Large reservoir sounding reference field construction method and application

A datum and sounding technology, applied in mechanical equipment, measuring devices, water resources assessment and other directions, it can solve changes, the beam angle effect is difficult to correct, mostly between 0 and 30°, and the inclination angle of some reservoir sections exceeds 30°. °, the slope of special parts even reached 90° and other problems

Active Publication Date: 2021-07-09
CHINA THREE GORGES CORPORATION +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

It will cause the change of sound velocity and cause the refraction of sound rays, which will seriously affect the sounding accuracy of canyon reservoirs
[0005] (2) After the reservoir is impounded, the sounding accuracy of the conventional depth sounder is limited under the condition of large water depth
[0006] With the completion and operation of the Three Gorges and important reservoirs in the upper reaches, the water depth has increased significantly compared with that before the impoundment. The speed of the ship is measured, and the speed of the topographic observation ship in the Three Gorges reservoir area has been reduced to 4kn (2m/s). At the same time, in order to ensure the stability of the results, a section needs to be continuously observed twice, and finally the data with better accuracy is obtained, which seriously limits the operation. efficiency
At the same time, due to a series of problems such as the inability to completely eliminate the influence of the surveying ship attitude, the difficulty in synchronizing the time of the sounding and positioning signals, and the difficulty in correcting the beam angle effect, etc., especially the inclination angle of the nearshore slope is mostly between 0° and 30°, and the inclination angle of so

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  • Large reservoir sounding reference field construction method and application
  • Large reservoir sounding reference field construction method and application
  • Large reservoir sounding reference field construction method and application

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Embodiment 1

[0069] This embodiment takes the construction of the reference field of the Three Gorges Reservoir as an example to illustrate the specific implementation process of the present invention.

[0070] A method for constructing a large-scale reservoir sounding reference field, comprising the following steps:

[0071] The high-precision underwater datum field of the Three Gorges Reservoir consists of datum points and datum planes, which are respectively located at the top of the diverge embankment in the upper reaches of the Three Gorges, Shawan (Three Gorges Maritime Affairs Office), Wuxiangmiao (waterway water gauge) and the mouth of the Jingjiang River, see figure 1 . Construction will be carried out at the flood limit water level (145m), and high-precision reservoir bank topography, cross-section measurement and reference point observation will be carried out in the section of 145-175m by land measurement, so as to form a high-precision, high-resolution background topography an...

Embodiment 2

[0106] The purpose of the reference field:

[0107] After the water level in the reservoir area is impounded to 175m after the flood, the bathymetry test and analysis can be carried out by using the completed datum point and datum level. Based on the sounding reference point, it is possible to conduct research on sounding error, positioning error, and water level correction error, including the nominal accuracy of the sounder, sounding method, actual depth of sounding, and the influence of dynamic draft; positioning accuracy, GNSS data update rate, and differential method Influence, etc.; water level reckoning model, etc. Based on the sounding datum, it is possible to conduct research on the sounding environment error and GNSS three-dimensional channel sounding accuracy, including wave effects, positioning center deviation effects, single-beam sounding attitude effects, sounding delay effects, ship speed effects, beam angle effects, Coupling effect, water body characteristics...

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Abstract

The invention provides a large reservoir sounding reference field construction method and application. The method comprises the steps of reference field site selection: in order to meet the calibration technical requirements of various sounding devices, arranging reference points and reference surfaces in various forms, constructing a reference point, and constructing a reference plane. Research on sounding errors, positioning errors and water level correction errors can be carried out on the basis of the sounding reference point, including the nominal precision of a depth finder, the sounding mode, the actual sounding depth and the dynamic draft influence, positioning precision, GNSS data updating rate, difference method influence and the like, a water level calculation model and the like. Based on the depth sounding reference surface, depth sounding environment error research and GNSS three-dimensional water channel depth sounding precision research can be carried out. The influence research includesa wave effect, a positioning center deviation effect, a single-beam sounding attitude effect, a sounding delay effect, a ship speed effect, a beam angle effect, a coupling effect, water body characteristics, sounding sampling frequency and smoothing mode, sound ray tracking and multi-beam sounding system sounding point cloud precision analysis.

Description

technical field [0001] The invention belongs to the technical field of reservoir sounding, and in particular relates to a construction method and application of a large-scale reservoir sounding reference field. Background technique [0002] Problems facing the current sounding: [0003] (1) After the reservoir is impounded, the impact of the sounding environment on the sounding accuracy tends to be complicated. [0004] The average working water depth of inland water depth measurement in my country is generally less than 50m, and large water depth measurement is generally more common in ocean measurement. Due to the different operating environments (water depth, water temperature, flow field, wave, salinity), the accuracy requirements are different, and the observation methods and indicators followed are not suitable for inland water bodies. After the impoundment of important reservoirs in the Three Gorges and its upper reaches, the water depth doubles. For example, after ...

Claims

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Application Information

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IPC IPC(8): G01F23/296
CPCG01F23/2961Y02A90/30G01F23/2962G01S15/88G01S15/89
Inventor 任实王海闫金波聂金华王冕刘世振全小龙陶冶吕超楠
Owner CHINA THREE GORGES CORPORATION
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