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    산지사면의 실측토양수분을 이용한 전이함수 모형의 적용 = Original Article : Transfer Functional Modeling Using Soil Moisture Measurements at a Steep Forest Hillslope

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    https://www.riss.kr/link?id=A99643897

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In this paper, time series of soil moisture were measured for a steep forest hillslope to model and understand distinct hydrological behaviours along two different transects. The transfer function analysis was presented to characterize temporal response patterns of soil moisture for rainfall events. The rainfall is a main driver of soil moisture variation, and its stochastic characteristic was properly treated prior to the transfer function delineation between rainfall and soil moisture measurements. Using field measurements for two transects during the rainy season in 2007 obtained from the Bumrunsa hillslope located in the Sulmachun watershed, a systematic transfer functional modeling was performed to configure the relationships between rainfall and soil moisture responses. The analysis indicated the spatial variation pattern of hillslope hydrological processes, which can be explained by the relative contribution of vertical, lateral and return flows and the impact of transect topography.
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    In this paper, time series of soil moisture were measured for a steep forest hillslope to model and understand distinct hydrological behaviours along two different transects. The transfer function analysis was presented to characterize temporal respon...

    In this paper, time series of soil moisture were measured for a steep forest hillslope to model and understand distinct hydrological behaviours along two different transects. The transfer function analysis was presented to characterize temporal response patterns of soil moisture for rainfall events. The rainfall is a main driver of soil moisture variation, and its stochastic characteristic was properly treated prior to the transfer function delineation between rainfall and soil moisture measurements. Using field measurements for two transects during the rainy season in 2007 obtained from the Bumrunsa hillslope located in the Sulmachun watershed, a systematic transfer functional modeling was performed to configure the relationships between rainfall and soil moisture responses. The analysis indicated the spatial variation pattern of hillslope hydrological processes, which can be explained by the relative contribution of vertical, lateral and return flows and the impact of transect topography.

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    참고문헌 (Reference)

    1 강창용, "산지사면의 효과적인 토양수분 측정을 위한 흐름분배 알고리즘과 TDR을 이용한 토양수분 측정망의 구성" 한국수자원학회 37 (37): 31-41, 2004

    2 손미나, "광릉수목원 내 산지사면에서의 토양수분 시계열 자료의 단변량 분석" 한국농림기상학회 9 (9): 88-99, 2007

    3 곽용석, "광릉 산림 소유역에서의 대공극흐름율과 유효대공극부피분율의 공간 분포" 한국농림기상학회 9 (9): 234-246, 2007

    4 Torres, R., "Unsaturated zone processes and hydrologic response of a steep unchanneled catchment" 34 (34): 1865-1879, 1998

    5 Jung, H., "Trend Analysis and Wavelet Transform of Time Series of Precipitation Including the Chukwookee Observations in Seoul" 13 (13): 525-540, 2000

    6 Anderson, M. G., "Topography and hillslope soil water relationships in a catchment at low relief" 47 : 115-128, 1980

    7 Chow, V. T., "The IUH of general hydrologic system model" 108 (108): 830-844, 1982

    8 Park, J., "Study on Characteristice of Transient Soulte Transport in the Vadose Zone by Using TDR : (1)Relationship between Water Content and Relative Electrical Conductivity" 32 (32): 741-749, 1999

    9 Western A. W., "Spatial correlation of soil moisture in small catchments and its relationship to dominant spatial hydrological processes" 286 : 113-134, 2004

    10 Kim, S., "Soil moisture monitoring on a steep hillside" JOHN WILEY & SONS LTD 21 : 2910-2922, 2007

    1 강창용, "산지사면의 효과적인 토양수분 측정을 위한 흐름분배 알고리즘과 TDR을 이용한 토양수분 측정망의 구성" 한국수자원학회 37 (37): 31-41, 2004

    2 손미나, "광릉수목원 내 산지사면에서의 토양수분 시계열 자료의 단변량 분석" 한국농림기상학회 9 (9): 88-99, 2007

    3 곽용석, "광릉 산림 소유역에서의 대공극흐름율과 유효대공극부피분율의 공간 분포" 한국농림기상학회 9 (9): 234-246, 2007

    4 Torres, R., "Unsaturated zone processes and hydrologic response of a steep unchanneled catchment" 34 (34): 1865-1879, 1998

    5 Jung, H., "Trend Analysis and Wavelet Transform of Time Series of Precipitation Including the Chukwookee Observations in Seoul" 13 (13): 525-540, 2000

    6 Anderson, M. G., "Topography and hillslope soil water relationships in a catchment at low relief" 47 : 115-128, 1980

    7 Chow, V. T., "The IUH of general hydrologic system model" 108 (108): 830-844, 1982

    8 Park, J., "Study on Characteristice of Transient Soulte Transport in the Vadose Zone by Using TDR : (1)Relationship between Water Content and Relative Electrical Conductivity" 32 (32): 741-749, 1999

    9 Western A. W., "Spatial correlation of soil moisture in small catchments and its relationship to dominant spatial hydrological processes" 286 : 113-134, 2004

    10 Kim, S., "Soil moisture monitoring on a steep hillside" JOHN WILEY & SONS LTD 21 : 2910-2922, 2007

    11 Uchida, T., "Role of upslope soil pore pressure on lateral subsurface storm flow dynamics" 40 (40): W12401-, 2004

    12 Guntner, A., "Modeling spatial patterns of saturated area: An evaluation of different terrain indices" 40 (40): W05114-, 2004

    13 Walker, J. P., "In situ measurement of soil moisture : a comparison of techniques" 293 : 85-99, 2004

    14 Liu, L. M., "Identification of multiple input transfer function models" 11 (11): 297-314, 1982

    15 Kim, S., "Characterization of soil moisture responses on a hillslope to sequential rainfall events during late autumn and spring" 45 : W09425-, 2009

    16 Beven, K., "A physically based variable contributing area model of basin hydrology" 24 : 43-69, 1979

    17 Akaike, H., "A new look at the statistical model identification, IEEE Trans" 19 (19): 716-723, 1974

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