Changes
On December 3, 2022 at 10:30:07 AM UTC, seanh:
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Moved CASIWAL Presentation NO.5 from organization Aerospace Information Research Institute, CAS to organization JRC-AO
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8 | "description": "Youth Group on Cryosphere | 8 | "description": "Youth Group on Cryosphere | ||
9 | Air-Snow-Ice-Water-Land (CASIWAL) interactions, observation, modeling, | 9 | Air-Snow-Ice-Water-Land (CASIWAL) interactions, observation, modeling, | ||
10 | and process seminar series initiated by the cooperation with Polar and | 10 | and process seminar series initiated by the cooperation with Polar and | ||
11 | Cryosphere. | 11 | Cryosphere. | ||
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13 | "display_name": "Cryosphere Air-Snow-Ice-Water-Land (CASIWAL)", | 13 | "display_name": "Cryosphere Air-Snow-Ice-Water-Land (CASIWAL)", | ||
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17 | "name": "casiwal", | 17 | "name": "casiwal", | ||
18 | "title": "Cryosphere Air-Snow-Ice-Water-Land (CASIWAL)" | 18 | "title": "Cryosphere Air-Snow-Ice-Water-Land (CASIWAL)" | ||
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n | 28 | "metadata_modified": "2022-12-03T10:19:13.775481", | n | 28 | "metadata_modified": "2022-12-03T10:30:07.487700", |
29 | "name": "casiwal_5th", | 29 | "name": "casiwal_5th", | ||
30 | "notes": "Abstract:\r\nAntarctic sea ice shows a great importance in | 30 | "notes": "Abstract:\r\nAntarctic sea ice shows a great importance in | ||
31 | the heat exchange between ocean and atmosphere in the Southern | 31 | the heat exchange between ocean and atmosphere in the Southern | ||
32 | hemisphere, and the variations of sea ice would reflect the impact of | 32 | hemisphere, and the variations of sea ice would reflect the impact of | ||
33 | climate change on the cryosphere. With the launch of the Ice, Cloud, | 33 | climate change on the cryosphere. With the launch of the Ice, Cloud, | ||
34 | and Land Elevation Satellite-2 (ICESat-2), densely measuring the | 34 | and Land Elevation Satellite-2 (ICESat-2), densely measuring the | ||
35 | Antarctic ocean all year long, monthly sea ice thickness changes can | 35 | Antarctic ocean all year long, monthly sea ice thickness changes can | ||
36 | be inspected. However, the consistency between ICESat-2 and its | 36 | be inspected. However, the consistency between ICESat-2 and its | ||
37 | predecessor ICESat remains unknown if a long-term change of the | 37 | predecessor ICESat remains unknown if a long-term change of the | ||
38 | Antarctic sea ice thickness is to be examined. This talk will present | 38 | Antarctic sea ice thickness is to be examined. This talk will present | ||
39 | the monthly sea ice thickness distribution and characteristics of | 39 | the monthly sea ice thickness distribution and characteristics of | ||
40 | Antarctica derived from ICESat-2 with an improved One-Layer Method | 40 | Antarctica derived from ICESat-2 with an improved One-Layer Method | ||
41 | (OLMi), which is specialized in the complex physical structure of | 41 | (OLMi), which is specialized in the complex physical structure of | ||
42 | Antarctic sea ice. Besides, the discrepancies between ICESat/ICESat-2 | 42 | Antarctic sea ice. Besides, the discrepancies between ICESat/ICESat-2 | ||
43 | are discussed, mainly in the spatial coverage, geometric sampling, and | 43 | are discussed, mainly in the spatial coverage, geometric sampling, and | ||
44 | total freeboard derivation methods. Among these factors, the different | 44 | total freeboard derivation methods. Among these factors, the different | ||
45 | retrieving methods for the total freeboard are found to be the most | 45 | retrieving methods for the total freeboard are found to be the most | ||
46 | influential and support the potential trends investigation of sea ice | 46 | influential and support the potential trends investigation of sea ice | ||
47 | thickness over the Antarctic.\r\n\r\nShort-bio:\r\nYue Xu is an | 47 | thickness over the Antarctic.\r\n\r\nShort-bio:\r\nYue Xu is an | ||
48 | undergraduate student from the School of Earth and Space Sciences, | 48 | undergraduate student from the School of Earth and Space Sciences, | ||
49 | Peking University. The supervisors of this Undergraduate Research | 49 | Peking University. The supervisors of this Undergraduate Research | ||
50 | Project are Prof. Yang Hong and Dr. Huan Li. Her research interests | 50 | Project are Prof. Yang Hong and Dr. Huan Li. Her research interests | ||
51 | include Antarctic sea ice, hydrological remote sensing.", | 51 | include Antarctic sea ice, hydrological remote sensing.", | ||
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55 | "approval_status": "approved", | 55 | "approval_status": "approved", | ||
n | 56 | "created": "2020-04-30T11:11:08.802657", | n | 56 | "created": "2022-12-03T18:28:36.501371", |
57 | "description": "Aerospace Information Research Institute (AIR) | 57 | "description": "The JRC-AO, Joint Research Center for Arctic | ||
58 | under the Chinese Academy of Sciences (CAS) was established in July | 58 | Observations, is a joint research center for the collabration effort | ||
59 | 2017, following the approval for consolidation of three CAS | 59 | by AIR-CAS, and ASC FMI.", | ||
60 | institutes: the Institute of Electronics (IECAS), the Institute of | 60 | "id": "01f3a7d5-4715-4bd1-886a-4e1c800be33e", | ||
61 | Remote Sensing and Digital Earth (RADI), and the Academy of | 61 | "image_url": "2022-12-03-102836.49099620221203182535.png", | ||
62 | Opto-Electronics (AOE) at CAS President Board Meeting. The merger is | ||||
63 | the outcome of CAS efforts towards reformation of its R&D system to | ||||
64 | meet future R&D challenges and to better meet the national demands.", | ||||
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66 | "image_url": "2021-05-18-080509.992585AIRlogo.png", | ||||
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n | 68 | "name": "air", | n | 63 | "name": "jrc-ao_", |
69 | "state": "active", | 64 | "state": "active", | ||
n | 70 | "title": "Aerospace Information Research Institute, CAS", | n | 65 | "title": "JRC-AO", |
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