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黃土堆積體植物籬減沙效益與泥沙顆粒分形特征研究
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國家自然科學(xué)基金項目(41671283)


Runoff and Sediment Reduction Benefit of Hedgerows and Fractal Characteristics of Sediment Particles on Loess Plateau Slope of Engineering Accumulation
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    摘要:

    為探究植物籬措施對工程堆積體邊坡的減流減沙效益及其對侵蝕泥沙顆粒分形維數(shù)的影響,以堆積體未防護(hù)邊坡為對照,以不同放水流量對不同坡度堆積體植物籬防護(hù)邊坡進(jìn)行了放水沖刷試驗。結(jié)果表明:與對照相比,植物籬邊坡初始產(chǎn)流時間滯后100~500s,其產(chǎn)流率、產(chǎn)沙率整體均較小,產(chǎn)流率在時間尺度上表現(xiàn)為間歇性波動上升;植物籬減流效率在4%~60%之間,減沙效率范圍在15%~50%之間,減流減沙效率均隨坡度和放水流量的增加呈冪函數(shù)形式減??;各處理侵蝕泥沙顆粒中粉粒均占主導(dǎo)地位,黏粒次之,砂粒含量最少。與對照小區(qū)相比,植物籬防護(hù)邊坡侵蝕泥沙砂粒體積分?jǐn)?shù)降低,黏粒和粉粒體積分?jǐn)?shù)升高;黏粒富集率增加,砂粒富集率減小,泥沙顆粒分形維數(shù)增大。分形維數(shù)與黏粒和砂粒體積分?jǐn)?shù)之間均呈極顯著線性相關(guān),侵蝕泥沙顆粒分形維數(shù)主要由黏粒體積分?jǐn)?shù)決定。

    Abstract:

    As a kind of special landform unit, engineering accumulation is an important source of soil erosion. To explore effects of hedgerows on sediment particles fractal dimension on hillslope, and the runoff and sediment reduction effects of engineering measures, the field pouring water scouring experiments were designed for different inflow rates (35L/min, 45L/min and 55L/min) and slopes (24°, 28° and 32°) in six normal runoff plots (20m×5m). The results showed that the lagged time of initial runoff of hedgerow plots was 100~500s, and the runoff rate and sediment yield rate were less than those of the control plot. Runoff rate rose for intermittent fluctuations in time scale compared with the control plot. Hedgerow reduced the flow rate by 4%~60%, and decreased the rate of sediment by 15%~50%. Significant power function relationships of runoff and sediment reduction rate with slope and flow rate were observed, and the effect of sediment reduction was better than that of runoff reduction rate equation. Runoff sediment was dominant with silt particle, followed by clay. Compared with the control plot, the volume percentage of sand particle in sediment of the hedgerow plots was reduced. In contrast, the volume percentage of clay and silt was increased. Hedgerow plots clay enrichment rate was higher than those in the control plot, and the sand accumulation rate was less than the control plot. The fractal dimension of the hedgerow plots was bigger than that in control plots. The relationships between fractal dimension and the volume fraction of clay and sand were available for better fitting linear model, and fractal dimension of sediment erosion was mainly determined by the volume fraction of clay. The research results could provide some basic data for establishing the model of soil erosion of engineering measures under the condition of accumulation, and provide a theoretical reference for the optimal allocation to hedgerow slope.

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楊帥,李永紅,高照良,牛耀彬,白皓,王凱.黃土堆積體植物籬減沙效益與泥沙顆粒分形特征研究[J].農(nóng)業(yè)機械學(xué)報,2017,48(8):270-278. YANG Shuai, LI Yonghong, GAO Zhaoliang, NIU Yaobin, BAI Hao, WANG Kai. Runoff and Sediment Reduction Benefit of Hedgerows and Fractal Characteristics of Sediment Particles on Loess Plateau Slope of Engineering Accumulation[J]. Transactions of the Chinese Society for Agricultural Machinery,2017,48(8):270-278.

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  • 收稿日期:2017-03-29
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  • 在線發(fā)布日期: 2017-08-10
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