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Effects of sea surface temperature, radiation, cloud microphysics, and diurnal variations on vertical structures of tropical tropospheric temperature: a two-dimensional equilibrium cloud-resolving modeling study

机译:海面温度,辐射,云微物理学和日变化对热带对流层温度垂直结构的影响:二维平衡云解析模型研究

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摘要

The effects of sea surface temperature (SST), radiation, cloud microphysics, and diurnal variations on the vertical structure of tropical tropospheric temperature are investigated by analyzing 10 two-dimensional equilibrium cloud-resolving model simulation data. The increase of SST, exclusion of diurnal variation of SST, and inclusion of diurnal variation of solar zenith angle, radiative effects of ice clouds, and ice microphysics could lead to tropical tropospheric warming and increase of tropopause height. The increase of SST and the suppression of its diurnal variation enhance the warming in the lower and upper troposphere, respectively, through increasing latent heat and decreasing IR cooling. The inclusion of diurnal variation of solar zenith angle increases the tropospheric warming through increasing solar heating. The inclusion of cloud radiative effects increases tropospheric warming through suppressing IR cooling in the mid and lower troposphere and enhancing solar heating in the upper troposphere. The inclusion of ice microphysics barely increases warming in the mid and lower troposphere because the warming from ice radiative effects is nearly offset by the cooling from ice microphysical effects, whereas it causes the large warming enhancement in the upper troposphere due to the dominance of ice radiative effects. The tropopause height is increased mainly through the large enhancement of IR cooling.
机译:通过分析10个二维平衡云解析模型模拟数据,研究了海面温度(SST),辐射,云微物理学和日变化对热带对流层温度垂直结构的影响。 SST的增加,SST的日变化的排除,太阳天顶角的日变化的排除,冰云的辐射效应以及冰的微物理现象可能导致热带对流层变暖和对流层顶高度的增加。 SST的增加及其日变化的抑制通过增加潜热和减少IR冷却,分别提高了对流层下部和对流层的升温。包括太阳天顶角的日变化,通过增加太阳热量来增加对流层变暖。通过抑制中,下对流层的红外冷却并增强对流层上层的太阳热量,云辐射效应的加入会加剧对流层变暖。包含冰微观物理学几乎不会增加对流层中低层的升温,因为来自冰辐射效应的升温几乎被来自冰微观物理效应的降温所抵消,而由于对冰辐射的主导作用,它会导致对流层上方的大幅度升温效果。对流层顶高度的增加主要是由于红外冷却的大幅增强。

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