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Effects of temporally correlated infiltration on water flow in an unsaturated-saturated system

机译:时间相关渗透对非饱和饱和系统水流的影响

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摘要

Effects of temporally correlated infiltration on water flow in an unsaturated-saturated system were investigated. Both white noise and exponentially correlated infiltration processes were considered. The moment equations of the pressure head (psi) were solved numerically to obtain the variance and autocorrelation functions of psi at 14 observation points. Monte Carlo simulations were conducted to verify the numerical results and to estimate the power spectrum of psi (S (psi psi) ). It was found that as the water flows through the system, the variance of the psi () were damped by the system: the deeper in the system, the smaller the , and the larger the correlation timescale of the infiltration process (lambda (I) ), the larger the . The unsaturated-saturated system gradually filters out the short-term fluctuations of psi and the damping effect is most significant in the upper part of the system. The fluctuations of psi is non-stationary at early time and becomes stationary as time progresses: the larger the value of lambda (I) , the longer the non-stationary period. The correlation timescale of the psi (lambda (psi) ) increases with depth and approaches a constant value at depth: the larger the value of lambda (I) , the larger the value of lambda (psi) . The results of the estimated S (psi psi) is consistent with those of the variance and autocorrelation function.
机译:研究了时间相关渗透对非饱和饱和系统中水流的影响。白噪声和指数相关的渗透过程都被考虑了。数值求解了压头的矩方程(psi),以获得psi在14个观测点的方差和自相关函数。进行了蒙特卡洛模拟,以验证数值结果并估计psi的功率谱(S(psi psi))。发现随着水流过系统,系统会抑制psi()的方差:系统越深,渗透过程越小,渗透过程的相关时间尺度就越大(λ(I) ),则越大。非饱和饱和系统逐渐滤除psi的短期波动,并且阻尼效应在系统上部最为显着。 psi的波动在早期是不稳定的,并且随着时间的推移而变得稳定:λ(I)的值越大,不稳定的时间就越长。 psi(lambda(psi))的相关时间标度随深度增加,并且在深度处接近恒定值:λ(I)的值越大,λ(psi)的值越大。估计的S(psi psi)的结果与方差和自相关函数的结果一致。

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