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Clouds, fog, precipitation

机译:晴间多云

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To understand why tropical islands are rainier than nearby ocean areas, we explore how a highly idealized island, which differs from the surrounding ocean only in heat capacity, might respond to the diurnal cycle and influence the tropical climate, especially the spatial distribution of rainfall and the thermal structure of the troposphere. We perform simulations of three-dimensional ra-diative-convective equilibrium with the System for Atmospheric Modeling (SAM) cloud-system-resolving model, with interactive surface temperature, where a highly idealized, low heat capacity circular island is embedded in a slab-ocean domain. The calculated precipitation rate over the island can be more than double the domain average value, with island rainfall occurring primarily in an intense, regular thunderstorm system that forms in the afternoon to early evening each day. Island size affects the magnitude of simulated island rainfall enhancement, the intensity of the convection, and the timing of the rainfall maximum relative to solar noon. A combination of dynamic and thermodynamic mechanisms leads to a monotonic enhancement of domain-averaged tropospheric temperature with increasing fraction of island surface, which may contribute to localization of ascent over the Maritime Continent and its relationship to the Walker Circulation.
机译:要了解为什么热带岛屿比附近的海洋地区多雨,我们探索了高度理想化的岛屿(仅在热容量方面与周围的海洋不同)如何响应日循环并影响热带气候,特别是降雨和降雨的空间分布。对流层的热结构。我们使用大气建模系统(SAM)云系统解析模型,通过交互式地表温度,对高度理想的低热容量圆形岛嵌入了平板中,进行了三维径向对流对流平衡的模拟。海洋领域。计算得出的岛上降水率可能是域平均值的两倍以上,岛上降雨主要发生在每天下午至傍晚形成的强烈定期雷暴系统中。岛屿的大小会影响模拟的岛屿降雨增强的幅度,对流强度以及相对于太阳正午的最大降雨时间。动态和热力学机制的结合导致对流层平均域温度随岛表面分数的增加而单调增加,这可能有助于海洋大陆上的上升局部化及其与沃克环流的关系。

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    《Oceanographic Literature Review》 |2015年第10期|1868-1869|共2页
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