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89.0 GHz亮温在海冰密集度的双极化反演算法中的应用研究OA

An application study of 89.0 GHz brightness temperatures in the dual-polarized ratio algorithm for retrieving sea ice concentration

中文摘要英文摘要

海冰密集度(sea ice concentration,SIC)是量化极区海冰覆盖的核心参数,在气候研究、海洋研究、航海安全以及遥感监测中发挥至关重要的作用,其全天候、大范围的观测主要依靠被动微波辐射遥感技术.基于水平极化(H)和垂直极化(V)的89.0 GHz的被动微波辐射亮温技术,本文将大气补偿技术应用到SIC双极化反演算法(dual-polarized ratio,DPR)中,实现了6.25 km网格的SIC反演.和已有的SIC反演算法相比,DPR算法是基于被动微波辐射亮温传输方程建立起来的理论算法,其关键是确定海冰的H和V的微波发射率的比值(α),其中α可以由100%海冰覆盖区域的HV89.0 GHz的亮温确定.研究发现SIC大于0.82时,DPR算法不需要进行大气补偿;SIC小于0.82时,DPR算法需要进行大气补偿.此时,由大气补偿引起的SIC误差与气温密切相关,气温越低大气对DPR算法的影响越小,当气温低于-5℃时,大气引起的SIC误差低于10%.评估结果显示在SIC大于0.25时DPR算法整体优于ARTIST Sea Ice(ASI)算法,可以为北极区域海冰监测、气候模型、极地航运安全以及全球能量平衡研究提供更可靠的SIC数据.

Sea ice concentration(SIC)is a core parameter for quantifying polar sea ice coverage and plays a crucial role in climate research,oceanographic studies,maritime safety,and remote sensing monitoring.The all-weather and large-scale observations of this parameter primarily rely on passive microwave remote sensing technology.In this study,atmospheric correction techniques are applied to the dual-polarized ratio(DPR)algorithm to retrieve SIC from vertically and horizontally polarized brightness temperatures observed at 89.0 GHz and a retrieval resolution of 6.25 km.Compared to existing SIC retrieval algorithms,the DPR algorithm is a theoretical method based on the passive microwave radiative transfer equation.The key parameter in the DPR algorithm is the ratio(α)of microwave emissivities of sea ice for horizontal(H)and vertical(V)polarizations,which can be determined from the brightness temperatures at HV 89.0 GHz with 100%sea ice coverage.The atmospheric effects are implicitly treated as a smooth function in the DPR algorithm.The results show that atmospheric compensation is unnecessary when SIC exceeds 0.82,whereas this compensation is required when SIC is below 0.82.The SIC error induced by atmospheric compensation is closely related to air temperature:the lower the temperature,the smaller the atmospheric impact on the DPR algorithm.When the temperature drops below-5 ℃,the error falls below 10%.The evaluation results indicate that when SIC exceeds 0.25,the DPR algorithm generally outperforms the ARTIST Sea Ice algorithm.Thus,the DPR algorithm can provide more reliable SIC data for Arctic sea ice monitoring,climate modeling,polar navigation safety,and global energy balance research.

张树刚;厉运周;陈萍;周茂盛;朱琳;赵新华

齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061||崂山实验室,山东青岛 266237||山东省科学院山东省院士工作站,山东济南 250014齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061||山东省科学院山东省院士工作站,山东济南 250014齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061||山东省科学院山东省院士工作站,山东济南 250014齐鲁工业大学(山东省科学院)海洋仪器仪表研究所,山东青岛 266061

海洋科学

海冰密集度卫星遥感亮温大气补偿技术双极化反演算法北极

sea ice concentrationsatellite remote sensingbrightness temperatureatmospheric compensation techniquedual-polarized ratioArctic

《山东科学》 2026 (4)

1-11,11

山东省自然科学基金面上基金(ZR2022MD076)山东省自然科学基金青年基金(ZR2021QD160)齐鲁工业大学(山东省科学院)科教产融合试点工程重大创新类项目(2025ZDYS01)

10.3976/j.issn.1002-4026.2025074

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