首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Mapping water vapour variability over a mountainous tropical island using InSAR and an atmospheric model for geodetic observations
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Mapping water vapour variability over a mountainous tropical island using InSAR and an atmospheric model for geodetic observations

机译:使用Insar和大气模型在山区热带岛屿上映射水蒸气变异性,用于大气观测

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The three dimensional distribution of water vapour around mountainous terrain can be highly variable. This variability can in turn affect local meteorological processes and geodetic techniques to measure ground surface motion. We demonstrate this general problem with the specific issues of a small tropical island, Montserrat. Over a period of 17 days in December 2014 we made observations using InSAR and GPS techniques, together with concurrent atmospheric models using the WRF code. Comparative studies of water vapour distribution and its effect on refractivity were made at high spatial resolution (300 m) over short distances (similar to 10 km). Our results show that model simulations of the observed differences in water vapour distribution using WRF is insufficiently accurate. We suggest that better use could be made of the knowledge and observations of local water vapour conditions at different scales, specifically the Inter Tropical Convergence Zone (ITCZ), the trade wind fields and the mountain flow (similar to 30 m) perhaps using eddy simulation. The annual perturbations of the ITCZ show that the range of humidity is approximately the same expressed as the differential phase of InSAR imaging (similar to 100 mm). Trade wind direction and speed are particularly important at high wind speeds driving vigorous asymmetrical convection over the island's mountains. We also show that the slant angles of radar can follow distinct separate paths through the water vapour field. Our study is novel in demonstrating how synoptic-scale features and climate can advise the modelling of mesoscale systems and sub-seasonal InSAR imaging on tropical islands.
机译:山地地形周围的水蒸气的三维分布可以是高度变化的。这种可变性又可以影响局部气象过程和大地测量地面运动。我们展示了这个小型热带岛屿,蒙特塞拉特的具体问题的一般问题。 2014年12月在17天的时间内,我们通过Insar和GPS技术进行了观察,以及使用WRF代码的并发大气模型。水蒸气分布的比较研究及其对距离的高空间分辨率(300米)的对折射的影响(类似于10公里)。我们的结果表明,使用WRF的观察到的水蒸气分布差异的模型模拟不充分。我们建议可以更好地使用不同尺度的当地水蒸气条件的知识和观察,特别是热带趋同区(ITCZ),贸易风领域和山流量(类似于30米)可能使用涡流模拟。 ITCZ的年度扰动表明,湿度范围大致表达为insar成像的差异阶段(类似于100 mm)。贸易风向和速度在高风速时尤为重要,促进岛屿山脉的蓬勃的不对称对流。我们还表明雷达的倾斜角度可以通过水蒸气场遵循不同的单独路径。我们的研究表明了展示了揭示性功能和气候如何建议Messcale Systems和次季节漫步成像在热带岛屿上的建议。

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