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A wide field-of-view imaging DOAS instrument for two-dimensional trace gas mapping from aircraft

机译:用于飞机二维痕量气体制图的宽视场成像DOAS仪器

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The Airborne imaging differential optical absorption spectroscopy (DOAS) instrument for Measurements of Atmospheric Pollution (AirMAP) has been developed for the purpose of trace gas measurements and pollution mapping. The instrument has been characterized and successfully operated from aircraft. Nitrogen dioxide (NO2) columns were retrieved from the AirMAP observations. A major benefit of the push-broom imaging instrument is the spatially continuous, gap-free measurement sequence independent of flight altitude, a valuable characteristic for mapping purposes. This is made possible by the use of a charge coupled device (CCD) frame-transfer detector. A broad field of view across track of around 48 degrees is achieved with wide-angle entrance optics. This leads to a swath width of about the same size as the flight altitude. The use of fibre coupled light intake optics with sorted light fibres allows flexible instrument positioning within the aircraft and retains the very good imaging capabilities. The measurements yield ground spatial resolutions below 100m depending on flight altitude. The number of viewing directions is chosen from a maximum of 35 individual viewing directions (lines of sight, LOS) represented by 35 individual fibres. The selection is adapted to each situation by averaging according to signal-to-noise or spatial resolution requirements. Observations at 30m spatial resolution are obtained when flying at 1000m altitude and making use of all 35 viewing directions. This makes the instrument a suitable tool for mapping trace gas point sources and small-scale variability. The position and aircraft attitude are taken into account for accurate spatial mapping using the Attitude and Heading Reference System of the aircraft. A first demonstration mission using AirMAP was undertaken in June 2011. AirMAP was operated on the AWI Polar-5 aircraft in the framework of the AIRMETH-2011 campaign. During a flight above a medium-sized coal-fired power plant in north-west Germany, AirMAP clearly detected the emission plume downwind from the exhaust stack, with NO2 vertical columns around 2 x 10(16) molecules cm(-2) in the plume centre. NO x emissions estimated from the AirMAP observations are consistent with reports in the European Pollutant Release and Transfer Register. Strong spatial gradients and variability in NO2 amounts across and along flight direction are observed, and small-scale enhancements of NO2 above a motorway are detected.
机译:为了测量痕量气体和绘制污染图,开发了用于大气污染测量的机载成像差分光学吸收光谱仪(DOAS)。该仪器已经过鉴定,并已成功从飞机上操作。从AirMAP观测中检索到二氧化氮(NO2)柱。推扫式成像仪的主要优点是空间连续,无间隙的测量序列,与飞行高度无关,这是制图用途的宝贵特性。这可以通过使用电荷耦合器件(CCD)帧传输检测器来实现。使用广角入射光学元件,可以在大约48度的轨道上获得广阔的视野。这导致条幅宽度与飞行高度大致相同。光纤耦合进光光学器件与经过分类的光纤配合使用,可以在飞机内灵活放置仪器,并保持非常好的成像能力。根据飞行高度,这些测量结果会得出100m以下的地面空间分辨率。观察方向的数量是从最多35种单独的纤维所代表的35个单独的观察方向(视线,LOS)中选择的。通过根据信噪比或空间分辨率要求进行平均,使选择适应每种情况。当在1000m高度飞行并利用所有35个观察方向时,可获得30m空间分辨率的观测结果。这使该仪器成为绘制痕量气体点源和小规模变化的合适工具。使用飞机的姿态和航向参考系统可以将位置和飞机的姿态考虑在内,以进行精确的空间映射。 2011年6月,使用AirMAP进行了首次演示任务。AirMAP在AIRMETH-2011战役的框架下在AWI Polar-5飞机上运行。在德国西北部的一家中型燃煤电厂上方飞行期间,AirMAP清楚地检测到了排气烟囱顺时针方向的排放羽流,其中NO2垂直柱的周围有2 x 10(16)个分子cm(-2)。羽状中心。根据AirMAP观测估计的NOx排放量与欧洲污染物排放和转移登记册中的报告一致。观察到沿飞行方向和沿飞行方向的强烈的空间梯度和NO2量的变化,并且检测到高速公路上方NO2的小范围增强。

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