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10inch Desander cone
- 产品描述
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Product Description
Hydrocyclones is also called cyclone separator, The hydrocyclone desander, specifically designed with a 10-inch cone, is an essential piece of equipment used in various industrial applications for separating solids from liquids. This device operates on the principle of centrifugal force, which efficiently removes unwanted particles from a fluid mixture. In many industries, including oil and gas, mining, and wastewater treatment, the presence of sand and other solid contaminants can pose significant challenges. The hydrocyclone desander effectively addresses these issues by directing the fluid into the cone-shaped chamber. As the fluid enters, it is subjected to a spinning motion, which generates a strong centrifugal force. This force causes the heavier solid particles, such as sand, to be separated from the lighter liquid components. The 10-inch cone design of the hydrocyclone desander allows for a high capacity of fluid processing, making it suitable for large-scale operations. The size of the cone plays a crucial role in determining the efficiency of the separation process, as it influences the velocity and flow patterns within the device. By optimizing these parameters, the hydrocyclone desander can achieve a higher degree of separation, ensuring that the resulting liquid is cleaner and more suitable for further processing or disposal. Additionally, the hydrocyclone desander is known for its low maintenance requirements and cost-effectiveness. Unlike other separation technologies that may involve complex mechanical systems or extensive maintenance, the hydrocyclone relies on simple physical principles, making it a reliable choice for continuous operation. Its compact design also allows for easy integration into existing systems, further enhancing its appeal to industries looking to improve their separation processes. In summary, the hydrocyclone desander with a 10-inch cone is a vital tool for efficiently separating solids from liquids across various industrial sectors. Its effective design and operational efficiency make it a preferred choice for companies seeking to maintain high standards of fluid quality while minimizing operational costs.
A hydrocyclone has two exits on the axis:
The smaller on the bottom (underflow or reject).
The larger at the top (overflow or accept).
The underflow is generally the denser or thicker fraction, while the overflow is the lighter or more fluid fraction.FX
(SIZE)Overflow pipe
diameter(mm)Underflow
caliber
(mm)Cone
Angle(°)Maximum
feeding
sze
(mm)Pressure
(Mpa)Processing
capacity
(m²/h)Separation
particle size
(μm)710 240.260.280 120.140.160 20 16 0.03-0.4 400-550 74-250 660 180.200.200.220.240 80.110.150 20 16 0.03-0.4 250-360 74-220 610 160.180.200.220 90.100.110 20 12 0.03-0.4 200-260 74-200 500 130.140.150.160.
180.22035.45.50.65.70
80.90.10010
20
2510 0.03-0.4 140-220 74-200
74-200
74-150350 80.90.105.115.120 30.35.40.45
50.60.70
15
20
256 0.03-0.4 60-105 50-150
50-150
50-120300 55.65.80.100.120 20.25.30.35.40 15
20
255 0.05-0.4 45-90 50-120
50-120
50-150250 60.75.80.100.120 16.18.20.25.
30.35.4010
15
203 0.05-0.4 40-65 40-100
40-100
30-100200 40.50.55.60 16.20.24.28.32 15
202 0.05-0.4 25-40 40-100
10-100165 40.50.55.60 30.35.40.45.50 20
61.5 0.05-0.4 20-30 40-90 150 30.35.40.45.50 8.10.12.14.16
18.20.228
15
201.5 0.05-0.4 11-20 30-74
30-74
20-74125 25.30.35.40 8.10.12.14
16.187
81 0.05-0.4 8-15 20-100
20-74
20-100100 20.25.30.40
8.10.12.14.
16.188
15
201 0.05-0.4 5-12
10-100
10-7475 15.17.20 4.5.6.7.8.10.12 7
150.6 0.1-0.5 2-5 20-74
5-4050 11.13.15.18 3.6.8.10.12 6
50.3 0.1-0.5 1.5-3 10-74
5-3040 10.12.14.16 1.2.3.4.5.8
10.124
50.3 0.1-0.5 1-2 10-50 25 5.6.7.8 2.3.4.5 3
50.2 0.1-0.5 0.3-1 3-10
2-1010 2.3.4 1.2 4 0.1 0.1-0.6 0.05-0.1 1-5
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