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红层盆地岩性差异对丹霞地貌发育的控制 被引量:11
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作者 刘鑫 郭福生 +2 位作者 陈留勤 李馨敏 刘富军 《山地学报》 CSCD 北大核心 2019年第2期214-221,共8页
陆相红层盆地的岩性在横向上和纵向上都有比较明显的变化,导致发育的丹霞地貌形态迥异。本文以赣东北信江盆地、粤北丹霞盆地、陕北地区为例,采用对比分析、数值模拟等研究手段,总结了红层盆地中常见的岩石及地貌类型,提出岩性在丹霞地... 陆相红层盆地的岩性在横向上和纵向上都有比较明显的变化,导致发育的丹霞地貌形态迥异。本文以赣东北信江盆地、粤北丹霞盆地、陕北地区为例,采用对比分析、数值模拟等研究手段,总结了红层盆地中常见的岩石及地貌类型,提出岩性在丹霞地貌坡面演化过程中的关键作用。在信江盆地中,龙虎山、龟峰等挺拔高耸的山峰主要发育在盆地南缘的河口组厚层砾岩中,而盆地中部贵溪、弋阳地区的近圆形山丘则产在塘边组大型交错层理风成砂岩中;与其类似,丹霞山的赤壁陡崖主要发育在丹霞组厚层砾岩夹风成砂岩中;相反,陕北地区波浪状地貌主要发育在洛河组风成砂岩中。利用河道-山坡综合地形演化(CHILD)地貌模拟软件,假设在同样的构造抬升和河流侵蚀作用下,分别模拟了细砂岩、细砾岩、中砾岩构成的山体坡面的演化过程。模拟结果显示,细砂岩山体易形成较为平缓的坡面,中砾岩易形成陡峻崖壁和巷谷,而介于二者之间的细砾岩则形成较为明显的沟壑系统。CHILD模拟结果与实地观测一致。因此,红层岩性差异在丹霞地貌演化过程中扮演了重要的角色,也是未来地貌定量模拟研究中需要考虑的关键因素。 展开更多
关键词 丹霞地貌 红层 岩性控制 地貌演化模拟
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A physics-based hydro-geomorphologic simulation utilizing cluster parallel computing 被引量:3
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作者 RAN QiHua SU DanYang +1 位作者 FU XuDong WANG GuangQian 《Science China(Technological Sciences)》 SCIE EI CAS 2013年第8期1883-1895,共13页
To conduct a large-scale hydrologic-response and landform evolution simulation at high resolution,a complex physics-based numerical model,the Integrated Hydrology Model(InHM),was revised utilizing cluster parallel com... To conduct a large-scale hydrologic-response and landform evolution simulation at high resolution,a complex physics-based numerical model,the Integrated Hydrology Model(InHM),was revised utilizing cluster parallel computing.The parallelized InHM(ParInHM) divides the simulated area into multiple catchments based on geomorphologic features,and generates boundary-value problems for each catchment to construct simulation tasks,which are then dispatched to different computers to start the simulation.Landform evolution is considered during simulating and implemention in one framework.The dynamical Longest-Processing-Time(LPT) first scheduling algorithm is applied to job management.In addition,a pause-integratedivide-resume routine method is used to ensure the hydrologic validity during the simulation period.The routine repeats until the entire simulation period is finished.ParInHM has been tested in a computer cluster that uses 16 processors for the calculation,to simulate 100 years' hydrologic-response and soil erosion for the 117-km2 Kaho'olawe Island in the Hawaiian Islands under two different mesh resolutions.The efficiency of ParInHM was evaluated by comparing the performance of the cluster system utilizing different numbers of processors,as well as the performance of non-parallelized system without domain decomposition.The results of this study show that it is feasible to conduct a regional-scale hydrologic-response and sediment transport simulation at high resolution without demanding significant computing resources. 展开更多
关键词 Integrated Hydrology Model(InHM) parallelized InHM(ParInHM) physics-based hydrological model hydro-geomorphologic simulation parallel computing numerical simulation
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