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A variational approach to reconstruction of an initial tsunami source perturbation

机译:重建初始海啸源扰动的变分方法

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Tsunamis are gravitational, i.e. gravity-controlled waves generated by a given motion of the bottom. There are different natural phenomena, such as submarine slumps, slides, volcanic explosions, earthquakes, etc. that can lead to a tsunami. This paper deals with the case where the tsunami source is an earthquake. The mathematical model studied here is based on shallow water theory, which is used extensively in tsunami modeling. The inverse problem consists of determining an unknown initial tsunami source q(x, y) by using measurements f_m(t) of the height of a passing tsunami wave at a finite number of given points (x_m,y_m), m = 1,2,…,M, of the coastal area. The proposed approach is based on the weak solution theory for hyperbolic PDEs and adjoint problem method for minimization of the corresponding cost functional. The adjoint problem is defined to obtain an explicit gradient formula for the cost functional J(q) = ‖Aq — F‖~2, F = (f_1,..., f_M). Numerical algorithms are proposed for the direct as well as adjoint problems. Conjugate gradient algorithm based on explicit gradient formula is used for numerical solution of the inverse problem. Results of computational experiments presented for the synthetic noise free and random noisy data in real scale illustrate bounds of applicability of the proposed approach, also its efficiency and accuracy.
机译:海啸是引力,即由给定的底部运动产生的重力控制波。有多种自然现象,例如海底坍塌,滑坡,火山爆炸,地震等,都可能导致海啸。本文讨论了海啸源是地震的情况。这里研究的数学模型是基于浅水理论的,该理论在海啸建模中被广泛使用。反问题包括在有限数量的给定点(x_m,y_m)上使用海啸通过高度的测量值f_m(t)来确定未知的初始海啸源q(x,y),m = 1,2 ,…,M,沿海地区。所提出的方法基于双曲型偏微分方程的弱解理论和用于最小化相应成本函数的伴随问题方法。定义伴随问题以获得成本函数J(q)=“ Aq — F”〜2,F =(f_1,...,f_M)的显式梯度公式。针对直接和伴随问题提出了数值算法。将基于显式梯度公式的共轭梯度算法用于反问题的数值求解。针对合成的无噪声和随机噪声数据进行了实际规模的计算实验,结果表明了该方法的适用范围,以及其效率和准确性。

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