FY-4A地表溫度產品在廣西地區適用性分析
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廣西氣象科研計劃項目(桂氣科2023QN04)資助


Applicability Analysis of FY-4A Land Surface Temperature Products in Guangxi Region
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    摘要:

    為評估風云4號A星(FY-4A)地表溫度(LST)產品在廣西地區的精度和適用性,將FY-4A LST產品與中分辨率成像光譜儀(MODIS)LST產品以及基于臺站溫度計和熱紅外輻射計實測的地表溫度進行比較。評價兩套遙感LST產品的差異程度及其與地表狀況的潛在關系;分析FY-4A LST產品與地面觀測地表溫度的一致性;利用標準化距平評估FY-4A LST產品和站點地溫對高溫、寒潮過程的監測能力。結果表明:FY-4A LST與MODIS LST平均差異在2 ℃左右,較大差異出現在海拔較高和樹木覆蓋稀疏的區域,兩者之間的時間序列相關系數在大部分區域超過0.9。FY-4A LST產品同時也與兩種地面觀測的LST在時間變化上具有較好的一致性,但由于觀測方法的差異導致FY-4A LST產品較地面觀測的LST存在系統性的低估偏差,特別是在日間下午。在極端天氣過程中,FY-4A LST產品與站點地溫的標準化距平具有密切的時空關系,能夠監測到異常的溫度信號。

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    Land surface temperature (LST) plays a critical role in the water cycle and energy balance at global and regional scales. Large-scale LST estimates can be obtained from satellite observations; however, there are still uncertainties and challenges in the applicability of LST retrieval based on satellite data. In this study, to assess the accuracy and applicability of LST products from the Advanced Geostationary Orbit Radiation Imager (AGRI) based on the Fengyun-4A (FY-4A) satellite in the Guangxi region, the FY-4A LST products are compared with the Moderate Resolution Imaging Spectrometer (MODIS) LST products, the surface temperature (0 cm) observed by 91 meteorological stations, and the surface temperature measured by a thermal infrared radiometer. By calculating statistical indicators such as bias, root mean square error, and correlation coefficient, the difference between two sets of remote sensing LST products and their potential relationship with surface conditions are comprehensively analysed, and the consistency between FY-4A LST products and ground-observed LST is deeply evaluated. In addition, a standardised anomaly analysis method is used to evaluate the monitoring ability of FY-4A LST products and station-observed LST on high-temperature and cold-wave events. The results show that the average difference in temperature between FY-4A LST and MODIS LST is about 2 ℃, and significant differences occur in areas with high elevation and sparse tree coverage. The correlation coefficients of the time series between FY-4A LST and MODIS LST exceed 0.9 in most areas. It is also found that there is a good consistency in temporal change between the FY-4A LST products and the LST obtained by the two ground observations. However, the FY-4A LST products exhibit systematic underestimation bias compared with the ground-observed LST due to the difference in observation methods, especially in the afternoon. Based on case analyses of extreme weather events such as high temperatures and cold waves, the FY-4A LST products have a close temporal and spatial relationship with the standardised anomalies of the station-observed LST, which can monitor large areas of abnormal temperature signals with standardised anomalies >2. In general, FY-4A LST products show good monitoring capabilities and applicability in the Guangxi region, especially in supplementing the observation of surface temperature in remote mountainous areas with sparse station distributions. The results of this study demonstrate that satellite observations can comprehensively characterise the spatio-temporal variation of the LST and allow us to better use satellite-based LST products in response to changing climate in the future.

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劉槳,馬軍,林健玲,李艷萍,黃潔,李葉晴. FY-4A地表溫度產品在廣西地區適用性分析[J].氣象科技,2025,53(2):177~190

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  • 收稿日期:2024-06-11
  • 定稿日期:2024-11-18
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  • 在線發布日期: 2025-04-21
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