibration associated with operation of the hydraulic fracturing pump. The supervisory controller also may be configured to receive blender signals indicative of one or more of blender flow rate or blender discharge pressure. Based on one or more of these signals, the supervisory controller may be configured to detect a cavitation event and/or a pulsation event. The supervisory controller may be configured to generate a cavitation notification signal indicative of detection of cavitation associated with operation of the hydraulic fracturing pump, and/or a pulsation notification signal indicative of detection of pulsation associated with operation of the hydraulic fracturing pump.

First claim

Opening claim text (preview).

What is claimed is: 1. A hydraulic fracturing control assembly to detect pulsation associated with operating a hydraulic fracturing unit, the hydraulic fracturing unit including a hydraulic fracturing pump to pump fracturing fluid into a wellhead and a turbine engine to drive the hydraulic fracturing pump, the hydraulic fracturing control assembly comprising: a supervisory controller in communication with the hydraulic fracturing unit and configured to: (a) receive one or more of: one or more pump signals associated with operation of the hydraulic fracturing pumps; or one or more blender signals indicative of one or more of a blender flow rate or a blender discharge pressure; and (b) (i) determine, based at least in part on the one or more pump signals at a first time, a first average pump suction pressure and a first average pump discharge pressure, (ii) determine, based at least in part on the one or more pump signals at a second time after the first time, a second average pump suction pressure and a second average pump discharge pressure, (iii) determine a suction pressure difference between the first average pump suction pressure and the second average pump suction pressure, and a discharge pressure difference between the first average pump discharge pressure and the second average pump discharge pressure, (iv) compare the suction pressure difference to a suction pressure threshold, compare the discharge pressure difference to a discharge pressure threshold, and (v) when the suction pressure difference is equal to or exceeds the suction pressure threshold and the discharge pressure difference is equal to or exceeds the discharge pressure threshold, generate one or more pulsation notification signals indicative of detection of pulsation associated with operation of the hydraulic fracturing pump, thereby to cause reduction of one or more of a pump flow rate of the hydraulic fracturing pump or the blender flow rate of the blender. 2. A hydraulic fracturing control assembly to detect cavitation associated with operating a hydraulic fracturing unit, the hydraulic fracturing unit including a hydraulic fracturing pump to pump fracturing fluid into a wellhead and a turbine engine to drive the hydraulic fracturing pump, the hydraulic fracturing control assembly comprising: a supervisory controller in communication with the hydraulic fracturing unit and configured to: (a) receive one or more of: one or more pump signals associated with operation of the hydraulic fracturing pump; or one or more blender signals indicative of one or more of a blender flow rate or a blender discharge pressure; and (b) (i) associate, via the supervisory controller, one or more cavitation values with one or more of the one or more pump signals or the one or more blender signals, (ii) combine the one or more cavitation values to determine a combined cavitation value, (iii) compare the combined cavitation value to a threshold cavitation value, and (iv) when the combined cavitation value equals or exceeds the threshold cavitation value, generate one or more cavitation notification signals indicative of detection of cavitation associated with operation of the hydraulic fracturing pump, thereby to cause a reduction of one or more of a pump flow rate of the hydraulic fracturing pump or the blender flow rate of the blender. 3. A hydraulic fracturing control assembly to detect one or more of (a) cavitation or (b) pulsation, associated with operating one or more hydraulic fracturing units, each of the one or more hydraulic fracturing units including one or more hydraulic fracturing pumps to pump fracturing fluid into a wellhead and one or more turbine engines to drive the one or more hydraulic fracturing pumps, the hydraulic fracturing control assembly comprising: one or more pump sensors to generate one or more pump signals indicative of one or more of pump discharge pressure, pump suction pressure, pump speed, or pump vibration associated with operation of the one or more hydraulic fracturing units; one or more blender sensors to generate one or more blender signals indicative of one or more of a blender flow rate or blender a blender discharge pressure; a supervisory controller in communication with one or more of: the one or more hydraulic fracturing units, the one or more pump sensors, or the one or more blender sensors, the supervisory controller configured to: (a) receive one or more of: pump signals indicative of one or more of pump discharge pressure, pump suction pressure, pump speed, or pump vibration associated with operation of the one or more of the hydraulic fracturing pumps; or blender signals indicative of one or more of the blender flow rate or the blender discharge pressure; and (b) (i) associate, via the supervisory controller, one or more cavitation values with one or more of the one or more pump signals or the one or more blender signals, (ii) combine the one or more cavitation values to determine a combined cavitation value, (iii) compare the combined cavitation value to a threshold cavitation value, and (iv) when the combined cavitation value equals or exceeds the threshold cavitation value, generate one or more cavitation notification signals indicative of detection of cavitation associated with operation of the one or more hydraulic fracturing pumps, thereby to cause a reduction of one or more of a pump flow rate of the one or more hydraulic fracturing pumps or the blender flow rate of a blender. 4. The hydraulic fracturing control assembly of claim 3 , wherein the associate one or more cavitation values comprises associate an integer value with one or more of the one or more pump signals or the one or more blender signals. 5. The hydraulic fracturing control assembly of claim 4 , wherein the combine the one or more cavitation values to determine a combined cavitation value comprises add the integer value. 6. The hydraulic fracturing control assembly of claim 3 , wherein the associate one or more cavitation values with one or more of the one or more pump signals or the one or more blender signals comprises associate one or more integer values with each of the one or more pump signals indicative of pump suction pressure, pump speed, and pump vibration, and the one or more blender signals indicative of the blender discharge pressure. 7. The hydraulic fracturing control assembly of claim 3 , wherein the one or more cavitation values are one or more integer values, and wherein at least two of the one or more integer values associated with the one or more pump signals and the one or more of the blender signals are weighted differently from one another. 8. The hydraulic fracturing control assembly of claim 3 , wherein the compare the combined cavitation value to a threshold cavitation value comprises count cavitation occurrences each time the combined cavitation value equals or exceeds the threshold cavitation value, and generate the one or more cavitation notification signals indicative of detection of cavitation associated with operation of the one or more hydraulic fracturing pumps. 9. The hydraulic fracturing control assembly of claim 3 , wherein the supervisory controller further is configured to, based at least in part on the one or more cavitation notification signals, provide an alarm indicative of the detection of cavitation, the alarm comprising one or more of a visual alarm, an audible alarm, or a tactile alarm. 10. The hydraulic fracturing control assembly of claim 3 , wherein the supervisory controller further is configured to, based at least in part on the one or more cavitation notification signals, cause storage of cavitation data indicative of the detection of cavitation in a hydraulic fracturing

Assignees

Inventors

Classifications

  • and making use of computers · CPC title

  • Warnings · CPC title

  • Equalisation of pulses, e.g. by use of air vessels; Counteracting cavitation · CPC title

  • driven by electric motors · CPC title

  • Testing machines, pumps, or pumping installations · CPC title

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What does patent US11542802B2 cover?
Systems and methods for monitoring, detecting, and/or intervening with respect to cavitation and pulsation events during hydraulic fracturing operations may include a supervisory controller. The supervisory controller may be configured to receive pump signals indicative of one or more of pump discharge pressure, pump suction pressure, pump speed, or pump vibration associated with operation of t…
Who is the assignee on this patent?
Bj Energy Solutions Llc
What technology area does this patent fall under?
Primary CPC classification E21B43/2607. Mapped technology areas include Fixed Constructions.
When was this patent published?
Publication date Tue Jan 03 2023 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).