{"title":"孟加拉湾季前热带气旋加剧的驱动因素:法尼气旋和雅斯气旋的比较研究","authors":"Pankaj Lal Sahu, Sandeep Pattnaik, Prasenjit Rath","doi":"10.1007/s12524-024-01930-1","DOIUrl":null,"url":null,"abstract":"<p>This research paper investigates the factors responsible for tropical cyclones’ intensification process, focusing on pre-monsoon cyclones Fani and Yaas. Using the WRF model, the study examines the dynamics and thermodynamics of the two cyclones in three phases: pre-intensification, intensification, and post-intensification. The results are compared with available satellite data sets and it was found that Fani had higher wind speeds and a more structured system with high specific humidity concentrations closer to the storm center than Yaas. Before the RI of Fani, there was a sudden increase in moisture convergence rate, hydrometeors, and diabatic heating, facilitating the formation of cloud ice at the upper level of the troposphere and the release of higher latent heat energy. In contrast, the lack of moisture convergence in Yaas resulted in a weaker updraft and reduced latent heat release. Further analysis suggests that the heating in Fani was more intense and widespread in the inner eyewall region than the core, compared to Yaas. In general, it is also noted that an enhanced bulk kinetic energy (BKE) is a clear indicator for intensification and during the intensification phase, sustained BKE production and moderate dissipation are evident. The latent heating budget parameters indicate a continuous accumulation of moisture with nearly constant moisture consumption during the intensification process. These features are more distinct for Fani compared to the Yaas. The study concludes that during RI, dynamical processes play a dominant role compared to thermodynamical processes.</p>","PeriodicalId":17510,"journal":{"name":"Journal of the Indian Society of Remote Sensing","volume":"29 1","pages":""},"PeriodicalIF":2.2000,"publicationDate":"2024-07-06","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Factors Driving Intensification of Pre-Monsoon Tropical Cyclones Over the Bay of Bengal: A Comparative Study of Cyclones Fani and Yaas\",\"authors\":\"Pankaj Lal Sahu, Sandeep Pattnaik, Prasenjit Rath\",\"doi\":\"10.1007/s12524-024-01930-1\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p>This research paper investigates the factors responsible for tropical cyclones’ intensification process, focusing on pre-monsoon cyclones Fani and Yaas. 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引用次数: 0
摘要
本研究论文以季风前气旋 "法尼 "和 "雅斯 "为研究对象,探讨了热带气旋加强过程中的各种因素。研究利用 WRF 模型,从三个阶段(加强前、加强和加强后)对两个气旋的动力学和热力学进行了研究。研究结果与现有的卫星数据集进行了比较,发现与雅斯相比,"法尼 "的风速更高,系统结构更合理,离风暴中心更近,比湿浓度更高。在 "法尼 "发生 RI 之前,水汽辐合率、水介质和二重加热突然增加,促进了对流层高层云冰的形成,并释放出更高的潜热能。相比之下,雅斯缺乏水汽辐合导致上升气流减弱,潜热释放减少。进一步的分析表明,与雅斯相比,"法尼 "的升温在内眼角区域比核心区域更为强烈和广泛。一般来说,增强的体动能(BKE)是增强的一个明显指标,在增强阶段,体动能的持续产生和适度消散是显而易见的。潜热预算参数表明,在强化过程中,湿度持续积累,湿度消耗几乎恒定。与雅斯地区相比,法尼地区的这些特征更为明显。研究得出结论,在 RI 过程中,动力学过程比热力学过程起主导作用。
Factors Driving Intensification of Pre-Monsoon Tropical Cyclones Over the Bay of Bengal: A Comparative Study of Cyclones Fani and Yaas
This research paper investigates the factors responsible for tropical cyclones’ intensification process, focusing on pre-monsoon cyclones Fani and Yaas. Using the WRF model, the study examines the dynamics and thermodynamics of the two cyclones in three phases: pre-intensification, intensification, and post-intensification. The results are compared with available satellite data sets and it was found that Fani had higher wind speeds and a more structured system with high specific humidity concentrations closer to the storm center than Yaas. Before the RI of Fani, there was a sudden increase in moisture convergence rate, hydrometeors, and diabatic heating, facilitating the formation of cloud ice at the upper level of the troposphere and the release of higher latent heat energy. In contrast, the lack of moisture convergence in Yaas resulted in a weaker updraft and reduced latent heat release. Further analysis suggests that the heating in Fani was more intense and widespread in the inner eyewall region than the core, compared to Yaas. In general, it is also noted that an enhanced bulk kinetic energy (BKE) is a clear indicator for intensification and during the intensification phase, sustained BKE production and moderate dissipation are evident. The latent heating budget parameters indicate a continuous accumulation of moisture with nearly constant moisture consumption during the intensification process. These features are more distinct for Fani compared to the Yaas. The study concludes that during RI, dynamical processes play a dominant role compared to thermodynamical processes.
期刊介绍:
The aims and scope of the Journal of the Indian Society of Remote Sensing are to help towards advancement, dissemination and application of the knowledge of Remote Sensing technology, which is deemed to include photo interpretation, photogrammetry, aerial photography, image processing, and other related technologies in the field of survey, planning and management of natural resources and other areas of application where the technology is considered to be appropriate, to promote interaction among all persons, bodies, institutions (private and/or state-owned) and industries interested in achieving advancement, dissemination and application of the technology, to encourage and undertake research in remote sensing and related technologies and to undertake and execute all acts which shall promote all or any of the aims and objectives of the Indian Society of Remote Sensing.