Current Climate Change: II - Sea Level Changes Thermal, melt water, salinity, geoid changes and relation to global temperatures.

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Presentation transcript:

Current Climate Change: II - Sea Level Changes Thermal, melt water, salinity, geoid changes and relation to global temperatures

On the ~60 year time scale, sea level rises for two reasons, both are climate-related… 1. Thermal expansion of warmer water (simple physics. Observe temperature profile of the ocean, integrate, derive the thermal expansion) 2. Melting of continental “permanent” ice (glaciers, land ice caps) Thermal expansion has provided most of the sea level rise of the past 100 years But continental melt is rapidly increasing, and now contributing ~1/2 of the current sea level rise rate, will dominate into future.1/2 of the current sea level rise rate Sea Level Rise rate = 1.8mm/year averaged over past 100 years, but is 3.3mm/year over the past 20 years. Note that sea ice melting contributes nothing to sea level rise, since floating ice already displaces water (Archimedes Principle). Thus, melting of the Arctic Ocean ice is not contributing to sea level rise On longer time scales, there is minor contributions from slow rebound of the land from the last Ice Age (loss of heavy glaciation causes continental land to float a bit higher, and this process is very slow). On time scales of a few years and shorter, there are many factors affecting sea level: tides, El Nino’s, tsunamis, changing atmospheric pressure associated with storms, floods and associated salinity changes… 34 second video of Greenland areas of ice melting (in red)

Bars in Brown Are the IPCC AR4 Data, Observations

The Oceans Have Absorbed 93% of our Greenhouse Heating

GISS Climate Model Runs Agree with Observed Ocean Heating. Rising Heat = Expanding Volume and Rising Sea Level

Sea Level Rise vs.Time and Place El Nino’s tend to cause sharper rises in sea level where the warm surface waters are, from the thermal expansion of water La Nina’s (the cold surface water phase) does the opposite and lowers sea level The height of the geoid (the gravitational potential energy surface of the Earth; a surface parallel to sea level if all other factors are ignored) changes near Greenland and Antarctica especially, as glacial melt takes grav mass away from these continents Hence, the rate of sea level rise varies from place to place at different times. Must take account of geoid changes (straight-forward to do: gravity) and other data sampled widely in location and time to get it right. The following data shows the many tidal gauges and satellite measurements are doing a good job of tracking global sea level rise

Latest Data, Seasonal Oscillation Removed. Note intense La Nina in 2010/11 actually dropped sea levels temporarily

A 2014 Study by Hay et al. says the Pre-satellite era Sea Level Data biased to the Low sideHay et al sea level rise rate now looks to be a little lower than thought. And this study agrees with satellite data since 1990 So, lower rise rate in 20 th century combined with the high rate we see today - means, if confirmed, that the accelerating rise RATE of sea level is higher than we had thought

Hay et al is the higher brown curve in 20 th Century

How does this rise rate compare with Ice Age transitions? Red line is 1.8mm/yr = 20 th century average. Recent rate (red line) is double that: satellite observed rate is 3.3mm/yr

GRACE Satellite uses gravity to measure total ice mass loss from Greenland. Ice loss is accelerating.

Annual change in global glacial melt contribution to sea level rise (left axis, mm of water equivalent, mm/yr) and cumulative (brown dots, right axis), based on surface area-weighted mass balance observations (source). Glacier melt now provides almost as much sea level rise as does thermal expansion of seawater, and will dominate going forward(source

Glacier Mass Loss Totals: Accelerating Melt Worldwide

Greenland Melt’s Contribution to Rate of Sea Level Rise: Increasing At Accelerating Rate

Antarctic Ice Mass Declining Even Before WAIS Collapse Began in 2014

Antarctica: Melt Rate Contribution to sea level rise rate in mm/year. West Antarctic Ice Sheet (WAIS) is deep red, left of the TransAntarctic Range

WAIS Pine Island Glacier terminus, lost grounding in Collapse of WAIS now irreversible. Will cause 10 ft of global sea level rise over next ~century or so

Why Are the West Antarctic Ice Sheet Glaciers Melting Rapidly? Prime reason still seems to be rising ocean temperatures, according to Dr. Eric Rignot of UCI, who showed the ungrounding of the terminus glaciers, according to Dr. Eric Rignot of UCI But, there is ongoing geothermal heating as well, since there is a rift zone underneath the WAIS. However, there is no evidence that this heat has taken a sudden rise rate in recent past, yet the WAIS has existed for million years, even at it’s current below sea level anchoring. New work by Schroeder et al finds the geothermal heat flow to be about twice what has long been estimated.Schroeder et al Climate denialists are trumpeting this as destroying credibility of human-caused global warming (not!) Schroeder et al. work is important, but precisely quantifying how much melting is caused by geothermal vs. penetration of ocean water warmed by climate, is hopefully going to come sometime in the near future.

Key Points: Current Climate Change – Sea Level 20 th century average sea level rise rate: 1.8mm/year Past 20 years avg rate: 3.3 mm/year and rising fast Most sea level rise so far has been due to thermal expansion of existing ocean water Most sea level rise in the future will be due to melting continental ice, with help from thermal expansion Melting icebergs and other floating ice do NOT contribute to sea level rise, by Archimedes Principle Glacier terminus in shallow coast ocean can be anchored by the “grounding line”, slowing glacier flow, but thinning ice via warmer water can unground the terminus, accelerating glacier slide into sea West Antarctic Ice Sheet now (2014) has begun irreversible collapse, will cause ~10 ft of sea level rise over next ~2 centuries. A poorly known by likely minor contribution is geothermal heat from beneath, which now appears to be ~twice what was earlier thought.