Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or...

33
Buffers and Feedback Loops Class Notes 1:6

Transcript of Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or...

Page 1: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Buffers and Feedback Loops

Cla

ss N

otes

1:6

Page 2: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Buffers and Feedback Loops

Buffersare agents or

regulatorymechanisms

that reduce or minimize

fluctuations and change

Page 3: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

A forest experiences less fluctuation

in temperature, wind, and humidity than an

unforested area

Example

Buffers and Feedback Loops

Page 4: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Because the trees cool with their shade, block winds, and their fallen

leaves help keep the soil moist

Thus the microclimate in the forest is buffered against extremes

Less fluctuation….. Less change……

Page 5: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

How Feedback Loops Function – Example One

A feedback is a signal that can be detectedand can trigger a response

Imaginean air-conditioner

regulatedby a

thermostattime

1

Page 6: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

How Feedback Loops Function

As the room warms, the thermostat

detectsthe change,

and causes theair-conditioner to

switch ontime

2

and in response, the temperature begins to fall

Page 7: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

time

3 As temperaturescool, the thermostat

again detectsthe change

and shuts off theair-conditioner

and, in response, the room begins to warm again

How Feedback Loops Function

Page 8: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

time

4These repeated reversals

illustrate the usefulness of

negative feedbacks

Negative feedback loops help bring constancy to a systemand help buffer the system against

Extremes Fluctuations, and Change

* Remember, negative does not mean ”bad” and positive does not mean “good”

Page 9: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Negative feedback loops help bring constancy to a system

time

Extremes Fluctuations and Change

Reducing

Page 10: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

They help produce and maintain an active stateof constancy known as.

time

Homeostasis

:the tendency of a system, esp. the physiological system of higher animals, to maintain internal stability.

Page 11: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Some Feedback Loops Can Destabilize

Page 12: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

What is the oppositeof a negative feedback loop?

Answer:

A positive feedback loop

Page 13: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

When a signal is detected in a

positive feedback system

The system responds by

Amplifying Intensifying Magnifying or Accelerating

the original trend

Page 14: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

We all know, snow reflects sun back into space

-if the planet gets a little warmer, snow melts

-with less snow, more sunlight is absorbed by planet

-the increased absorption accelerates warming

-etc., etc., etc.

Positive Feedback Loop

Page 15: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Living systemstend to benefit

because the interactions of many species help maintain

from

Negative Feedback Loops

Stability Constancy and Homeostasis in the system

Page 16: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Buffers and Feedbacks on a Planetary Scale

Page 17: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Buffers and Feedbacks on a Planetary Scale

NASA consultant James Lovelock helps us see

buffers and negativefeedback systems at work on a

planetary scale

Page 18: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

First, envision an imaginary planet that is perfectly

round, smooth, grey and lifeless

He calls his imaginary planet

"Daisyworld"

Page 19: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

If Daisyworld'ssun heats up and

emits more radiation, what will happen to Daisyworld's

temperature?

The planetary temperature will increase

Page 20: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Decreased Solar Output

What will happen toDaisyworld's temperature if its star becomes cooler and emits

less radiation?

The planetary temperature will go down

Page 21: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Next imagine thatDaisyworld is inhabited by two species of organisms

White daisies that reflect light energy

Page 22: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

And dark daisies that absorb light energy

Page 23: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Imagine that 100% of Daisyworld's surface is coveredwith equal numbers of these two species

Page 24: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

What happensif Daisyworld's

sun becomescooler?

Will both daisy species be affected in the same way?

Decreased Solar Output

Page 25: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

As a result, dark daisies increase in numbers

because theyabsorb

the energy that arrives

The dark daisies are better able to survivea decrease in solar radiation

Decreased Solar Output

Page 26: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

In contrast, thelight daisies reflect the

light that arrivesand their

numbers decline

Decreased Solar Output

Page 27: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Daisyworld remains warmer than it would be if it were entirely lifeless

With so many additional dark daisies absorbing solar radiation,

Page 28: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Increased Solar Output

This time the dark daisies absorb too much of the

extra solar output

What if Daisyworld's star heats up?

and their numbers decline

Page 29: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

and cover a greater portionof Daisyworld's surface

The light daisies, however,

reflectmuch of the excess heat so

that they survive

Page 30: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Significance

The presence of life

helps moderate planetary conditions

helps reduce fluctuations and change

buffers Daisyworld’s temperature

( in this case, two mindless species of daisies)

Page 31: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

Positive and Negative feedback loops in Global Warming

Both negative and positive feedback processes occur in the atmosphere. If negative feedback loops are strong, then global

warming will be more moderate. If positive feedback loops prevail, global warming could be catastrophic for life as we

know it.

Page 32: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

1. Increased algae populations reduce [CO2] in atmosphere and causes cooling.

2. Increased plant growth will reduce [CO2] in atmosphere and causes cooling.

3. Increased water evaporation will increase cloud cover and cause cooling.

The Negative Feedback loop

Page 33: Buffers and Feedback Loops Class Notes 1:6. Buffers and Feedback Loops Buffers are agents or regulatory mechanisms that reduce or minimize fluctuations.

The Positive Feedback Loop

4. Increased evaporation adds more water vapor to atmosphere causing warming

5. Melting of permafrost releases more methane gas causing warming

6. Reduced summer snow-pack decreases Earth’s albedo causing warming

7. Increased use of air conditioning using more fossil fuels causes warming