水运工程关键计量标准及溯源技术研究

项目来源

国家重点研发计划(NKRD)

项目主持人

杨鲲

项目受资助机构

天津大学

项目编号

2018YFF0212201

立项年度

2018

立项时间

未公开

项目级别

国家级

研究期限

未知 / 未知

受资助金额

103.00万元

学科

国家质量基础的共性技术研究与应用

学科代码

未公开

基金类别

“国家质量基础的共性技术研究与应用”重点专项

关键词

含沙量 ; 溯源 ; 标准装置 ; Sediment concentration ; Traceability ; Standard device

参与者

李一博;韩鸿胜

参与机构

长江水利委员会长江科学院;交通运输部天津水运工程科学研究所

项目标书摘要:高精度水体含沙量测量仪是进行水体研究的重要设备。目前,我国高精度含沙量测量仪大量依赖进口,且国内外尚没有完善的高精度含沙量设备计量检测方法,难以对含沙量测量设备进行规范有效的检定及校准。因此,高精度含沙量设备计量检测方法及溯源技术的研究既可以填补国内含沙量测量仪计量领域的空白,同时也会带来巨大的社会效益和经济效益。本课题通过配置高精度水体悬沙场,利用悬沙场作为标准器计量含沙量的测量仪,建立稳定悬移质泥沙浓度场的数学模型,提出了含沙量测量仪计量校准方法,并研制了格栅式和机械搅拌式含沙量测量仪计量标准装置,提高了含沙量测量仪计量校准能力。实验表明,在含沙量浓度0.1 千克每立方米到30千克每立方米范围之内,当前含沙量测量仪计量标准装置样机所构建悬沙场的相对标准不确定度小于1%,能够满足大多数含沙量测量仪的计量需求。

Application Abstract: High-precision sand content measuring instrument is an important equipment for water body research.At present,my country's high-precision sand content measuring instrument relies heavily on imports,and there is no comprehensive high-precision sand content measurement method at home and abroad,so it is difficult to carry out standardized and effective verification and calibration for sand content measurement equipment.Therefore,the research of high-precision sand content equipment measurement,detection methods and traceability technology can not only fill the gap in the field of domestic sand content measurement instruments,but also bring huge social and economic benefits.In this project,by configuring a high-precision water body suspended sand field,the suspended sand field is used as a standard instrument to measure the sediment concentration.A mathematical model of the stable suspended sediment concentration field is established,and the test and calibration method of the sediment concentration measuring instrument is proposed.The grid type and mechanical stirring type sand content measuring instrument measurement standard devices are developed,which improve the measurement and calibration ability of the sand content measuring instrument.Experiments have shown that within the range of 0.1 kg/m3 to 30 kg/m3 of sand content,the relative standard uncertainty of the suspended sand field constructed by the current sand content meter measurement standard device prototype is less than 1%,which can meet measurement needs of most of the sand content measurement instrument.

项目受资助省

天津市

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  • 1.Calibration system design for multi-beam sonar

    • 关键词:
    • Acoustic generators;Underwater acoustics;Calibration;Bathymetry;Sonar;Acoustic metrologies;Beam widths;Calibration system;Control device;Geometrical indices;Large-scales;Multi dimensional;Multibeam sonar;Operations control;Sound source levels
    • Liu, Yicheng;Ye, Song;Zhang, Anmin;Li, Mingyuan
    • 《2021 2nd International Conference on Electrical Technology and Automatic Control, ICETAC 2021》
    • 2021年
    • October 22, 2021 - October 24, 2021
    • Chongqing, Virtual, China
    • 会议

    A set of calibration system for multi-beam sonar is designed by the principle and method of underwater acoustic metrology. Using the multi-dimensional operation control device, the calibration for acoustical index is completed in the anechoic pool, including the sound source level and beam width. The calibration for geometrical index is carried out in the large scale and deep-water prototype pool, including the bathymetric accuracy. Components and method of the calibration system are introduced, as well as the expanded uncertainty of the calibration system is presented. By comparing the calibrating value and the indicating or nominal value of the detected multi-beam sonar, test results show that the sound source level error is less than 0.7dB, the beam width indication error is less than 10% and the bathymetry value error is less than 0.2%. © 2021 Institute of Physics Publishing. All rights reserved.

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  • 2.Vibration-based Processing and Classification Method for Oil Well-testing Data from Downhole Pressure Gauges

    • Feng Xin;Li Shaohui;Feng Qiang;Liu Shugui
    • 《2nd International Conference on Geoscience and Environmental Chemistry》
    • 2020年
    • OCT 09-11, 2020
    • Tianjin Univ Sci & Technol, Tianjin, PEOPLES R CHINA
    • 会议

    During petroleum exploration and exploitation, the oil well-testing data collected by pressure gauges are used for monitoring the well condition and recording the reservoir performance. However, due to the large number of the collected data, the classification of this large volume of data requires a previous processing for the removal of noise and outliers. It is impractical to partition and process these data manually. Vibration-based features reflect geological properties and offer a promising option to fulfil such requirements. Based on the 75 on-site measured samples, the time-frequency-domain features are extracted and the classification performance of three classical classifiers are investigated. Then the downhole data processing and classification method is present by analysing the cross interaction of different types of data features and different classification mechanism. Several feature combinations are tested to establish a processing flow that can efficiently remove the noise and preserve the shape of curves, high signal to noise ratio rates, with minimum absolute errors. The results show that optimal multi-feature combination can achieve the highest working stage identification rate of 72%, the parameters optimized support vector machine can achieve the better classification performance than other listed classifiers. This paper provides a theoretical study for the data denoising and processing to enhance the working stage classification accuracy.

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  • 3.A High-Precision Time Delay Estimation Method Based on Fourth-Order Cumulant

    • 关键词:
    • Laplace transforms;Correlation methods;Timing circuits;Gaussian distribution;Gaussian noise (electronic);Cross correlation methods;Generalized cross correlation methods;Generalized cross correlations;High-order cumulant;Laplace distributions;Laplace noise;Time delay estimation;Time delay estimation method
    • Zhang, Yabin;Li, Shengquan;Zhu, Jianjun;Du, Weidong
    • 《3rd International Conference on Circuits, System and Simulation, ICCSS 2019》
    • 2019年
    • June 13, 2019 - June 15, 2019
    • Nanjing, China
    • 会议

    Time delay is a very significant measurement in the field of detection and positioning. The accuracy of time delay estimation directly influences the precision and reliability of the positioning. Aiming at improving the accuracy of time delay estimation in positioning, a new method of high precision time delay estimation is proposed in this paper. Assuming the background noise as Gaussian distribution and Laplace distribution, the new method firstly performs auto-correlation and cross-correlation operation on the received signal to suppress noise initially, and then performs fourth order cumulant operation to further suppress noise and finally extract time delay information by cross correlation method. Comparing with generalized cross-correlation method, second-correlation method and high-order cumulant method, the new method can effectively suppress Gaussian noise and Laplace noise interference. The new method can achieve higher precision and obtain high precise detection and positioning. At last the simulation results verify the effectiveness of the new method. © 2019 IEEE.

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  • 4.Study on the Flow-sediment Conditions and River-bed Erosion and Deposition of Chongqing Reach after the Impoundment of Three Gorges Reservoir

    • 关键词:
    • Rivers;Deposition;Hydraulics;Reservoirs (water);Sediments;Digital storage;Scour;Cascade reservoirs;Chongqing cities;Erosion and deposition;Normal operations;Prototype observations;Sediment erosion;Sediment problems;Three gorges reservoir
    • Wu, Huali;Jin, Zhongwu;Zhou, Yinjun
    • 《2019 5th International Conference on Hydraulic and Civil Engineering, ICHCE 2019》
    • 2019年
    • May 10, 2019 - May 12, 2019
    • Nanjing, China
    • 会议

    Chongqing city is the important node of golden waterway of Yangtze River. As the promotion of the Yangtze River economic belt strategy and normal operation of Three Gorges Reservoir (TGR), more and more attention has been paid to the sediment problem of Chongqing reach. After the experimental storage of 175m in the TGR, Chongqing reach is located in the fluctuating backwater area, with export boundary conditions and river-bed erosion and deposition changed. In recent years, with the water storage of cascade reservoirs in the lower reaches of Jinsha River, the condition of water inflow and sediment in this section has changed and the river-bed is adjusted accordingly. According to prototype observation data from 2003 to 2017, the flow-sediment conditions and river-bed erosion and deposition of Chongqing reach after the impoundment of TGR at different stages were comarred and analyzed. Results showed that during the initial storage period of TGR, from June 2003 to May 2008, sediment erosion and sediment was mainly related to water and sediment of upstream, with whole reach in a state of erosion and intensity was about 140.8 million m3 every year. After the impoundment of TGR, from September 2008 to October 2012, the condition of incoming water and sediment in Chongqing reach maintained original change trend and sediment erosion was mainly related to impoundment of TGR, with whole reach in a state of erosion, but intensity was small. From October 2012 to December 2017, sand from upstream of Chongqing reach reduced greatly, so river bed was drastically adjusted and scour intensity increased significantly, was about 312.2 million m3 every year. It concluded that decrease of upstream sediment is one of the important reasons for increased scour intensity in Chongqing reach. © Published under licence by IOP Publishing Ltd.

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  • 5.Research on Lamb wave-mixing method to detect and locate the micro-cracks in plate

    • Ma, Chang;Li, Yibo;Rui, Xiaobo;Zhang, Shuo;Xiao, Qiyang;Zeng, Zhoumo
    • 《2019 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE 》
    • 2019年
    • 会议

    As traditional linear Lamb wave technique is insensitive to early stage damage such as micro-cracks and the existing nonlinear Lamb wave methods have difficulty in locating the damage, this paper proposes a novel Lamb wave-mixing method to detect and locate micro-cracks in plate, which extends the wave-mixing method in bulk wave to Lamb wave. Taking advantage of the characteristics of different modes of Lamb wave with different velocities, the meeting problem in hulk wave is changed into a pursuit problem to realize the location of the micro-crack. The pursuit process of S0 mode and A0 mode Lamb wave in a plate with micro-crack was simulated in the finite element method. The results show that when S0 mode Lamb wave catches up with A0 mode in the crack region, there will be obvious wave mixing effect. The closer the meeting location is to the micro-crack, the larger the amplitude of difference frequency signal will be. The feasibility of Lamb wave-mixing method to locate the micro-crack is verified by an experiment.

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