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Mixed-conifer forests of central Oregon: effects of logging and fire exclusion vary with environment
by
Spies, Thomas A.
, Merschel, Andrew G.
, Heyerdahl, Emily K.
in
Abies concolor
/ Abies grandis
/ central Oregon, USA
/ climate
/ Coniferous forests
/ Douglas-fir
/ Douglas-fir (Pseudotsuga menziesii)
/ drought
/ eastern Cascade Range, Oregon, USA
/ ecoregions
/ fire exclusion
/ Forest ecology
/ Forest fires
/ Forest management
/ Forest service
/ gradient analysis
/ grand fir
/ grand fir (Abies grandis)
/ harvesting
/ historical density of ponderosa pine
/ insects
/ land use change
/ landscapes
/ logging
/ Mixed forests
/ mixed-conifer forest
/ mixed-severity fire regime
/ mountains
/ Ochoco Mountains, Oregon, USA
/ Old growth forests
/ Ordination
/ Oregon
/ Pinus ponderosa
/ ponderosa pine
/ ponderosa pine (Pinus ponderosa)
/ Pseudotsuga menziesii
/ Shade tolerance
/ Trees
/ white fir
/ white fir (Abies concolor)
2014
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Mixed-conifer forests of central Oregon: effects of logging and fire exclusion vary with environment
by
Spies, Thomas A.
, Merschel, Andrew G.
, Heyerdahl, Emily K.
in
Abies concolor
/ Abies grandis
/ central Oregon, USA
/ climate
/ Coniferous forests
/ Douglas-fir
/ Douglas-fir (Pseudotsuga menziesii)
/ drought
/ eastern Cascade Range, Oregon, USA
/ ecoregions
/ fire exclusion
/ Forest ecology
/ Forest fires
/ Forest management
/ Forest service
/ gradient analysis
/ grand fir
/ grand fir (Abies grandis)
/ harvesting
/ historical density of ponderosa pine
/ insects
/ land use change
/ landscapes
/ logging
/ Mixed forests
/ mixed-conifer forest
/ mixed-severity fire regime
/ mountains
/ Ochoco Mountains, Oregon, USA
/ Old growth forests
/ Ordination
/ Oregon
/ Pinus ponderosa
/ ponderosa pine
/ ponderosa pine (Pinus ponderosa)
/ Pseudotsuga menziesii
/ Shade tolerance
/ Trees
/ white fir
/ white fir (Abies concolor)
2014
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Mixed-conifer forests of central Oregon: effects of logging and fire exclusion vary with environment
by
Spies, Thomas A.
, Merschel, Andrew G.
, Heyerdahl, Emily K.
in
Abies concolor
/ Abies grandis
/ central Oregon, USA
/ climate
/ Coniferous forests
/ Douglas-fir
/ Douglas-fir (Pseudotsuga menziesii)
/ drought
/ eastern Cascade Range, Oregon, USA
/ ecoregions
/ fire exclusion
/ Forest ecology
/ Forest fires
/ Forest management
/ Forest service
/ gradient analysis
/ grand fir
/ grand fir (Abies grandis)
/ harvesting
/ historical density of ponderosa pine
/ insects
/ land use change
/ landscapes
/ logging
/ Mixed forests
/ mixed-conifer forest
/ mixed-severity fire regime
/ mountains
/ Ochoco Mountains, Oregon, USA
/ Old growth forests
/ Ordination
/ Oregon
/ Pinus ponderosa
/ ponderosa pine
/ ponderosa pine (Pinus ponderosa)
/ Pseudotsuga menziesii
/ Shade tolerance
/ Trees
/ white fir
/ white fir (Abies concolor)
2014
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Mixed-conifer forests of central Oregon: effects of logging and fire exclusion vary with environment
Journal Article
Mixed-conifer forests of central Oregon: effects of logging and fire exclusion vary with environment
2014
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Overview
Twentieth-century land management has altered the structure and composition of mixed-conifer forests and decreased their resilience to fire, drought, and insects in many parts of the Interior West. These forests occur across a wide range of environmental settings and historical disturbance regimes, so their response to land management is likely to vary across landscapes and among ecoregions. However, this variation has not been well characterized and hampers the development of appropriate management and restoration plans. We identified mixed-conifer types in central Oregon based on historical structure and composition, and successional trajectories following recent changes in land use, and evaluated how these types were distributed across environmental gradients. We used field data from 171 sites sampled across a range of environmental settings in two subregions: the eastern Cascades and the Ochoco Mountains.
We identified four forest types in the eastern Cascades and four analogous types with lower densities in the Ochoco Mountains. All types historically contained ponderosa pine, but differed in the historical and modern proportions of shade-tolerant vs. shade-intolerant tree species. The Persistent Ponderosa Pine and Recent Douglas-fir types occupied relatively hot-dry environments compared to Recent Grand Fir and Persistent Shade Tolerant sites, which occupied warm-moist and cold-wet environments, respectively. Twentieth-century selective harvesting halved the density of large trees, with some variation among forest types. In contrast, the density of small trees doubled or tripled early in the 20th century, probably due to land-use change and a relatively cool, wet climate. Contrary to the common perception that dry ponderosa pine forests are the most highly departed from historical conditions, we found a greater departure in the modern composition of small trees in warm-moist environments than in either hot-dry or cold-wet environments. Furthermore, shade-tolerant trees began infilling earlier in cold-wet than in hot-dry environments and also in topographically shaded sites in the Ochoco Mountains. Our new classification could be used to prioritize management that seeks to restore structure and composition or create resilience in mixed-conifer forests of the region.
Publisher
Ecological Society of America,ECOLOGICAL SOCIETY OF AMERICA
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