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Time Scales – Human vs
Physical Processes
A big source of trouble… Most
policy makers and voters just
don’t get it
Time scales of physical processes roughly scale
with size – bigger size = longer time scale
• “Size” can be…. Length, mass, thermal
capacitance.
• For significant changes in position to
happen, we look at Newton’s 2nd Law
--- F = ma Force=mass x acceleration
For movement under influence of
force…
• Solving for dt ~ time scale, gives
• Time scale ~ (m/F) * dv
• So, larger mass means longer time scale,
for a given forcing.
• Time scale for what? For “significant”
change in position
• Now, mass goes up very rapidly with physical
dimension…
• For a block of any material of a given density,
Mass~( size)
•
•
•
•
3
Therefore, time scale goes up rapidly with physical size.
--Microbes dance like crazy
--People move like “normal”
--Big things like oceans and atmospheres take years or
decades to change visibly.
• --Stars take millions or billions of years to change
significantly.
For temperature change, it’s THERMAL
MASS that’s important as well
• This is the “heat equation”. The rate of change of
the internal energy u of an object is proportional
to the conductivity k divided by the thermal
capacitance times density, times the gradient of
the gradient of the internal energy over space
Without Getting Lost in
Differential Calculus…
• …let’s just note that solving for dt shows it is
proportional to both mass density and thermal
capacitance (remember, water has a very high
thermal capacitance)
t  c p
• …times a physical size over which the gradient
of internal energy changes
The Essence of the Physics is
this…
• – that the time scale for significant change in the
thermal energy of the system is proportional to
the thermal mass which is to be forced… (add
heat to something twice as big, it’ll change
temperature only half as fast, in everyday
language)
• …and inversely proportional to the amount of
forcing (force it twice as hard, it’ll change in
half the time, in everyday language)
• Ts ~ Mt/Ft
Implications?
• The atmosphere is a tiny fraction of the ocean’s mass,
and thermal mass. Its time scale for change is therefore
much faster
• ….but not fast enough as we’ll see
• The time scale for the ocean to completely turn over and
come to equilibrium with a constant atmosphere (if we
had one) is roughly 1000 years
• The time scale for “significant change” in the
atmospheric forcing due to human-caused CO2 is a few
decades. CO2 levels in the atmosphere have increased
by ~50% in 100 years. That’s a change approaching “of
order 1”.
• Unfortunately, a time scale of 50-100 years falls
“between the cracks” as far as us humans…
It’s an… UNFORTUNATE time scale
• ~50-100 years for significant climate change – unfortunate
• If it were many centuries, we could forget about it perhaps and let
smarter, wealthier people of the future deal with it
• If it were just a few years, like e.g. impending WW II, we’d motivate,
we’d do what was necessary – spending 10%, 20% even 30% of world
GDP to solve the problem before it became serious.
• If it were less than 4 years, even our politicians might be motivated to
focus on the truth, instead of short term pay-offs from Big Oil or
pressure from right wing ideologs
• It’s long compared to human attention spans, and it’s long enough that
ignorant people can feel “if this was serious, it’d be changing obviously
right now”. Slow = non-existent, in this kind of mind
• It’s too long, and it’s too short.
• It’s…. Unfortunate – for our kids, and future generations. We just don’t
deal well with this kind of time scale. The risk is that we’ll do little
things in order to salve our conscience; but avoid the big changes
necessary to actually head off disaster
Key Points – Time Scales
• Time scales for physical climate processes are
longer for systems of higher thermal mass Mt
• Time scales for physical processes are faster for
stronger forcings Ft …
• Time Scale ~ Mt/Ft
• Simple calc’s show 50-100 yrs for significant
climate change – very unfortunate! Too long to
keep our personal attention, too short for the
safety of our children and future generations