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1.
以安徽理工大学为研究对象,应用4种低影响开发(LID)方案(植草沟、下沉式绿地、雨水罐和植草沟-下沉式绿地-雨水罐组合)构建雨洪管理模型(SWMM),模拟不同雨水重现期下各种LID方案的水文和水质性能,并评价了经济效益.结果表明:植草沟的径流削减效率最好,可延迟流量峰现时间,且能有效地削减污染负荷;除雨水罐外,另外3种LID实践方案具有良好的环境效益;从成本效益上分析,下沉式绿地和组合LID实践方案的污染物控制效果较好,但其单位削减率成本高,植草沟对污染物控制效果不理想,但其具有最低的单位削减率;若想取得较好的污染物控制效果,则需要投入更大的成本,可以采用下沉式绿地或组合LID实践方案,下沉式绿地或组合LID实践方案不仅能有效削减峰值流量,缓解城市排水管网负荷,且对污染物的削减效果较好.可为中国校园中LID实践的应用决策提供理论支持.  相似文献   
2.
HE Qian 《干旱区科学》2020,12(5):865-886
Soil erosion in the Three-River Headwaters Region (TRHR) of the Qinghai-Tibet Plateau in China has a significant impact on local economic development and ecological environment. Vegetation and precipitation are considered to be the main factors for the variation in soil erosion. However, it is a big challenge to analyze the impacts of precipitation and vegetation respectively as well as their combined effects on soil erosion from the pixel scale. To assess the influences of vegetation and precipitation on the variation of soil erosion from 2005 to 2015, we employed the Revised Universal Soil Loss Equation (RUSLE) model to evaluate soil erosion in the TRHR, and then developed a method using the Logarithmic Mean Divisia Index model (LMDI) which can exponentially decompose the influencing factors, to calculate the contribution values of the vegetation cover factor (C factor) and the rainfall erosivity factor (R factor) to the variation of soil erosion from the pixel scale. In general, soil erosion in the TRHR was alleviated from 2005 to 2015, of which about 54.95% of the area where soil erosion decreased was caused by the combined effects of the C factor and the R factor, and 41.31% was caused by the change in the R factor. There were relatively few areas with increased soil erosion modulus, of which 64.10% of the area where soil erosion increased was caused by the change in the C factor, and 23.88% was caused by the combined effects of the C factor and the R factor. Therefore, the combined effects of the C factor and the R factor were regarded as the main driving force for the decrease of soil erosion, while the C factor was the dominant factor for the increase of soil erosion. The area with decreased soil erosion caused by the C factor (12.10×103 km2) was larger than the area with increased soil erosion caused by the C factor (8.30×103 km2), which indicated that vegetation had a positive effect on soil erosion. This study generally put forward a new method for quantitative assessment of the impacts of the influencing factors on soil erosion, and also provided a scientific basis for the regional control of soil erosion.  相似文献   
3.
为了观测降水数据的准确性,选取了南通市4个台站2018年4月—10月份的DCS1型称重式降水传感器和SL3-1型翻斗雨量传感器观测的降水数据,分析两者观测的日降水量和降水总量等方面的差异。结果显示:在选取的观测样本中,以人工观测的降雨日数为参考,称重传感器的平均一致率为91.2%;以翻斗传感器观测的降雨日为参考,称重传感器的一致率为94.5%。称重传感器观测的累积降水量与翻斗传感器观测的累积降水量相对平均误差为-1.55%,符合中国气象局规定的相对误差不超过±4%的规范要求。在分析日降水量方面,发现称重传感器比翻斗传感器观测量平均偏小0.29 mm;有明显性降水时,两者在日降水量等级判别上基本一致。称重传感器观测的数据小于翻斗传感器观测的数据概率要高,两种传感器观测的差值分布较为一致。称重传感器在捕捉微量降水的能力不比翻斗传感器差,甚至更好。称重传感器观测的日降水量与翻斗传感器观测的日降水量相关系数为0.99826,达到0.01显著相关的水平。  相似文献   
4.
降雨类型与坡度对棕壤垄沟系统产流产沙的影响   总被引:1,自引:0,他引:1  
为深入理解棕壤垄作坡耕地的土壤侵蚀机理,利用1.60 m×0.53 m的试验土槽,设计2个降雨类型,即增强型(70~70~100~100 mm/h)和减弱型(100~100~70~70 mm/h),以及2个坡度(9°和18°)的人工模拟降雨试验。每个雨型分2个阶段(阶段I、阶段II),每个阶段进行相同雨强的2个场次降雨,每个场次降雨历时20 min。结果表明:(1)雨强对径流量呈显著影响(P0.05),100 mm/h雨强下的径流量70 mm/h时的径流量。在减弱型雨型下,坡度对径流量影响显著(P0.05),而增强型雨型下在不同阶段坡度对径流量的影响不同。(2)雨强对产沙量的影响显著(P0.05),在阶段Ⅰ降雨中,100 mm/h雨强下9°和18°坡面的平均每分钟产沙量分别为70 mm/h雨强下的23.98,9.07倍。在70 mm/h雨强下,坡度对产沙量的影响显著(P0.05),而100 mm/h雨强下不同阶段坡度对径流量的影响具有差异性。(3)100 mm/h雨强在不同雨型中出现的时序对产沙量影响不显著(P0.05);在70 mm/h雨强下,产沙量整体较小,基本在15 g/min以下。同一雨强在不同雨型中的时序对径流量均存在显著影响(P0.05)。(4)总径流量从大到小依次为:9°减弱型18°减弱型9°增强型18°增强型;总产沙量从大到小依次为:18°增强型18°减弱型9°减弱型9°增强型。不同雨型下,雨强发生改变后,累计径流量和累计产沙量增加速率和雨强的改变具有一致性。  相似文献   
5.
水力侵蚀对砒砂岩区土壤有机碳空间变异性的影响   总被引:2,自引:0,他引:2  
以侵蚀剧烈的砒砂岩区为研究对象,应用地统计学Kriging插值法准确描述水力侵蚀下土壤有机碳空间动态迁移过程来探究侵蚀与碳平衡的关系并为有效治理砒砂岩区坡面水土流失提供科学的参考。结果表明:(1)降雨前后各土层有机碳均随着土层增加而减少,表现为中等变异、空间自相关均为正相关且0—10 cm土层自相关性最大。降雨后0—20 cm土层有机碳含量减少而20—40 cm土层增加,且各土层变异程度均较雨前减弱。(2)降雨前后土壤有机碳分别与高斯模型,球状模型较为拟合,且变程值均随土层增加而增大。降雨前后0—10 cm土层表现均为强烈空间相关性且雨后结构比增大,而10—40 cm均为中等相关性雨后结构比减小。(3)降雨后空间异质性减弱斑块面积变大,总体表现为同一土层坡上侵蚀坡下沉积,而不同土层下0—20 cm土层表现为侵蚀,20—40 cm土层表现为沉积。(4)降雨前后土壤有机碳均与黏粒呈现较显著正相关,其中降雨前0—10 cm土层有机碳与黏粒为极显著正相关,降雨后各土层相关性增强均为极显著正相关。但降雨前后土壤有机碳与粉粒相关性均较小且不显著,与砂粒则基本表现为负相关。  相似文献   
6.
[目的]探究黄麻土工布覆盖条件下花岗岩红壤表土坡面侵蚀特性,为花岗岩红壤区坡面土壤侵蚀防治提供科学依据。[方法]通过室内模拟降雨试验,在2个坡度(5°和15°坡度)、3种密度(无覆盖,6 cm×6 cm及3 cm×3 cm网格)的黄麻土工布覆盖条件下,研究极端降雨条件下(90 mm/h)花岗岩红壤表土的坡面侵蚀特性,并观测径流系数、土壤侵蚀速率、泥沙颗粒变化规律及富集率等指标。[结果]坡面径流随降雨历时增加而增加,土壤侵蚀速率则相反,表明侵蚀过程是一个分离受限的过程。和对照组相比,黄麻土工布覆盖在不同试验条件下都具有明显的减流减沙作用。另外,由侵蚀泥沙的粒径分选规律可知,坡面土壤中的黏粒和粉粒大小的颗粒倾向于被优先选择性搬运,其结果致使坡面石英粗颗粒富集,在缓坡(5°)与高密度黄麻土工布覆盖条件下(3 cm×3 cm网格)尤为突出。坡面石英粗颗粒随降雨历时增加不断富集进一步增加了原位坡面的侵蚀抗性,产生了土壤侵蚀速率随降雨历时不断降低的现象。[结论]高密度黄麻土工布的覆盖能够有效地减流减沙,增加原位坡面抗蚀性,是一种有效的水土保持措施,在今后的土壤侵蚀防治和劣地恢复工作中应该被重视。  相似文献   
7.
1966-2017年贵州省降雨侵蚀力的时空分布特征   总被引:2,自引:1,他引:1  
[目的] 分析贵州省1966—2017年降雨侵蚀力R值的时空演变规律,为评估该地区降雨对土壤侵蚀的防治、制定水土保持措施及农业生产规划提供参考。[方法] 基于贵州省33个气象站点1966—2017年的日降雨资料,利用克里金插值法、经验正交函数(EOF)方法、Mann-Kendall检验、Morlet小波分析法等,对贵州省52 a的降雨侵蚀力R值的时空特征进行了分析。[结果] ①EOF分析方法可以较好地解释降水侵蚀力的时空分布特征,其前两个特征向量累计贡献率达52%,揭示了贵州省降雨侵蚀力全局型和东西反向型两种典型的分布模态。分析特征向量所对应的时间系数可得,贵州省的降水侵蚀力主要表现为全省全年偏大、全省全年偏小、东大西小、东小西大4种类型;②贵州省降雨侵蚀力R值年内主要受汛期降雨影响,全省各县市汛期降雨侵蚀力R值均占全年总量的60%以上;③在年际变化上,降雨侵蚀力R值存在多突变的现象,1971—1981年突变频率最为频繁。通过周期检验发现其变化主周期为28 a,次周期分别为12 a和6 a。[结论] 贵州省降雨侵蚀力的时空分布与降雨量的时空分布趋势近似,整体呈现南部大北部小,夏季大冬季小的趋势,在未来几年内降雨侵蚀力R值有上升的趋势。  相似文献   
8.
Estuaries act as nurseries for many penaeid prawns, but these habitats are highly susceptible to salinity decline through flooding. The rate of salinity decline and duration of exposure to non‐optimal salinity may affect survival and subsequent recruitment of prawns to the fishery. This study aimed to determine the effect of salinity fluctuations observed in local estuaries during flood events using a novel dilution approach. Mortality of juvenile Melicertus plebejus (Hess) was assessed after 24 hr exposure to 24 rates of salinity decline ranging from 0.01% to 20% per hr. After the salinity decline, prawns were held at the final salinities for five days before again assessing mortality as well as aerobic metabolic rate and prawn water content. Salinity decline from 36 to ~0.8 led to 50% mortality, but continued exposure to low salinity for five days increased mortality at this salinity to 99% and shifted the 50% mortality point to salinity ~5. Aerobic metabolic rate and water content data suggested the cause of mortality due to exposure to salinities < 5 was osmoregulatory failure. Rapid salinity declines over 24 hr and sustained low salinity due to flooding could compromise the survival of juvenile prawns, potentially reducing recruitment to the fishery.  相似文献   
9.
在全球变暖的气候背景下,近年来干旱频发且不断加剧,对人类的生产生活造成了严重的影响。目前,干旱监测已成为全球气候变化研究的一个热点课题。遥感技术以其客观、及时、经济、覆盖范围广、数据连续等优点,已被证明是干旱监测中最具前景的技术手段。本文基于遥感原理,介绍了归一化植被指数、温度状态指数、标准化降雨指数和标准化降雨蒸散指数等几种常见的干旱指数,综述了运用不同指数干旱监测的主要应用。最后针对目前研究中存在的问题,对今后研究的主要方向作出了展望。  相似文献   
10.
Aeolian-fluvial interplay erosion regions are subject to intense soil erosion and are of particular concern in loess areas of northwestern China.Understanding the composition,distribution,and transport processes of eroded sediments in these regions is of considerable scientific significance for controlling soil erosion.In this study,based on laboratory rainfall simulation experiments,we analyzed rainfall-induced erosion processes on sand-covered loess slopes(SS)with different sand cover patterns(including length and thickness)and uncovered loess slopes(LS)to investigate the influences of sand cover on erosion processes of loess slopes in case regions of aeolian-fluvial erosion.The grain-size curves of eroded sediments were fitted using the Weibull function.Compositions of eroded sediments under different sand cover patterns and rainfall intensities were analyzed to explore sediment transport modes of SS.The influences of sand cover amount and pattern on erosion processes of loess slopes were also discussed.The results show that sand cover on loess slopes influences the proportion of loess erosion and that the compositions of eroded sediments vary between SS and LS.Sand cover on loess slopes transforms silt erosion into sand erosion by reducing splash erosion and changing the rainfall-induced erosion processes.The percentage of eroded sand from SS in the early stage of runoff and sediment generation is always higher than that in the late stage.Sand cover on loess slopes aggravates loess erosion,not only by adding sand as additional eroded sediments but also by increasing the amount of eroded loess,compared with the loess slopes without sand cover.The influence of sand cover pattern on runoff yield and the amount of eroded sediments is larger than that of sand cover amount.Furthermore,given the same sand cover pattern,a thicker sand cover could increase sand erosion while a thinner sand cover could aggravate loess erosion.This difference explains the existence of intense erosion on slopes that are thinly covered with sand in regions where aeolian erosion and fluvial erosion interact.  相似文献   
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