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Variable parameter McCarthy-Muskingum flow transport model for compound channels accounting for distributed non-uniform lateral flow

机译:考虑了分布不均匀侧向流的复合通道可变参数McCarthy-Muskingum输流模型

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In this study, the fully volume conservative simplified hydrodynamic-based variable parameter McCarthy-Muskingum (VPMM) flow transport model advocated by Perumal and Price in 2013 is extended to exclusively incorporate the distributed non-uniform lateral flow in the routing scheme accounting for compound river channel flows. The revised VPMM formulation is exclusively derived from the combined form of the de Saint-Venant's continuity and momentum equations with the spatiotemporally distributed lateral flow which is solved using the finite difference box scheme. This revised model could address the earlier model limitations of: (i) non-accounting non-uniformly distributed lateral flow, (ii) ignoring floodplain flow, and (iii) non-consideration of catchment dynamics of lateral flow generation restricting its real-time application. The efficacy of the revised formulation is tested to simulate 16 years (1980-1995) river runoff from real-time storm events under scarce morpho-hydrological data conditions in a tropical monsoon-type 48 km Bolani-Gomlai reach of the Brahmani River in eastern India. The spatiotemporally distributed lateral flows generated in real-time is computed by water balance approach accounting for catchment characteristics of normalized network area function, land use land cover classes, and soil textural classes; and hydro-meteorological variables of precipitation, soil moisture, minimum and maximum temperatures, wind speed, relative humidity, and solar radiation. The multiple error measures used in this study and the simulation results reveal that the revised VPMM model has a greater practical utility in estimating the event-based and long-term meso-scale river runoff (both discharge and its stage) at any ungauged site, enhancing its application for real-time flood estimation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,由Perumal和Price在2013年提出的完全体积保守的基于简化的基于水动力的可变参数麦卡锡-穆斯金格姆(VPMM)流量传输模型得到扩展,将排布的非均匀侧向流量专门纳入考虑复合河流的选路方案中渠道流。修改后的VPMM公式仅由de Saint-Venant的连续性和动量方程的组合形式以及时空分布的横向流组合而成,可使用有限差分盒法求解。修改后的模型可以解决早期模型的局限性:(i)不考虑非均匀分布的侧向流量;(ii)忽略洪泛区流量;(iii)不考虑侧向流产生的汇水动力学,从而限制了其实时性。应用。测试了修改后的配方的功效,以模拟稀少的形态水文学数据条件下在东部布拉马尼河的热带季风型48公里Bolani-Gomlai河段实时降雨事件中16年(1980-1995年)的河流径流印度。实时生成的时空分布的横向流量是通过水平衡法计算的,其中考虑了归一化网络面积函数,土地利用土地覆盖类别和土壤质地类别的汇水特征;以及降水,土壤湿度,最低和最高温度,风速,相对湿度和太阳辐射的水文气象变量。本研究中使用的多重误差测度和模拟结果表明,修订后的VPMM模型在估算任何未开挖地点的基于事件的中长期径流(包括流量和水位)方面具有更大的实用性,增强其在实时洪水估算中的应用。 (C)2015 Elsevier B.V.保留所有权利。

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