Hydrological pattern in a mixed forest in Northern Germany:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | German |
Veröffentlicht: |
Göttingen
Selbstverl. des Forschungszentrums Waldökosysteme
2004
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Schriftenreihe: | Berichte des Forschungszentrums Waldökosysteme : Reihe A
187 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | 172 S. Ill., graph. Darst., Kt. |
Internformat
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Datensatz im Suchindex
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adam_text | Titel: Hydrological pattern in a mixed forest of Northern Germany
Autor: Cheussom, Levis
Jahr: 2004
Table of contents
Acknowledgements....................................................................................................................1
List of Figures............................................................................................................................5
List of tables...............................................................................................................................8
1 Introduction.......................................................................................................................10
1.1 Mixed Forests as Elements in modern silviculture................................................11
1.2 Hypotheses and questions addressed in this thesis................................................15
2 Forest Site and Measurements...........................................................................................15
2.1 The Soiling area.........................................................................................................15
2.2 The Beech/spruce stand............................................................................................17
23 Experimental Installations.......................................................................................20
2.4 The Measurement Programme................................................................................21
2.4.1 Measurement of the soil- water retention curve (SWRC)....................................21
2.4.2 Precipitation measurement...................................................................................23
2.4.3 Soil water potential measurements.......................................................................24
2.5 Data Evaluation.........................................................................................................26
2.5.1 Statistics...............................................................................................................26
2.5.2 Soil water model...................................................................................................26
2.5.3 GIS applications...................................................................................................30
3 Results and Discussion......................................................................................................32
3.1 Soil Water Retention Curves (SWRC)....................................................................32
32 Pattern of precipitation............................................................................................35
3.2.1 Dependence of local throughfaU on local canopy cover......................................38
3.2.2 Dependence of local tbroughfall on tree distance................................................45
3.2.3 Seasonal patterns of interception and stemflow...................................................47
3.3 Precipitation and ThroughfaU Chemistry..............................................................50
3.3.1 Water flux / concentration relationship................................................................51
3.3.2 Nitrogen deposition..............................................................................................52
3.4 Soil Hydrologkal patterns........................................................................................57
3.4.1 Water potential patterns along transects...............................................................57
3.4.2 Seasonal development of water potentials...........................................................61
3.4.3 Root distribution and soil water potentials...........................................................66
3.5 One-dimensional water transport modeling...........................................................67
3.5.1 Calibration of die model.......................................................................................67
3.5.2 Simulation results.................................................................................................72
3.5.3 Mass balance........................................................................................................88
3.6 Water balance............................................................................................................93
3.6.1 Water balance in the beech and spruce dominated sites......................................93
3.6.2 Water balance in the four canopy classes.............................................................96
4 Summary and conclusions...............................................................................................100
5 Zusammenfassung...........................................................................................................109
6 Reference List..................................................................................................................116
7 Appendixes......................................................................................................................126
7.1 Appendix I: Fit out flies..........................................................................................127
7.2 Appendix II. Balanccont files................................................................................141
7J Appendix III: AJeveKout files...............................................................................150
List of Figures
Figure 1-1: Schematic representation of a forest ecosystem water flux model, adapted from
Benecke (1984)..................................................................................................................14
Figure 2-1: Position of Soiling and localization of the sampling site (A3) in Soiling.............16
Figure 2-2: Site with beech as central tree (spruce dominance)...............................................18
Figure 2-3: Site with spruce as central tree (beech dominance)..............................................19
Figure 2-4: Photo of the field site; group with beech as the central tree..................................20
Figure 2-5: (a) Pressure flow cell (Tempe Cell); and (b) Pressure plate apparatus used to
desaturate soil samples to desired matric potential...........................................................21
Figure 2-6: Transducer type tensiometer system and digital readout device...........................25
Figure 2-7: The Feddes root water uptake reduction model....................................................28
Figure 3-1: Soil water retention curves established in laboratory at different depths..............33
Figure 3-2: Weekly gross precipitation (cumulative value) and throughfall (cumulative value)
in the beech dominated site and the spruce dominated site in summer (10 May 01 to 25
October 01 and 9 May 02 to 24 October 02). Mean value and standard deviation. The date
on the figure represents the collecting date. The period from 10 May 01 to 25 October 01
was used for the soil water modelling...............................................................................36
Figure 3-3: Weekly gross precipitation (cumulative value) and throughfall (cumulative value)
in the beech dominated site and the spruce dominated site in winter (5 April 01 to 3 May
01, 21 January 02 to 2 May 02 and 9 January 03 to 17 March 03). Mean value and
standard deviation. The date on the figure represents the collecting date.........................37
Figure 3-4: Cumulative throughfall in the open land and four canopy classes in the vegetation
season (10 May 01 to 25 October 01 plus 9 May 02 to 24 October 02), and in the winter
season (5 April 01 to 3 May 01,21 January 02 to 2 May 02 and 9 January 03 to 17 March
03)......................................................................................................................................40
Figure 3-5: Cumulative throughfall as sum per total area in four canopy classes and open land
in the vegetation season (10 May 01 to 25 October 01 plus 9 May 02 to 24 October 02),
and in the winter season (5 April 01 to 3 May 01, 21 January 02 to 2 May 02 and 9
January 03 to 17 March 03)...............................................................................................45
Figure 3-6: Throughfall (cumulative value) in a transect between the central beech tree and
the spruce trees number four (F4) and eight (F8) in the spruce dominated site for the
vegetation season (10.05.01 to 25.10.01) and the winter season (21.01.02 to 02.05.02).. 46
Figure 3-7: Percentage values of stemflow as a fraction of the gross precipitation (2001
vegetation season observations)........................................................................................50
5
Figure 3-8: Cumulative deposition (A) in the gross precipitation of the open land and in the
throughfall under different canopy coverage and precipitation amount (B), both during
five weeks of the vegetation season (13.06.02 to 18.07.02)..............................................55
Figure 3-9: Cumulative deposition (A) in the gross precipitation of the open land and in the
throughfall under different canopy coverage and precipitation amount (B), both during the
five weeks of the winter season (14.02.02 to 19.03.02)....................................................56
Figure 3-10: Matric potential and throughfall in a transect between the beech central tree and
the spruce trees number four (F4) and eight (F8) in the spruce dominated site on the 27
of June 2001 (throughfall sampled 21.-27.06.2001).........................................................58
Figure 3-11: Matric potential and throughfall in a transect between the beech central tree and
the spruce trees number four (F4) and eight (F8) in the spruce dominated site on the 27th
of June 2002 (throughfall sampled 20.-27.06.2002).........................................................59
Figure 3-12: Monthly average values of the matric potential in a transect between the beech
central tree and the spruce trees number four (F4) and eight (F8) in the spruce dominated
site......................................................................................................................................60
Figure 3-13: Average weekly values of the matric potential at 10 and 40 cm depths in the
beech dominated site and the spruce dominated site.........................................................62
Figure 3-14: Average weekly values of the matric potential at 10 cm depth in the different
canopy classes....................................................................................................................64
Figure 3-15: Average weekly values of the matric potential at 40 cm depth in the different
canopy classes....................................................................................................................65
Figure 3-16: Fine-root biomass along a transect between the beech central tree and the spruce
trees number four (F4) and eight (F8) in the spruce dominated site.................................66
Figure 3-17: Monthly Evapotranspiration (June - September, 1968-1972) in function of the
matric potential (Bodenwasserspannung) at different soil depths for the beech (Buche)
and the spruce (Fichte) trees, from Benecke (1984)..........................................................7
Figure 3-18: Simulated and measured matric potentials at 10 cm depth in the beech dominated
site, the combined area and the spruce dominated site during the vegetation season
(10/05/01 to 25/10/01).......................................................................................................76
Figure 3-19: Simulated and measured matric potentials at 20 cm depth in the beech dominated
site, the combined area and the spruce dominated site during the vegetation season
(10/05/01 to 25/10/01).......................................................................................................77
Figure 3-20: Simulated and measured matric potentials at 40 cm depth in the beech dominated
site, the combined area and the spruce dominated site during the vegetation season
(10/05/01 to 25/10/01).......................................................................................................78
Figure 3-21: Simulated and measured matric potentials at 80 cm depth in the beech dominated
site, the combined area and the spruce dominated site during the vegetation season
(10/05/01 to 25/10/01).......................................................................................................79
Figure 3-22: Simulated and measured matric potentials at 10 cm depth in the different local
canopy cover classes during the vegetation season (10/05/01 to 25/10/01)......................81
Figure 3-23: Simulated and measured matric potentials at 20 cm depth in the different local
canopy cover classes during the vegetation season (10/05/01 to 25/10/01)......................82
Figure 3-24: Simulated and measured matric potentials at 40 cm depth in the different local
canopy cover classes during the vegetation season (10/05/01 to 25/10/01)......................83
Figure 3-25: Simulated and measured matric potentials at 80 cm depth in the different local
canopy cover classes during the vegetation season (10/05/01 to 25/10/01)......................84
Figure 3-26: Simulated cumulative actual root water uptake in the beech dominated site, the
combined area and the spruce dominated site during the vegetation season (10/05/01 to
25/10/01)............................................................................................................................86
Figure 3-27: Simulated cumulative root water uptake in the beech class, the spruce class, the
beech-spruce class and the gap class.................................................................................87
List of tables
Table 2-1: Characteristics of the experimental site..................................................................17
Table 2-2: Definitions of the corresponding water content at important points derived from the
SWRC................................................................................................................................23
Table 2-3: Definitions and equations relating precipitation amounts and nutrient
concentrations to nutrient depositions...............................................................................24
Table 2-4: Parameters in the Hydras ID model.......................................................................27
Table 3-1: pore space (e), Air capacity (AC), Plant Available water (PAW), Field capacity
(FC) and permanent wilting point (PWP) at four different depths....................................33
Table 3-2: Classification of the canopy areas in four canopy classes......................................39
Table 3-3: Partition of the gross precipitation (cumulative values) in function of the canopy
coverage.............................................................................................................................42
Table 3-4: Surface area of each canopy class..........................................................................43
Table 3-5: Literature values of interception loss (I).................................................................47
Table 3-6: Average weekly electrical conductivity, pH, N concentrations and cumulative
precipitation during five weeks of the winter and the vegetation season, respectively, in
year 2002 (n = 5)...............................................................................................................53
Table 3-7: Deposition of total N (NH4-N + NO3-N + NO1X) in the open land and in the canopy
classes................................................................................................................................54
Table 3-8: Correspondence between the measurement date and the time of the year in days. 61
Table 3-9: Average value and standard deviation of fine root biomass (g/m2) for each species,
stand type and soil depth (Villanueva, 2003)....................................................................68
Table 3-10: Relative root distribution in the different canopy classes.....................................69
Table 3-11: Relative root distribution in the different sites.....................................................69
Table 3-12: Feddes Parameters as used in the beech class and in the beech dominated site... 71
Table 3-13: Feddes Parameters as used in the beech - spruce class and in the combined site. 71
Table 3-14: Feddes Parameters as used in the spruce class and in the spruce dominated site. 71
Table 3-15: Feddes Parameters as used in the gap class..........................................................71
Table 3-16: Fit. out file for the beech dominated site..............................................................74
Table 3-17: Mass balance in the beech dominated site, the spruce dominated site and..........88
Table 3-18: Mass balances in the canopy classes....................................................................88
Table 3-19: Terms describing pressure heads and fluxes on the boundaries
and in the root zone (Simunek et al., 1998).......................................................................89
Table 3-20: Example for a mass-balance.out file for the beech-spruce class..........................90
Table 3-21: Water balance components in the beech and spruce dominated site (May -
October 2001)....................................................................................................................95
Table 3-22: Components of the water balance as percentage of gross precipitation in the beech
and the spruce dominated site (May -October 2001)........................................................95
Table 3-23: Water balance components in the canopy classes (May - October 2001)...........99
Table 3-24: Components of the water balance as percentage of gross precipitation in the
canopy classes (May - October 2001)...............................................................................99
Table 7-1: Fitout files for the beech-dominated site.............................................................127
Table 7-2: Fitout files for the spruce dominated site............................................................129
Table 7-3: Fitout files for the combined site.........................................................................131
Table 7-4: Fitout files for the beech class.............................................................................133
Table 7-5: Fitout files for the beech-spruce class.................................................................135
Table 7-6: Fitout files for the spruce class............................................................................137
Table 7-7: Fitout files for the gap class.................................................................................139
Table 7-8: Balance.out file for the beech-dominated site......................................................141
Table 7-9: Balance.out file for the spruce-dominated site.....................................................142
Table 7-10: Balance out file for the combined site................................................................144
Table 7-11: Balance.out file for the beech class....................................................................145
Table 7-12: Balance.out file for the spruce class...................................................................147
Table 7-13: Balance.out file for the gap class........................................................................148
Table 7-14: Alevel.out file for the beech dominated site.....................................................150
Table 7-15: Alevel.out file for the spruce dominated site....................................................153
Table 7-16: Alevel.out file for the combined site................................................................156
Table 7-17: Alevel.out file for the beech class.....................................................................160
Table 7-18: AJevel.out file for the beech -spnrce class.......................................................163
Table 7-19: Alevel.out file for the spruce class...................................................................166
Table 7-20: AJevel.out file for the gap class........................................................................169
|
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author | Cheussom, Levis |
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discipline | Geowissenschaften Biologie Forstwissenschaft |
format | Thesis Book |
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record_format | marc |
series2 | Berichte des Forschungszentrums Waldökosysteme : Reihe A |
spelling | Cheussom, Levis Verfasser (DE-588)129117188 aut Hydrological pattern in a mixed forest in Northern Germany von Levis Cheussom Göttingen Selbstverl. des Forschungszentrums Waldökosysteme 2004 172 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Berichte des Forschungszentrums Waldökosysteme : Reihe A 187 Zugl.: Göttingen, Univ. Diss., 2004 Fichte (DE-588)4017047-0 gnd rswk-swf Mischwald (DE-588)4252072-1 gnd rswk-swf Wasserhaushalt (DE-588)4064734-1 gnd rswk-swf Buche (DE-588)4146805-3 gnd rswk-swf Norddeutschland (DE-588)4075454-6 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Norddeutschland (DE-588)4075454-6 g Buche (DE-588)4146805-3 s Mischwald (DE-588)4252072-1 s Fichte (DE-588)4017047-0 s Wasserhaushalt (DE-588)4064734-1 s DE-604 Forschungszentrum Waldökosysteme <Göttingen> Berichte des Forschungszentrums Waldökosysteme A 187 (DE-604)BV006193351 187 HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012809674&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Cheussom, Levis Hydrological pattern in a mixed forest in Northern Germany Fichte (DE-588)4017047-0 gnd Mischwald (DE-588)4252072-1 gnd Wasserhaushalt (DE-588)4064734-1 gnd Buche (DE-588)4146805-3 gnd |
subject_GND | (DE-588)4017047-0 (DE-588)4252072-1 (DE-588)4064734-1 (DE-588)4146805-3 (DE-588)4075454-6 (DE-588)4113937-9 |
title | Hydrological pattern in a mixed forest in Northern Germany |
title_auth | Hydrological pattern in a mixed forest in Northern Germany |
title_exact_search | Hydrological pattern in a mixed forest in Northern Germany |
title_full | Hydrological pattern in a mixed forest in Northern Germany von Levis Cheussom |
title_fullStr | Hydrological pattern in a mixed forest in Northern Germany von Levis Cheussom |
title_full_unstemmed | Hydrological pattern in a mixed forest in Northern Germany von Levis Cheussom |
title_short | Hydrological pattern in a mixed forest in Northern Germany |
title_sort | hydrological pattern in a mixed forest in northern germany |
topic | Fichte (DE-588)4017047-0 gnd Mischwald (DE-588)4252072-1 gnd Wasserhaushalt (DE-588)4064734-1 gnd Buche (DE-588)4146805-3 gnd |
topic_facet | Fichte Mischwald Wasserhaushalt Buche Norddeutschland Hochschulschrift |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012809674&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV006193351 |
work_keys_str_mv | AT cheussomlevis hydrologicalpatterninamixedforestinnortherngermany |