首页> 外文会议>Remote Sensing of Clouds and the Atmosphere XIX; and Optics in Atmospheric Propagation and Adaptive Systems XVII >GreenHouse Observations of the Stratosphere and Troposphere (GHOST): a novel shortwave infrared spectrometer developed for the Global Hawk unmanned aerial vehicle
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GreenHouse Observations of the Stratosphere and Troposphere (GHOST): a novel shortwave infrared spectrometer developed for the Global Hawk unmanned aerial vehicle

机译:温室平流层和对流层观测(GHOST):为Global Hawk无人机研发的新型短波红外光谱仪

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The tropospheric distribution of greenhouse gases (GHGs) depends on surface flux variations, atmospheric chemistry and transport processes over a range of spatial and temporal scales. Accurate and precise atmospheric concentration observations of GHGs can be used to infer surface flux estimates, though their interpretation relies on unbiased atmospheric transport models. GHOST is a novel, compact shortwave infrared spectrometer which will observe tropospheric columns of CO_2, CO, CH_4 and H_2O (along with the HDO/H_2O ratio) during deployment on board the NASA Global Hawk unmanned aerial vehicle. The primary science objectives of GHOST are to: 1) test atmospheric transport models; 2) evaluate satellite observations of GHG column observations over oceans; and 3) complement in-situ tropopause transition layer observations from other Global Hawk instruments. GHOST comprises a target acquisition module (TAM), a fibre slicer and feed system, and a multiple order spec-trograph. The TAM is programmed to direct solar radiation reflected by the ocean surface into a fibre optic bundle. Incoming light is then split into four spectral bands, selected to optimise remote observations of GHGs. The design uses a single grating and detector for all four spectral bands. We summarise the GHOST concept and its objectives, and describe the instrument design and proposed deployment aboard the Global Hawk platform.
机译:温室气体(GHGs)的对流层分布取决于表面通量变化,大气化学性质以及一系列时空尺度上的传输过程。准确和精确的温室气体大气浓度观测值可用于推断表面通量估算值,尽管其解释依赖于无偏大气迁移模型。 GHOST是一种新颖的紧凑型短波红外光谱仪,将在部署到NASA Global Hawk无人驾驶飞行器上时观察对流层CO_2,CO,CH_4和H_2O(以及HDO / H_2O比率)。 GHOST的主要科学目标是:1)测试大气传输模型; 2)评估海洋上温室气体柱观测的卫星观测; 3)补充了其他Global Hawk仪器的原位对流层顶过渡层观测资料。 GHOST包括目标采集模块(TAM),光纤切片机和进料系统以及多阶光谱仪。对TAM进行了编程,以将海洋表面反射的太阳辐射引导到光纤束中。然后将入射光分为四个光谱带,以优化对GHG的远程观测。该设计对所有四个光谱带使用单个光栅和检测器。我们总结了GHOST概念及其目标,并描述了仪器设计以及在Global Hawk平台上的建议部署。

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