f | { | f | { |
| "author": "Fang Chen, Meimei Zhang, Huadong Guo, Simon Allen, | | "author": "Fang Chen, Meimei Zhang, Huadong Guo, Simon Allen, |
| Jeffrey S. Kargel, Umesh K. Haritashya, and C. Scott Watson", | | Jeffrey S. Kargel, Umesh K. Haritashya, and C. Scott Watson", |
| "author_email": "zhangmm@radi.ac.cn", | | "author_email": "zhangmm@radi.ac.cn", |
| "creator_user_id": "2e9fa41b-0394-4070-98d0-205f79d5738b", | | "creator_user_id": "2e9fa41b-0394-4070-98d0-205f79d5738b", |
| "extras": [ | | "extras": [ |
| { | | { |
| "key": "Geographic Coverage", | | "key": "Geographic Coverage", |
| "value": "24\u00b040\u2032N-45\u00b058\u2032N, | | "value": "24\u00b040\u2032N-45\u00b058\u2032N, |
| 61\u00b057\u2032E\uff5e105\u00b029\u2032E" | | 61\u00b057\u2032E\uff5e105\u00b029\u2032E" |
| }, | | }, |
| { | | { |
| "key": "Time", | | "key": "Time", |
| "value": "2008 - 2017" | | "value": "2008 - 2017" |
| } | | } |
| ], | | ], |
| "groups": [ | | "groups": [ |
| { | | { |
| "description": "CAS-GMELT, the Gla.cial Melt Toolbox for High | | "description": "CAS-GMELT, the Gla.cial Melt Toolbox for High |
| Mountain Asia, are collections of dataset, models, and tools by the | | Mountain Asia, are collections of dataset, models, and tools by the |
| GMELT project funded by Chinese Academy of Sciences. CAS-GMELT | | GMELT project funded by Chinese Academy of Sciences. CAS-GMELT |
| provides an operational publicly open platform for the exchange and | | provides an operational publicly open platform for the exchange and |
| collaboration with NASA's Earth Science\u00a0Division (ESD). The | | collaboration with NASA's Earth Science\u00a0Division (ESD). The |
| CAS-GMELT is aiming to develop newly geophysical parameters based on | | CAS-GMELT is aiming to develop newly geophysical parameters based on |
| space Earth observations.", | | space Earth observations.", |
| "display_name": "CAS-GMELT", | | "display_name": "CAS-GMELT", |
| "id": "e4e63708-a44b-40bb-8650-9c112f236293", | | "id": "e4e63708-a44b-40bb-8650-9c112f236293", |
| "image_display_url": | | "image_display_url": |
| //115.29.142.79/uploads/group/2021-05-18-053350.744990GMELT-logo.png", | | //115.29.142.79/uploads/group/2021-05-18-053350.744990GMELT-logo.png", |
| "name": "cas-gmelt", | | "name": "cas-gmelt", |
| "title": "CAS-GMELT" | | "title": "CAS-GMELT" |
| } | | } |
| ], | | ], |
| "id": "b99f3efd-6369-485e-bb41-19d478fe4277", | | "id": "b99f3efd-6369-485e-bb41-19d478fe4277", |
| "isopen": true, | | "isopen": true, |
| "license_id": "other-open", | | "license_id": "other-open", |
| "license_title": "Other (Open)", | | "license_title": "Other (Open)", |
| "maintainer": "", | | "maintainer": "", |
| "maintainer_email": "", | | "maintainer_email": "", |
| "metadata_created": "2020-05-11T07:15:47.917868", | | "metadata_created": "2020-05-11T07:15:47.917868", |
n | "metadata_modified": "2021-05-21T10:59:13.093492", | n | "metadata_modified": "2021-05-26T02:46:14.616294", |
| "name": | | "name": |
| er-dataset-for-glacial-lakes-in-high-mountain-asia-from-2008-to-2017", | | er-dataset-for-glacial-lakes-in-high-mountain-asia-from-2008-to-2017", |
| "notes": " Climate change is intensifying glacier melting and lake | | "notes": " Climate change is intensifying glacier melting and lake |
| development in High Mountain Asia (HMA), which could increase glacial | | development in High Mountain Asia (HMA), which could increase glacial |
| lake outburst flood hazards and impact water resource and | | lake outburst flood hazards and impact water resource and |
| hydroelectric power management. However, quantification of variability | | hydroelectric power management. However, quantification of variability |
| in size and type of glacial lakes at high resolution has been | | in size and type of glacial lakes at high resolution has been |
| incomplete in HMA. Here, we developed a HMA Glacial Lake Inventory | | incomplete in HMA. Here, we developed a HMA Glacial Lake Inventory |
| (Hi-MAG) database to characterize the annual coverage of glacial lakes | | (Hi-MAG) database to characterize the annual coverage of glacial lakes |
| from 2008 to 2017 at 30\u2009m resolution using Landsat satellite | | from 2008 to 2017 at 30\u2009m resolution using Landsat satellite |
| imagery. It is noted that a rapid increase in lake number and moderate | | imagery. It is noted that a rapid increase in lake number and moderate |
| area expansion was influenced by a large population of small glacial | | area expansion was influenced by a large population of small glacial |
| lake (\u2264\u20090.04\u2009km2), and faster growth in lake number | | lake (\u2264\u20090.04\u2009km2), and faster growth in lake number |
| occurred above 5300\u2009m elevation. Proglacial lake dominated areas | | occurred above 5300\u2009m elevation. Proglacial lake dominated areas |
| showed significant lake area expansion, while unconnected lake | | showed significant lake area expansion, while unconnected lake |
| dominated areas exhibited stability or slight reduction. Small glacial | | dominated areas exhibited stability or slight reduction. Small glacial |
| lakes accounted for approximately 15% of the lake area in Eastern | | lakes accounted for approximately 15% of the lake area in Eastern |
| Hindu Kush, Western Himalaya, Northern/Western Tien Shan, and Gangdise | | Hindu Kush, Western Himalaya, Northern/Western Tien Shan, and Gangdise |
| Mountains, but contributed >\u200950\u2009% of lake area expansion in | | Mountains, but contributed >\u200950\u2009% of lake area expansion in |
| these regions over a decade. Our results demonstrate proglacial lakes | | these regions over a decade. Our results demonstrate proglacial lakes |
| are a main contributor while small glacial lakes are an overlooked | | are a main contributor while small glacial lakes are an overlooked |
| element to recent lake evolution in HMA. Regional geographic | | element to recent lake evolution in HMA. Regional geographic |
| variability of debris cover, together with trends in warming and | | variability of debris cover, together with trends in warming and |
| precipitation over the past few decades, largely explain the current | | precipitation over the past few decades, largely explain the current |
| distribution of supra- and proglacial lake area across HMA. The Hi-MAG | | distribution of supra- and proglacial lake area across HMA. The Hi-MAG |
| database are available at: https://doi.org/10.5281/zenodo.3700282, it | | database are available at: https://doi.org/10.5281/zenodo.3700282, it |
| can be used for studies on glacier-climate-lake interactions, | | can be used for studies on glacier-climate-lake interactions, |
| glacio-hydrologic models, glacial lake outburst floods and potential | | glacio-hydrologic models, glacial lake outburst floods and potential |
t | downstream risks and water resources. ", | t | downstream risks and water resources.", |
| "num_resources": 1, | | "num_resources": 1, |
| "num_tags": 2, | | "num_tags": 2, |
| "organization": { | | "organization": { |
| "approval_status": "approved", | | "approval_status": "approved", |
| "created": "2020-04-30T11:11:08.802657", | | "created": "2020-04-30T11:11:08.802657", |
| "description": "Aerospace Information Research Institute (AIR) | | "description": "Aerospace Information Research Institute (AIR) |
| under the Chinese Academy of Sciences (CAS) was established in July | | under the Chinese Academy of Sciences (CAS) was established in July |
| 2017, following the approval for consolidation of three CAS | | 2017, following the approval for consolidation of three CAS |
| institutes: the Institute of Electronics (IECAS), the Institute of | | institutes: the Institute of Electronics (IECAS), the Institute of |
| Remote Sensing and Digital Earth (RADI), and the Academy of | | Remote Sensing and Digital Earth (RADI), and the Academy of |
| Opto-Electronics (AOE) at CAS President Board Meeting. The merger is | | Opto-Electronics (AOE) at CAS President Board Meeting. The merger is |
| the outcome of CAS efforts towards reformation of its R&D system to | | the outcome of CAS efforts towards reformation of its R&D system to |
| meet future R&D challenges and to better meet the national demands.", | | meet future R&D challenges and to better meet the national demands.", |
| "id": "c25dce84-97be-4153-8b90-d38f9ab73e5f", | | "id": "c25dce84-97be-4153-8b90-d38f9ab73e5f", |
| "image_url": "2021-05-18-080509.992585AIRlogo.png", | | "image_url": "2021-05-18-080509.992585AIRlogo.png", |
| "is_organization": true, | | "is_organization": true, |
| "name": "air", | | "name": "air", |
| "state": "active", | | "state": "active", |
| "title": "Aerospace Information Research Institute, CAS", | | "title": "Aerospace Information Research Institute, CAS", |
| "type": "organization" | | "type": "organization" |
| }, | | }, |
| "owner_org": "c25dce84-97be-4153-8b90-d38f9ab73e5f", | | "owner_org": "c25dce84-97be-4153-8b90-d38f9ab73e5f", |
| "private": false, | | "private": false, |
| "relationships_as_object": [], | | "relationships_as_object": [], |
| "relationships_as_subject": [], | | "relationships_as_subject": [], |
| "resources": [ | | "resources": [ |
| { | | { |
| "cache_last_updated": null, | | "cache_last_updated": null, |
| "cache_url": null, | | "cache_url": null, |
| "created": "2020-05-11T07:16:55.347837", | | "created": "2020-05-11T07:16:55.347837", |
| "datastore_active": false, | | "datastore_active": false, |
| "description": "We developed a High Mountain Asia (HMA) Glacial | | "description": "We developed a High Mountain Asia (HMA) Glacial |
| Lake Inventory (Hi-MAG) database to characterize the annual coverage | | Lake Inventory (Hi-MAG) database to characterize the annual coverage |
| of glacial lakes from 2008 to 2017 at 30 m resolution. This is the | | of glacial lakes from 2008 to 2017 at 30 m resolution. This is the |
| first glacier lake inventory across the HMA providing details for size | | first glacier lake inventory across the HMA providing details for size |
| and type of glacial lakes at high spatial resolution, and the first | | and type of glacial lakes at high spatial resolution, and the first |
| with annual temporal resolution. Although the method of lake mapping | | with annual temporal resolution. Although the method of lake mapping |
| was automatic, for quality control every lake polygon was inspected | | was automatic, for quality control every lake polygon was inspected |
| and was manually edited where needed. It can be used for studies on | | and was manually edited where needed. It can be used for studies on |
| glacier-climate-lake interactions, glacio-hydrologic models, glacial | | glacier-climate-lake interactions, glacio-hydrologic models, glacial |
| lake outburst floods and potential downstream risks and water | | lake outburst floods and potential downstream risks and water |
| resources.", | | resources.", |
| "format": "SHP", | | "format": "SHP", |
| "hash": "", | | "hash": "", |
| "id": "b6fdfd00-978d-48a8-8a22-06fa5be57db3", | | "id": "b6fdfd00-978d-48a8-8a22-06fa5be57db3", |
| "last_modified": null, | | "last_modified": null, |
| "metadata_modified": "2020-05-11T07:16:55.347837", | | "metadata_modified": "2020-05-11T07:16:55.347837", |
| "mimetype": null, | | "mimetype": null, |
| "mimetype_inner": null, | | "mimetype_inner": null, |
| "name": "Annual 30-meter Dataset for Glacial Lakes in High | | "name": "Annual 30-meter Dataset for Glacial Lakes in High |
| Mountain Asia from 2008 to 2017", | | Mountain Asia from 2008 to 2017", |
| "package_id": "b99f3efd-6369-485e-bb41-19d478fe4277", | | "package_id": "b99f3efd-6369-485e-bb41-19d478fe4277", |
| "position": 0, | | "position": 0, |
| "resource_type": null, | | "resource_type": null, |
| "size": null, | | "size": null, |
| "state": "active", | | "state": "active", |
| "url": "https://zenodo.org/record/3700282#.Xrj6n_mLTGM", | | "url": "https://zenodo.org/record/3700282#.Xrj6n_mLTGM", |
| "url_type": null | | "url_type": null |
| } | | } |
| ], | | ], |
| "state": "active", | | "state": "active", |
| "tags": [ | | "tags": [ |
| { | | { |
| "display_name": "Glacial Lakes", | | "display_name": "Glacial Lakes", |
| "id": "2c305e2e-35ca-4c02-8d28-8744128aa7aa", | | "id": "2c305e2e-35ca-4c02-8d28-8744128aa7aa", |
| "name": "Glacial Lakes", | | "name": "Glacial Lakes", |
| "state": "active", | | "state": "active", |
| "vocabulary_id": null | | "vocabulary_id": null |
| }, | | }, |
| { | | { |
| "display_name": "High Mountain Asia", | | "display_name": "High Mountain Asia", |
| "id": "217bb74a-7145-44cf-a89f-601d1eb91132", | | "id": "217bb74a-7145-44cf-a89f-601d1eb91132", |
| "name": "High Mountain Asia", | | "name": "High Mountain Asia", |
| "state": "active", | | "state": "active", |
| "vocabulary_id": null | | "vocabulary_id": null |
| } | | } |
| ], | | ], |
| "title": "Annual 30-meter Dataset for Glacial Lakes in High Mountain | | "title": "Annual 30-meter Dataset for Glacial Lakes in High Mountain |
| Asia from 2008 to 2017", | | Asia from 2008 to 2017", |
| "type": "dataset", | | "type": "dataset", |
| "url": "https://zenodo.org/record/3700282#.Xrj6n_mLTGM", | | "url": "https://zenodo.org/record/3700282#.Xrj6n_mLTGM", |
| "version": "" | | "version": "" |
| } | | } |