首页> 外文期刊>Boundary-layer Meteorology >Numerical simulations of the impacts of land-cover change on a southern sea breeze in south-west Western Australia.
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Numerical simulations of the impacts of land-cover change on a southern sea breeze in south-west Western Australia.

机译:土地覆盖变化对澳大利亚西南部西南海风影响的数值模拟。

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摘要

A sea-breeze event in south-west Western Australia is simulated using the Regional Atmospheric Modelling System (RAMS) version 6.0. The model is evaluated against high resolution soundings as well as station observations and is shown to reproduce the qualitative features of the sea breeze well. Sensitivity tests are carried out to investigate the effects of historical land-cover change and changes in soil moisture on the dynamics of the sea breeze. It is found that land-cover change alone, i.e., a change from wooded grasslands to bare soil, with no change in soil moisture initialisation, does not significantly alter the overall structure of the sea breeze but results in higher surface winds due to the reduced vegetation roughness length, which leads to enhanced surface moisture advection inland. On the other hand, land-cover change in conjunction with increased soil moisture results in a considerably weaker, shallower, and less penetrative sea breeze, and delays its onset and duration. A sea-breeze scaling analysis highlights the impact of increasing soil moisture on reducing the sea-breeze volume flux scale.
机译:使用区域大气建模系统(RAMS)6.0版模拟了澳大利亚西部西南部的海风事件。该模型针对高分辨率的测深和台站观测进行了评估,并被证明可以很好地再现海风的质性特征。进行敏感性测试以调查历史土地覆被变化和土壤湿度变化对海风动力学的影响。发现仅是土地覆盖变化,即从林木草地变为裸土,而土壤水分的初始化没有变化,并不会显着改变海风的整体结构,但由于减少了海风,因此导致更高的地表风植被粗糙长度,导致内陆表面水分平流增强。另一方面,土地覆盖的变化与土壤湿度的增加共同导致海风的减弱,变浅和渗透性大大降低,并延缓了其发作和持续时间。海风水垢分析强调了增加土壤水分对减少海风量通量水垢的影响。

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