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Estimation of non-point source pollution loads under uncertain information

机译:不确定信息下的面源污染负荷估算

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摘要

Many kinds of uncertainties are involved, such as random, fuzzy, grey, unascertained property and so on, in soil erosion process. To exactly predict the non-point source pollution loads, some uncertainties should be taken into consideration. Aiming at the deficiency of present blind number theory being helpless for fuzziness, a novel blind number, i.e. extended-blind number, was introduced by substituting a set of triangular fuzzy numbers (TFNs), expressed as α-cuts, for interval values in present blind number, and the expected value of extended-blind number was also brought forward by referring to the current blind number theory. On the basis of denoting the parameters of Universal Soil Loss Equation (USLE) as extended-blind parameters, a novel USLE model was established for quantitatively evaluating soil erosion loss and non-point source pollution loads. As a case, the uncertain USLE was employed for predicting the soil erosion loss and non-point source pollution loads of absorbed nitrogen and phosphorus in a district in the Hangbu-Fengle River basin, in the upstream of Chaohu Lake watershed. The results show that it is feasible in theory to extend blind number into fuzzy environment and reliable on conclusion to apply extended-blind number theory for predicting non-point source pollution loads.
机译:水土流失过程涉及许多不确定性,如随机性,模糊性,灰色,不确定性等。为了准确预测面源污染负荷,应考虑一些不确定性。针对当前盲数理论对模糊性无能为力的缺陷,通过用表示为α-割的三角模糊数(TFN)集合代替当前的区间值,引入了一个新的盲数,即扩展盲数。盲数,并参考当前的盲数理论提出了扩展盲数的期望值。在将通用土壤流失方程(USLE)的参数表示为扩展盲参数的基础上,建立了一种新的USLE模型,用于定量评估土壤侵蚀损失和面源污染负荷。以不确定的USLE为例,对巢湖流域上游杭埠-丰乐河流域某区的土壤侵蚀损失和氮,磷吸收面源污染负荷进行预测。结果表明,将盲数扩展到模糊环境中在理论上是可行的,在结论上应用扩展盲数理论预测面源污染负荷是可靠的。

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