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Using Remote Sensing Data to Parameterize Ice Jam Modeling for a Northern Inland Delta

机译:使用遥感数据对北部内陆三角洲的冰堵建模进行参数化

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The Slave River is a northern river in Canada, with ice being an important component of its flow regime for at least half of the year. During the spring breakup period, ice jams and ice-jam flooding can occur in the Slave River Delta, which is of benefit for the replenishment of moisture and sediment required to maintain the ecological integrity of the delta. To better understand the ice jam processes that lead to flooding, as well as the replenishment of the delta, the one-dimensional hydraulic river ice model RIVICE was implemented to simulate and explore ice jam formation in the Slave River Delta. Incoming ice volume, a crucial input parameter for RIVICE, was determined by the novel approach of using MODIS space-born remote sensing imagery. Space-borne and air-borne remote sensing data were used to parameterize the upstream ice volume available for ice jamming. Gauged data was used to complement modeling calibration and validation. HEC-RAS, another one-dimensional hydrodynamic model, was used to determine ice volumes required for equilibrium jams and the upper limit of ice volume that a jam can sustain, as well as being used as a threshold for the volumes estimated by the dynamic ice jam simulations using RIVICE. Parameter sensitivity analysis shows that morphological and hydraulic properties have great impacts on the ice jam length and water depth in the Slave River Delta.
机译:奴隶河是加拿大的北部河流,在至少一半的时间里,冰是其流域的重要组成部分。在春季解体期,奴隶河三角洲可能会发生冰堵和冰塞泛滥,这对于补充维持三角洲生态完整性所需的水分和沉积物是有好处的。为了更好地理解导致洪水泛滥的冰堵过程以及三角洲的补给,实施了一维水力河冰模型RIVICE来模拟和探索从河三角洲的冰堵形成。输入冰量是RIVICE的关键输入参数,是通过使用MODIS太空遥感影像的新颖方法确定的。利用空基和空基遥感数据对可用于堵冰的上游冰量进行参数化。测量数据用于补充建模校准和验证。 HEC-RAS是另一种一维水动力模型,用于确定平衡卡纸所需的冰量和卡纸可承受的冰量上限,并用作动态冰估量的阈值使用RIVICE进行果酱模拟。参数敏感性分析表明,形态和水力特性对奴河三角洲的冰堵长度和水深有很大影响。

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