Current issue: 59(3)

Under compilation: 60(1)

Scopus CiteScore 2023: 3.5
Scopus ranking of open access forestry journals: 17th
PlanS compliant
Select issue
Silva Fennica 1926-1997
1990-1997
1980-1989
1970-1979
1960-1969
Acta Forestalia Fennica
1953-1968
1933-1952
1913-1932

Articles containing the keyword 'finite difference method'

Category : Article

article id 5625, category Article
Thomas Früh. (1997). Simulation of water flow in the branched tree architecture. Silva Fennica vol. 31 no. 3 article id 5625. https://doi.org/10.14214/sf.a8526
Keywords: drought stress; modelling; branches; tree architecture; water flow; finite difference method; hydraulic network; numerical model; hydraulic system
Abstract | View details | Full text in PDF | Author Info

The model HYDRA, which simulates water flow in the branched tree architecture, is characterized. Empirical studies of the last decades give strong evidence for a close structure-function linkage in the case of tree water flow. Like stomatal regulation, spatial patterns of leaf specific conductivity can be regarded as a strategy counteracting conductivity losses, which may arise under drought. Branching-oriented water flow simulation may help to understand how damaging and compensating mechanisms interact within the hydraulic network of trees. Furthermore, a coupling of hydraulic to morphological modelling is a prerequisite if water flow shall be linked to other processes. Basic assumptions of the tree water flow model HYDRA are mass conservation, Darcy's law and the spatial homogeneity of capacitance and axial conductivity. Soil water potential is given as a one-sided border condition. Water flow is driven by transpiration. For unbranched regions these principles are condensed to a nonlinear diffusion equation, which serves as a continuous reference for the discrete method tailored to the specific features of the hydraulic network. The mathematical derivation and model tests indicate that the realization of the basic assumptions is reproducible and sufficiently exact. Moreover, structure and function are coupled in a flexible and computationally efficient manner. Thus, HYDRA may serve as a tool for the comparative study of different tree architectures in terms of hydraulic function.

  • Früh, E-mail: tf@mm.unknown (email)

Register
Click this link to register to Silva Fennica.
Log in
If you are a registered user, log in to save your selected articles for later access.
Contents alert
Sign up to receive alerts of new content
Your selected articles
Send to email
Rauramaa R., Husman K. et al. (1980) Preliminary observations about diet, serum lipid.. Silva Fennica vol. 14 no. 1 article id 5057 (remove) | Edit comment
Terhonen E., Kujala S. et al. (2025) Genetic variation of resistance in Scots pine as.. Silva Fennica vol. 59 no. 2 article id 25028 (remove) | Edit comment
Jåstad E. O., Nagel N. O. et al. (2023) The location and capacity-dependent price impact.. Silva Fennica vol. 57 no. 1 article id 23001 (remove) | Edit comment
Kantola M., (1979) The development of simple tools for forestry wor.. Silva Fennica vol. 13 no. 3 article id 5041 (remove) | Edit comment
Farquhar G. D., Buckley T. N. et al. (2002) Optimal stomatal control in relation to leaf are.. Silva Fennica vol. 36 no. 3 article id 530 (remove) | Edit comment
Laakkonen A., Hujala T. et al. (2022) Defining the systemic development of the Finnish.. Silva Fennica vol. 56 no. 2 article id 10599 (remove) | Edit comment
Riihinen P., (1981) Forestry and the timber economy in economic deve.. Silva Fennica vol. 15 no. 2 article id 5117 (remove) | Edit comment
Nuutinen Y., (2021) Corrigendum: Comparing the characteristics of bo.. Silva Fennica vol. 55 no. 4 article id 10619 (remove) | Edit comment
Dzerdzeevskii B. L., (1963) Study of the heat balance of the forest. Silva Fennica vol. 0 no. 113 article id 4714 (remove) | Edit comment
Metsähallitus ., (1957) Professional development courses for the state f.. Silva Fennica vol. no. 92 article id 4653 (remove) | Edit comment
Korhonen K. T., Räty M. et al. (2024) Forests of Finland 2019–2023 and their developme.. Silva Fennica vol. 58 no. 5 article id 24045 (remove) | Edit comment
Renvall A., (1919) Statistical studies on land purchase of forest c.. Acta Forestalia Fennica vol. 13 no. 1 article id 7032 (remove) | Edit comment
Johansson J., (1995) Backhoe loaders as base machines in logging oper.. Silva Fennica vol. 29 no. 4 article id 5564 (remove) | Edit comment
Cajander E. K., (1932) Artificial forest regeneration in Finland in 192.. Silva Fennica vol. no. 22 article id 4463 (remove) | Edit comment
Hari J., Hari P. et al. (1978) An electronic auxanometer for field use. Silva Fennica vol. 12 no. 4 article id 5012 (remove) | Edit comment