Buoy body for river water quality monitoring
A water quality monitoring and river technology, applied in the direction of general water supply saving, testing water, material inspection products, etc., can solve the problems of high work intensity and low detection efficiency, and achieve the effect of improving collection capacity
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Embodiment 1
[0064] refer to figure 1 and figure 2 , a buoy body used for river water quality monitoring, comprising a floating body 1, and the floating body 1 is connected with a connecting component for confining it to float in a fixed area of the river. A detector 2 is provided on the upper side of the floating body 1, and the detector 2 includes a detection electrode 21 (see image 3 ), the floating body 1 is also provided with an electric drive assembly 3 for driving the detection electrode 21 to ascend and descend and an electric drive assembly 4 for flushing the detection end of the detection electrode 21, and the detector 2, the electric drive assembly 3 and the electric wash assembly 4 all pass through A remote communication component is connected with the remote control system for data and control, and the remote communication component is configured to control the data output interface of the detector 2, the signal receiving interface of the detector 2, and the control of th...
Embodiment 2
[0078] see Figure 7 and Figure 8 The difference between this embodiment and Embodiment 1 is that the upper side of the floating body 1 is provided with a lifting device 100 for lifting the collecting frame 8 and a triggering device 200 for starting the lifting device 100 .
[0079] Specifically, the floating body 1 is provided with a support frame 300, the support frame 300 is a gantry frame, the support frame 300 includes two vertically arranged uprights 301 and a beam 302 fixed on the upper ends of the two uprights 301, and the two uprights 301 are respectively fixed When the floating body 1 is located on both sides of the extraction opening 16 , the beams 302 of the support frame 300 are located directly above the extraction opening 16 . The lifting device 100 further includes a tension spring 101 , a sliding rod 102 , and a hook 103 . The sliding rod 102 is arranged vertically, the upper side of the sliding rod 102 penetrates the middle of the beam 302 of the support f...
Embodiment 3
[0086] see Figure 9 The difference between this embodiment and Embodiment 2 is that the two ends of the beam 302 are respectively connected to the upper ends of the two uprights 301 through bearings, the hook 103 includes an upwardly arranged arc-shaped hook groove 1031, and the handle 82 includes Hooked cylindrical segment 821 arranged horizontally.
[0087] When the collecting frame 8 is lifted by the handle 82 , the hooking cylindrical section 821 of the handle 82 is hung in the arc-shaped hook groove 1031 . Based on the rotational connection between the beam 302 and the upright column 301, and the cooperation between the hooking cylindrical section 821 of the handle 82 and the arc-shaped hook groove 1031, the lifted collecting frame 8 has the properties of a part of the gyroscope. When the floating body 1 floats, the floating body 1 The conduction of the floating of the rubbish to the collection frame 8 will be reduced, reducing the occurrence of the overturning of the c...
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