Three-level integrated gas-water separator
A gas-water separator, three-level integration technology, applied in separation methods, dispersed particle separation, liquid degassing, etc., can solve the problems of low separation efficiency and limited amount of separated water, and achieve improved separation efficiency, easy production and cost. low effect
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specific Embodiment approach 1
[0007] Specific implementation mode one: combine Figure 1-Figure 7 with Figure 10 To illustrate this embodiment, a three-stage integrated gas-water separator in this embodiment includes a centrifugal separator cylinder 1, and the three-stage integrated gas-water separator also includes a labyrinth catcher 2, a non-uniform inertial separation Component 3, deflector 4 and catcher support frame 5, the top of the centrifugal separator cylinder 1 is provided with an exhaust hole 1-1, and the bottom end of the centrifugal separator cylinder 1 is provided with a drain hole 1-2, The cylinder side wall of the centrifugal separator cylinder 1 is respectively provided with an air-water mixture inlet 1-3, a deflector water flow inlet 1-4 and a deflector water flow outlet 1-5, a labyrinth catcher 2 and a non-uniform inertia The separation element 3 is arranged in the centrifugal separator cylinder 1 sequentially from top to bottom, and the labyrinth catcher 2 and the non-uniform inertia...
specific Embodiment approach 2
[0008] Specific implementation mode two: combination Figure 8 with Figure 9 Describe this embodiment, the catcher supporting frame 5 of this embodiment comprises columnar tube 5-1, two steel rings 5-2 and a plurality of steel bars 5-3, two steel rings 5-2 are arranged in parallel, columnar tube 5- 1 is arranged in two steel rings 5-2 and fixedly connected with the two steel rings 5-2 by a plurality of steel bars 5-3. With this setting, the connection effect is good. Other compositions and connections are the same as in the first embodiment.
specific Embodiment approach 3
[0009] Specific implementation mode three: combination figure 2 , Image 6 with Figure 7 This embodiment will be described. The deflector 4-2 in this embodiment is an arc deflector. Such an arrangement not only facilitates bonding with the outer wall of the centrifugal separator cylinder 1, but also facilitates the discharge of water flow. Other compositions and connections are the same as those in Embodiment 1 or Embodiment 2.
[0010] Working process of the present invention is:
[0011] 1. The gas-water mixture enters the centrifugal separator cylinder 1 from the inlet of the separator, and forms a strong rotational motion under the action of centrifugal force. Due to the action of centrifugal sedimentation, the light phase (gas) moves toward the center of the axis, forming an upward Gas bag; the heavy phase (water) moves to the wall of the separator, thus completing the first stage separation of gas and water.
[0012] 2. The water separated by the first stage is di...
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