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Landscape dynamics in crown fire ecosystems

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Abstract

Crown fires create broad-scale patterns in vegetation by producing a patch mosaic of stand age classes, but the spread and behavior of crown fires also may be constrained by spatial patterns in terrain and fuels across the landscape. In this review, we address the implications of landscape heterogeneity for crown fire behavior and the ecological effects of crown fires over large areas. We suggest that fine-scale mechanisms of fire spread can be extrapolated to make broad-scale predictions of landscape pattern by coupling the knowledge obtained from mechanistic and empirical fire behavior models with spatially-explicit probabilistic models of fire spread. Climatic conditions exert a dominant control over crown fire behavior and spread, but topographic and physiographic features in the landscape and the spatial arrangement and types of fuels have a strong influence on fire spread, especially when burning conditions (e.g., fuel moisture and wind) are not extreme. General trends in crown fire regimes and stand age class distributions can be observed across continental, latitudinal, and elevational gradients. Crown fires are more frequent in regions having more frequent and/or severe droughts, and younger stands tend to dominate these landscapes. Landscapes dominated by crown fires appear to be nonequilibrium systems. This nonequilibrium condition presents a significant challenge to land managers, particularly when the implications of potential changes in the global climate are considered. Potential changes in the global climate may alter not only the frequency of crown fires but also their severity. Crown fires rarely consume the entire forest, and the spatial heterogeneity of burn severity patterns creates a wide range of local effects and is likely to influence plant reestablishment as well as many other ecological processes. Increased knowledge of ecological processes at regional scales and the effects of landscape pattern on fire dynamics should provide insight into our understanding of the behavior and consequences of crown fires.

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References

  • Ahlgren, I.F. and Ahlgren, C.E. 1960. Ecological effects of forest fires. The Botanical Review 26: 483–533.

    Google Scholar 

  • Albinet, G., Searby, G. and Stauffer, D. 1986. Fire propagation in a 2-D random medium. Journal de Physique 47: 1–7.

    Google Scholar 

  • Albini, F.A. 1976. Estimating wildfire behavior and effects. USDA Forest Service General Technical Report INT-30.

  • Albini, F.A. and Stocks, B.J. 1986. Predicted and observed rates of spread of crown fires in immature jack pine. Com- bust. Scie. and Tech. 48: 65–76.

    Google Scholar 

  • Aplet, G.H., Laven, R.D. and Smith, F.W. 1988. Patterns of community dynamics in Colorado Engelmann sprucesubalpine fir forests. Ecology 69: 312–319.

    Google Scholar 

  • Arno, S.F. 1980. Forest fire history in the northern Rockies. Journal of Forestry 78: 460–465.

    Google Scholar 

  • Baker, W.L. 1989a. Landscape ecology and nature reserve design in the Boundary Waters Canoe Area, Minnesota. Ecology 70: 23–35.

    Google Scholar 

  • Baker, W.L. 1989b. Effect of scale and spatial heterogeneity on fire-interval distributions. Canadian Journal of Forest Research 19: 700–706.

    Google Scholar 

  • Barrett, S.W. 1988. Fire suppression's effects on forest succession within a central Idaho wilderness. Western Journal of Applied. Forestry 3: 76–80.

    Google Scholar 

  • Bormann, F.H. and Likens, G.E. 1979. Pattern and process in a forested ecosystem. Springer-Verlag, New York.

    Google Scholar 

  • Brown, J.K. 1985. The “unnatural fuel buildup” issue. In Proceedings - Symposium and Workshop on Wilderness Fire. pp. 127–128. USDA Forest Service General Technical Report INT-182.

  • Burgan, R.E. and Rothermel, R.C. 1984. BEHAVE: Fire behavior prediction and fuel modeling system FUEL subsystem. USDA Forest Service Gen. Tech. Rep. INT-167.

  • Burrows, D. A. 1988. The REFIRES (REgional FIre Simulation) model: a C program for regional fire regime simulation. M.A. Thesis, University of California-Santa Barbara.

    Google Scholar 

  • Christensen, N.L., Agee, J.K., Brussard, P.F., Hughes, J., Knight, D.H., Minshall, G.W., Peek, J.M., Pyne, S.J., Swanson, F.J., Thomas, J.W., Wells, S., Williams, S.E. and Wright, H.A. 1989. Interpreting the Yellowstone fires of 1988. BioScience 39: 678–685.

    Google Scholar 

  • Clark, J.S. 1988. Effect of climate change on fire regimes in northwestern Minnesota. Nature 334: 233–235.

    Google Scholar 

  • Clark, J.S. 1989. Ecological disturbance as a renewal process: theory and application to fire history. Oikos 56: 17–30.

    Google Scholar 

  • Clark, J.S. 1990a. Twentieth century climate change, fire suppression, and forest production and decomposition in north-western Minnesota. Canadian Journal of Forest Research 20: 219–232.

    Google Scholar 

  • Clark, J.S. 1990b. Fire and climate change during the last 750 yr in northwestern Minnesota. Ecological Monographs 60: 135–159.

    Google Scholar 

  • Clements, F.E. 1910. The life history of lodgepole pine forests. USDA Forest Service Bulletin 79.

  • Cogbill, C.V. 1985. Dynamics of the boreal forests of the Laurentian Highlands, Canada. Canadian Journal of Forest Research 15: 252–262.

    Google Scholar 

  • Cooper, W.S. 1913. The climax forest of Isle Royale, Lake Superior, and its development. I. Botanical Gazette 55: 1–44.

    Google Scholar 

  • Cwynar, L.C. 1977. The recent fire history of Barron Township, Algonquin Park. Canadian Journal of Botany 55: 1524–1538.

    Google Scholar 

  • Cwynar, L.C. 1987. Fire and the forest history of the North Cascade Range. Ecology 68: 791–802.

    Google Scholar 

  • Davis, M.B. and Botkin, D.B. 1985. Sensitivity of cooltemperate forests and their fossil pollen record to rapid temperature change. Quaternary Research 23: 327–340.

    Google Scholar 

  • Day, R. J. 1972. Stand structure, succession, and use of southern Alberta's Rocky Mountain forest. Ecology 53: 472–478.

    Google Scholar 

  • DeAngelis, D.L. and Waterhouse, J.C. 1987. Equilibrium and nonequilibrium concepts in ecological models. Ecological Monographs 57: 1–21.

    Google Scholar 

  • Despain, D.G. 1991. Yellowstone Vegetation: Consequences of Environment and History. Roberts Rinehart Publishing Co.

  • Despain, D.G. and Sellers, R.E. 1977. Natural fire in Yellowstone National Park. Western Wildlands 4: 20–24.

    Google Scholar 

  • Diaz, H.F. 1979. Ninety-one years of weather records at Yellowstone National Park, Wyoming, 1887–1977. National Oceanic and Atmospheric Administration, Environmental Data and Information Service, National Climatic Center, Asheville, North Carolina.

    Google Scholar 

  • Dickinson, R.E. 1986. The climate system and modelling of future climate. In The greenhouse effect, climatic change and ecosystems. SCOPE Vol. 29. pp. 207–270B. Edited by B. Bolin, B.R. Doos, J. Jager and R.A. Warrick. John Wiley & Sons, New York.

    Google Scholar 

  • Dunwiddie, P.W. 1986. A 6000-year record of forest history on Mount Rainier, Washington. Ecology 67: 58–68.

    Google Scholar 

  • Finegan, B. 1984. Forest succession. Nature 312: 109–114.

    Google Scholar 

  • Flannigan, M.D. and Harrington, J.B. 1988. A study of the relation of meteorological variables to monthly provincial area burned by wildfire in Canada. Journal of applied Meteorology 27: 441–452.

    Google Scholar 

  • Forman, R.T.T. and Godron, M. 1981. Patches and structural components for a landscape ecology. BioScience 31: 733–740.

    Google Scholar 

  • Foster, D.R. 1983. Fire history and landscape patterns in southeastern Labrador. Canadian Journal of Botany 61: 2459–2471.

    Google Scholar 

  • Franklin, J.F. 1988. Pacific Northwest forests. In North American Terrestrial Vegetation, pp. 104–130. Edited by M.G. Barbour and W.D. Billings. Cambridge University Press, New York.

    Google Scholar 

  • Franklin, J.F. et al. 1992. Effects of global climatic change on forests in northwestern North America. In Global Warming and Biological Diversity, pp. 244–257. Edited by R.L. Peters and T.E. Lovejoy. Yale University Press, New Haven.

    Google Scholar 

  • Fryer, G.I. and Johnson, E.A. 1988. Reconstructing fire behavior and effects in a subalpine forest. Journal of Applied Ecology 25: 1063–1072.

    Google Scholar 

  • Gabriel, H.W. III. 1976. Wilderness ecology: the Danaher Creek drainage, Bob Marschall Wilderness, Montana. Ph. D. dissertation, University of Montana, Missoula.

    Google Scholar 

  • Graham, R.L., Turner, M.G. and Dale, V.H. 1990. How increasing CO2 and climate change affect forests. BioScience 40: 575–587.

    Google Scholar 

  • Green, D.G. 1983. Shapes of simulated fires in discrete fuels. Ecological Modelling 20: 21–32.

    Google Scholar 

  • Green, D.G. 1989. Simulated effects of fire, dispersal and spatial pattern on competition within forest mosaics. Vegetatio 82: 139–153.

    Google Scholar 

  • Habeck, J.R. and Mutch, R.W. 1973. Fire-dependent forests in the northern Rockies. Quaternary Research 3: 408–424.

    Google Scholar 

  • Haines, D.A. and Sando, R.W. 1969. Climatic conditions preceding historically great fires in the north central region. USDA Forest Service Research Paper NC-34.

  • Hansen, J., Fung, I., Lacis, A., Lebedeff, S., Rind, D., Ruedy, R., Russell, G. and Stone, P. 1988. Global climate changes as forecast by the GISS 3-D model. Journal of Geophysical Research 93: 9341–9364.

    Google Scholar 

  • Hawkes, B.C. 1979. Fire history and fuel appraisal study of Kananaskis Provincial Park, Alberta. Contract Report for Alberta Provincial Parks. Department of Forest Science, University of Alberta, Edmonton.

    Google Scholar 

  • Heinselman, M.L. 1973. Fire in the virgin forests of the Boundary Waters Canoe Area, Minnesota. Quaternary Research 3: 329–382.

    Google Scholar 

  • Heinselman, M.L. 1981. Fire intensity and frequency as factors in the distribution and structure of northern ecosystems. In Proceedings of the Conference Fire Regimes and Ecosystem Properties, pp. 7–57. Edited by H.A. Mooney, T.M. Bonnicksen, N.L. Christensen, J.E. Lotan and W.A. Reinders. USDA Forest Service General Technical Report WO-26.

  • Heinselman, M.L. 1985. Fire regimes and management options in ecosystems with large high-intensity fires. In Proceedings - Symposium and Workshop on Wilderness Fire. pp. 101–109. USDA Forest Service General Technical Report INT-182.

  • Hemstrom, M.A. and Franklin, J.F. 1982. Fire and other disturbances of the forests in Mount Rainier National Park. Quaternary Research 18: 32–51.

    Google Scholar 

  • Hirabayashi, F. and Kasahara, Y. 1987. A fire-spread simulation model developed as an extension of a dynamic percolation process model. Simulation 49: 254–261.

    Google Scholar 

  • Huston, M.A. 1979. A general hypothesis of species diversity. American Naturalist 113: 81–101.

    Google Scholar 

  • Izbecki, S. and Keane, R. 1989. An attempt at developing a crown fire ignition model. Final Report, INT-88352-COA. U.S. Forest Service, Intermountain Fire Sciences Laboratory, Missoula, Montana.

    Google Scholar 

  • Johnson, E.A. 1979. Fire recurrence in the subarctic and its implications for vegetation composition. Canadian Journal of Botany 57: 1374–1379.

    Google Scholar 

  • Johnson, E.A. and Fryer, G.I. 1987. Historical vegetation change in the Kananaskis Valley, Canadian Rockies. Canadian Journal of Botany 65: 853–858.

    Google Scholar 

  • Johnson, E.A. and Van Wagner, C.E. 1985. The theory and use o two fire history models. Canadian Journal of Forest Research 15: 214–220.

    Google Scholar 

  • Johnson, W.C. 1977. A mathematical model for succession and land use for the North Carolina Piedmont. Bulletin of the Torrey Botanical Club 104: 334–346.

    Google Scholar 

  • Johnson, W.C. and Sharpe, D.M. 1982. Ecological consequences of CO2-induced climatic change on forest ecosystems. In Environmental and societal consequences of a possible CO2-induced climate change, Vol. II, part 13. DOE/EV/10019–12. National Technical Information Service, Springfield, Virginia.

    Google Scholar 

  • Kershaw, K.A. 1977. Studies on lichen-dominated systems. An examination of some aspects of the northern boreal lichen woodlands in Canada. Canadian Journal of Botany 55: 393–410.

    Google Scholar 

  • Kessell, S.R. 1976a. Gradient modeling: a new approach to fire modeling and wilderness resource management. Journal of Environmental Management 1: 39–48.

    Google Scholar 

  • Kessell, S.R. 1976b. Wildland inventories and fire modeling by gradient analysis in Glacier National Park. In Proceedings, Tall Timber Fire Ecology Converence, Missoula, Montana, pp. 115–162. Tall Timbers Research Station, Tallahassee, Florida.

    Google Scholar 

  • Kessell, S.R. 1979. Gradient Modeling, Resource and Fire Management. Springer-Verlag, New York.

    Google Scholar 

  • Knight, D.H. 1987. Parasites, lightning, and the vegetation mosaic in wilderness landscapes. In Landscape heterogeneity and disturbance, pp. 59–83. Edited by M.G. Turner. Springer-Verlag, New York.

    Google Scholar 

  • Knight, D.H., Fahey, T.J. and Running, S.W. 1985. Water and nutrient outflow from contrasting lodgepole pine forests in Wyoming. Ecological Monographs 55: 29–48.

    Google Scholar 

  • Knight, D.H. and Wallace, L.L. 1989. The Yellowstone fires: issues in landscape ecology. BioScience 39: 700–706.

    Google Scholar 

  • Leopold, A.S. 1933. Game Managemen. Scribner's, New York.

    Google Scholar 

  • Loope, L.L. and Gruell, G.E. 1973. The ecological role of fire in the Jackson Hole area, northwestern Wyoming. Quaternary Research 3: 425–443.

    Google Scholar 

  • Lorimer, C.G. 1977. The presettlement forest and natural disturbance cycle of northeastern Maine. Ecology 58: 139–148.

    Google Scholar 

  • Loucks, O.L., Ek, A.R., Johnson, W.C. and Monserud, R.A. 1980. Growth, aging and succession. In Dynamic properties of forest ecosystems, pp. 37–85. Edited by D.E. Reichle. Cambridge University Press, London.

    Google Scholar 

  • Loucks, O.L., Plumb-Mentjes, M. J. and Rogers, D. 1985. Gap processes and large-scale disturbances in sand prairies. In The Ecology of Natural Disturbance and Patch Dynamics, pp. 72–83. Edited by S.T.A. Pickett and P.S. White. Academic Press, New York.

    Google Scholar 

  • Lyon, L.J. and Stickney, P.F. 1976. Early vegetal succession following large northern Rocky Mountain wildfires. In Proceedings of the Montana Tall Timbers Fire Ecology Conference and Fire and Land Management Symposium, Number 14. pp. 55–375. Tall Timbers Research Station, Tallahassee, Florida.

    Google Scholar 

  • Malanson, G.P. 1984. Intensity as a third factor of disturbance regime and its effect on species diversity. Oikos 43: 411–413.

    Google Scholar 

  • Meentemeyer, V. 1978. Macroclimate and lignin control of litter decomposition rates. Ecology 59: 465–472.

    Google Scholar 

  • Meentemeyer, V., Box, E.O. and Thompson, R. 1982. World patterns and amounts of terrestrial plant litter production. BioScience 32: 125–128.

    Google Scholar 

  • Miller, T.E. 1982. Community diversity and interactions between the size and frequency of disturbance. American Naturalist 120: 533–536.

    Google Scholar 

  • Minnich, R.A. 1983. Fire mosaics in southern California and northern Baja California. Science 219: 1287–1294.

    Google Scholar 

  • Minshall, G.W., Brock, J.T. and Varley, J.D. 1989. Wildfires and Yellowstone's stream ecosystems. BioScience 39: 707–715.

    Google Scholar 

  • Mitchell, V.L. 1976. The regionalization of climate in the western United States. Journal of Applied Meteorology 15: 920–927.

    Google Scholar 

  • Nelson, R.M. and Adkins, C.W. 1988. A dimensionless correlation for the spread of winddriven fires. Canadian Journal of Forest Research 18: 391–397.

    Google Scholar 

  • Nielson, R.P., King, G.A., DeVelice, R.L., Lenihan, J., Marks, D., Dolph, J., Campbell, B. and Glick, G. 1989. Sensitivity of ecological landscapes and regions to global climatic change. U.S. Environmental Protection Agency, Environmental Research Laboratory, Corvallis, Oregon.

    Google Scholar 

  • Ohtsuki, T. and Keyes, T. 1986. Biased percolation: forest fires with wind. J. Phys. A: Math. Gen. 19: L281-L287.

    Google Scholar 

  • Oosting, H.J. and Reed, J.F. 1952. Virgin spruce-fir of the Medicine Bow Mountains, Wyoming. Ecological Monographs 22: 69–91.

    Google Scholar 

  • Pastor, J. and Post, W.M. 1988. Response of northern forests to CO2-induced climate change. Nature 344-55-58.

  • Payette, S., Morneau, C., Sirois, L. and Desponts, M. 1989. Recent fire history of the northern Quebec biomes. Ecology 70: 656–673.

    Google Scholar 

  • Peet, R.K. 1981. Forest vegetation of the Colorado Front Range: composition and dynamics. Vegetatio 37: 65–78.

    Google Scholar 

  • Peet, R.K. 1988. Forests of the Rocky Mountains. In North American Terrestrial Vegetation, pp. 64–101. Edited by M.G. Barbour and W.D. Billings. Cambridge University Press, New York.

    Google Scholar 

  • Pickett, S.T.A. 1976. Succession: an evolutionary interpretation. American Naturalist 110: 107–119.

    Google Scholar 

  • Pickett, S.T.A. and White, P.S. 1985. The ecology of natural disturbance and patch dynamics. Academic Press, New York.

    Google Scholar 

  • Quirk, W.A. and Sykes, D.J. 1971. White spruce stringers in a fire patterned landscape in interior Alaska. In Proceedings of the Symposium on Fire in the Northern Environment, College (Fairbanks), Alaska, pp. 179–197. USDA Forest Service, Washington, D.C.

    Google Scholar 

  • Reiners, W.A. and Lang, G.E. 1979. Vegetational patterns and processes in the balsam fir zone, White Mountains, New Hampshire. Ecology 60: 403–417.

    Google Scholar 

  • Romme, W.H. 1982. Fire and landscape diversity in subalpine forests of Yellowstone National Park. Ecological Monographs 52: 199–221.

    Google Scholar 

  • Romme, W.H. and Despain, D.G. 1989. Historical perspective on the Yellowstone fires of 1988. BioScience 39: 695–699.

    Google Scholar 

  • Romme, W.H. and Knight, D.H. 1981. Fire frequency and subalpine forest succession along a topographic gradient in Wyoming. Ecology 62: 319–326.

    Google Scholar 

  • Romme, W.H. and Knight, D.H. 1982. Landscape diversity: the concept applied to Yellowstone Park. BioScience 32: 664–670.

    Google Scholar 

  • Rothermel, R.C. 1972. A mathematical model for predicting fire spread in wildland fuels. USDA Forest Service Research Paper INT-115.

  • Rothermel, R.C. 1988. Fire behavior research: where do we go from here? In Proceedings of the Ninth Conference on Fire and Forest Meteorology, pp. 19–22. American Meteorological Society, Boston, Mass.

    Google Scholar 

  • Rowe, J.S. 1961. Critique of some vegetational concepts as applied to forests of northwestern Alberta. Canadian Journal of Botany 39: 1007–1017.

    Google Scholar 

  • Rowe, J.S. 1983. Concepts of fire effects on plant species and individuals. In The Role of Fire in Northern Circumpolar Ecosystems. SCOPE 18. pp. 135–154. Edited by R.W. Wein and D.A. MacLean. John Wiley & Sons, New York.

    Google Scholar 

  • Rowe, J.S. and Scotter, G.W. 1973. Fire in the boreal forest. Quaternary Research 3: 444–464.

    Google Scholar 

  • Rowe, J.S., Bergsteinsson, J.L., Padbury, G.A. and Hermesh, R. 1974. Fire studies in the MacKenzie Valley. Canadian Department of Indian and Northern Affairs, INA Publication QS-1567-000-EE-AL. ALUR 73-74-61, 123 pp.

  • Ryan, K.C. and Noste, N.V. 1985. Evaluating prescribed fires. In Proceedings of the Symposium and Workshop on Wilderness Fire. pp. 230–238. USDA Forest Service Gen. Tech. Rep. INT-182.

  • Sandenburgh, R., Taylor, C. and Hoffman, J.S. 1987. Rising carbon dioxide, climate change, and forest management: an overview. In The Greenhouse Effect, Climate Change, and U.S. Forests, pp. 113–121. Edited by W.E. Shands and J.S. Hoffman. The Conservation Foundation, Washington, DC.

    Google Scholar 

  • Schlesinger, M. and Zhao, Z. 1988. Seasonal climate changes induced by doubled CO2 as simulated by the OSU atmospheric GCM/mixed-layer ocean model. Oregon State University Climate Research Institute Report, Corvallis.

  • Shugart, H.H., Jr. and West, D.C. 1981. Long-term dynamics of forest ecosystems. American Scientist 69: 647–652.

    Google Scholar 

  • Solomon, A.M., Tharp, L., West, D.C., Taylor, G.E., Webb, W. and Trimble, J. 1984. Response of unmanaged forests to CO2-induced climate change: available information, initial tests, and data requirements. DOE/NBB-053. National Technical Information Servies, Springfield, Virginia.

    Google Scholar 

  • Stauffer, D. 1985. Introduction to percolation theory. Taylor and Francis, London.

    Google Scholar 

  • Stocks, B.J. 1989. Fire behavior in mature jack pine. Canadian Journal of Forest Research 19: 783–790.

    Google Scholar 

  • Suffling, R. 1983. Stability and diversity in boreal and mixed temperate forests: a demographic approach. Journal of Environmental Management 17: 359–371.

    Google Scholar 

  • Suffling, R. 1988. Catostrophic disturbance and landscape diversity: the implications of fire control and climate change in subarctic forests. In Landscape Ecology and Management, pp. 111–120. Edited by M.R. Moss. Polyscience Publications Inc., Montreal, Canada.

    Google Scholar 

  • Suffling, R., Lihou, C. and Morand, Y. 1988. Control of landscape diversity by catastrophic disturbance: a theory and a case study of fire in a Canadian boreal forest. Environmental Management 12: 73–78.

    Google Scholar 

  • Swetnam, T.W. and Betancourt, J.L. 1990. Fire-induced oscillation relations in the southwestern United States. Science 249: 1017–1020.

    Google Scholar 

  • Tande, G.F. 1979. Fire history and vegetation pattern of coniferous forests in Jasper National Park. Alberta. Canadian Journal of Botany 57: 1912–1931.

    Google Scholar 

  • Tolonen, K. 1983. The post-glacial fire record. In The Role of Fire in Northern Circumpolar Ecosystems, pp. 21–44. Edited by R.W. Wein and D.A. MacLean. John Wiley & Sons, New York.

    Google Scholar 

  • Turner, M.G. 1989. Landscape ecology: the effect of pattern on process. Annual Review of Ecology and Systematics 20: 171–197.

    Google Scholar 

  • Turner, M.G. and Gardner, R.E., eds. 1991. Quantitative Methods in Landscape Ecology. Springer-Verlag, New York.

    Google Scholar 

  • Turner, M.G., Gardner, R.H., Dale, V.H. and O'Neill, R.V. 1989. Predicting the spread of disturbance across heterogeneous landscapes. Oikos 55: 121–129.

    Google Scholar 

  • Turner, M.G., Gardner, R.H. and O'Neill, R.V. 1991. Potential responses of landscapes boundaries to global climate change. In Ecotones. The role of landscape boundaries in the management and restoration of changing environments, pp. 52–75. Edited by M.M. Holland, P.G. Risser and R.J. Naiman. Chapman & Hall, New York.

    Google Scholar 

  • Turner, M.G. and Ruscher, C.L. 1988. Changes in landscape patterns in Georgia, USA. Landscape Ecology 1: 241–251.

    Google Scholar 

  • Vakurov, A.D. 1975. Forest fires in the north. Izdatjelstva Nauka, Laboratorija Lesovedenija, Moscow (in Russian).

    Google Scholar 

  • Van Wagner, C.E. 1977. Conditions for the start and spread of crown fire. Canadian Journal of Forest Research 7: 23–34.

    Google Scholar 

  • Van Wagner, C.E. 1978. Age-class distribution and the forest fire cycle. Canadian Journal of Forest Research 8: 220–227.

    Google Scholar 

  • Van Wagner, C.E. 1983. Fire behaviour in northern conifer forests and shrublands. In The Role of Fire in Northern Circumpolar Ecosystems, pp. 65–80. Edited by R.W. Wein and D.A. MacLean. John Wiley & Sons, New York.

    Google Scholar 

  • Veblen, T.T. 1986. Size and age structure of subalpine forests in the Colorado Front Range. Bulletin of the Torrey Botanical Club 113: 225–240.

    Google Scholar 

  • Viereck, L.A. 1973. Wildfire in the taiga of Alaska. Quaternary Research 3: 465–495.

    Google Scholar 

  • Viereck, L.A. 1983. The effects of fire in black spruce ecosystems of Alaska and Northern Canada. In The Role of Fire in Northern Circumpolar Ecosystems. pp. 201–220. Edited by R.W. Wein and D.A. MacLean. John Wiley & Sons, New York.

    Google Scholar 

  • Von Niessen, W. and Blumen, A. 1988. Dynamic simulation of forest fires. Canadian Journal of Forest Research 18: 805–812.

    Google Scholar 

  • Watt, A.S. 1947. Pattern and process in the plant community. Journal of Ecology 35: 1–22.

    Google Scholar 

  • Wein, R.W. and MacLean, D.A. 1983. An overview of fire in northern ecosystems. In The Role of Fire in Northern Circumpolar Ecosystems. pp. 1–18. Edited by R.W. Wein and D.A. MacLean. John Wiley & Sons, New York.

    Google Scholar 

  • Wein, R.W. and Moore, J.M, 1979. Fire history and recent fire rotation periods in the Nova Scotia Acadian Forest. Canadian Journal of Forest Research 9: 166–178.

    Google Scholar 

  • Wetherald, R.T. and Manabe, S. 1988. Cloud feedback process in a GCM. Journal of Atmospheric Sciences 45: 1397–1415.

    Google Scholar 

  • Whitney, G.G. 1986. Relation of Michigan's presettlement pine forests to substrate and disturbance history. Ecology 67: 1548–1559.

    Google Scholar 

  • Wright, H.E. Jr. and Heinselman, M.L. 1973. Introduction to symposium on the ecological role of fire in natural coniferous forests of western and northern America. Quaternary Research 3: 319–328.

    Google Scholar 

  • Yarie, J. 1981. Forest fire cycles and life tables: a case study from interior Alaska. Canadian Journal of Forest Research 11: 554–562.

    Google Scholar 

  • Zackrisson, O. 1977. Influence of forest fires on the north Swedish boreal forest. Oikos 29: 22–32.

    Google Scholar 

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Turner, M.G., Romme, W.H. Landscape dynamics in crown fire ecosystems. Landscape Ecol 9, 59–77 (1994). https://doi.org/10.1007/BF00135079

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