River bed elevation detection method and system based on ultrasonic reflection waveform

An ultrasonic and reflected wave technology is applied in the field of riverbed elevation detection based on ultrasonic reflection waveforms, which can solve the problems of large differences, inability to detect, and low accuracy of riverbed elevation measurement, and achieve accurate measurement and reliable floating mud layer surface elevation. Effect

Active Publication Date: 2020-12-15
BEIJING JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At this time, using the threshold trigger method to determine the receiving time of the reflected wave will have the following disadvantages: First, the difference between the receiving time of the reflected wave determined by the threshold method and the real receiving time of the reflected wave is relatively large, which makes the measurement accuracy of the riverbed elevation low; The threshold method can only roughly measure the surface elevation of the sediment 230, and cannot obtain the surface elevation of the floating mud layer 220 that is more concerned in the project; third, the sediment in the water body is likely to cause rapid attenuation of the ultrasonic wave when it travels back and forth in the water, resulting in The reflected wave intensity is below the threshold and cannot be detected
The above deficiencies greatly restrict the accuracy, applicability and reliability of ultrasonic river bed elevation detection technology

Method used

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  • River bed elevation detection method and system based on ultrasonic reflection waveform
  • River bed elevation detection method and system based on ultrasonic reflection waveform
  • River bed elevation detection method and system based on ultrasonic reflection waveform

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Experimental program
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Effect test

Embodiment 1

[0048] image 3 A schematic flow chart of a riverbed elevation detection method based on ultrasonic reflection waveforms provided in this embodiment, refer to image 3 , the method includes:

[0049] S1 receives the ultrasonic digital signal after analog-to-digital conversion in each sampling period through the ultrasonic transducer installed in the water body.

[0050] The abscissa of the ultrasonic digital signal after analog-to-digital conversion is time, and the ordinate is signal strength.

[0051] S2 judges whether the ultrasonic reflection waveform can be used for the analysis of the riverbed elevation and the surface elevation of the floating mud layer according to the ultrasonic digital signal, if not, return to step S1, and if yes, execute step S3.

[0052] Calculate the amplitudes of all pulses in the ultrasonic digital signal, and arrange them into an amplitude sequence according to time, and extract a statistical value of the amplitude sequence as the noise puls...

Embodiment 2

[0070] Figure 6 It is a schematic diagram of a river bed elevation detection system based on ultrasonic reflection waveforms of this embodiment, which is installed in an ultrasonic transducer, referring to Figure 6 , the system includes: a reflected wave validity judgment module 300 , a river bed reflected wave arrival time recognition module 400 , a mud layer surface reflected wave arrival time recognition module 500 , a river bed and floating mud layer surface elevation calculation module 600 . The reflected wave effectiveness judgment module 300 , the river bed reflected wave arrival time recognition module 400 , the mud layer surface reflected wave arrival time recognition module 500 , and the river bed and floating mud layer surface elevation calculation module 600 are executed sequentially in chronological order.

[0071] Reflected wave validity judgment module 300, used to judge whether the ultrasonic reflected waveform can be used for the analysis of river bed elevat...

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Abstract

The invention provides an ultrasonic and reflection waveform-based riverbed elevation detection method and system. The ultrasonic and reflection waveform-based riverbed elevation detection method comprises the steps of S1, receiving an ultrasonic digital signal of each sampling period after analog-digital conversion by an ultrasonic transducer arranged in a water body; S2, judging whether an ultrasonic and reflection waveform can be used for riverbed elevation and floating mud surface elevation analysis or not according to the ultrasonic digital signal, if not, returning to the step S1, if not, executing the step S3; S3, identifying moment when a riverbed reflection wave arrives at the ultrasonic transducer, and identifying moment when a floating mud surface reflection wave arrives at theultrasonic transducer; and S4, calculating riverbed and floating mud surface elevation according to the moment when the riverbed reflection wave arrives at the ultrasonic transducer and the moment when the floating mud surface reflection wave arrives at the ultrasonic transducer. By the method, accurate and reliable detection of riverbed elevation can be achieved, and the floating mud surface elevation can be simultaneously measured.

Description

technical field [0001] The invention relates to the technical field of water conservancy measurement ultrasound, in particular to a method and system for detecting river bed elevation based on ultrasonic reflection waveforms. Background technique [0002] The river bed is the geometric boundary of the water body of the river. It is usually composed of bedrock, pebbles and sediments, and is in a state of constant erosion or deposition under the action of water flow. The scouring and silting of the riverbed is manifested by changes in the elevation of the riverbed, which can have a serious impact on the safety and reliable operation of dams, bridges, water intakes, waterways and ports and other wading structures. Therefore, accurate detection of riverbed elevation is an important goal to be realized in hydraulic engineering. [0003] Underwater ultrasonic ranging is the main technology for river bed elevation measurement at this stage. The working principle of this technology...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01C5/00G01S15/10G01S7/539
CPCG01C5/00G01S7/539G01S15/10
Inventor 陈启刚毋浩杰林海立杨佐磊
Owner BEIJING JIAOTONG UNIV
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