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“2030年海底计划”完成26.1%的全球海底绘制 快报文章
资源环境快报,2024年第12期
作者:  薛明媚,王金平
Microsoft Word(13Kb)  |  收藏  |  浏览/下载:7/3  |  提交时间:2024/06/29
Seabed 2030 Project  UN Ocean Decade  Ocean Mapping  
联合国环境规划署发布《深海采矿》报告 快报文章
资源环境快报,2024年第9期
作者:  薛明媚
Microsoft Word(16Kb)  |  收藏  |  浏览/下载:514/1  |  提交时间:2024/05/15
Deep Sea Mining  Seabed  Environment Impact  
英国对地观测企业助力“2030年海底计划” 快报文章
资源环境快报,2023年第24期
作者:  薛明媚,王金平
Microsoft Word(15Kb)  |  收藏  |  浏览/下载:437/0  |  提交时间:2023/12/28
Seabed 2030  Ocean Data  UN Ocean Decade  
“2030年海底计划”和SEABER宣布合作以推进海洋勘探 快报文章
资源环境快报,2023年第19期
作者:  薛明媚,王金平
Microsoft Word(15Kb)  |  收藏  |  浏览/下载:480/0  |  提交时间:2023/10/16
Seabed 2030 Project  Ocean Exploration  AUV  
兰德公司:海底采矿是突破中国对关键矿产全球供应链“控制”的关键 快报文章
地球科学快报,2022年第23期
作者:  刘文浩
Microsoft Word(18Kb)  |  收藏  |  浏览/下载:654/1  |  提交时间:2022/12/09
Seabed Mining  critical minerals supply chains  
兰德公司发布报告《中国在全球关键资源开发中的作用》 快报文章
地球科学快报,2022年第22期
作者:  刘学
Microsoft Word(15Kb)  |  收藏  |  浏览/下载:693/0  |  提交时间:2022/11/25
China  Coal Power  Seabed Mining  
英国地质调查局发布海岸线和海底数据新产品 快报文章
资源环境快报,2022年第07期
作者:  薛明媚,吴秀平
Microsoft Word(19Kb)  |  收藏  |  浏览/下载:674/1  |  提交时间:2022/04/15
BGS  Coastline  Offshore  Seabed  
冰-空间激光跟踪可绘制海底地图并监测珊瑚礁健康状况 快报文章
资源环境快报,2020年第8期
作者:  吴秀平
Microsoft Word(17Kb)  |  收藏  |  浏览/下载:362/1  |  提交时间:2020/04/30
Seabed  coral reef  
Ice front blocking of ocean heat transport to an Antarctic ice shelf 期刊论文
NATURE, 2020, 578 (7796) : 568-+
作者:  Alexandrov, Ludmil B.;  Kim, Jaegil;  Haradhvala, Nicholas J.;  Huang, Mi Ni;  Ng, Alvin Wei Tian;  Wu, Yang;  Boot, Arnoud;  Covington, Kyle R.;  Gordenin, Dmitry A.;  Bergstrom, Erik N.;  Islam, S. M. Ashiqul;  Lopez-Bigas, Nuria;  Klimczak, Leszek J.;  McPherson, John R.;  Morganella, Sandro;  Sabarinathan, Radhakrishnan;  Wheeler, David A.;  Mustonen, Ville;  Getz, Gad;  Rozen, Steven G.;  Stratton, Michael R.
收藏  |  浏览/下载:12/0  |  提交时间:2020/05/13

The front of the Getz Ice Shelf in West Antarctica creates an abrupt topographic step that deflects ocean currents, suppressing 70% of the heat delivery to the ice sheet.


Mass loss from the Antarctic Ice Sheet to the ocean has increased in recent decades, largely because the thinning of its floating ice shelves has allowed the outflow of grounded ice to accelerate(1,2). Enhanced basal melting of the ice shelves is thought to be the ultimate driver of change(2,3), motivating a recent focus on the processes that control ocean heat transport onto and across the seabed of the Antarctic continental shelf towards the ice(4-6). However, the shoreward heat flux typically far exceeds that required to match observed melt rates(2,7,8), suggesting that other critical controls exist. Here we show that the depth-independent (barotropic) component of the heat flow towards an ice shelf is blocked by the marked step shape of the ice front, and that only the depth-varying (baroclinic) component, which is typically much smaller, can enter the sub-ice cavity. Our results arise from direct observations of the Getz Ice Shelf system and laboratory experiments on a rotating platform. A similar blocking of the barotropic component may occur in other areas with comparable ice-bathymetry configurations, which may explain why changes in the density structure of the water column have been found to be a better indicator of basal melt rate variability than the heat transported onto the continental shelf(9). Representing the step topography of the ice front accurately in models is thus important for simulating ocean heat fluxes and induced melt rates.


  
In Situ Mechanical Properties of Shallow Gas Hydrate Deposits in the Deep Seabed 期刊论文
GEOPHYSICAL RESEARCH LETTERS, 2019
作者:  Yoneda, Jun;  Kida, Masato;  Konno, Yoshihiro;  Jin, Yusuke;  Morita, Sumito;  Tenma, Norio
收藏  |  浏览/下载:8/0  |  提交时间:2020/02/17
gas hydrate  stiffness  pressure coring  compression test  deep seabed