Neidio i’r brif dudalen lywio Neidio i chwilio Neidio i’r prif gynnwys

Impact of surface melt and ponding on ice shelf dynamics and stability

Prosiect: Ymchwil a ariannwyd yn allanol

Manylion y Prosiect

Disgrifiad lleygwr

Ice shelves fringe around half of the Antarctic coastline and exert a fundamental control on the discharge of ice from the Antarctic ice sheets. They can gain and lose mass through interactions with both the ocean and the atmosphere. In the long term their evolution and impact on the ice sheets is controlled by the ocean, but the effect of a warming atmosphere may dominate in the shorter term by providing the conditions and mechanisms for abrupt ice shelf collapse. The atmosphere on the Antarctic Peninsula, where ice shelves have recently undergone most change, is warming faster than anywhere else on Earth. Atmospheric warming leading to surface melt and ponding has already been implicated in the collapse of ice shelves of the Antarctic Peninsula - the loss of the Larsen B ice shelf in 2002 led to significant and ongoing glacier acceleration, draw-down of grounded ice from the interior, and contribution to sea level rise. There is no doubt that climate warming will lead to more ice shelves being subject to temperatures above freezing for significant periods. The much larger southerly neighbour of the Larsen B ice shelf, Larsen C, annually experiences periods of surface melt and ponding, and appears in parts to be approaching the level of firn densification that preceded the Larsen B collapse. Very little is known, however, about the spatial and temporal pattern of melt and firn densification, the distribution and size of ponds, or the impact of these factors on flow and fracture. A key control on ice sheet mass balance is therefore inadequately understood. Our project will address this issue through a combined program of fieldwork, remote sensing and numerical modelling. We will focus on the Larsen C Ice Shelf as an ideal example of a large ice shelf experiencing a wide variety of surface melt and ponding conditions, and which is readily accessible for field measurements. Using borehole camera survey and monitoring instrumentation, and surface geophysics, we will acquire much needed new data about the density and temperature across the ice shelf in the upper half of the ice column. We will probe layers of ice going back hundreds of years to understand the history of melt and ponding on Larsen C Ice Shelf. To understand the impact on the ice shelf of past and future melt and ponding, we will develop a coupled simulation which will use a regional climate model to predict surface melt and ponding and an ice shelf numerical model to test the impact of this meltwater on flow and fracture. These models will be optimised by data from fieldwork and remote sensing that we will collect. The outcome will be the most accurate model of an ice shelf to date which will allow us fully understand impact of melt and ponding on ice shelves and to predict the future evolution of Larsen C Ice Shelf over the next century.
LlythrenwMIDAS
StatwsWedi gorffen
Dyddiad cychwyn/gorffen dod i rym07 Ebr 201406 Ebr 2017

Cyllid

  • Natural Environment Research Council (NE/L006707/1): £242,195.95

Nodau Datblygu Cynaliadwy y CU

Yn 2015, cytunodd gwladwriaethau sy’n aelodau'r Cenhedloedd Unedig ar 17 o Nodau Datblygu Cynaliadwy (NDC) byd-eang i ddod â thlodi i ben, diogelu’r blaned a sicrhau ffyniant i bawb. Mae’r prosiect hwn yn cyfrannu at y NDC canlynol:

  1. NDC 13 - Gweithredu ar y Newid yn yr Hinsawdd
    NDC 13 Gweithredu ar y Newid yn yr Hinsawdd
  2. NDC 14 - Bywyd o Dan y Dŵr
    NDC 14 Bywyd o Dan y Dŵr
  3. NDC 15 - Bywyd ar y Tir
    NDC 15 Bywyd ar y Tir

Ôl bys

Archwilio’r pynciau ymchwil mae a wnelo'r prosiect hwn â nhw. Mae’r labelau hyn yn cael eu cynhyrchu’n seiliedig ar y dyfarniadau/grantiau sylfaenol. Gyda’i gilydd maen nhw’n ffurfio ôl bys unigryw.
  • An updated seabed bathymetry beneath Larsen C Ice Shelf, Antarctic Peninsula

    Brisbourne, A., Kulessa, B., Hudson, T., Harrison, L., Holland, P., Luckman, A., Bevan, S., Ashmore, D., Hubbard, B., Pearce, E., White, J., Booth, A., Nicholls, K. & Smith, A., 20 Ebr 2020, Yn: Earth System Science Data. 12, 2, t. 887-896 10 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    10 Dyfyniadau (Scopus)
    142 Wedi eu Llwytho i Lawr (Pure)
  • Seawater softening of suture zones inhibits fracture propagation in Antarctic ice shelves

    Kulessa, B., Booth, A. D., O’Leary, M., Mcgrath, D., King, E. C., Luckman, A. J., Holland, P. R., Jansen, D., Bevan, S. L., Thompson, S. S. & Hubbard, B., 02 Rhag 2019, Yn: Nature Communications. 10, 1, 12 t., 5491.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    20 Dyfyniadau (Scopus)
    198 Wedi eu Llwytho i Lawr (Pure)
  • Decline in Surface Melt Duration on Larsen C Ice Shelf Revealed by The Advanced Scatterometer (ASCAT)

    Bevan, S., Luckman, A., Munneke, P. K., Hubbard, B., Kulessa, B. & Ashmore, D., 03 Hyd 2018, Yn: Earth and Space Science. 5, 10, t. 578-591 14 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    38 Dyfyniadau (Scopus)
    242 Wedi eu Llwytho i Lawr (Pure)
  • Intense winter surface melt on an Antarctic ice shelf

    Munneke, P. K., Luckman, A. J., Bevan, S. L., Smeets, C. J. P. P., Gilbert, E., Van Den Broeke, M. R., Wang, W., Zender, C., Hubbard, B., Ashmore, D., Orr, A., King, J. C. & Kulessa, B., 16 Awst 2018, Yn: Geophysical Research Letters. 45, 15, t. 7615-7623 9 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    88 Dyfyniadau (Scopus)
    299 Wedi eu Llwytho i Lawr (Pure)
  • Centuries of intense surface melt on Larsen C Ice Shelf

    Bevan, S. L., Luckman, A., Hubbard, B., Kulessa, B., Ashmore, D., Kuipers Munneke, P., O'Leary, M., Booth, A., Sevestre, H. & Mcgrath, D., 05 Rhag 2017, Yn: Cryosphere. 11, 6, t. 2743-2753 11 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    22 Dyfyniadau (Scopus)
    209 Wedi eu Llwytho i Lawr (Pure)
  • Ice and firn heterogeneity within Larsen C Ice Shelf from borehole optical televiewing

    Ashmore, D. W., Hubbard, B., Luckman, A., Kulessa, B., Bevan, S., Booth, A., Kuipers Munneke, P., O'leary, M., Sevestre, H. & Holland, P. R., 10 Meh 2017, Yn: Journal of Geophysical Research: Earth Surface. 122, 5, t. 1139-1153 42 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    17 Dyfyniadau (Scopus)
    206 Wedi eu Llwytho i Lawr (Pure)
  • Observationally constrained surface mass balance of Larsen C Ice Shelf, Antarctica

    Kuipers Munneke, P., McGrath, D., Medley, B., Luckman, A., Bevan, S., Kulessa, B., Jansen, D., Booth, A., Smeets, P., Hubbard, B., Ashmore, D., Van Den Broeke, M., Sevestre, H., Steffen, K., Shepherd, A. & Gourmelen, N., 01 Tach 2017, Yn: Cryosphere Discussions. 11, 6, t. 2411-2426 16 t.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    17 Dyfyniadau (Scopus)
    181 Wedi eu Llwytho i Lawr (Pure)
  • Massive subsurface ice formed by refreezing of ice-shelf melt ponds

    Hubbard, B., Luckman, A., Ashmore, D. W., Bevan, S., Kulessa, B., Kuipers Munneke, P., Philippe, M., Jansen, D., Booth, A., Sevestre, H., Tison, J.-L., O’Leary, M. & Rutt, I., 10 Meh 2016, Yn: Nature Communications. 7, 6 t., 11897.

    Allbwn ymchwil: Cyfraniad at gyfnodolynErthygladolygiad gan gymheiriaid

    Mynediad agored
    Ffeil
    81 Dyfyniadau (Scopus)
    168 Wedi eu Llwytho i Lawr (Pure)