• 제목/요약/키워드: depression storage capacity

검색결과 6건 처리시간 0.02초

지면 굴곡에 따른 산림 토양의 물 침투와 저류능력 비교 (Comparison of Water Infiltration and Retention Capacity in a Forest Soil of Different Surface Depression Patterns)

  • 조유리;김종호;이도원
    • 한국산림과학회지
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    • 제107권1호
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    • pp.108-111
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    • 2018
  • 토양 표면에 요면(굴곡)을 형성하는 것은 토양의 거칠기를 증가시켜 강우의 침투와 토양의 저류능력을 향상시키고 지표수 및 토사의 유실량을 감소시키는 효과적 방법이 될 수 있다. 이 연구에서 토양 표면에 형성된 요면의 모양이 지표수의 흐름에 반구형일 때 수평 및 수직형일 때보다 침투량이 많았고, 토양의 저류능력은 수직형 요면에서 높았다. 흙 파기, 또는 토양 표면의 요면 형성은 산림 토양에서 산불 발생 후 대책으로, 또 건기 때 가뭄 스트레스를 해소하는 실용적인 방법으로 활용될 수 있다.

도시유역 저류형 시스템 설계를 위한 CSOs 산정 (Storm-Water CSOs for Reservoir System Designs in Urban Area)

  • 조덕준;김명수;이정호;박무종;김중훈
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2005년도 학술발표회 논문집
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    • pp.1199-1203
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    • 2005
  • Combined sewer overflows(CSOs) are themselves a significant source of water pollution. Therefore, the control of urban drainage for CSOs reduction and receiving water quality protection is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as stormwater detention storage is highly dependant on the temporal variability of storage capacity available(which is influenced by the duration of interevent dry periods) as well as the infiltration capacity of soil and recovery of depression storage. As a result, a contiunous approach is required to adequately size such facilities. This study for the continuous long-term analysis of urban dranage system used analytical Probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model have evolved that offer much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics or the subject area using analytical Probabilistic model. Runoff characteristics manifasted the unique characteristics of the subject area with the infiltration capacity of soil and recovery of depression storage and was examined appropriately by sensitivity analysis. This study presented the average annual COSs and number of COSs when the interceptor capacity is in the range 3xDWF(dry weather flow). Also, calculated the average annual mass of pollutant lost in CSOs using Event Mean Concentration. Finally, this study presented a dicision of storage volume for CSOs reduction and water quality protection.

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연속 강우-유출 모의기법을 이용한 최적 CSOs 산정에 관한 연구 (A Study of Optimal-CSOs by Continuous Rainfall/Runoff Simulation Techniques)

  • 조덕준;김명수;이정호;김중훈
    • 한국물환경학회지
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    • 제22권6호
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    • pp.1068-1074
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    • 2006
  • For receiving water quality protection a control systems of urban drainage for CSOs reduction is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as storm-water detention storage is highly dependant on the temporal variability of storage capacity available as well as the infiltration capacity of soil and recovery of depression storage. For the continuous long-term analysis of urban drainage system this study used analytical probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model has evolved that offers much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics of the subject area using analytical probabilistic model. Runoff characteristics manifested the unique characteristics of the subject area with the infiltration capacity of soil and recovery of depression storage and was examined appropriately by sensitivity analysis. This study presented the average annual CSOs, number of CSOs and event mean CSOs for the decision of storage volume.

도시유역 CSOs 처리를 위한 저류형시스템 설계용량 산정 (Estimation of Storage Capacity for CSOs Storage System in Urban Area)

  • 조덕준;이정호;김명수;김중훈;박무종
    • 한국물환경학회지
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    • 제23권4호
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    • pp.490-497
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    • 2007
  • A Combined sewer overflows (CSOs) are themselves a significant source of water pollution. Therefore, the control of urban drainage for CSOs reduction and receiving water quality protection is needed. Examples in combined sewer systems include downstream storage facilities that detain runoff during periods of high flow and allow the detained water to be conveyed by an interceptor sewer to a centralized treatment plant during periods of low flow. The design of such facilities as stormwater detention storage is highly dependant on the temporal variability of storage capacity available (which is influenced by the duration of interevent dry periods) as well as the infiltration capacity of soil and recovery of depression storage. As a result, a continuous approach is required to adequately size such facilities. This study for the continuous long-term analysis of urban drainage system used analytical probabilistic model based on derived probability distribution theory. As an alternative to the modeling of urban drainage system for planning or screening level analysis of runoff control alternatives, this model have evolved that offer much ease and flexibility in terms of computation while considering long-term meteorology. This study presented rainfall and runoff characteristics of the subject area using analytical probabilistic model. This study presented the average annual COSs and number of COSs when the interceptor capacity is in the range $3{\times}DWF$ (dry weather flow). Also, calculated the average annual mass of pollutant lost in CSOs using Event Mean Concentration. Finally, this study presented a decision of storage volume for CSOs reduction and water quality protection.

Integrated Effect of Non-Invasive Neuromodulation on Bladder Capacity in Traumatic Spinal Cord Injury Patient: Single Case Report

  • Priyanka Dangi;Narkeesh Arumugam;Dinesh Suman
    • Physical Therapy Rehabilitation Science
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    • 제13권1호
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    • pp.86-94
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    • 2024
  • Objective: To evaluate the changes in bladder capacity and storage through non-invasive neuromodulation by application of repetitive Trans magnetic stimulation (rTMS) and genital nerve stimulation (GNS) in traumatic spinal cord survivors. Design: A Single Case Study. Method: The Patient was registered in trail with the clinical trial registry of India (CTRI/2022/05/042431). The Patient was interposed with rTMS on lumbar area, from T11-L4 vertebrae with 1 Hz and the intensity was 20% below that elicited local paraspinal muscular contraction for 13 minutes. GNS was placed over dorsum of the penis with the cathode at the base and anode 2 cm distally at 20 Hz, 200 microseconds, Continuous and biphasic current was delivered and amplitude of stimulation necessary to elicit the genito-anal reflex. For assessment, Neurological examination was done for peri-anal sensation (PAS), voluntary anal contraction (VAC) and bulbocavernous reflex (BCR), deep anal pressure (DAP), and American Spinal Injury Association Impairment Scale (ASIA scale). Outcome assessment was done using Urodynamics, Spinal Cord Independence Measure Scale Version-III (SCIM-III), American Spinal Injury Association Impairment Score (ASIA Score), Beck's Depression Inventory Scale (BDI). The baseline evaluation was taken on Day 0 and on Day 30. Results: The pre-and post-data were collected through ASIA score, SCIM-III, BDI and Urodynamics test which showed significant improvement in bladder capacity and storage outcomes in the urodynamics study across the span of 4 weeks. Conclusion: rTMS along with GNS showed improvement in bladder capacity & storage, on sensory-motor score, in functional independence of individual after SCI.

백두산 천지 붕괴 가상 시나리오 별 천지못 유출수의 피해영향범위 예측 (Prediction of the Area Inundated by Lake Effluent According to Hypothetical Collapse Scenarios of Cheonji Ground at Mt. Baekdu)

  • 서장원;이희욱;김성민;박형동
    • 지질공학
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    • 제23권4호
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    • pp.409-425
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    • 2013
  • 본 연구에서는 백두산 분화 전 지반 균열 및 거동에 의한 천지못 지반 붕괴 시나리오 별 천지못 유출수의 이동경로와 홍수 피해영향범위를 시계열로 예측하였다. 지형 지표 기상 환경 자료를 기반으로 다방향 흐름기법, 지표토양에 의한 흡수율과 초기저장량, 화구 및 분지 지형의 부피(저장공간)를 함께 고려할 수 있는 지리정보시스템 기반의 수문분석 알고리즘을 개발하였다. 백두산 지역의 화산군 분포와 지형적 특성을 고려하여 4가지 경우의 천지못 지반 붕괴 지점을 가상으로 선정하고, 개발된 알고리즘을 적용하여 천지못 유출수의 확산패턴과 시간 변화에 따른 피해영향범위를 산정하였다. 시나리오 1과 2(천지못 전체/남쪽 경계 지반 붕괴)의 경우 천지못 유출 약 3시간 경과 후부터 중국쪽 마을에 홍수피해가 발생한 반면 북한 영토는 천지못 남동쪽에 위치한 산봉우리의 지형적 특성으로 인해 거의 영향을 받지 않는 것으로 나타났다. 반면 시나리오 2의 조건에 천지못 남동쪽 산봉우리를 붕괴시킨 시나리오 3과 4의 경우에는 천지못 유출 약 3시간 경과 후부터 중국뿐만 아니라 북한 영토쪽 마을에도 1,500만톤 이상의 홍수 피해를 발생시키는 것으로 분석되었다.