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首页> 外文期刊>Journal of oceanography >Comparison of the third-generation Japanese ocean flux data set J-OFURO3 with numerical simulations of Typhoon Dujuan (2015) traveling south of Okinawa
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Comparison of the third-generation Japanese ocean flux data set J-OFURO3 with numerical simulations of Typhoon Dujuan (2015) traveling south of Okinawa

机译:第三代日本海洋助焊剂数据集J-OFORO3与台风杜娟(2015)南路南部旅行的数值模拟

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Insufficient in situ observations in high winds make it difficult to verify climatological data sets and the results of tropical cyclone (TC) simulations. Reliable data sets are necessary for developing numerical models that predict TCs more accurately. This study attempted to compare the third-generation Japanese Ocean Flux Data Sets with Use of Remote-Sensing Observations (J-OFURO3) data, with TC simulations conducted by a 2?km mesh coupled atmosphere-wave-ocean model. This is a case study of Typhoon Dujuan (2015) and the area of approximately 20?N, 130?E, south of Okinawa, was selected. The comparison reveals that J-OFURO3 data are reliable for verifying the atmospheric and oceanic components of TC simulations with two different initial sea surface temperature (SST) conditions, although the blank area remains within the inner core area for air temperature, specific humidity, and latent heat flux owing to issues with the construction method. Simulated maximum surface wind speeds (MSWs) are significantly correlated with J-OFURO3 MSWs. The asymmetrical distribution of simulated surface wind speeds within the inner core area can be reproduced well in the J-OFURO3 data set. In terms of the oceanic response to the TC, TC-induced sea surface cooling was reproduced well in the J-OFURO3 data set and is consistent with the simulation results. Unlike simulated SST, simulated surface wind speeds, surface air temperature, and surface specific humidity are still inconsistent with the J-OFURO3 data, even when the J-OFURO3 SST is used as the initial condition. New algorithms, more satellite data used, and model improvement are expected in the future.
机译:高风中的原位观察不足使得难以验证气候数据集和热带气旋(TC)模拟的结果。为开发更准确地预测TCS的数值模型是必要的可靠数据集。本研究试图将第三代日本海洋磁通数据集与使用遥感观察(J-OFO3)数据进行比较,TC模拟由2 km网耦合大气波海模型进行。这是对杜娟(2015年)的一个案例研究,选择了冲绳南部的约20?N,130?e的面积。比较揭示了J-OFORO3数据对于验证TC模拟的大气和海洋成分,尽管空白区域保留在内核区域以进行空气温度,特定湿度,以及由于施工方法的问题而潜热通量。模拟最大表面风速(MSW)与J-OFO3 MSW显着相关。可以在J-OFO3数据集中良好地再现内芯区域内的模拟表面风速的不对称分布。就TC的海洋反应而言,在J-OFO3数据集中再现了TC诱导的海表面冷却,并与模拟结果一致。与模拟SST,模拟表面风速,表面空气温度和表面特异性湿度仍然与J-OFO3数据仍然不一致,即使J-OFO3 SST用作初始条件。新算法,使用更多卫星数据,未来预期使用模型改进。

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