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Streamflow response to fire in large catchments of a Mediterranean-climate region using paired-catchment experiments

机译:利用成对汇流实验对地中海气候区大流域的火流响应

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Understanding post-fire streamflow dynamics in large California catchments is limited by a lack of direct empirical evidence. Scaling results from small experimental catchments to large catchments for practical applications is challenging. We investigated the possibility of using streamflow data from an existing gauge network in central and southern California to examine the effects of fire on streamflow using a paired-catchment approach. Post-fire streamflow change was examined in six paired catchments at annual, seasonal and monthly time-periods. Prediction intervals associated with the pre-fire calibration regression models were used to identify statistically significant changes in post-fire streamflow. The identification of suitable paired test and control catchments presented a major challenge, despite the large number of potential catchments in the network. The best calibration results were associated with catchment pairs that had similar orographic controls over rainfall, with proximity to one another being a secondary control. The effect of fires on streamflow, regardless of time-period examined, was found to be variable, depending mostly on post-fire wetness conditions. No relation was evident between post-fire streamflow change and catchment size or area burnt.
机译:由于缺乏直接的经验证据,对加州大型流域火灾后水流动态的了解受到限制。从小型实验流域到大型流域的缩放结果在实际应用中具有挑战性。我们调查了使用成对汇流方法使用加利福尼亚中部和南部现有水表网络的流量数据来检查火灾对流量的影响的可能性。在年度,季节和每月时间段内,对六个成对流域的火灾后流量变化进行了检查。与火灾前校准回归模型相关的预测间隔用于识别火灾后流量的统计显着变化。尽管网络中存在大量潜在的集水区,但要确定合适的成对的测试和控制集水区仍是一项重大挑战。最佳的校准结果与对降雨有相似地形控制的集水区对相关,彼此接近是次要控制。无论检查时间长短,火灾对水流的影响都是可变的,这主要取决于火灾后的潮湿条件。火灾后的流量变化与集水面积或燃烧面积之间没有明显关系。

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