Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system
The harvesting of energy wood from young stands is increasing as the demand for renewable wood fuel is growing. Energy wood consists of stems, tree tops, branches and needles, depending on the size of the trees and the logging method used. The current forest inventory and planning sys...
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Finnish Society of Forest Science
2007-01-01
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Series: | Silva Fennica |
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doaj-64c2933e5f2841adb003692f66d9e6232020-11-25T02:33:28ZengFinnish Society of Forest ScienceSilva Fennica2242-40752007-01-0141110.14214/sf.310Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory systemTahvanainen, TimoKaartinen, KallePukkala, TimoMaltamo, Matti The harvesting of energy wood from young stands is increasing as the demand for renewable wood fuel is growing. Energy wood consists of stems, tree tops, branches and needles, depending on the size of the trees and the logging method used. The current forest inventory and planning systems used in private forests in Finland do not produce estimates of energy wood components. In stands typical for energy wood harvesting, a large share of energy wood consists of trees smaller than the minimum size for pulpwood. In this study, energy wood was included into the calculation system of compartment inventory, and a procedure for simulating the thinning treatments in young stands was developed. The results for six inventory alternatives and prediction of energy wood were compared with the use of inventory material from 37 young stands that have plenty of energy wood. The measurement of additional stand characteristics and the use of a calibration estimation method was tested, as well as the use of plot-level inventory data instead of stand level data. The results showed that the measurement of the number of trees per hectare, in addition to stand basal area and mean diameter, improved the energy wood estimates. The additional minimum and maximum diameters improved the precision of the estimates, but did not affect bias. The removal estimates were more precise when plot-level data was used, rather than stand-level data. The removal estimates were higher with plot-level data. The results suggest that, in heterogeneous young stands, plot by plot prediction would give more accurate removal estimates than the calculation of a corresponding prediction at the stand-level.https://www.silvafennica.fi/article/310 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tahvanainen, Timo Kaartinen, Kalle Pukkala, Timo Maltamo, Matti |
spellingShingle |
Tahvanainen, Timo Kaartinen, Kalle Pukkala, Timo Maltamo, Matti Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system Silva Fennica |
author_facet |
Tahvanainen, Timo Kaartinen, Kalle Pukkala, Timo Maltamo, Matti |
author_sort |
Tahvanainen, Timo |
title |
Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system |
title_short |
Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system |
title_full |
Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system |
title_fullStr |
Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system |
title_full_unstemmed |
Comparison of approaches to integrate energy wood estimation into the Finnish compartment inventory system |
title_sort |
comparison of approaches to integrate energy wood estimation into the finnish compartment inventory system |
publisher |
Finnish Society of Forest Science |
series |
Silva Fennica |
issn |
2242-4075 |
publishDate |
2007-01-01 |
description |
The harvesting of energy wood from young stands is increasing as the demand for renewable wood fuel is growing. Energy wood consists of stems, tree tops, branches and needles, depending on the size of the trees and the logging method used. The current forest inventory and planning systems used in private forests in Finland do not produce estimates of energy wood components. In stands typical for energy wood harvesting, a large share of energy wood consists of trees smaller than the minimum size for pulpwood. In this study, energy wood was included into the calculation system of compartment inventory, and a procedure for simulating the thinning treatments in young stands was developed. The results for six inventory alternatives and prediction of energy wood were compared with the use of inventory material from 37 young stands that have plenty of energy wood. The measurement of additional stand characteristics and the use of a calibration estimation method was tested, as well as the use of plot-level inventory data instead of stand level data. The results showed that the measurement of the number of trees per hectare, in addition to stand basal area and mean diameter, improved the energy wood estimates. The additional minimum and maximum diameters improved the precision of the estimates, but did not affect bias. The removal estimates were more precise when plot-level data was used, rather than stand-level data. The removal estimates were higher with plot-level data. The results suggest that, in heterogeneous young stands, plot by plot prediction would give more accurate removal estimates than the calculation of a corresponding prediction at the stand-level. |
url |
https://www.silvafennica.fi/article/310 |
work_keys_str_mv |
AT tahvanainentimo comparisonofapproachestointegrateenergywoodestimationintothefinnishcompartmentinventorysystem AT kaartinenkalle comparisonofapproachestointegrateenergywoodestimationintothefinnishcompartmentinventorysystem AT pukkalatimo comparisonofapproachestointegrateenergywoodestimationintothefinnishcompartmentinventorysystem AT maltamomatti comparisonofapproachestointegrateenergywoodestimationintothefinnishcompartmentinventorysystem |
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