• Title/Summary/Keyword: 평균체류시간

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A Method for Estimating Mean Residence Time of Water using Soil Moisture at a Hillslope on the Forested Catchment (토양수분을 이용한 산림사면에서의 물 평균체류시간 추정방법)

  • Kwak, Yong-Seok;Jin, Sung-Won;Kim, Sang-Hyun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2009.05a
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    • pp.308-313
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    • 2009
  • 유역에서 물의 평균체류시간은 강우에 의해 토양에 강우 등으로 인해 수분이 침투하여 유출되기까지 소요되는 평균 시간이며, 침식, 식생분포, 유출기작 등을 지배하는 수문학적 과정을 이해하는데 중요한 요소이다. 물의 평균체류시간을 산정하는 대표적인 방법인 방사성 동위원소에 의한 추적자법은 계산과정이 복잡하고 많은 비용이 들면서도 간접적인 방법임으로, 본 연구에서는 토양수분의 거동을 관측해 산지사면에서 물의 평균체류시간을 산정하는 보다 직접적인 방법을 고안하였다. 토양수분의 측정을 위해 광릉 국립수목원에 위치한 산림 소유역에 토양 수분 측정장비인 TDR을 설치하고 1년 동안 2시간 간격으로 깊이별 측정을 수행하였다. 토양수분을 이용해 산정된 물의 체류시간은 대상유역의 불투수 지하면에 가까워질수록 상승하는 경향을 보였고 강우가 집중된 여름에 가장 짧은 것으로 나타났다. 실험에서 얻어진 평균체류시간은 기존의 화학적 방법을 통해 산정된 값과 유사한 경향을 보였는데 이러한 결과들은 토양수분의 측정과 분석을 통한 방법이 방사성 동위원소를 이용한 방법보다 더욱 효율성 있는 측정을 할 수 있다는 것을 나타낸다.

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무엇이 MMORPG 유저들을 붙드는가?

  • Yun, Seong-Hyeon
    • Digital Contents
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    • no.10 s.161
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    • pp.88-89
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    • 2006
  • 다른 게임 장르에 비해 RPG란 장르는 상대적으로 유저의 평균체류시간이 길다. 이는 RPG의 특성상 FPS나 RTS장르처럼 단판 위주의 게이미 아니라 광활한맵을 이동하면서 사냥과 퀘스트가 끊임없이 반복되기 때문이다. 그러나 같은 RPG라 할지라도 게임마다 특성이 다르기 때문에 평균체류시간은 다르게 나타나고 있다.현재까지 게임마다 평균체류시간이 다르게 나타난다는 것은 잘 알려진 사실이다. 그러나 이에 대한 원인분석이나 체계적인 연구가 부족했던 것 또한 사실. 이는 RPG장르 내 어떤 요인들이 평균체류시간에 영향을 미치는가에 대한 실증분석이 전무한 상태에서 막연한 '감' 에 의한 평가가 대부분이었기 때문이다. 여기서는 지난 5월 30일을 기준으로 게임트릭스에 등록된 86개의 MMORPG중에서 이미 서비스가 종료됐거나 과거 1년 동안 갑작스럼 패치, 업그레이드등으로 데이터 손실이 많았던 게임, 그리고 데이터를 구할 수 없었던 게임들을 제외한 총 51개의 MMORPG를 대상으로 평균체류시간을 분석했다.

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Estimation of Mean Residence Time using Soil Moisture at a Hillslope on the Forested Catchment (산림 사면에서 토양수분을 이용한 물 평균체류시간 추정)

  • Jin, Sung-Won;Kim, Sang-Hyun
    • Journal of Korea Water Resources Association
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    • v.41 no.12
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    • pp.1199-1210
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    • 2008
  • The mean residence time is the time scale for intermediate status between infiltration and runoff and one of the critical factors for understanding runoff response, erosion, and eco-hydrological processes. This research explored a direct method to estimate the mean residence time over existing indirect, isotope tracer method. Spatial and temporal distributions of soil moisture have been monitored for a year with 2-hours monitoring interval. Mean residence time for soil moisture showed apparent increasing tendency to deeper depth and decreasing trend during summer periods, which had intensive rainfall events. The mean residence times obtained from this research showed similar trend to those obtained from other isotope methods, which means the direct method can be an efficient approach to obtain the mean residence time.

Estimation of material budget for Keum river estuary using a Box Model (BOX 모델을 이용한 금강 하구해역의 물질수지 산정)

  • Kim Jong-Gu;Kim Dong-Myung;Yang Jae-Sam
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.3 no.4
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    • pp.76-90
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    • 2000
  • The estimation of material cycle of pollutants is necessary for the environment management in coastal zone. Model for material budgets are useful tools to understand the phenomena of natural system and to provide an insight into the complex processes including physical, chemical and biological processes occuring in natural system. Budgets of fresh water, salt and nutrients were estimated in order to clarify the characteristics of seasonal material cycle in Keum river estuary. Inflow volumes of freshwater into system was approximately 1.014×10/sup 8/~12.565×10/sup 8/m³/month and discharge in Keum river has occupied 99.7% of total freshwater. Seasonal variations of freshwater volume in the system were found to be very high in the range of about 4 ~ 14 times due to rainfall in summer season. Existing water mass of freshwater in system calculated by salt budget was approximately 0.339×10/sup 8/~0.652×10/sup 8/m³. Mean residence time of freshwater was calculated to be about 1.6~10.0day, and exchange time was calculated to be about 2.2~11.9day. Mean residence time was short as 1.6day in summer due to precipitation, and long as 10.1day in winter due to a drought. Inflow masses of DIP and DIN were approximately 5.57~32.68ton/month and 234.93~2,373.39ton/month, respectively. Seasonal inflow mass of DIP was larger than the outflow mass except for summer season. Thus, we postulate that accumulation of DIP in the system will happen. Residence times of DIP and DIN were calculated to be 1.1~6.4day and 1.8~10.9day, respectively. The ratio of water residence time versus DIP, DIN residence time was calculated to be 0.39~2.31 times and 0.83~1.13 times, respectively.

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Material Budgets in the Youngsan River Estuary with Simple Box Model (영산강 하구해역에서의 단순 박스모델에 의한 물질수지)

  • Lee, Kyeong-Sig;Jun, Sue-Kyung
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.12 no.4
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    • pp.248-254
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    • 2009
  • Budgets of fresh water, salt, DIP and DIN in the Youngsan river estuary were estimated seasonally in order to clarify the characteristics of material cycling and flux of nutrients with a simple box model. Inflow volumes of freshwater into system was approximately $36.481{\times}10^6{\sim}663.634{\times}10^6m^3/month$ and existing water mass of freshwater in system calculated by salt budget was approximately $2.515{\times}10^6{\sim}5.812{\times}10^6m^3$. Mean residence time of freshwater was calculated to be about 0.26~2.03 day. water exchange $1,248{\times}10^6{\sim}9,489{\times}10^6m^3/month$ assumed with salinity between estuary and adjacent ocean. Inflow mass of DIN and DIN were approximately 76.63~1,149.91 ton/month and 2.91~61.22 ton/month, respectively. Residence times of DIP and DIN were calculated to be 0.45~1.10 day and 0.28~1.92 day, respectively. The ratio of water residence time versus DIP, DIN residence time was calculated that freshwater residence time was longer than DIP, DIN residence time except for summer season. Thus, We assume that circulation of Nutrients in the system will happen rapidly except for summer season. Specially DIP in Winter could assume to outer input source existence because of seawater inflow in system and high DIP concentration in open sea.

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Residence Time Variation by Operation of Sihwa Tidal Power Plant in Outer Sea of Sihwa Lake (시화호 조력발전소 운영에 의한 시화호 외측 해역에서의 체류시간 변화)

  • Bae, Youn Ho;Yoon, Byung Il;Seo, Chang Hoon;Park, Sung Jin;Bang, Ki-Young;Kwon, Hyo-Keun;Woo, Seung-Buhm
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.29 no.5
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    • pp.247-259
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    • 2017
  • Numerical model with LPT (Lagrangian Particle Tracking) module was used to understand the variation of residence time in the outer sea of the Sihwa lake result operating from the Sihwa tidal power plant. Numerical model was composed in order to investigate the spatial distribution characteristics, the average residence time in each area was calculated by dividing the outer sea area of Sihwa lake into 4 areas. The average residence time of the areas appeared to be increase as it entered the areas located in the inner bay (13 days) from the area located in most outer sea (3 days) both before and during operation. Variation of average residence time by areas were increased in the area that was located in the most outer sea of during operation compared to before operation, and decreased in the other area. Artificial discharges from tidal power plant induces particle traps in the formation of vortex in the area located in the most outer seas, entrainment in the remaining areas, which affects variation in residence time. In other words, the jet flow generated during drainage and the change in the residence time due to the vortex and entrainment action indicate the increase horizontal mixing of water in the outer sea and in the inner bay.

A Numerical Prediction of Residence Time According to Freshwater Influx in Enclosed Bay (담수유입에 의한 폐쇄성 내만의 물질체류시간 수치예측)

  • Kim, Jin-Ho;Lee, In-Cheol
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.17 no.4
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    • pp.339-343
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    • 2011
  • This study is to examine the effect of freshwater influx on residence time to understand a long-term material transportation in enclosed bay. To predict the residence times of the coastal water in Masan bay, we were carried out the numerical simulations by using a EFDC model to simulate seawater circulation and particle tracking. The average residence times of Masan bay obtained from the particle release simulations under the condition to neglect a freshwater influx were estimated to be about 110 days in northern part of the bay to near Dotseom, 40 days in around Modo and 20 days in Budo to open sea. However, the average residence times under the condition consider with freshwater influx decreased about 81 days in both Region 1(northen Masan bay to near Dotseom) and Region II (Dotseom to Modo), but the Region III(Modo to Budo) and Region IV(Budo to open sea) incresed about 58 days and 17 days, respectively.

Length of stay in PACU among surgical patients using data mining technique (데이터 마이닝을 활용한 외과수술환자의 회복실 체류시간 분석)

  • Yoo, Je-Bog;Jang, Hee Jung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.14 no.7
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    • pp.3400-3411
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    • 2013
  • The data mining is a new approach to extract useful information through effective analysis of huge data in numerous fields. This study was analyzed by decision making tree model using Clementine C&RT(Classification & Regression Tree, CART) as data mining technique. We utilized this data mining technique to analyze medical record of 1,500 people. Whole data were assorted by length of stay in PACU and divided into 3 groups. The result extracted by C5.0 decision tree method showed that important related factors for lengh of stay in PACU are type of operation, preoperative EKG abnormality, anesthetics, operative duration, age.

부영양화의 진행과 그 대책

  • 곽노태;안태영
    • Korean Journal of Microbiology
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    • v.33 no.1
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    • pp.72-77
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    • 1997
  • 이 글에서는 작은 저수지인 천호지를 대상으로 부영양화의 진행과 원인 그리고 이에 따른 미생물생태학적인 변화를 살펴보았으며 끝으로 호수를 회복시키는 부영양화의 대책에 대하여 간단히 기술하였다. 천호지는 충청남도 천안시 단국대학교 천안 캠퍼스 앞에 위치한 0.31km$^{2}$의 작은 관개용 저수지로 1995년 평균 엽록소 a의 농도가 75.$\mu$g/l에 달하는 등 부영양화 현상이 매우 심하게 나타났고 있다(1). 최대 수심은 7-8m, 평균 수심은 3m정도로 얕아 성층현상은 나타나지 않으며 평균 체류시간은 3-4개월이나 집수역에서 저수지까지의 유달 시간이 짧아 집수역에서의 실 체류시간은 1주일 미만일 것으로 추정된다.

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Model Trajectory Simulation for the Behavior of the Namgang Dam Water in the Kangjin Bay, South Sea, Korea (남해 강진만에서 남강댐 방류수의 거동 특성 및 체류시간 추정)

  • Jung, Kwang-Young;Ro, Young-Jae;Kim, Baek-Jin;Park, Kwang-Soon
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.24 no.2
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    • pp.97-108
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    • 2012
  • A Lagrangian particle tracking model coupled with the ECOM3D were used to study on the behavior of fresh water released from the Namgang Dam in terms of residence time in Kangjin Bay, South Sea, Korea. Model was calibrated until skill cores for elevation, velocity, temperature and salinity are satisfied over 85%. In the numerical simulation, particles were released in 1 hour time interval from the northern boundary. The different patterns of particle trajectory are identified under the varying dynamics from tidal to density-driven current. The average residence time of total particles are approximately 65.9 hours in the entire Kangjin Bay. The average residence time were increased from 55~65 to 70~80 hours during maximum discharge period. Discharge rate of fresh water and average residence time in the Kangjin Bay is high correlated with correlation coefficient over 0.81.