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Validation of TES methane with HIPPO aircraft observations: implications for inverse modeling of methane sources

机译:与河马飞机观测的TES甲烷验证:对甲烷来源反向建模的影响

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We validate satellite methane observations from the Tropospheric Emission Spectrometer (TES) with 151 aircraft vertical profiles over the Pacific from the HIAPER Pole-to-Pole Observation (HIPPO) program. We find that a collocation window of ±750 km and ±24 h does not introduce significant error in comparing TES and aircraft profiles. We validate both the TES standard product (V004) and an experimental product with two pieces of information in the vertical (V005). We determine a V004 mean bias of 65.8 ppb and random instrument error of 43.3 ppb. For V005 we determine a mean bias of 42.3 ppb and random instrument error of 26.5 ppb in the upper troposphere, and mean biases (random instrument errors) in the lower troposphere of 28.8 (28.7) and 16.9 (28.9) ppb at high and low latitudes respectively. Even when V005 cannot retrieve two pieces of information it still performs better than V004. An observation system simulation experiment (OSSE) with the GEOS-Chem chemical transport model (CTM) and its adjoint shows that TES V004 has only limited value for constraining methane sources. Our successful validation of V005 encourages its production as a standard retrieval to replace V004.
机译:我们从肝脏杆到极观察(HIPPO)计划中,通过在太平洋地区的151架飞机垂直型材上验证了从对流层发射光谱仪(TES)的卫星甲烷观察。我们发现±750 km和±24小时的搭配窗口在比较TES和飞机配置文件时不会引入显着的错误。我们验证TES标准产品(V004)和实验产品,在垂直(V005)中有两条信息。我们确定65.8 PPB的V004平均偏差和43.3 ppb的随机仪器误差。对于V005,我们在上层对流层中确定22.3ppb和随机仪器误差为26.5ppb的平均偏差,以及在高纬度和低纬度的下层对流层的较低对流层中的平均偏差(随机仪器误差),高纬度地区,PPB(28.9)ppb分别。即使V005无法检索两条信息,它仍然比V004更好。观察系统模拟实验(OSSE)与Geos-Chem化学传输模型(CTM)及其伴随表明,TES V004对约束甲烷来源仅有有限的值。我们的成功验证V005鼓励其生产作为替换V004的标准检索。

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