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Page 1: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Ph

oto

co

urt

es

y o

f J

ak

e B

rya

nt@

en

vir

ofo

to.c

om

Keeping an eye on the

carbon balance

Alice Holt, UK

Page 2: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Team Effort

Toshie

Mizunuma

Edoardo

Cremonese

Jérôme

Ogée

Lisa

Wingate

Mirco Migliavacca

Page 3: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Acknowledgements

Kenlo Nasahara & Shin Nagai

Timo Vesala, Pasi Kolari & Janne Levula

Andrew Richardson

Matthew Wilkinson & James Morison

Jim Gray Seed Trust, Microsoft Research

Specnet-FLUXNET committee for invitation

and all the FLUXNET PIs for their help

Barbara Köstner, Thomas Grünwald

Olaf Kolle, Alexander Knohl, Werner Kutsch & Markus Reichstein

Catherine Van Ingen

Ph

oto

co

urt

es

y o

f J

ak

e B

rya

nt@

en

vir

ofo

to.c

om

Dario Papale and the IMECC support team

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Picea abies L.

Prunus ssp.

Tharandt

International Phenological Garden Niemand et al., 2005

Köstner et al., 2005

Classical approach to recording start of growing season

Da

te o

f M

ay s

ho

ot

Phenological monitoring since 1962

Page 5: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Grünwald & Bernhofer, 2007

Tharandt CarboEurope Tower, Dresden, Germany

Picea abies L.

Net Ecosystem Exchange

[mmol CO2 m-2 s-1]

Alternative approach to investigate forest ‘growth’ variability

Page 6: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Picea abies L. Prunus ssp.

Tharandt

International Phenological Garden

Net Ecosystem Exchange

[mmol CO2 m-2 s-1]

Together new possibilities to study ‘functional phenology’

Niemand et al., 2005

Köstner et al., 2005

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FLUXNET sites encouraged to mount webcams on towers

hmmm, we need

more cameras

like this on

flux towers...

Dennis Baldocchi et al., 2005

Page 8: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Year Webcam Installed

2000 2002 2004 2006 2008 2010 2012

Nu

mb

er

of

flu

x s

ites

wit

h w

eb

cam

s

0

10

20

30

40

50

60

Europe

Asia

North America

Central and South America

Growing webcam network at European FLUXNET sites

Page 9: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

‘digital number-DN’

Extracting a colour signal from digital images

Richardson et al., 2007, 2009

Bartlett Deciduous Forest Ameriflux Tower, New Hampshire, USA

Page 10: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Strong seasonality in colour signal

0.40

0.35

120 180 240 300

DOY

0.45

0.40

0.35

Relative Channel Brightness ‘digital number-DN’

Green Dn

Total Dn

Red Dn

Total Dn

% G

reen

%

Red

Richardson et al., 2007, 2009

Bartlett Deciduous Forest Ameriflux Tower, New Hampshire, USA

Page 11: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Strong seasonality in colour signal

0.40

0.35

120 180 240 300

DOY

0.45

0.40

0.35

Relative Channel Brightness ‘digital number-DN’

Green Dn

Total Dn

Red Dn

Total Dn

50

25

0

120 180 240 300

DOY

% G

reen

%

Red

Green Excess Index

2G

reen

DN

- (

Red

DN

+ B

lue D

N)

Richardson et al., 2007, 2009

Bartlett Deciduous Forest Ameriflux Tower, New Hampshire, USA

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Latitudinal distribution of webcams in deciduous flux sites C

olo

ur

Fra

cti

on

in R

ed

, G

ree

n &

Blu

e C

han

nels

DOY 100 200 300

0

0.3

0

0.3

0

0.3

0

0.3

0

0.3

0

0.3

0 0

0.3

Italy

Larch

45°50’ N

07°34’ E

Switzerland

Beech & Ash

47°28’ N

08°21’ E

Italy

Oak

42°39’ N

08°21’ E

Germany

Beech & Ash

51°04’ N

10°28’ E

England

English Oak

51°07’ N

00°51’ W

Belgium

Beech

50°18’ N

05°59’ E

Denmark

Beech

55°29’ N

11°38’ E

Torgnon

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Lägeren

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Hainich

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Sorø

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Alice Holt

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Vielsalm

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Roccarespampani

DOY

0 100 200 300

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5Blue 2009

Red 2009

Green 2009

Red 2010

Green 2010

Blue 2010

DOY

0 100 200 300

Str

en

gth

of

sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Red 2008

Green 2008

Blue 2008

Red 2011

Green 2011

Blue 2011

Green2005

Red 2005

Blue 2005

Green2007

Red 2007

Blue 2007

Green2003

Red 2003

Blue 2003

Green2006

Red 2006

Blue 2006

Green2004

Red 2004

Blue 2004

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Latitudinal distribution of webcams in evergreen flux sites

DOY 100 200 300

0

0.3

0

0.3

0

0.3

0

0.3

0

0.3

0

0.3

0 0

0.3

Germany

Norway Spruce

50°58’ N

13°34’ E

Germany

Norway Spruce

50°27’ N

11°27’ E

Belgium

Scots Pine

50°18’ N

05°59’ E

Scotland

Sitka Spruce

56°36’ N

3°47’ E

Sweden

Scots Pine & Spruce

60°05’ N

17°28’ E

Belgium

Scots Pine

51°18’ N

04°31’ E

Finland

Scots Pine

61°50’ N

24°17’ E

Vielsalm

DOY

0 100 200 300

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Las Majadas del Tietar

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Tharandt

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Aberfeldy

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Norunda

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

HyytiäläS

tren

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Wetzstein

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

0.1

0.2

0.3

0.4

0.5

0.1

0.2

0.3

0.4

0.5

Brasschaat

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Vielsalm

DOY

0 100 200 300

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Las Majadas del Tietar

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Tharandt

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Aberfeldy

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

NorundaS

tren

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Hyytiälä

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Wetzstein

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

0.1

0.2

0.3

0.4

0.5

0.1

0.2

0.3

0.4

0.5

Brasschaat

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Co

lou

r F

rac

tio

n

in R

ed

, G

ree

n &

Blu

e C

han

nels

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Webcams in grass and cropland flux sites

DOY 100 200 300

0.31

0.33

0.31

0.33

0

0.3

0

0.3

0

0.3

0

0.3

0 0

0.3

Italy

Grassland

45°50’ N

07°34’ E

Switzerland

Grassland

47°07’ N

08°32’ E

France

Grassland

45°38’ N

02°44’ E

Germany

Crops

50°54’ N

13°31’ E

Germany

Grassland

50°54’ N

13°31’ E

Belgium

Grassland

50°55’ N

04°44’ E

Germany

Crops

51°06’ N

10°54’ E

Torgnon

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.300

0.325

0.350

0.375

Früebüel

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.31

0.32

0.33

0.34

0.35

Klingenberg

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Lonzee

Str

en

gh

t o

f s

ign

al

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Grillenburg

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Laqueuille

DOY

0 100 200 300

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

Gebesee

Str

en

gh

t o

f sig

nal

in R

GB

ch

an

nel

0.1

0.2

0.3

0.4

0.5

0.6

Co

lou

r F

rac

tio

n

in R

ed

, G

ree

n &

Blu

e C

han

nels

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Filtering and extracting phenological metrics

Filtering Cremonese, Migliavacca & Richardson

Data courtesy of Knohl, Kolle & Werner

Median of Absolute Deviation for the median (Papale et al., 2006)

MAX value filter over 5-day window (Sonnentag et al., AGU, 2006)

Remove unrealistic data Green Fraction <0.2 and Excess <-40

Hainich, Germany

DOY 2008

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Filtering and extracting phenological metrics

Filtering Cremonese & Migliavacca

Data courtesy of Knohl, Kolle & Werner

Gapfill by fitting

a spline to

MAD MAX

filtered data (d.f. = length (data)/8)

Hainich forest

Page 17: Keeping an eye on the carbon balance - College of Natural ...nature.berkeley.edu/biometlab/fluxnet2011/PDF_Presentations/...Klingenberg l l 0.10.2 0.3 0.4 0.5 Lonzee l l 0.10.2 0.3

Growing season length often retrieved from NDVI products

Jeong et al., GCB 2011

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Gre

en E

xcess

[-]

0

50

100

150

200

DOY 2003

0 100 200 300

Cum

ula

tive N

EE

[gC

m-2

]

-15

-10

-5

0

5

Daily

Tem

pera

ture

[oC

]

-20

-10

0

10

20

30

So

il h

um

idit

y[%

]

0

20

40

60

Carbon uptake period and green signal consistent

Net E

co

syste

m C

O2 E

xchan

ge

[gC

m-2

d-1

]

CO2 uptake period

Hainich Forest, Germany

Data courtesy of Knohl, Kolle & Werner

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Gre

en

Exce

ss

[-]

0

50

100

150

200

DOY 2003

0 100 200 300

Cu

mu

lative

NE

E

[gC

m-2

]

-200

0

200

400

600D

aily

Te

mp

era

ture

[oC

]

-20

-10

0

10

20

30

So

il h

um

idit

y[%

]

0

20

40

60

CO2 uptake period

Carbon uptake period and green signal consistent

Hainich Forest, Germany

Data courtesy of Knohl, Kolle & Werner

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Interannual variability in growing season length

Hainich Forest, Germany

Data courtesy of Knohl, Kolle & Werner

Sta

rt D

ate

100

110

120

130

140

Carbon Uptake Period

Green Excess Index

En

d D

ate

270

280

290

300

310

Year

2002 2003 2004 2005 2006 2007 2008 2009

Len

gth

of

'gro

win

g' s

eas

on

150

160

170

180

190

Gro

win

g s

eason

length

End d

ay

Sta

rt d

ay

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Frost events impact green signal and CO2 uptake

Alice Holt, England

Courtesy of Mizinuma, Wilkinson & PEN

Gre

en E

xcess

[-]

0

50

100

DOY 2010

0 100 200 300

Gro

ss P

rim

ary

Pro

ductivity

(3-d

ay r

unnin

g m

ean)

[mol C

O2 m

-2d

-1]

0.0

0.5

1.0

Daily

Min

imum

Tem

pera

ture

(3-d

ay r

unnin

g m

ean)

[oC

]

-10

0

10

20

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Frost events impact green signal and CO2 uptake

Alice Holt, England

Courtesy of Mizinuma, Wilkinson & PEN

Gre

en E

xcess

[-]

0

50

100

DOY 2010

0 100 200 300

Gro

ss P

rim

ary

Pro

ductivity

(3-d

ay r

unnin

g m

ean)

[mol C

O2 m

-2d

-1]

0.0

0.5

1.0

Daily

Min

imum

Tem

pera

ture

(3-d

ay r

unnin

g m

ean)

[oC

]

-10

0

10

20

Frost damaged

Ash leaves

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Frost events impact green signal and CO2 uptake

Alice Holt, England

Courtesy of Mizinuma, Wilkinson & PEN

Gre

en E

xcess

[-]

0

50

100

DOY 2010

0 100 200 300

Gro

ss P

rim

ary

Pro

ductivity

(3-d

ay r

unnin

g m

ean)

[mol C

O2 m

-2d

-1]

0.0

0.5

1.0

Daily

Min

imum

Tem

pera

ture

(3-d

ay r

unnin

g m

ean)

[oC

]

-10

0

10

20

Frost damaged

Ash leaves

Po

ste

rio

r

pro

bab

ilit

y

1

0

Frost

event

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Gre

en E

xcess

[-]

0

50

100

150

200

DOY 2003

0 100 200 300

Cum

ula

tive N

EE

[gC

m-2

]

-15

-10

-5

0

5

Daily

Tem

pera

ture

[oC

]

-20

-10

0

10

20

30

So

il h

um

idit

y[%

]

0

20

40

60

Colour signals affected by extreme events?

Net E

co

syste

m C

O2 E

xchan

ge

[gC

m-2

d-1

]

2003 heatwave

Hainich Forest, Germany

Data courtesy of Knohl, Werner & Kolle

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Conclusions

Carbon uptake does not always coincide with

the green up signal

The webcam network at flux sites can

help us monitor and probe large scale

vegetation responses to climatic shifts

Webcams are a cheap and simple way to

obtain dynamic information on canopy state

Rich detail in the image signal that can be

linked to weather events affecting growing

season length

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Thank you to all the flux site PIs and staff

Hella Ahrends, Marc Aubinet, Manuela Balzarolo, Gielen Bert, Nina Buchmann, Faye Carroll,

Robert Clement, Edoardo Cremonese, Lars Eklundh, Werner Eugster, Cristina Gimeno

John Grace, Thomas Grünwald, Bernard Heinesch, Margareta.Hellstrom, Andreas Ibrom

Ivan Janssens, Mike Jones, Sabina Keller, Katja Klump, Olaf Kolle, Alexander Knohl

Werner Kutsch, Quentin Laffineur, Janne Levula, Anders Lindroth, Bernard Longdoz

Maurizio Mencuccini, Mirco Migliavacca, Toshie Mizunuma, Eddy Moors, Dario Papale

Joao Periera, Filipe Costa e Silva, Jean-Francois Soussana, Catherine Van Ingen, Timo Vesala

Matthew Wilkinson, Jans Wilma