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Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store Isostatic – local-scale sea level change caused.

Jan 19, 2016

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Joy Nelson
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Page 1: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.
Page 2: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.
Page 3: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store

Isostatic – local-scale sea level change caused by a change in the level of the land relative to the level of the sea.

Emergence – the impact of a relative FALL in sea level (Marine Regression)

Submergence – the impact of a RISE in relative sea level (Marine Transgression)

Page 4: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

A decrease in global temperatures leads to more precipitation occurring in the form of snow.

Eventually this snow turns to ice and so water is stored on land rather than being returned to the ocean store.

Consequently there is a global FALL in sea level.

If global temperatures subsequently rise, glaciers retreat and ice melts causing a RISE in global sea level.

Page 5: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.
Page 6: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

During a glacial period, the weight of ice in ice sheets and glaciers adds weight to the earth’s crust.

This causes the crust to sink lower into the mantle rock beneath.

This results in an apparent rise in the level of the sea.

At the end of the glacial period the ice melts and weight is lost from the crust causing it to slowly rise. The sea level will then appear to fall.

Some places on the east coast of Scotland are rising at a rate of 7mm a year.

Page 7: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.
Page 8: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.
Page 9: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Rias Fjords Fjards

Page 10: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Fjard – submerged glacial lowlands

Page 11: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Rias are submerged river valleys. The lowest part of Rias are submerged river valleys. The lowest part of the river’s course and the floodplains alongside the the river’s course and the floodplains alongside the river may be completely drowned, but the higher river may be completely drowned, but the higher land remains exposed, e.g. Kingsbridge Estuary, land remains exposed, e.g. Kingsbridge Estuary, DevonDevon

Page 12: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

In cross section the ria has relatively shallow water becoming increasingly deep towards the centre. The exposed valley sides are quite gently sloping.

In long section rias are quite even with a smooth profile and water of uniform depth.

In plan view they tend to be winding, reflecting the original route of the river and its valley.

Page 13: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Fjords are submerged glacial valleys. They have Fjords are submerged glacial valleys. They have steep, cliff-like valley sides and the water is uniformly steep, cliff-like valley sides and the water is uniformly deep (often 1000m in depth). These were formed deep (often 1000m in depth). These were formed when glaciers eroded below sea-level. When the ice when glaciers eroded below sea-level. When the ice melted the valleys were flooded, e.g. Milford Sound melted the valleys were flooded, e.g. Milford Sound fjord, New Zealandfjord, New Zealand

Page 14: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

The u-shaped cross-section reflects the original shape of the glacial valley.

Unlike rias, fjords are not deepest at their mouths, but have a shallow section at the seaward end known as the threshold.

Fjords have much straighter routes, due to the erosive power of the glacier.

Page 15: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Raised Beaches Abandoned Coastlines

Page 16: Eustatic – global-scale sea level change caused by a change in the volume of water in the ocean store  Isostatic – local-scale sea level change caused.

Raised beaches, e.g. Little Gruinard, Ullapool are Raised beaches, e.g. Little Gruinard, Ullapool are areas of former wave-cut platforms and their areas of former wave-cut platforms and their beaches which are left at a higher level than the beaches which are left at a higher level than the present coastline. Abandoned cliffs, caves and stacks present coastline. Abandoned cliffs, caves and stacks can also be foundcan also be found..