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    Biotic and spatial factors potentially explain the susceptibility of forests to direct hurricane damage

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    https://www.riss.kr/link?id=A106447501

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Background: Ecologists continue to investigate the factors that potentially affect the pattern and magnitude of tree damage during catastrophic windstorms in forests. However, there still is a paucity of research on which trees are more vulnerable to direct damage by winds rather than being knocked down by the fall of another tree. We evaluated this question in a mixed hardwood–softwood forest within the Big Thicket National Preserve (BTNP) of southeast Texas, USA, which was substantially impacted by Hurricane Rita in September 2005.
    Results: We showed that multiple factors, including tree height, shade-tolerance, height-to-diameter ratio, and neighborhood density (i.e., pre-Rita stem distribution) significantly explained the susceptibility of trees to direct storm damage. We also found that no single factor had pervasive importance over the others and, instead, that all factors were tightly intertwined in a complex way, such that they often complemented each other, and that they contributed simultaneously to the overall susceptibility to and patterns of windstorm damage in the BTNP.
    Conclusions: Directly damaged trees greatly influence the forest by causing secondary damage to other trees. We propose that directly and indirectly damaged (or susceptible) trees should be considered separately when assessing or predicting the impact of windstorms on a forest ecosystem; to better predict the pathways of community structure reorganization and guide forest management and conservation practices. Forest managers are recommended to adopt a holistic view that considers and combines various components of the forest ecosystem when establishing strategies for mitigating the impact of catastrophic winds.
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    Background: Ecologists continue to investigate the factors that potentially affect the pattern and magnitude of tree damage during catastrophic windstorms in forests. However, there still is a paucity of research on which trees are more vulnerable to ...

    Background: Ecologists continue to investigate the factors that potentially affect the pattern and magnitude of tree damage during catastrophic windstorms in forests. However, there still is a paucity of research on which trees are more vulnerable to direct damage by winds rather than being knocked down by the fall of another tree. We evaluated this question in a mixed hardwood–softwood forest within the Big Thicket National Preserve (BTNP) of southeast Texas, USA, which was substantially impacted by Hurricane Rita in September 2005.
    Results: We showed that multiple factors, including tree height, shade-tolerance, height-to-diameter ratio, and neighborhood density (i.e., pre-Rita stem distribution) significantly explained the susceptibility of trees to direct storm damage. We also found that no single factor had pervasive importance over the others and, instead, that all factors were tightly intertwined in a complex way, such that they often complemented each other, and that they contributed simultaneously to the overall susceptibility to and patterns of windstorm damage in the BTNP.
    Conclusions: Directly damaged trees greatly influence the forest by causing secondary damage to other trees. We propose that directly and indirectly damaged (or susceptible) trees should be considered separately when assessing or predicting the impact of windstorms on a forest ecosystem; to better predict the pathways of community structure reorganization and guide forest management and conservation practices. Forest managers are recommended to adopt a holistic view that considers and combines various components of the forest ecosystem when establishing strategies for mitigating the impact of catastrophic winds.

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    참고문헌 (Reference)

    1 Santos LT, "Windthrows increase soil carbon stocks in a central Amazon forest" 13 : 1299-1308, 2016

    2 Webb SL, "Windstorm damage and microsite colonization in two Minnesota forests" 18 : 1186-1195, 1988

    3 Allen MS, "Windstorm damage and forest recovery : accelerated succession, stand structure, and spatial pattern over 25 years in two Minnesota forests" 213 : 1833-1842, 2012

    4 Rich RL, "Wind-throw mortality in the southern boreal forest : effects of species, diameter and stand age" 95 : 1261-1273, 2007

    5 Hale SE, "Wind loading of trees : influence of tree size and competition" 131 : 203-217, 2012

    6 Schindler D, "Wind effects on trees" 131 : 159-163, 2012

    7 Mitchell SJ, "Wind as a natural disturbance agent in forests : a synthesis" 86 : 147-157, 2013

    8 Milne R, "Wind and trees" Cambridge University Press 165-181, 1995

    9 Oliver WW, "Twenty-five-year growth and mortality of planted ponderosa pine repeatedly thinned to different stand densities in northern California" 12 : 122-130, 1997

    10 Batista WB, "Tree population responses to hurricane disturbance : syndromes in a south-eastern USA old-growth forest" 91 : 197-212, 2003

    1 Santos LT, "Windthrows increase soil carbon stocks in a central Amazon forest" 13 : 1299-1308, 2016

    2 Webb SL, "Windstorm damage and microsite colonization in two Minnesota forests" 18 : 1186-1195, 1988

    3 Allen MS, "Windstorm damage and forest recovery : accelerated succession, stand structure, and spatial pattern over 25 years in two Minnesota forests" 213 : 1833-1842, 2012

    4 Rich RL, "Wind-throw mortality in the southern boreal forest : effects of species, diameter and stand age" 95 : 1261-1273, 2007

    5 Hale SE, "Wind loading of trees : influence of tree size and competition" 131 : 203-217, 2012

    6 Schindler D, "Wind effects on trees" 131 : 159-163, 2012

    7 Mitchell SJ, "Wind as a natural disturbance agent in forests : a synthesis" 86 : 147-157, 2013

    8 Milne R, "Wind and trees" Cambridge University Press 165-181, 1995

    9 Oliver WW, "Twenty-five-year growth and mortality of planted ponderosa pine repeatedly thinned to different stand densities in northern California" 12 : 122-130, 1997

    10 Batista WB, "Tree population responses to hurricane disturbance : syndromes in a south-eastern USA old-growth forest" 91 : 197-212, 2003

    11 Xi W, "Tree damage risk factors associated with large, infrequent wind disturbances of Carolina forests" 81 : 317-334, 2008

    12 Gardiner B, "The stability of different silvicultural systems : a wind-tunnel investigation" 78 : 471-484, 2005

    13 Stearns SC, "The evolution of life histories" Oxford University Press 1992

    14 Ulanova NG, "The effects of windthrow on forests at different spatial scales : a review" 135 : 155-167, 2000

    15 Kooch Y, "The effect of windthrow disturbances on biochemical and chemical soil properties in the northern mountainous forests of Iran" 116 : 142-148, 2014

    16 Wolf A, "Storm damage and long-term mortality in a semi-natural, temperate deciduous forest" 188 : 197-210, 2004

    17 Foster DR, "Species and stand response to catastrophic wind in central New England" 76 : 135-151, 1988

    18 Condit R, "Spatial patterns in the distribution of tropical tree species" 288 : 1414-1418, 2000

    19 Haase P, "Spatial pattern analysis in ecology based on Ripley's K-function : introduction and methods of edge correction" 6 : 575-582, 1995

    20 Burns RM, "Silvics of North America: Vol. 2" USDA Agricultural 1990

    21 Valladares F, "Shade tolerance, a key plant feature of complex nature and consequences" 39 : 237-257, 2008

    22 Wiegand T, "Rings, circles, and null-models for point pattern analysis in ecology" 104 : 209-229, 2004

    23 Churchill DJ, "Restoring forest resilience : from reference spatial patterns to silvicultural prescriptions and monitoring" 291 : 442-457, 2013

    24 Xi W, "Recent hurricane research – climate, dynamics, and societal impacts" InTech 503-534, 2011

    25 Grime JP, "Plant strategies, vegetation processes, and ecosystem properties" Wiley 2001

    26 Foster DR, "Patterns of forest damage resulting from catastrophic wind in central New England" 80 : 79-98, 1992

    27 Ruck B, "On the influence of windward edge structure and stand density on the flow characteristics at forest edges" 131 : 177-189, 2012

    28 Green SR, "Observations of turbulent air flow in three stands of widely spaced Sitka spruce" 74 : 205-225, 1995

    29 Valinger E, "Modelling probability of snow and wind damage in Scots pine stands using tree characteristics" 97 : 215-222, 1997

    30 Gardiner BA, "Management of forests to reduce the risk of abiotic damage—a review with particular reference to the effects of strong winds" 135 : 261-277, 2000

    31 Canham CD, "Interspecific variation in susceptibility to windthrow as a function of tree size and storm severity for northern temperate tree species" 31 : 1-10, 2001

    32 Zeng H, "Influence of clear-cutting on the risk of wind damage at forest edges" 203 : 77-88, 2004

    33 Uriarte M, "Hurricane impacts on dynamics, structure and carbon sequestration potential of forest ecosystems in southern New England, USA" 59 : 519-528, 2007

    34 Gresham CA, "Hurricane Hugo wind damage to southeastern U.S. coastal forest tree species" 23 : 420-426, 1991

    35 Egbäck S, "Height-diameter relationships for different genetic planting stock of loblolly pine at age 6" 61 : 424-428, 2015

    36 Wonn HT, "Height : diameter ratios and stability relationships for four northern Rocky Mountain tree species" 16 : 87-94, 2001

    37 Wiegand T, "Handbook of spatial point pattern analysis in ecology" Chapman and Hall/CRC press 2013

    38 Reukema DL, "Forty-year development of Douglas-fir stands planted at various spacings" 21-, 1970

    39 Marks PL, "Forest vegetation of the Big Thicket, southeast Texas" 51 : 287-305, 1981

    40 Lafon CW, "Forest disturbance by ice storms in Quercus forests of the southern Appalachian Mountains, USA" 13 : 30-43, 2006

    41 Everham EM, "Forest damage and recovery from catastrophic wind" 62 : 113-185, 1996

    42 Reukema DL, "Fifty-year development of Douglas-fir stands planted at various spacings" 21-, 1979

    43 Gardiner BA, "Field and wind tunnel assessments of the implications of respacing and thinning for tree stability" 70 : 233-252, 1997

    44 Long JN, "Emulating natural disturbance regimes as a basis for forest management : a North American view" 257 : 1868-1873, 2009

    45 Kim D, "Effects of tree size, shade-tolerance, and spatial pattern on the mortality of woody plants in a semi-natural urban woodlot, central Kentucky, USA" 68 : 436-450, 2016

    46 Glitzenstein JS, "Effects of the December 1983 tornado on forest vegetation of the Big Thicket, southeast Texas" 25 : 269-290, 1988

    47 Cremer KW, "Effects of stocking and thinning on wind damage in plantations" 12 : 244-268, 1982

    48 Harcombe PA, "Effects of Hurricane Rita on three long-term forest study plots in east Texas, USA" 29 : 88-100, 2009

    49 Franklin JF, "Disturbances and structural development of natural forest ecosystems with silvicultural implications, using Douglas-fir forests as an example" 155 : 399-423, 2002

    50 Ancelin P, "Development of an individual tree-based mechanical model to predict wind damage within forest stands" 203 : 101-121, 2004

    51 NOAA (National Oceanic and Atmospheric Administration), "Data tools: 1981–2010 Normal"

    52 Peterson CJ, "Damage and recovery of tree species after two different tornadoes in the same old growth forest : a comparison of infrequent wind disturbances" 135 : 237-252, 2000

    53 Pinkard EA, "Crown and stand characteristics of Eucalyptus nitens in response to initial spacing : implications for thinning" 172 : 215-227, 2003

    54 Webb SL, "Contrasting windstorm consequences in two forests, Itasca State Park, Minnesota" 70 : 1167-1180, 1989

    55 Clinton BD, "Catastrophic windthrow in the southern Appalachians : characteristics of pits and mounds and initial vegetation responses" 126 : 51-60, 2000

    56 Sokal RR, "Biometry: the principles and practice of statistics in biological research" W H Freeman 1995

    57 Mason WL, "Are irregular stands more windfirm?" 75 : 347-355, 2002

    58 Peltola H, "A mechanistic model for calculating windthrow and stem breakage of Scots pines at stand edge" 27 : 99-111, 1993

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    학술지 이력

    학술지 이력
    연월일 이력구분 이력상세 등재구분
    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
    2020-01-01 등재 등재학술지 유지 (해외등재 학술지 평가) KCI등재
    2013-11-01 등재 SCOPUS 등재 (등재유지) KCI등재
    2013-04-10 학술지명변경 한글명 : 한국생태학회지 -> Journal of Ecology and Environment
    외국어명 : Journal of Ecology and Field Biology -> Journal of Ecology and Environment
    KCI등재
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2007-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2006-03-01 학술지명변경 외국어명 : The Korean Journal of Ecology -> Journal of Ecology and Field Biology KCI등재
    2004-01-01 등재 등재학술지 선정 (등재후보2차) KCI등재
    2003-01-01 등재 등재후보 1차 PASS (등재후보1차) KCI등재후보
    2001-07-01 등재 등재후보학술지 선정 (신규평가) KCI등재후보
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.08 0.08 0.12
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.15 0.17 0.298 0.1
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