|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Toward Understanding the Extreme Floods over Yangtze River Valley in June−July 2020:Role of Tropical Oceans显示文摘The extreme floods in the Middle/Lower Yangtze River Valley(MLYRV)during June−July 2020 caused more than 170 billion Chinese Yuan direct economic losses.Here,we examine the key features related to this extreme event and explore relative contributions of SST anomalies in different tropical oceans.Our results reveal that the extreme floods over the MLYRV were tightly related to a strong anomalous anticyclone persisting over the western North Pacific,which brought tropical warm moisture northward that converged over the MLYRV.In addition,despite the absence of a strong El Niño in 2019/2020 winter,the mean SST anomaly in the tropical Indian Ocean during June−July 2020 reached its highest value over the last 40 years,and 43%(57%)of it is attributed to the multi-decadal warming trend(interannual variability).Based on the NUIST CFS1.0 model that successfully predicted the wet conditions over the MLYRV in summer 2020 initiated from 1 March 2020(albeit the magnitude of the predicted precipitation was only about one-seventh of the observed),sensitivity experiment results suggest that the warm SST condition in the Indian Ocean played a dominant role in generating the extreme floods,compared to the contributions of SST anomalies in the Maritime Continent,central and eastern equatorial Pacific,and North Atlantic.Furthermore,both the multi-decadal warming trend and the interannual variability of the Indian Ocean SSTs had positive impacts on the extreme floods.Our results imply that the strong multi-decadal warming trend in the Indian Ocean needs to be taken into consideration for the prediction/projection of summer extreme floods over the MLYRV in the future. | Shaolei TANG Jing-Jia LUO Jiaying HE Jiye WU Yu ZHOU Wushan YING | 2021 | Advances in Atmospheric Sciences2021,38,12: | 4 |
| 2 | A systemic and molecular study of subcellular localization of SARS-CoV-2 proteins显示文摘Dear Editor,The current pandemic of beta-coronavirus(SARS-CoV-2)has exerted devastating influence on almost all countries,resulting in the disease named COVID-19.1 Coronavirus possesses the largest RNA genome among all the RNA viruses.Its genome encodes about 29 proteins(Supplementary Fig.S1).The subcellular distributions of the viral proteins have yet been reported for SARS-CoV-2.It is important to investigate the viral proteins’locations in cells because the subcellular distribution information not only helps us in understanding how viruses interact with the host cells but also provides clues in fighting against the viral infection.Therefore,we cloned all the genes of SARS-CoV-2 into vectors for expression in mammalian cells and used immunofluorescent assay(IFA)to examine the viral proteins’subcellular location.Except for the NSP11 that is only 14 aa long,we expressed all other 28 viral proteins in HEp-2 or Caco-2 cells and found a diversity of protein distribution in cells,suggesting a complicated interaction of SARSCoV-2 with host cells to achieve a successful infection. | Jing Zhang Ruth Cruz-cosme Meng-Wei Zhuang Dongxiao Liu Yuan Liu Shaolei Teng Pei-Hui Wang Qiyi Tang | 2020 | Signal Transduction and Targeted Therapy2020,5,1: | 1 |
| 3 | Merging daily sea surface temperature data from multiple satellites using a Bayesian maximum entropy method显示文摘海表面温度(SST ) 是为理解在海洋和空气之间的相互作用的一个重要变量。SST 熔化为获得高空间的分辨率和范围的 SST 产品是关键的。这研究介绍贝叶斯的最大的熵(BME ) 为从多重卫星传感器混合每日的 SST 的方法。一块 SST 地的一个新空间与时间的协变性模型被造集成不仅单个天的 SST 而且时间邻近的 SST。另外, AVHRR 30 年的 SST 气候学数据在评价点作为软数据被介绍在 BME 框架以内改进混合结果的精确性。与 4 km 的空间分辨率和 24 个小时的时间的分辨率,合并 SST 在西方的太平洋区域被生产表明并且评估建议方法论。比较与在合并 SST 是精确的 situ 漂流浮标观察表演和偏爱和 root-mean-square,为比较的错误是 0. | Shaolei TANG Xiaofeng YANG Di DONG Ziwei LI | 2015 | Frontiers of Earth Science2015,9,4: | 1 |
| 4 | Over-projected Pacific warming and extreme El Niño frequency due to CMIP5 common biases显示文摘Extreme El Niño events severely disrupt the global climate,causing pronounced socio-economic losses.A prevailing view is that extreme El Niño events,defined by total precipitation or convection in the Niño3 area,will increase 2-fold in the future.However,this projected change was drawn without removing the potential impacts of Coupled Model Intercomparison Project phase 5(CMIP5)models’common biases.Here,we find that the models’systematic biases in simulating tropical climate change over the past century can reduce the reliability of the projected change in the Pacific sea surface temperature(SST)and its related extreme El Niño frequency.The projected Pacific SST change,after removing the impacts of 13 common biases,displays a‘La Niña-like’rather than‘El Niño-like’change.Consequently,the extreme El Niño frequency,which is highly linked to the zonal distribution of the Pacific SST change,would remain mostly unchanged under CMIP5 warming scenarios.This finding increases confidence in coping with climate risks associated with global warming. | Tao Tang Jing-Jia Luo Ke Peng Li Qi Shaolei Tang | 2021 | National Science Review2021,8,10: | 1 |
| 5 | Distinct Evolution of the SST Anomalies in the Far Eastern Pacific between the 1997/98 and 2015/16 Extreme El Niños显示文摘The 2015/16 El Niño displayed a distinct feature in the SST anomalies over the far eastern Pacific(FEP)compared to the 1997/98 extreme case.In contrast to the strong warm SST anomalies in the FEP in the 1997/98 event,the FEP warm SST anomalies in the 2015/16 El Niño were modest and accompanied by strong southeasterly wind anomalies in the southeastern Pacific.Exploring possible underlying causes of this distinct difference in the FEP may improve understanding of the diversity of extreme El Niños.Here,we employ observational analyses and numerical model experiments to tackle this issue.Mixed-layer heat budget analysis suggests that compared to the 1997/98 event,the modest FEP SST warming in the 2015/16 event was closely related to strong vertical upwelling,strong westward current,and enhanced surface evaporation,which were caused by the strong southeasterly wind anomalies in the southeastern Pacific.The strong southeasterly wind anomalies were initially triggered by the combined effects of warm SST anomalies in the equatorial central and eastern Pacific(CEP)and cold SST anomalies in the southeastern subtropical Pacific in the antecedent winter,and then sustained by the warm SST anomalies over the northeastern subtropical Pacific and CEP.In contrast,southeasterly wind anomalies in the 1997/98 El Niño were partly restrained by strong anomalously negative sea level pressure and northwesterlies in the northeast flank of the related anomalous cyclone in the subtropical South Pacific.In addition,the strong southeasterly wind and modest SST anomalies in the 2015/16 El Niño may also have been partly related to decadal climate variability. | Shaolei TANG Jing-Jia LUO Lin CHEN Yongqiang YU | 2022 | Advances in Atmospheric Sciences2022,39,6: | 0 |
| 6 | Correction: A systemic and molecular study of subcellular localization of SARS-CoV-2 proteins显示文摘 | Jing Zhang Ruth Cruz-cosme Meng-Wei Zhuang Dongxiao Liu Yuan Liu Shaolei Teng Pei-Hui Wang Qiyi Tang | 2021 | Signal Transduction and Targeted Therapy2021,6,6: | 0 |
| 7 | Intelligent power distribution live‐line operation robot systems based on stereo camera显示文摘Maintenance tasks in distribution networks are often accompanied by hazards associated with high altitudes and high voltages.By utilising robots instead of human operators to perform these tasks,potential risks can be avoided,while productivity can be increased.This research proposes an intelligent power distribution live‐line operation robot(PDLOR)system based on a stereo camera to replace human to complete work.The PDLOR system consists of several key components,including dual manipulators,wireless tools,a visual perception system,an insulated bucket truck,and a ground control ter-minal.Once the task is confirmed,the real‐time vision system identification and posi-tioning enable the adjustment of the insulated bucket to position the robot correctly for its intended work.The stereo camera plays a crucial role in accurately recognising and estimating the object's orientation.Additionally,a simplified reconstruction is performed within a virtual simulation environment,which aids in collision detection during path planning.After obtaining the optimal path,it is then communicated to the real manip-ulator for execution.To validate the feasibility of the PDLOR system,field experiments were conducted in actual distribution network scenarios.The results demonstrate that the PDLOR effectively completes single‐phase power‐line connection tasks within a remarkable 10‐min timeframe. | Yutao Chen Yahao Wang Xuming Tang Kai Wu Shaolei Wu Rui Guo Yu Feng Erbao Dong | 2023 | High Voltage2023,8,6: | 0 |