Dynamic demulsification system for use in a gas-oil separation plant

US2017136388A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2017136388-A1
Application numberUS-201715419632-A
CountryUS
Kind codeA1
Filing dateJan 30, 2017
Priority dateJul 26, 2011
Publication dateMay 18, 2017
Grant date

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A dynamic demulsification system to facilitate the removal of water from oil for use in a gas-oil separation plant (GOSP) which has a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel includes the following system components: an in-line microwave treatment subsystem upstream of one or two of each of the dehydrator vessel, the desalter vessel and the water/oil separator vessel, each of which vessels receives a water-oil emulsion; a sensor for the real-time monitoring and transmission of data representing one or more properties of the water-oil emulsion in the respective vessel(s) and/or downstream of the respective vessel(s) with which the sensor is associated; and a processor/controller that receives the data from the sensor and transmits one or more signals to the one or both of the respective in-line microwave treatment subsystem(s) to generate and apply microwave energy of predetermined characteristics to the flowing fluid based on the properties of the emulsion.

First claim

Opening claim text (preview).

What is claimed is: 1 . An integrated dynamic demulsification system for use in a gas-oil separation plant (GOSP) to facilitate the removal of water from oil, the GOSP including at least a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel, the demulsification system comprising: an in-line microwave treatment subsystem upstream of the dehydrator vessel for receiving a water-in-oil emulsion; a sensor for the real-time monitoring and transmission of data representing one or more properties of the water-in-oil emulsion in the dehydrator vessel or downstream of the dehydrator vessel and upstream of the desalter vessel, wherein the sensor is selected from the group consisting of a buoyant structure in the dehydrator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver and an imaging system that generates images of a slipstream downstream of the dehydrator vessel and upstream of the desalter vessel; and a processor/controller that is operably coupled to at least one sensor, the at least one sensor providing data to at least one oil-separation program, wherein data from the sensor, and the at least one oil-separation program are stored in at least one memory device, the at least one oil-separation program being executable in real time by the processor/controller to: receive the data from the sensor and transmit one or more signals to the in-line microwave treatment subsystem to generate and apply microwave energy of predetermined characteristics to the flowing fluid based on the properties of the emulsion. 2 . The system of claim 1 , wherein the sensor is a buoyant structure in the dehydrator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver. 3 . The system of claim 1 , wherein the sensor comprises an imaging system that generates images of a slipstream downstream of the dehydrator vessel and upstream of the desalter vessel. 4 . An integrated dynamic demulsification system for use in a gas-oil separation plant (GOSP) to facilitate the removal of water from oil, the GOSP including at least a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel, the demulsification system comprising: an in-line microwave treatment subsystem upstream of the desalter vessel for receiving a water-in-oil emulsion; a sensor for the real-time monitoring and transmission of data representing one or more properties of the water-in-oil emulsion in the desalter vessel or downstream of the desalter vessel and upstream of the water/oil separator vessel, wherein the sensor is selected from the group consisting of a buoyant structure in the dehydrator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver and an imaging system that generates images of a slipstream downstream of the desalter vessel and upstream of the water/oil separator vessel; and a processor/controller that is operably coupled to at least one sensor, the at least one sensor providing data to at least one oil-separation program, wherein data from the sensor, and the at least one oil-separation program are stored in at least one memory device, the at least one oil-separation program being executable in real time by the processor/controller to: receive the data from the sensor and transmit one or more signals to the in-line microwave treatment subsystem to generate and apply microwave energy of predetermined characteristics to the flowing fluid based on the properties of the emulsion. 5 . The system of claim 4 , wherein the sensor is a buoyant structure that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver. 6 . The system of claim 4 , wherein the sensor comprises an imaging system that generates images of a slipstream downstream of the desalter vessel and upstream of the water/oil separator vessel. 7 . An integrated dynamic demulsification system for use in a gas-oil separation plant (GOSP) to facilitate the removal of water from oil, the GOSP including at least a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel, the demulsification system comprising: an in-line microwave treatment subsystem upstream of the water/oil separator vessel for receiving a water-in-oil emulsion; a sensor for the real-time monitoring and transmission of data representing one or more properties of the water-in-oil emulsion in the vessel or downstream of the water/oil separator vessel, wherein the sensor is selected from the group consisting of a buoyant structure in the water/oil separator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver and an imaging system that generates images of a slipstream downstream of the water/oil separator vessel; and a processor/controller that is operably coupled to at least one sensor, the at least one sensor providing data to at least one oil-separation program, wherein data from the sensor, and the at least one oil-separation program are stored in at least one memory device, the at least one oil-separation program being executable in real time by the processor/controller to: receive the data from the sensor and transmit one or more signals to the in-line microwave treatment subsystem to generate and apply microwave energy of predetermined characteristics to the flowing fluid based on the properties of the emulsion. 8 . The system of claim 7 , wherein the sensor is a buoyant structure in the water/oil separator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver. 9 . The system of claim 7 , wherein the sensor is an imaging system that generates images of a slipstream downstream of the water/oil separator vessel. 10 . An integrated dynamic demulsification system for use in a gas-oil separation plant (GOSP) to facilitate the removal of water from oil, the GOSP including at least a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel, the demulsification system comprising: a first in-line microwave treatment subsystem upstream of the dehydrator vessel for receiving a water-in-oil emulsion; a first sensor for the real-time monitoring and transmission of data representing one or more properties of the water-in-oil emulsion in the dehydrator vessel or downstream of the dehydrator vessel and upstream of the desalter vessel, wherein the first sensor is selected from the group consisting of a buoyant structure in the dehydrator vessel that continuously monitors the liquid surface using a high-frequency electromagnetic energy transmitter and/or receiver and an imaging system that generates images of a slipstream downstream of the dehydrator vessel and upstream of the desalter vessel; a second in-line microwave treatment subsystem upstream of the desalter vessel for receiving a water-in-oil emulsion; a second sensor for the real-time monitoring and transmission of data representing one or more properties of the water-in-oil emulsion in the desalter vessel or downstream of the desalter vessel and upstream of the water/oil separator vessel, wherein the second sensor is selected from the group consisting of a buoyant structure in the desalter vessel that continuously monitors the liquid surface using a high-

Assignees

Inventors

Classifications

  • Separation of liquids from each other by electricity · CPC title

  • with electrical or magnetic means · CPC title

  • by changing the temperature · CPC title

  • Breaking emulsions · CPC title

  • Controlling or regulating · CPC title

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What does patent US2017136388A1 cover?
A dynamic demulsification system to facilitate the removal of water from oil for use in a gas-oil separation plant (GOSP) which has a dehydrator vessel in fluid communication with a desalter vessel which in turn is in fluid communication with a water/oil separator vessel includes the following system components: an in-line microwave treatment subsystem upstream of one or two of each of…
Who is the assignee on this patent?
Saudi Arabian Oil Co
What technology area does this patent fall under?
Primary CPC classification B01D17/12. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Thu May 18 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).