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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The diurnal cycle of clouds and precipitation at the ARM SGP site: Cloud radar observations and simulations from the multiscale modeling framework
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The diurnal cycle of clouds and precipitation at the ARM SGP site: Cloud radar observations and simulations from the multiscale modeling framework

机译:云和降水的昼夜循环手臂SGP网站:云雷达观测从多尺度建模模拟框架

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摘要

Millimeter Wavelength Cloud Radar (MMCR) data from December 1996 to December 2010, collected at the U.S. Department of Energy Atmospheric Radiation Measurement (ARM) program Southern Great Plains (SGP) site, are used to examine the diurnal cycle of hydrometeor occurrence. These data are categorized into clouds (-40 dBZ_e ≤ reflectivity < -10 dBZ_e), drizzle and light precipitation (-10 dBZ_e ≤ reflectivity < 10 dBZ_e), and heavy precipitation (reflectivity ≥ 10 dBZ_e). The same criteria are implemented for the observation-equivalent reflectivity calculated by feeding outputs from a Multiscale Modeling Framework (MMF) climate model into a radar simulator. The MMF model consists of the National Center for Atmospheric Research Community Atmosphere Model with conventional cloud parameterizations replaced by a cloud-resolving model. We find that a radar simulator combined with the simple reflectivity categories can be an effective approach for evaluating diurnal variations in model hydrometeor occurrence. It is shown that the MMF only marginally captures observed increases in the occurrence of boundary layer clouds after sunrise in spring and autumn and does not capture diurnal changes in boundary layer clouds during the summer. Above the boundary layer, the MMF captures reasonably well diurnal variations in the vertical structure of clouds and light and heavy precipitation in the summer but not in the spring.
机译:毫米波长云雷达(MMCR)的数据1996年12月到2010年12月,收集美国能源部的大气辐射测量(手臂)项目南部大平原(SGP)网站,用于检查昼夜循环水汽现象的发生。分为云(-40 dBZ_e≤反射率< -10 dBZ_e),小雨和弱降水(-10 dBZ_e≤反射率< 10 dBZ_e),和重降水(反射率≥10 dBZ_e)。标准的实施observation-equivalent反射率计算喂养输出从多尺度建模气候模型框架(MMF)雷达模拟器。大气研究中心的社区大气模型与传统的云参数化cloud-resolving所取代模型。可以是一个简单的反射率类别有效的方法来评估日模型水汽现象发生的变化。表明,MMF略微捕获观察增加边界的发生层云在春天和秋天日出之后,不捕捉昼夜变化的边界层云在夏天。边界层,MMF捕捉得相当好周日的垂直结构的变化云和轻、重沉淀在春天夏天但不是。

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