Method and system for automatically controlling water level of inverted siphon in open channel
An inverted siphon and open channel technology, applied in control/regulation systems, liquid level control, non-electric variable control, etc., can solve the problems of insufficient water supply, downstream flow fluctuations, abandoned water, etc., to reduce costs, improve water delivery efficiency, The effect of ensuring safe operation
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Embodiment 1
[0027] This embodiment is an automatic control system for the inverted siphon water level of an open channel, such as figure 1 Said. This embodiment includes: a section of an open channel section 7, an inverted siphon 6 is connected in series downstream of the open channel section, a working gate 4 is provided downstream of the inverted siphon, and the working gate is provided with an inverted siphon outlet water level sensor 3, Siphon outlet flow sensor 5; the working gate opening and closing mechanism of the working gate is connected to the working gate PLC, the inverted siphon outlet water level sensor, the inverted siphon outlet flow sensor and the working gate PLC are combined with the open channel storage capacity calculation The control of the program is connected with the data processor 2. A control gate 9 is provided upstream of the open channel section, and the control gate is provided with a water level sensor 10 before the control gate, a water level sensor 8 after t...
Embodiment 2
[0036] This embodiment is an improvement of the first embodiment, and is a refinement of the first embodiment regarding the control and data processor, such as figure 2 Shown. The control and data processor in this embodiment includes: a central processing unit, a parameter input unit, and a monitoring display unit.
[0037] The control and data processor described in this embodiment is an industrial control computer, which is a dedicated industrial control device centered on an ARM chip. Complicated logic operations can be performed, and an external storage system with considerable capacity can perform complex logic operations and control operations.
Embodiment 3
[0039] This embodiment is a method for automatically controlling the water level of an inverted siphon in an open channel using the system described in the above embodiment. The flowchart of the method is as follows image 3 Shown. The variable controlled by the method described in this embodiment is the volume of the water body, that is, the "open channel control target storage capacity". The control of this variable is indirect, that is, based on the corresponding relationship between the volume of the water body and the water level, and indirectly by controlling the water level. Control of the volume of water bodies. In the control process, the target water level in front of the gate is not fixed, but changes dynamically with the change of flow. The steps of the method described in this embodiment are as follows:
[0040] Step 1: The step of inputting the parameters of the control system: used to set the physical parameters of the open channel section, inverted siphon, contr...
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