113 resultados para Feedlot runoff


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The main factors influencing soil erosion include the net rain excess, the water depth, the velocity, the shear stress of overland flows, and the erosion-resisting capacity of soil. The laws of these factors varying with the slope gradient were investigated by using the kinematic wave theory. Furthermore, the critical slope gradient of erosion was driven. The analysis shows that the critical slope gradient of soil erosion is dependent on grain size, soil bulk density, surface roughness, runoff length, net rain excess, and the friction coefficient of soil, etc. The critical slope gradient has been estimated theoretically with its range between 41.5 degrees similar to 50 degrees.

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A two-dimensional kinematic wave model was developed for simulating runoff generation and flow concentration on an experimental infiltrating hillslope receiving artificial rainfall. Experimental observations on runoff generation and flow concentration on irregular hillslopes showed that the topography of the slope surface controlled the direction and flow lines of overland flow. The model-simulated results satisfactorily compared with experimental observations. The erosive ability of the concentrated flow was found to mainly depend on the ratio of the width and depth of confluent grooves.

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Samples of groundwater, river water, river sediment, paddy soil, rice seeds, hen eggs, fish, umbilical cord blood, and newborn meconium were collected from October 2002 to October 2003 near a large site in China used for the disassembly of obsolete transformers and other electronic or electrical waste. Six indicator PCB congeners, three non-ortho dioxin-like PCB congeners, and six organochlorine pesticides were determined in the samples by GC with electron capture detector. The results demonstrated that the local environment and edible foods had been seriously polluted by toxic PCBs and organochlorine pesticides. The actual daily intakes (ADIs) of these pollutants were estimated for local residents living in the area. The intake data showed that the contents of PCBs in these local residents were substantial, as the ADI estimates greatly exceed the reference doses set by the World Health Organization and the United States Agency for Toxic Substances and Disease Registry. The presence of the indicator PCB congeners in the cord blood and the meconium samples, as well as significant correlations (r(2) > 0.80, p < 0.05) between these levels, suggests a potential biotransfer of these indicators from mothers to their newborns. This preliminary study showed that obsolete transformers and other electronic or electrical waste can be an important source for the emission of persistent organic pollutants into the local environment, such as through leakage, evaporation, runoff, and leaching. Contamination from this source appears to have reached the level considered to be a serious threat to environmental and human health around the disassembly site.

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Budgets and dynamics of nitrogen and phosphorus in Lake Donghu were investigated from Oct. 1997 to Sept. 1999. The water residence time was estimated to be 89 days in 1997-1998 and 124 days in 1998-1999. The total external loadings were 53 g N m(-2) yr(-1) and 3.2 g P m(-2) yr(-1) in 1997-1998, and 42 g N m(-2) yr(-1) and 3.1 g P m(-2) yr(-1) in 1998-1999. On average, about 80% of nitrogen and phosphorus input was from sewage outlets, while the rest was from land runoff and precipitation. Ammonium ion was the most abundant form of inorganic nitrogen in the sewage. The nutrient output was mainly through water outflow and fish catch. The percentages of nutrients in fish were estimated to be 7.8%-11.2% for nitrogen and 47.6%- 49.6% for phosphorus. Lake Donghu has a very high nutrient retention (63% for nitrogen and 79% for phosphorus) mainly due to its closure and long water residence time. Sedimentation is an important nutrient retention mechanism in this lake. Using mass balance method, we estimated that denitrification of Lake Donghu involves about 50% of the retained nitrogen. Lake Donghu is rich in inorganic nitrogen and phosphorus and showed great seasonal variation.

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A non-linear perturbation model for river flow forecasting is developed, based on consideration of catchment wetness using an antecedent precipitation index (API). Catchment seasonality, of the form accounted for in the linear perturbation model (the LPM), and non-linear behaviour both in the runoff generation mechanism and in the flow routing processes are represented by a constrained nan-linear model, the NLPM-API. A total of ten catchments, across a range of climatic conditions and catchment area magnitudes, located in China and in other countries, were selected for testing daily rainfall-runoff forecasting with this model. It was found that the NLPM-API model was significantly more efficient than the original linear perturbation model (the LPM). However, restric tion of explicit nan-linearity to the runoff generation process, in the simpler LPM-API form of the model, did not produce a significantly lower value of the efficiency in flood forecasting, in terms of the model efficiency index R-2. (C) 1997 Elsevier Science B.V.

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通过室内人工模拟降雨,研究了草本植物不同覆盖度土质路面的径流水动力学特征以及路面的产流产沙过程。结果表明,路面径流的弗劳德数和雷诺数属层流的急流范畴,并且二者与径流流速及过水断面单位能量相同,均随草本植物覆盖度的增大而减小。而Darcy-weisbach阻力系数以及曼宁糙率系数则均随覆盖度的增大而增大。在不同覆盖度土质路面上,径流量随径流时间急剧增大后趋于稳定,且二者符合移轴双曲线关系,而输沙率则经历了先增大后减小的过程。随着植被覆盖度的增大,土质道路的水分入渗率逐渐增大,而径流量、输沙率及含沙率均逐渐减小。该研究表明土质路面种植的草本植物具有较好的水土保持功能,为阐明草本植物与土壤侵蚀的关系提供了理论依据。

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采用室内模拟降雨研究了不同降雨强度和坡度对红壤坡面降雨入渗、产流产沙的影响。结果表明:产流时间随降雨强度和坡度的增大而提前。对于入渗率较低的红壤坡面,径流强度主要受坡面承雨强度的影响,径流强度随雨强增大而增大,随坡度增大而减小。坡面入渗率随降雨强度的增大表现为先增大后减小。降雨强度增大能够增加水分入渗,但这种促进作用仅在一定的降雨强度范围内起作用。坡面入渗率随坡度增大表现为先增大后减小,20°左右存在一个坡面入渗率变化的临界坡度。坡面细沟侵蚀发展状况对稳定坡面入渗率有比较大的影响。径流率和入渗率与降雨历时的关系分别可以用幂函数和对数函数描述。在75,100 mm/h降雨强度下,产沙量随坡度的增大而增大,而50 mm/h降雨强度下,产沙量在20°时达到最大值而后出现下降,在20°附近存在一个侵蚀产沙量变化的临界坡度。

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通过野外模拟降雨试验,研究黄土区天然草坡的产流、产沙规律。试验设2个地类(草地和裸地)、3个降雨强度水平和3个坡度水平。结果表明:坡面初始产流时间与降雨强度呈负相关关系,与裸地相比,草地在降雨强度较大时(>2.0 mm/min)加快坡面产流,在中(1.0~2.0 mm/min)、小等级降雨强度(<1.0 mm/min)下则延缓产流;降雨强度较大时,裸地大坡度的产流强度随时间呈对数函数形式增长,中小等级降雨强度下的增长方式不符合这一规律;与中、小等级降雨强度不同,裸地在降雨强度较大时的产流产沙过程不一致;与裸地相比,草地的产流过程更为复杂,并不符合产流强度随时间呈对数函数形式增长的一般规律,草地产沙过程线与产流过程线的相对吻合程度受降雨强度的影响不明显。

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黄土高原半干旱地区在中国旱作农业生产中占有重要地位。干旱缺水与水土流失并存是制约该区域经济发展的两大瓶颈因素。水保农业和径流农业两种旱作农业生产方式已趋于成熟,但对天然降水调控利用能力低下,难于实现农业生产的优质高产高效。集雨补灌生态农业是在继承水保农业和径流农业成功技术基础上,对降雨调控利用方式的进一步发展,它能在时间和空间两个方面实现降雨径流的富集叠加,能充分发挥环境资源与水肥光热因子的协同增效作用,大幅度提高农业生产力,实现同步缓解干旱缺水与水土流失双重目标。集雨补灌是黄土高原半干旱区农业可持续发展的一种综合模式和战略性措施,对黄土高原半干旱区生态型现代农业发展具有重要推动作用。

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通过室内人工降雨+放水冲刷相结合的方法,对5个坡度(3~18°),5种雨强(1~3mm.min-1),5组放水流量(1.4~9.0kg.m-2.s-1)下的黄棉土土质路面和早熟禾植物路面进行了共60余场次试验,对比分析了植物路相对于土质路侵蚀过程差异及产水、减沙效果。结果表明:在放水冲刷条件下,植物路侵蚀率随放水历时降低,其过程可用对数函数描述;土质路面侵蚀率变化复杂。两类道路的放水流量与侵蚀强度均呈现幂函数变化,且植物道路表现出明显的防蚀作用。雨强增加引起径流量、侵蚀强度增加,土质路的增加快于植物路;坡度增大时,侵蚀强度增大,径流深则为植物路稳定,土质路有小幅增加。植物路相对土质路的减沙幅度为26.24%~47.22%,减少能力可用抛物线方程描述,但植物路较土质路面有利于产生径流,径流深增加幅度平均为58.7%~144.1%,由于径流的泥沙含量大大降低,道路的侵蚀产沙反而有一定降低。

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降雨径流的调控利用是缓解黄土高原干旱缺水与控制水土流失的有效手段,研究区域降雨径流调控利用潜力的定量评价对黄土高原降雨径流合理利用的宏观决策与规划设计具有重要意义。以黄土高原为例,将可以调控利用的最大降雨径流量作为资源化潜力值,从宏观尺度上,系统分析了影响该潜力的各个因素,确定出黄土高原降雨径流调控利用潜力的各项评价指标,利用GIS技术,建立了降雨径流各个影响因素的专题图层,提取出各个影响因素专题信息。在上述基础上,引入人工神经网络建模方法,建立了黄土高原降雨径流调控利用潜力BP网络模型,并利用实际资料对网络模型进行了训练和预测,取得了较好的结果。评价模型可供黄土高原降雨径流调控利用及其生态与环境保护工作参考。

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在中国科学院水利部水土保持研究所,采用2个不同坡长小区室内模拟降雨试验方法,对黄土坡面下坡位侵蚀过程进行研究。结果表明:1)坡面下坡位侵蚀模数随降雨过程、降雨强度及坡度的变化均具有大小交错,上下波动的特征,侵蚀模数随降雨过程的变化总体呈先上升后趋于稳定的态势,随降雨强度的增大而增加,随坡度的增大而先增大后减小,再增大再减小;2)坡面上、下坡位侵蚀模数随降雨过程、坡度及降雨强度的变化均具有明显差异,下坡位明显不如上坡位;3)坡面上坡位汇流和下坡位产流与坡面上坡位输沙对坡面下坡位侵蚀模数的影响可用二元线性方程很好地描述,前者的贡献率为47.8%,后者为20.4%;只通过观测分析小区平均侵蚀特征得出的坡面侵蚀过程,掩盖了坡面下坡位的真实侵蚀过程,采取水土保持措施减少坡面上坡位汇流及增加降雨就地入渗,可以有效地治理坡面下坡位的水土流失。

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弃土弃渣是工程建设产生的最主要地面组成物质之一。采用野外放水冲刷试验方法,对黄河班多水电站工程区弃土弃渣水土流失过程进行了研究。(1)不同供水流量下,产流率随供水过程的动态变化整体呈增长趋势,可用幂函数方程描述,开始产流后的5 min内产流过程的变化幅度较大,随后较为平缓,并趋于基本稳定;(2)不同供水流量下,产沙率随供水历时的增长而减少,可用对数相关方程描述,小流量下变化过程波动较小,大流量下变化幅度较大;(3)不同供水流量下,含沙量随着供水历时的增长而减少,可用对数相关方程描述。各流量下的变化趋势基本一致;(4)次产流深、次产沙模数皆随供水流量的增大而增加,增加趋势基本相同,皆可用对数相关方程描述。平均含沙量随供水流量的增大先增加后减小,临界值为7.17 L/min,可用抛物线相关方程描述;(5)次产沙模数随次产流深的增大而增加,表现为很好的正相关关系,可用对数相关方程来描述。

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阶段性是描述河流径流量丰枯变化持续长度的主要特征。在年际变化较大的长时间序列中,通过确定不同最小控制时段,可以把高频变化的年份和时段有效合并,从而更好描述不同流量的持续特征。在划分径流量丰枯连续自然阶段的基础上,根据最小控制时段,对相邻阶段进行逐步合并,提取并分析了黄河三门峡水文站1470-1997年528 a的逐年天然径流量阶段性变化特征。分析表明,黄河天然径流量多年平均值为511.81×108m3,变差系数为0.20,年际变化非常剧烈;随着最小控制时段的增加,阶段数呈指数函数迅速减少;每一阶段平均、最小和最大阶段长度呈显著的线性增加趋势;各阶段天然径流量的差异也逐步减小。当最小控制时段为5,10,20,30 a时,可以划分为60,24,15,9个阶段,相应的平均阶段长度也分别为8.7,21.7,27.4,57.9 a,阶段最大值与最小值的极差分别是平均值的71.8%,62.4%,47.6%和13.7%。

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通过野外模拟降雨试验,研究了施用SP对黄土坡面产流、产沙的影响,并对实验数据进行数学模拟,建立了SP施用量与产流、产沙强度间的关系模型。结果表明:SP施用量与产流时间、平均产流强度呈二次函数相关关系,与产沙强度呈线性负相关关系。SP用量在0~2.42 g/m2之间时,能够延缓坡面产流,用量为1.21 g/m2时延缓产流效果最明显;用量介于0~3.31 g/m2之间时,能够增加土壤入渗,减少坡面产流量,用量1.65 g/m2的增渗减流效果最佳;施用SP后,能够减少坡面输沙强度,且用量越大,减沙效果越明显。SP可影响坡面产流过程,用量1.8 g/m2时,能够减小产流初期径流强度增幅,用量为3.6 g/m2时,其产流过程线与对照极接近,而施用量增加到5.4 g/m2时,产流强度明显增大。SP对坡面产沙过程的影响表现为:随施用量增大,产沙强度峰值呈逐步减小的变化趋势。