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Global measurement of temporal signatures of precipitation: Development of the temporal experiment for storms and tropical systems technology demonstration mission

机译:降水时间特征的全球测量:开发风暴和热带系统技术示范任务的时间实验

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The Temporal Experiment for Storms and Tropical Systems (TEMPEST) mission concept consists of a constellation of five identical 6U-Class nanosatellites observing at five millimeter-wave frequencies with five-minute temporal sampling to observe the time evolution of clouds and their transition to precipitation. The TEMPEST concept is designed to improve the understanding of cloud processes, by providing critical information on the time evolution of cloud and precipitation microphysics and by improving our understanding of the largest sources of uncertainty in cloud models. TEMPEST millimeter-wave radiometers are able to perform observations inside the cloud to observe changes as the cloud begins to precipitate or ice accumulates inside the storm. The TEMPEST Technology Demonstration (TEMPEST-D) mission will be deployed to demonstrate measurement capabilities required for a constellation of 6U-Class nanosatellites to directly observe the temporal development of clouds to understand the conditions that control their transition from non-precipitating to precipitating clouds. TEMPEST-D will provide observations at five millimeter-wave frequencies from 89 to 183 GHz using a single compact instrument that is well suited for the 6U-Class architecture.
机译:风暴和热带系统时间实验(TEMPEST)任务概念由五个相同的6U级纳米卫星组成,这些星座以五个毫米波的频率进行观测,并进行了五分钟的时间采样,以观察云的时间演变及其向降水的过渡。 TEMPEST概念旨在通过提供有关云和降水微物理学的时间演变的关键信息,以及提高我们对云模型不确定性的最大来源的理解,来提高对云过程的理解。 TEMPEST毫米波辐射仪能够在云内部进行观测,以观察云在暴风雨中开始沉淀或结冰时的变化。将部署TEMPEST技术演示(TEMPEST-D)任务,以演示6U级纳米卫星星座所需的测量能力,以直接观察云的时间发展,从而了解控制其从非降水云到降水云过渡的条件。 TEMPEST-D将使用一款非常适合6U级架构的紧凑型仪器在89到183 GHz的五个毫米波频率上提供观测结果。

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