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cyclone desander ODM|desanding hydrocyclone

 cyclone desander ODM|desanding hydrocyclone ZK disc stack centrifuge efficiently separates suspensions with low solid content and immiscible liquids of small density differences in two-phase and three-phase processes.

cyclone desander ODM|desanding hydrocyclone

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cyclone desander ODM|desanding hydrocyclone

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Using the force of gravity. In essence, a disc stack separator is a settling tank whose base is wrapped around the center line of the bowl. Rapid rotation of separator bowl means that the effect of gravity is replaced by a controllable centrifugal force, or gravitational force known as G-force, that can have an effect up to 10,000 times greater than the force of gravity.

A desander hydrocyclone based process system provides the most efficient method for removing sand and other solids from a liquid stream. This technology is widely used in the petroleum industry for the separation of solids from drilling fluids, produced water, and other liquid streams. Cyclone desanders, also known as desanding hydrocyclones, are a key component of these systems, offering high efficiency and reliability in the removal of solids.

The desanding hydrocyclone, also termed a desander, is a cyclonic-based unit process

Desanding Hydrocyclone

Desanding hydrocyclones are designed to remove sand and solids from liquid streams using centrifugal force. The principle behind the operation of a desanding hydrocyclone is based on the creation of a vortex within the cyclone, which causes the heavier solids to be separated from the liquid. As the liquid enters the cyclone at high velocity, it is forced to rotate, creating a centrifugal force that pushes the solids towards the outer wall of the cyclone. The separated solids are then collected at the bottom of the cyclone and discharged from the system.

Desanding hydrocyclones are highly efficient in removing solids from liquid streams, with typical removal efficiencies ranging from 90% to 99%. This high efficiency makes desanding hydrocyclones an essential component in processes where the removal of solids is critical, such as in the oil and gas industry.

Cyclone Desander

A cyclone desander is a type of desanding hydrocyclone that is specifically designed for the removal of sand and other solids from liquid streams. Cyclone desanders are typically used in applications where the concentration of solids is high, and traditional filtration methods may not be effective. The compact design of cyclone desanders makes them ideal for use in offshore drilling rigs, production platforms, and other space-constrained environments.

Cyclone desanders are available in various sizes and configurations to accommodate different flow rates and operating conditions. These systems can be customized to meet the specific requirements of each application, ensuring optimal performance and efficiency in the removal of solids from liquid streams.

Desanding Hydrocyclone Applications

Desanding hydrocyclones find a wide range of applications in the petroleum industry, including:

1. Drilling Fluids Management: Desanding hydrocyclones are used to remove solids from drilling fluids, ensuring the efficient operation of drilling equipment and preventing damage to downhole tools.

2. Produced Water Treatment: In oil and gas production, desanding hydrocyclones are used to remove sand and solids from produced water before it is discharged or reused.

3. Well Testing and Cleanup: Desanding hydrocyclones are employed during well testing and cleanup operations to separate solids from well fluids, ensuring accurate measurement and analysis of production rates.

4. Enhanced Oil Recovery: Desanding hydrocyclones play a crucial role in enhanced oil recovery processes by removing solids from injection water and improving the efficiency of oil recovery operations.

SUEZ environnement’s CYCLONIXX® range of Desander Cyclones are static cyclone …

The 2 phase disc stack separator is used to separate the fine particles from the liquid and discharge clarified liquid. Compared with decanter centrifuge, the G force of 2 phase .

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