Distributed intelligent sewage treatment device and using method thereof
An intelligent processing and distributed technology, applied in water/sewage treatment, water/sludge/sewage treatment, water supply devices, etc., can solve problems affecting the smoothness of main drainage pipes, corrosion of drainage pipes, and blockage of pipes. The effect of convenient daily maintenance in the later period, prolonging the service life and reducing the burden
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Embodiment 1
[0024] In this embodiment, the structure of the distributed sewage intelligent treatment device is as follows figure 1 , figure 2 As shown, it includes the sewage pipe 1 connected with the underground sewage discharge system, the impurity sedimentation tank 2, the mud delivery pump 11, the impurity collection facility 12, the first wireless pressure sensor 3-1, the second wireless pressure sensor 3-2, the third Wireless pressure sensor 3-3, first valve 6, second valve 7, inspection signal display and control system. The control system includes a single-chip microcomputer, a first wireless receiver, a second wireless receiver, a third wireless receiver, a first relay, a second relay and a third relay connected with the single-chip microcomputer.
[0025] The impurity sedimentation tank 2 is as image 3 , Figure 4 As shown, it is a combination of a cylindrical body and a truncated conical body, the upper part of which is a cylindrical body, and the lower part is a downward...
Embodiment 2
[0032] The structure of the distributed sewage intelligent treatment device described in this embodiment differs from that of Embodiment 1 in that:
[0033] The inner diameter D=8D of the cylindrical body that forms impurity sedimentation tank 2 1 , height h 4 =8D 1 , the height h of the frustum of the conical cylinder that forms the impurity sedimentation tank 2 5 =3D 1 , inner diameter at the bottom end d=1D 3 , in the above formulas, D 1 is the diameter of the sewage pipe 1, D 3 is the diameter of the mud delivery pipe 10.
[0034] The installation positions of the first wireless pressure sensor 3-1, the second wireless pressure sensor 3-2, and the third wireless pressure sensor 3-3 are as follows: the distance h between the first wireless pressure sensor 3-1 and the bottom of the impurity sedimentation tank 1 =12D 1 , the distance h between the second wireless pressure sensor 3-2 and the bottom of the impurity sedimentation tank 2 =9D 1 , the distance h between t...
Embodiment 3
[0036] The structure of the distributed sewage intelligent treatment device described in this embodiment differs from that of Embodiment 1 in that:
[0037] The inner diameter D=12D of the cylindrical body that forms impurity sedimentation tank 2 1 , height h 4 =12D 1 , the height h of the frustum of the conical cylinder that forms the impurity sedimentation tank 2 5 = 2D 1 , inner diameter at the bottom end d=1.5D 3 , in the above formulas, D 1 is the diameter of the sewage pipe 1, D 3 is the diameter of the mud delivery pipe 10.
[0038] The installation positions of the first wireless pressure sensor 3-1, the second wireless pressure sensor 3-2, and the third wireless pressure sensor 3-3 are as follows: the distance h between the first wireless pressure sensor 3-1 and the bottom of the impurity sedimentation tank 1 =14D 1 , the distance h between the second wireless pressure sensor 3-2 and the bottom of the impurity sedimentation tank 2 =8D 1 , the distance h betw...
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