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Reverse flood and pollution routing with the lag-and-route model

机译:滞后路线模型逆向洪水和污染路线

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Reverse routing can be used to transfer flood- or pollution-related information monitored at a downstream gauging station to an ungauged upstream cross-section. This signal identification problem is ill-posed and, as such, is sensitive to perturbations in the data to be inverted; therefore, the amplification of errors, e.g., those befalling measurements, must be controlled. Storage routing models are parsimonious diffusion wave substitutes and well suited for conversion to direct reverse routers. We present efficient inversion frameworks based on the lag-and-route (single reservoir plus exact reverse lag-step) and the reservoirs-in-series models. In both cases we invert a centred finite difference scheme of the reservoir storage balance equation that involves only one value of the unknown signal; signal values identified in previous reverse time steps, which would carry perturbations, are absent. This simple structure endows the reverse scheme with robustness. Procedures are verified with perfect and with error-seeded data; solution oscillations caused by the latter are damped by low-pass filtering. Both inverse routing models regain the upstream signals with high fidelity. Reverse storage routing is exemplified in a demonstration of reservoir control and in a field case of solute transport in a stream.
机译:反向路由可用于将在下游测量站监视的与洪水或污染相关的信息传输到未开放的上游横截面。该信号识别问题不适当地解决,因此对要反转的数据中的扰动很敏感;因此,必须控制误差的放大,例如那些下降的测量。存储路由模型是简化的扩散波替代品,非常适合转换为直接反向路由器。我们基于滞后路线(单个油藏加上精确的反向滞后步长)和串联油藏模型提出了有效的反演框架。在这两种情况下,我们都将储层存储平衡方程的中心有限差分方案求逆,该方案仅涉及未知信号的一个值。缺少在先前的反向时间步长中标识的信号值(该值会带来扰动)。这种简单的结构使反向方案具有鲁棒性。程序已通过完善且具有错误种子的数据进行了验证;后者引起的固溶振荡被低通滤波抑制。两种反向路由模型均以高保真度重新获得上游信号。在储层控制的演示中以及在野外进行溶质运移的情况下,都以反向存储为例。

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