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HESS Opinions: The complementary merits of competing modelling philosophies in hydrology

机译:HESS观点:水文学中竞争建模哲学的互补优点

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In hydrology, two somewhat competing philosophies form the basis of most process-based models. At one endpoint of this continuum are detailed, high-resolution descriptions of small-scale processes that are numerically integrated to larger scales (e.g. catchments). At the other endpoint of the continuum are spatially lumped representations of the system that express the hydrological response via, in the extreme case, a single linear transfer function. Many other models, developed starting from these two contrasting endpoints, plot along this continuum with different degrees of spatial resolutions and process complexities. A better understanding of the respective basis as well as the respective shortcomings of different modelling philosophies has the potential to improve our models. In this paper we analyse several frequently communicated beliefs and assumptions to identify, discuss and emphasize the functional similarity of the seemingly competing modelling philosophies. We argue that deficiencies in model applications largely do not depend on the modelling philosophy, although some models may be more suitable for specific applications than others and vice versa, but rather on the way a model is implemented. Based on the premises that any model can be implemented at any desired degree of detail and that any type of model remains to some degree conceptual, we argue that a convergence of modelling strategies may hold some value for advancing the development of hydrological models.
机译:在水文学中,两种相互竞争的理念构成了大多数基于过程的模型的基础。在这一连续体的一个端点上,对数字化集成到较大规模(例如集水区)的小规模过程进行了详细的高分辨率描述。在连续体的另一个端点是系统的空间集总表示,通过极端线性情况下的单个线性传递函数来表达水文响应。从这两个相反的端点开始开发的许多其他模型,沿着该连续体绘制,具有不同程度的空间分辨率和过程复杂性。更好地理解不同建模哲学的各自基础以及各自的不足,有可能改善我们的模型。在本文中,我们分析了几种经常交流的信念和假设,以识别,讨论和强调看似相互竞争的建模哲学的功能相似性。我们认为,尽管某些模型可能比其他模型更适合于特定应用,反之亦然,但模型实现的方式很大程度上取决于模型应用程序中的缺陷,尽管有些模型可能更适合于特定的应用程序,反之亦然。基于可以在任何所需的细节程度下实施任何模型并且在某种程度上仍保留任何类型的模型的前提,我们认为建模策略的融合可能对推进水文模型的开发具有一定的价值。

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