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首页> 外文期刊>Atmospheric Measurement Techniques Discussions >Retrieval of an ice water path over the ocean from ISMAR and MARSS millimeter and submillimeter brightness temperatures
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Retrieval of an ice water path over the ocean from ISMAR and MARSS millimeter and submillimeter brightness temperatures

机译:从Ismar和火星毫米的海洋上检索冰水道和亚颌骨亮度温度

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A neural-network-based retrieval method to determine the snow ice water path (SIWP), liquid water path (LWP), and integrated water vapor (IWV) from millimeter and submillimeter brightness temperatures, measured by using airborne radiometers (ISMAR and MARSS), is presented. The neural networks were trained by using atmospheric profiles from the ICON numerical weather prediction (NWP) model and by radiative transfer simulations using the Atmospheric Radiative Transfer Simulator (ARTS). The basic performance of the retrieval method was analyzed in terms of offset (bias) and the median fractional error (MFE), and the benefit of using submillimeter channels was studied in comparison to pure microwave retrievals. The retrieval is offset-free for SIWP???0.01?kg?m?2, LWP???0.1?kg?m?2, and IWV???3?kg?m?2. The MFE of SIWP decreases from 100?% at SIWP??=??0.01?kg?m?2 to 20?% at SIWP??=??1?kg?m?2 and the MFE of LWP from 100?% at LWP ?=?0.05?kg?m?2 to 30?% at LWP??=??1?kg?m?2. The MFE of IWV for IWV???3?kg?m?2 is 5 to 8?%. The SIWP retrieval strongly benefits from submillimeter channels, which reduce the MFE by a factor of 2, compared to pure microwave retrievals. The IWV and the LWP retrievals also benefit from submillimeter channels, albeit to a lesser degree. The retrieval was applied to ISMAR and MARSS brightness temperatures from FAAM flight B897 on 18 March 2015 of a precipitating frontal system west of the coast of Iceland. Considering the given uncertainties, the retrieval is in reasonable agreement with the SIWP, LWP, and IWV values simulated by the ICON NWP model for that flight. A comparison of the retrieved IWV with IWV from 12 dropsonde measurements shows an offset of 0.5?kg?m?2 and an RMS difference of 0.8?kg?m?2, showing that the retrieval of IWV is highly effective even under cloudy conditions.
机译:基于神经网络的检索方法,用于确定雪冰水路径(SIWP),液体水路(LWP)和毫米和亚麻瘤亮度温度的集成水蒸气(IWV),通过使用空气传播辐射仪(ISMAR和MARS)测量, 被表达。通过使用大气辐射转移模拟器(ART)从图标数值天气预报(NWP)模型中使用大气曲线以及通过辐射传输模拟来训练神经网络。在偏移(偏置)和中值分数误差(MFE)方面分析了检索方法的基本性能,与纯微波检索相比,研究了使用亚倍数仪通道的益处。检索是无偏移的siwp ??? 0.01?kg?m?2,lwp ??? 0.1?kg?m?2,和iwv ??? 3?kg?m?2。 SIWP的MFE在SIWP = 0.01 = 0.01 =0.01Ω·kg?m?2至20℃,在siwp =? 1?kg?2和lwp的mfe从100?%在lwp?=?0.05?kg?m?在lwp = 2至30μl%?? 1?kg?m?2。 IWV的MFE为IWV ??? 3?kg?m?2为5至8?%。与纯微波检索相比,SIWP检索强烈的潜水频道,减少了MFE的MFE倍数2。 IWV和LWP检索也受益于Subsillimeter频道,尽管程度较小。从冰岛海岸西部的沉淀前系统促进了Faam飞行B897的粮农组织航班B897的Ismar和Marss亮度温度。考虑到给定的不确定性,检索是与SIWP,LWP和IWV值合理的达成协议,由该航班的图标NWP模型模拟。从12滴测量的IWV检索到的IWV的比较显示了0.5Ω·kg?m≤2的偏移和0.8Ω·kg≤2的rms差,表明IWV的检索即使在多云的条件下也是高效的。

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