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基于立體攝影技術(shù)的細(xì)溝與細(xì)溝水流參數(shù)測(cè)量
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國(guó)家自然科學(xué)基金項(xiàng)目(41271299)和水利部黃土高原水土流失過(guò)程與控制重點(diǎn)實(shí)驗(yàn)室開(kāi)放課題基金項(xiàng)目(2017001)


Measurement and Characteristics of Rill Geometry and Flow Parameter Based on Photogrammetry
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    摘要:

    細(xì)溝和細(xì)溝水流參數(shù)的準(zhǔn)確測(cè)量可為深化坡面土壤侵蝕過(guò)程研究提供重要理論依據(jù)?;诹Ⅲw攝影測(cè)量技術(shù),,以坡度為15°和20°的黃土坡面為研究對(duì)象,采用人工模擬徑流沖刷的方法,,對(duì)比不同時(shí)刻坡面的高精度數(shù)字高程模型DEM,,提出了動(dòng)床條件下坡面細(xì)溝寬度、深度以及細(xì)溝水流寬度,、深度的測(cè)量和計(jì)算方法,,分析了2個(gè)坡度處理下坡面細(xì)溝形態(tài)、細(xì)溝水流特征及其變化規(guī)律,,探討了立體攝影測(cè)量技術(shù)與其他測(cè)量技術(shù)在細(xì)溝形態(tài)及徑流特征參數(shù)測(cè)量方面的異同,。結(jié)果表明:經(jīng)過(guò)比例尺的校正,可以在垂直拍攝的立體攝影照片上直接準(zhǔn)確測(cè)量細(xì)溝寬度和細(xì)溝水流寬度,;運(yùn)用內(nèi)插法,,立體攝影測(cè)量技術(shù)能較準(zhǔn)確地測(cè)量細(xì)溝深度和細(xì)溝水流深度的實(shí)時(shí)動(dòng)態(tài)變化,。隨坡長(zhǎng)的增加,,細(xì)溝深度逐漸增大,而細(xì)溝水流深度則無(wú)明顯變化趨勢(shì),;細(xì)溝寬度隨坡長(zhǎng)的增加呈先增大后減小的變化趨勢(shì),,而細(xì)溝水流寬度逐漸減小,;20°坡度下細(xì)溝寬度和深度的增加速率分別是15°坡度下的1.7倍和1.3倍,;同20°坡度相比,15°坡度條件下的細(xì)溝水流的寬度增加了1.7%~13.1%,,而2個(gè)試驗(yàn)坡度下的細(xì)溝水流深度無(wú)明顯差異,。

    Abstract:

    Accurate measurements of rill geometry and flow parameters provide theoretical basis for erosion processes on hillslopes. Rill width and depth are basic rill morphological characteristics. Rill flow width and depth are the foundation for calculating hydraulic and hydrodynamic parameters. A soil box (2.0m long, 0.3m wide and 0.5m deep) was subjected to a 140s movablebed scouring test under a surface inflow rate of 1L/min with slope gradients of 15° and 20°. Based on photogrammetry, point cloud and highprecision DEMs of the soil bed at different times were extracted. Measurements of rill depth and width, and rill flow depth and width were made. Variation trends of rill morphology and rill flow characteristics were analyzed and differences between photogrammetry and other measurement methods were discussed. The results showed that rill width and rill flow width could be measured directly from perpendicularly shot photographs after proportional scale calibration. Based on interpolation principal, dynamic variations of rill depth and rill flow depth could be measured. With increasing slope length, rill depth was increased while rill flow depth showed no significant trend. Rill width was increased and then decreased while rill flow width was decreased gradually along the soil bed. Increasing rates of rill widths and depths with slope gradient of 20° were 1.7 and 1.3 times as those with slope gradient of 15°. Rill flow widths in different crosssections with slope gradient of 15° were 1.7%~13.1% larger than those with slope gradient of 20°, while rill flow depths showed little difference between these two slope gradients. Rill depths and rill flow depths obtained by manual measurements with a steel ruler were 3.3%~5.1% and 91.0%~178.5% higher than those obtained by photogrammetry. Compared with traditional methods and 3D laser scanning technique, photogrammetry had speed, resolution and noncontact advantages and it can also overcome rill wall shield and prevent the occurrence of point cloud “black holes”.

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覃超,鄭粉莉,徐錫蒙,何煦.基于立體攝影技術(shù)的細(xì)溝與細(xì)溝水流參數(shù)測(cè)量[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2016,47(11):150-156. Qin Chao, Zheng Fenli, Xu Ximeng, He Xu. Measurement and Characteristics of Rill Geometry and Flow Parameter Based on Photogrammetry[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(11):150-156.

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  • 收稿日期:2016-06-08
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  • 在線發(fā)布日期: 2016-11-10
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