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On November 2, 2022 at 1:17:14 PM UTC, seanh:
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n | 14 | "metadata_modified": "2022-11-02T13:17:14.282728", | n | 14 | "metadata_modified": "2022-11-02T13:17:14.481909", |
15 | "name": "zhongfen_8th", | 15 | "name": "zhongfen_8th", | ||
16 | "notes": "Abstract:\r\nThe polar ice sheets are a large store of | 16 | "notes": "Abstract:\r\nThe polar ice sheets are a large store of | ||
17 | freshwater in the global climate system.The Ant arctic and Greenland | 17 | freshwater in the global climate system.The Ant arctic and Greenland | ||
18 | lce Sheets have an approximate water equivalent of 57m and 7 m of | 18 | lce Sheets have an approximate water equivalent of 57m and 7 m of | ||
19 | sea-level rise potential, respectively.Surface melt is a sensitive | 19 | sea-level rise potential, respectively.Surface melt is a sensitive | ||
20 | climate indicator that plays an important role in the energy and mass | 20 | climate indicator that plays an important role in the energy and mass | ||
21 | balance of the ice sheets and the dynamics of sea level and ocean | 21 | balance of the ice sheets and the dynamics of sea level and ocean | ||
22 | circulation.However at present it is still challenging to describe the | 22 | circulation.However at present it is still challenging to describe the | ||
23 | detailed melt patterns and to quantitatively estimate surface melt | 23 | detailed melt patterns and to quantitatively estimate surface melt | ||
24 | flux over the ice sheets.This talk will introduce the elaborate | 24 | flux over the ice sheets.This talk will introduce the elaborate | ||
25 | mapping of surface melt from space-borne microwave observations,and | 25 | mapping of surface melt from space-borne microwave observations,and | ||
26 | the estimation of daily melt flux from a remote sensing per spective | 26 | the estimation of daily melt flux from a remote sensing per spective | ||
27 | beyond traditional regional climate models. By highlighting the links | 27 | beyond traditional regional climate models. By highlighting the links | ||
28 | between ice sheet surface melt conditions and atmospheric circulation | 28 | between ice sheet surface melt conditions and atmospheric circulation | ||
29 | anomaliesthe talk will show the mechanisms for extreme melt events at | 29 | anomaliesthe talk will show the mechanisms for extreme melt events at | ||
30 | multi-scales.\r\nThis work has been | 30 | multi-scales.\r\nThis work has been | ||
31 | published:1)https://doiorg/101016/j.rse2020.111835\r\n2) | 31 | published:1)https://doiorg/101016/j.rse2020.111835\r\n2) | ||
32 | I-D-21-0265.13)https://doiorg/101029/2021g1096690\r\nShort-bio:\r\nLei | 32 | I-D-21-0265.13)https://doiorg/101029/2021g1096690\r\nShort-bio:\r\nLei | ||
33 | Zheng received the Ph.D. degree in photogrammetry and remote sensing | 33 | Zheng received the Ph.D. degree in photogrammetry and remote sensing | ||
34 | from Wuhan University,China.He is currently a postdoc researcher with | 34 | from Wuhan University,China.He is currently a postdoc researcher with | ||
35 | Sun Yat-sen University. China.He has authored or co-authored more than | 35 | Sun Yat-sen University. China.He has authored or co-authored more than | ||
36 | 30 publications in peer-reviewed jour nals. His research interests | 36 | 30 publications in peer-reviewed jour nals. His research interests | ||
37 | include remote sensing ofsnow and iceand surface dynamics modeling in | 37 | include remote sensing ofsnow and iceand surface dynamics modeling in | ||
38 | cold regions, with a focus on the melting processes and climate | 38 | cold regions, with a focus on the melting processes and climate | ||
39 | variability in the cryosphere.He has hosted several projects funded | 39 | variability in the cryosphere.He has hosted several projects funded | ||
40 | bythe National Natural Science Foundation ofChina(NSFC)and China | 40 | bythe National Natural Science Foundation ofChina(NSFC)and China | ||
41 | Postdoctoral Science Foundation He has partici pated in scientific | 41 | Postdoctoral Science Foundation He has partici pated in scientific | ||
42 | expeditions in the Antarctic and Qinghai-Tibet Plateau", | 42 | expeditions in the Antarctic and Qinghai-Tibet Plateau", | ||
43 | "num_resources": 1, | 43 | "num_resources": 1, | ||
44 | "num_tags": 0, | 44 | "num_tags": 0, | ||
45 | "organization": { | 45 | "organization": { | ||
46 | "approval_status": "approved", | 46 | "approval_status": "approved", | ||
47 | "created": "2020-04-30T11:11:08.802657", | 47 | "created": "2020-04-30T11:11:08.802657", | ||
48 | "description": "Aerospace Information Research Institute (AIR) | 48 | "description": "Aerospace Information Research Institute (AIR) | ||
49 | under the Chinese Academy of Sciences (CAS) was established in July | 49 | under the Chinese Academy of Sciences (CAS) was established in July | ||
50 | 2017, following the approval for consolidation of three CAS | 50 | 2017, following the approval for consolidation of three CAS | ||
51 | institutes: the Institute of Electronics (IECAS), the Institute of | 51 | institutes: the Institute of Electronics (IECAS), the Institute of | ||
52 | Remote Sensing and Digital Earth (RADI), and the Academy of | 52 | Remote Sensing and Digital Earth (RADI), and the Academy of | ||
53 | Opto-Electronics (AOE) at CAS President Board Meeting. The merger is | 53 | Opto-Electronics (AOE) at CAS President Board Meeting. The merger is | ||
54 | the outcome of CAS efforts towards reformation of its R&D system to | 54 | the outcome of CAS efforts towards reformation of its R&D system to | ||
55 | meet future R&D challenges and to better meet the national demands.", | 55 | meet future R&D challenges and to better meet the national demands.", | ||
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61 | "title": "Aerospace Information Research Institute, CAS", | 61 | "title": "Aerospace Information Research Institute, CAS", | ||
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