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首页> 外文期刊>Journal of the American Water Resources Association >IMPACT OF RESIDENTIAL SOIL DISTURBANCE ON INFILTRATION RATE AND STORMWATER RUNOFF
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IMPACT OF RESIDENTIAL SOIL DISTURBANCE ON INFILTRATION RATE AND STORMWATER RUNOFF

机译:残余土壤扰动对入渗率和暴雨径流的影响

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Soil disturbances such as excavation and compaction in residential developments affect lawn infiltration rates and stormwater runoff. These effects were investigated via measuring saturated infiltration rates at 108 residential sites and 18 agricultural sites near Shippensburg, south-central Pennsylvania, using a double-ring infiltrometer. Residential sites included four neighborhoods distributed across three soil series classified as hydrologic soil group (HSG) B. Additional parcel data included date of house construction, percentage impervious area, lawn condition, and woody vegetation condition. Measured infiltration rates ranged from 0 to >40 cm/hour. Analysis of variance indicated significantly different mean infiltration rates (p < 0.001) for lots constructed pre-2000 (9.0 cm/hour) and those constructed post-2000 (2.8 cm/hour). Test results were used to determine a "field-tested" HSG for each site, representing disturbed soil conditions. Stormwater runoff was estimated from residential lots for a range of 24-hour design storms using the TR-55 model and several alternative methods of determining curve numbers, including five different representations of soil conditions. Curve numbers and stormwater runoff were substantially higher when based on field-tested HSGs for lots constructed post-2000 compared with lots built pre-2000 and when based on the HSG for undisturbed soils, documenting the magnitude of possible error in stormwater runoff models that neglect soil disturbance.
机译:住宅开发中的开挖和压实等土壤干扰会影响草坪的入渗率和雨水径流。通过使用双环渗透仪测量宾夕法尼亚州中南部希普斯堡附近的108个居民点和18个农业点的饱和渗透率来研究这些影响。居民点包括分布在三个土壤系列中的四个社区,这三个土壤系列被分类为水文土壤组(HSG)B。其他地块数据包括房屋建造日期,不透水百分比,草坪状况和木质植被状况。测得的渗透速率范围为0至> 40 cm /小时。方差分析表明,2000年之前建造的批次(9.0厘米/小时)和2000年之后建造的批次(2.8厘米/小时)的平均浸润率显着不同(p <0.001)。测试结果用于确定每个地点的“现场测试” HSG,代表受干扰的土壤状况。使用TR-55模型和确定曲线编号的几种替代方法(包括五种不同的土壤状况),针对一系列24小时设计暴风雨,从居民区估算了雨水径流。与2000年之前建造的地段相比,2000年后建造的地段基于实地测试的HSG时,曲线数和雨水径流显着更高,这证明了忽略了雨水径流模型中可能出现的误差的幅度土壤扰动。

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