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Spatiotemporal dynamics of landscape pattern and hydrologic process in watershed systems

机译:流域系统景观格局与水文过程的时空动态

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Land use change is influenced by spatial and temporal factors that interact with watershed resources. Modeling these changes is critical to evaluate emerging land use patterns and to predict variation in water quantity and quality. The objective of this study is to model the nature and emergence of spatial patterns in land use and water resource impacts using a spatially explicit and dynamic landscape simulation. Temporal changes are predicted using a probabilistic Markovian process and spatial interaction through cellular automation. The MCMC (Monte Carlo Markov Chain) analysis with cellular automation is linked to hydrologic equations to simulate landscape patterns and processes. The spatiotemporal watershed dynamics (SWD) model is applied to a subwatershed in the Blackstone River watershed of Massachusetts to predict potential land use changes and expected runoff and sediment loading. Changes in watershed land use and water resources are evaluated over 100. years at a yearly time step. Results show high potential for rapid urbanization that could result in lowering of groundwater recharge and increased storm water peaks. The watershed faces potential decreases in agricultural and forest area that affect open space and pervious cover of the watershed system. Water quality deteriorated due to increased runoff which can also impact stream morphology. While overland erosion decreased, instream erosion increased from increased runoff from urban areas. Use of urban best management practices (BMPs) in sensitive locations, preventive strategies, and long-term conservation planning will be useful in sustaining the watershed system.
机译:土地利用的变化受与流域资源相互作用的时空因素的影响。对这些变化进行建模对于评估新兴的土地利用模式以及预测水量和水质的变化至关重要。这项研究的目的是使用空间显式和动态景观模拟来模拟土地利用和水资源影响中空间格局的性质和出现。使用概率马尔可夫过程和通过细胞自动化的空间相互作用来预测时间变化。具有细胞自动化功能的MCMC(蒙特卡洛马尔可夫链分析)分析与水文方程式相链接,以模拟景观格局和过程。将时空分水岭动力学(SWD)模型应用于马萨诸塞州黑石河流域的一个小流域,以预测潜在的土地利用变化以及预期的径流和泥沙量。流域土地利用和水资源的变化以每年100多年的时间进行评估。结果表明,快速城市化的潜力很大,可能导致地下水补给量下降和雨水高峰增加。流域面临的农业和森林面积潜在减少,会影响流域系统的开放空间和透水覆盖。由于径流增加,水质恶化,这也可能影响河流的形态。虽然陆上侵蚀减少了,但河水侵蚀由于城市地区径流量的增加而增加了。在敏感地区使用城市最佳管理实践(BMP),预防策略和长期保护规划将对维持流域系统很有帮助。

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