lecture 2 atmospheric boundary layer · atmospheric boundary layer neutral, convective, stable and...

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Lecture 2 Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the Earth surface are felt Surface – fluxes of momentum, buoyancy….. H. J. Fernando Arizona State University

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Page 1: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Lecture 2

Atmospheric Boundary Layer

Neutral, Convective, Stable and

Transitional Boundary Layers

Region of the lower atmosphere where effects

of the Earth surface are felt

Surface – fluxes of momentum, buoyancy…..

H. J. Fernando

Arizona State University

Page 2: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Atmospheric Boundary Layer (flat terrain)

ij

uux

U

xx

PUf

x

UU

t

Uji

j

i

jij

ij

i

1

~~

Horizontal homogeneity

Steady (Boun Layer)

3

3

~~

1

xx

PUf i

i

y

(y

low

P

High P

x

z

ze

Fig. 4.7.1 Ekman Spiral in the Northern Atmosphere

y

(y

low

P

High P

x

z

ze

Fig. 4.7.1 Ekman Spiral in the Northern Atmosphere

PUf

x

PUf

g

ig

1

1

~~

~~

Geostrophy

0=PUg

.~

Page 3: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 4: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

3

3

xUfUf i

g

+×=×

~~

z

UUf

zvvf

yz

g

xzg

m 50≈101010

5020-1≈

≈-(1

24

22

2

××

×.~

)(

)

*

*

g

g

fv

uaH

Hfvua

Surface layer – small change of stress

y

(y

low

P

High P

x

z

ze

Ekman Spiral in the Northern Atmosphere

dzvvfHH

gxzxz 0

0

u*2

Boundary Layer fow

ig

x

PUf

1

~~

3

31

xx

PUf i

i

3

3--x

UUf ig

=× )(

~~~

Page 5: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

z

UUf

zvvf

yzg

xzg

( ) ( )0,, gUvU = at z ze

gg UUU 0v at z = 0

;'z

UKwu

z

Uxz

z

vKyz =

(K theory)

y

(y

low

P

High P

x

z

ze

Fig. 4.7.1 Ekman Spiral in the Northern Atmosphere

Ug

Page 6: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

e

zz

g

z

zeUU e cos1

e

zz

g

z

zeUV e cos

f

Kze 2

Ekman Spiraly

(y

low

P

High

P

x

z

ze

Fig. 4.7.1 Ekman Spiral in the Northern Atmosphere

Ug

Page 7: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Ekman Layer Height

mf

KhE 300~

2

Sutton (1953) used this as the ABL height under

neutral conditions

Tennekes (1982)

EhuK *

kmf

uhABL 1~

25.0 *

With Stratification? -

- Stable or Unstable

Page 8: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Lecture 2a

Convective Boundary Layers

And

Convective Flows

Page 9: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

ABL EVOLUTION

287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

z(m

)

287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

287 288 289 290 291 292 293 294

Virtual potential temperature (K)287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

z(m

)

Page 10: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

0T

tqhN 022 ≈

2

1

212

1

2

02 t

N

qh

Non-

Penetrative

and

Penetrative

Convection

fluxbuoyancy

C

gQq

p00

=

Page 11: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

ABL EVOLUTION

287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

z(m

)

287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

287 288 289 290 291 292 293 294

Virtual potential temperature (K)287 288 289 290 291 292 293 294

Virtual potential temperature (K)

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

0

20

40

60

80

100

120

140

160

180

200

220

1641-1644

1657-1701

1721-1724

1738-1741

1756-1800

1814-1817

1835-1838

1856-1900

z(m

)

Page 12: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Formation and Breakdown of an Inversion Layer in El

Paso

Page 13: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 14: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Unstable Boundary Layer

(flat terrain)

Page 15: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Stable Boundary Layer (flat terrain)

Page 16: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Convection between horizontal surfaces

2,,,, fkHq To

2

4

0RaT

fk

Hq

k

Tdg 3

2

424

HTa

T

rk

P

,

[Rayleigh-Benard ; Chandrasekhar 1961]

( )

)(

~

~

*

*

1971

10≈

0

8

310

Deardorff

WqB

RHL

HqW

f

=

Page 17: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Molecular

Thermals

31RaNu

Goldstein and Chu (1973)

Sparrow et. al. (1970)

Page 18: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Plumes - Convective

Page 19: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Molecular

Thermals

31RaNu

Goldstein and Chu (1973)

Sparrow et. al. (1970)

Page 20: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Dave Fultz’s

experiments

Page 21: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Irregular vortex patterns

(Higher Ra/smaller Ta)

“Geostrophic Turbulence”puuu

1~2~.

Page 22: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Onset of Rotational Effects

kjjk

HH

H uRoz

uw

x

uu

t

u

Tu

L

1

x

p

u

p

H

2

0

0

2

222

z

u

L

L

xx

u

V

H

Re

1

310

1

/)(

~

HH

H

H

LqU

fL

uRo

=

=

km100~

( )213

0

210

31

10≈

2≈

/

//

)(

)(~

fqL

fqLqU

R

Ho

Page 23: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Sea Surface Temperature, July

-10.0 33.2 ( oC )

Page 24: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 25: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Non-Rotating Plume

Page 26: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Rotating Plume

Fernando, Dyn. Atmos. Oceans, 2000

Page 27: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 28: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Atmospheric Surface layer

Page 29: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Monin-Obukhov (1954) Similarity Theory

-- For flat terrain surface layer

pC

Qgq

0

00

=buoyancy flux

pC

QwH

0

0 ==___

)(temperature flux

Heat Flux Q0, Stress τ0 = u*2

Parameters

Q0τ0

Define the scaling variables:

0*

*

u

wT

temperature scale

0w 0* TConvection

0w 0 :stable * TStratification

1/2

0* wuu velocity scale

Page 30: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Monin-Obukhov scale

0

33 11

q

u

wg

uL ***

=

Θ

=

Page 31: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Non dimensional relations

z

u

Z

U

*

z

T

Z

*=

*u

w

*T

w

Øm (z/L*) wind shear)

Ø h (z/L*) (thermal stratification)

(variability of w)

(variability in θ)

Øw =

Øθ =

(dissipation)

z

u

3* Øε (z/L*)

),,(

),,(

**

0*

LzuG

qzuFAny

Page 32: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Kaimal &

Finnigan

1994

Page 33: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

fRi

dZ

Udwu

wb

Z

u

wg

L

Z

3

**

;

given that

Z

u

dZ

Ud *

2

*uwu

*Lz shear dominates : *Lz Buoyancy (outer layer)

Page 34: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

With a slope

Page 35: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Thermal blob

(I)

(IV)

(III)

(II)

(I)

(IV)

(III)

(II)

Detachment occurs when

33

10

cTgRaRa c

Princevac &

Fernando, Phys.

Fluids, 19, 2007

Page 36: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Convection in Complex Terrain

Page 37: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

T-Rex Observations (NCAR)

Page 38: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

zz

x=0

h

frontal wave

x=L

x=L

c= b h

x

x

W

E

V

I

(z)

S

SF

c

H

upslope flow, U

(x, z, t)

frontal wave

~

z (x)S

Fully developed upslope flow

Page 39: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Prandtl’s Solutions

000 TTgbg

zTT Γ+= 0

gNdz

bd 2

Initial temp distribution

Initial hydrostatic

sin1

00

bs

p

cossin nsz

Page 40: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Now give a perturbation, b’ and corresponding velocity u

2

'2

s

b

s

bu

2

2

0n

uvb += sin'

0 spandgb

sin/// 2Nszzbsb

0'sin' 22

4

4

b

v

N

n

b

nlAeb ln cos' /

41

22 sin

4

N

vl

Page 41: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

l

ne

vNAu l

nsin

21

2

Velocity along the slope, constant (eddy?) coefficients

/0lqA

nbq /0

constant heat flux boundary condition

Page 42: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

[S]

[M]

[I]

[E]

zh

SS

SS

z

x=0

h

U

front wave

x=L

x=L

Th

c= b h

x

x

h

W

S

I

E

S

MS

mI

V

I

S

C

(z)

C

S

S

SF

c= b hI

Upslope - Theoretical Model

z

F

zW

xU

t

zb

x

P

z

UW

x

UU

t

U

ˆˆˆ

ˆˆˆ

)(

ˆ)(

th

zftUU m

S

u

0

S

SFF

}

}0ˆˆ zz

hzz ˆˆ

*LCS

SS

..................

ˆ 31

34

*

F

z

Uhzw

..................

ˆ*

F

z

Uzu

Hunt, Fernando & Princevac

J. Atmos. Sci., 60, 2003

Page 43: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Arizona State University

Environmental Fluid Dynamics

Program

Theory - Up-Slope Velocity

For small

*3

1

wU uM

where

31

31

31

)( 0* hqhgFw S

4u (?)

(Experiments)

Page 44: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Arizona State University

Environmental Fluid Dynamics

Program

Experimental setup - Schematic

Page 45: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Balloons

Page 46: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Arizona State University

Environmental Fluid Dynamics

Program

VTMX velocity profileVTMX Velocity Profile

0

50

100

150

200

250

300

350

0 0.5 1 1.5 2 2.5 3

Velocity [m/s]

He

igh

t [m

]

10/08/00 5:53PM(Qnet = 91 W/m 2̂)

10/14/00 4:58PM(Qnet = 49 W/m 2̂)

Page 47: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Arizona State University

Environmental Fluid Dynamics

Program

Up-slope velocityVTMX Daily Averaged Um VS w*

1/3

(October 1 - 5, 7, 14 - 17)

(Days with low synoptic wind condition)

y = 4.1458x

0

0.5

1

1.5

2

2.5

3

3.5

4

4.5

0 0.1 0.2 0.3 0.4 0.5 0.6 0.7

Daily Averaged w*1/3 [m/s]

Da

ily

Av

era

ge

d U

m [

m/s

]

Laboratory Data

VTMX Sonic Data

VTMX Balloon Data during IOP

Linear (VTMX Sonic Data)

*3

1

wU uM

Page 48: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Geophysical Convection

Page 49: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

A continuum of scales

• Large scale -- deep convection/Hadley

Cells (~ 10000 km)

• Thunderstorms (~250mkm)

• Slope flows (10-100 km)

• Atmospheric Plumes -- Microbursts (2 km)

• CBL (100m to km)

Page 50: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Drivers of Environmental Motions

TidesMoon

SUN

Hadley Circulation

warm

cold

p

1

~

g

b ~~

uf

Page 51: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

T

T

a

b

kP

dT

d

ababT

ab

Tdg

ra

a

T

;4

4

Ro

2

42

2

42

22

2

1

Page 52: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 53: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Atmospheric Convection

Page 54: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

CONVECTION OVER URBAN

AREAS

Page 55: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Phoenix Metropolis

Urban Heat Island -- Urban air can be

significantly hotter than the countryside

Page 56: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

UHI in satellite image of

Phoenix

Page 57: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

This graph illustrates that rapid temperature increases in Phoenix correspond to rapid population growth. Baltimore’s population growth peaked just after 1960, which corresponds to slight temperature changes. Notice that urban effects for both cities are most dramatic in minimum temperatures

Urban-Rural Monthly Average Max and Min Temperature Differences for BES and CAP LTER

Brazel et al. 2000

Page 58: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

March 19, 2008, 5pm to 10pm

Infrared imaging of Phoenix

Page 59: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

UHI Experiment

Page 60: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the
Page 61: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Variation or horizontal variance

(normalized). (Solid Curve --

Laboratory)

(Fernando et al., Dyn. Atmos.

Oceans, 13,95-121, 1989)

Variation of vertical variance

(normalized).

Convective Scaling Vs. Data

Page 62: Lecture 2 Atmospheric Boundary Layer · Atmospheric Boundary Layer Neutral, Convective, Stable and Transitional Boundary Layers Region of the lower atmosphere where effects of the

Wind Shear Found at all

Altitudes