• Title/Summary/Keyword: Outflow cycle

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Distribution Characteristics and Background Air Classification of PM2.5 OC and EC in Summer Monsoon Season at the Anmyeondo Global Atmosphere Watch (GAW) Regional Station (안면도 기후변화감시소의 여름철 PM2.5 OC와 EC 분포 특성 및 배경대기 구분)

  • Ham, Jeeyoung;Lee, Meehye;Ryoo, Sang-Boom;Lee, Young-Gon
    • Atmosphere
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    • v.29 no.4
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    • pp.429-438
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    • 2019
  • Organic carbon (OC) and elemental carbon (EC) in PM2.5 were measured with Sunset Laboratory Model-5 Semi-Continuous OC/EC Field Analyzer by NIOSH/TOT method at Anmyeondo Global Atmosphere Watch (GAW) Regional Station (37°32'N, 127°19'E) in July and August, 2017. The mean values of OC and EC were 3.7 ㎍ m-3 and 0.7 ㎍ m-3, respectively. During the study period, the concentrations of reactive gases and aerosol compositions were evidently lower than those of other seasons. It is mostly due to meteorological setting of the northeast Asia, where the influence of continental outflow is at its minimum during this season under southwesterly wind. While the diurnal variation of OC and EC were not clear, the concentrations of O3, CO, NOx, EC, and OC were evidently enhanced under easterly wind at night from 20:00 to 8:00. However, the high concentration of EC was observed concurrently with CO and NOx under northerly wind during 20:00~24:00. It indicates the influence of thermal power plant and industrial facilities, which was recognized as a major emission source during KORUS-AQ campaign. The diurnal variations of pollutants clearly showed the influence of land-sea breeze, in which OC showed good correlation between EC and O3 in seabreeze. It is estimated to be the recirculation of pollutants in land-sea breeze cycle. This study suggests that in general, Anmyeondo station serves well as a background monitoring station. However, the variation in meteorological condition is so dynamic that it is primary factor to determine the concentrations of secondary species as well as primary pollutants at Anmyeondo station.

SHRIMP U-Pb Zircon Dating and Volcanic Process of the Volcanic Rocks around the Jayang Caldera, Northern Yeongcheon, Korea (영천 북부 자양 칼데라 주변의 화산암류에 대한 SHRIMP U-Pb 저어콘 연대측정과 화산과정)

  • Hwang, Sang Koo;Jo, In Hwa;Son, Yong Seok;Song, Kyo-Young;Yi, Keewook
    • The Journal of the Petrological Society of Korea
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    • v.28 no.4
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    • pp.237-249
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    • 2019
  • The volcanic rocks around the Jayang caldera are classified in an order such as Jukjang Volcanics, Doil Rhyolite, Unjusan Tuff and Rhyolite intrusions. By the SHRIMP U-Pb zircon datings from zircons, eruption ages of the Unjusan Tuff are constrained as 66.65±0.96 Ma in the intracaldera, and 66.08±0.62 Ma in the extracaldera outflow, and intrusion age of the ring dike is investigated as 60.74±0.66 Ma. The age data indicate that the caldera was collapsed between 66.08 Ma and 60.74 Ma, just before the dike intruded after the explosive eruption of the Unjusan Tuff. The Jayang caldera shows the composite igneous process of a perfect volcanic cycle passing from ash-flow tuffs through caldera collapse into ring dikes in the Jayang area.

A natural analog study on the cover-layer performance for near-surface LILW disposal by considering the tomb of historical age (역사시대 고분을 이용한 중저준위 방사성폐기물의 천층처분 덮개성능 자연유사연구)

  • Park Jin-Beak;Park Joo Wan;Kim Chang-Lak;Yang Si Eun;Lee Sun Bok
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.3 no.4
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    • pp.279-291
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    • 2005
  • To support the design concept and the performance assessment of the cover system for low- and intermediate-level radioactive waste(LILW) disposal facility, a pioneering study is conducted for the tomb of historical age. Research status of the art are investigated and the characteristics of tomb cover are summarized based on the preservation status of historical remains. On-site soil samples are prepared and their unsaturated hydraulic conductivities are measured by an one-step outflow method. Visiting the excavation site of historical tomb and communication with Korean archeological society are required for the further understanding and for the extension to the radioactive waste disposal research.

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A Study on Case of Creative Space Creation Based on the Concept of New Ruralism - Focusing on the Case of Gurye Naturaldream Park - (농촌다움 개념에 기반한 창조적 공간 조성사례 연구 - 구례 자연드림파크를 대상으로 -)

  • Yi, Dong-Yoon;Son, Yong-Hoon
    • Journal of Korean Society of Rural Planning
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    • v.28 no.3
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    • pp.111-125
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    • 2022
  • Korea's rapid urbanization caused problems, such as destruction of the rural environment, loss of traditional culture and dissolution of communities, as the continuous outflow of the population from rural areas, aging and consequent labor shortages and deterioration of the living environment were connected like a vicious cycle. In order to solve the problems of rural areas and overcome their vulnerabilities, the ultimate goal is to find a way to reintroduce the population to the rural areas. In order to be reborn as a space with rural characteristics and pluralistic functions and various potentials in a space under threat of underdevelopment and extinction, the pushing factor from rural areas is improved, and the population inflow factor to the rural areas is improved to enhance rural attractiveness, focusing on creativity among the 4Cs of New Ruralism: Conservation, Cultivation, Community, Creativity. A case study of 'Creative space in rural areas' was studied and considered. In-depth interviews were conducted with four key stakeholders, and the research results were analyzed focusing on the grounded theory method to draw implications from the background of Gurye Natural Dream Park, characteristics that can be viewed as creative spaces, and examples of creative space creation in rural areas. The 'Creative space in rural areas' is a space that can solve the current issues and problems of rural areas. In the case of Gurye Natural Dream Park, the young population of Gurye is increasing through job creation, provision of living and cultural service facilities, and improvement of the education and medical environment. In this study, the existing rural problem-solving process in this process was viewed as creativity in rural areas.

Analysis of Surface Water Temperature Fluctuation and Empirical Orthogonal Function in Cheonsu Bay, Korea

  • Hyo-Sang Choo;Jin-Young Lee;Kyeung-Ho Han;Dong-Sun Kim
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.29 no.3
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    • pp.255-269
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    • 2023
  • Surface water temperature of a bay (from the south to the north) increases in spring and summer, but decreases in autumn and winter. Due to shallow water depth, freshwater outflow, and weak current, the water temperature in the central to northern part of the bay is greatly affected by the land coast and air temperature, with large fluctuations. Water temperature variations are large in the north-east coast of the bay, but small in the south-west coast. The difference between water temperature and air temperature is greater in winter and in the south-central part of the bay than that in the north to the eastern coast of the bay where sea dykes are located. As the bay goes from south to north, the range of water temperature fluctuation and the phase show increases. When fresh water is released from the sea dike, the surrounding water temperature decreases and then rises, or rises and then falls. The first mode of empirical orthogonal function (EOF) represents seasonal variation of water temperature. The second mode represents the variability of water temperature gradient in east-west and north-south directions of the bay. In the first mode, the maximum and the minimum are shown in autumn and summer, respectively, consistent with seasonal distribution of surface water temperature variance. In the second mode, phases of the coast of Seosan~Boryeong and the east coast of Anmyeon Island are opposite to each other, bordering the center of the deep bay. Periodic fluctuation of the first mode time coefficient dominates in the one-day and half-day cycle. Its daily fluctuation pattern is similar to air temperature variation. Sea conditions and topographical characteristics excluding air temperature are factors contributing to the variation of the second mode time coefficient.

Analysis of Outflow System at the Mangyeong River Basin (만경강 유역의 유출 체계 분석)

  • Lee, Ji Hun;Lee, Jung Hun;Kim, Seung Hyun;Kang, Noel
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.265-265
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    • 2020
  • 지구상의 물 순환은 구름이 형성되어 비나 눈의 형태로 낙하하여 지표수를 형성하거나 일부가 땅속으로 스며들어 지하수를 형성하기도 한다. 또한, 지표면이나 수면, 식물의 입면을 통해서 대기중으로 증발되기도 한다. 대기중으로 소실되지 않은 물은 지표수나 지하수로 하천을 통해 바다로 흘러간다. 이와 같은 물 순환을 수문순환(hydrologic cycle)이라고 한다(Lee, 2008). 하지만 인구 증가 및 산업화로 인해 농업용수, 공업용수, 생활용수 사용이 증가하며 하천에서 직접 물을 취수하여 사용하고 있고 하수종말처리장, 농수로 등을 통해 회귀되는 유량이 많아 하천의 유출 특성을 파악하는데 어려움이 있다. 따라서 정확한 하천 유출 체계 특성을 파악하기 위해서는 하천에서 사용되고 유입되는 물의 특성을 파악할 필요가 있다. 본 연구에서는 만경강 수계 및 제 1지류인 전주천에서 운영되고 있는 취·배수 시설에 대해 문헌조사와 현장조사를 진행하였으며, 조사한 내용을 토대로 하천의 물 사용 체계 모식도를 작성하였다. 만경강 유역의 조사대상 구간은 대아댐 하류에서 전주천 합류점까지의 구간에 대해 조사를 실시하였으며, 전주천 유역은 삼천합류점에서 만경강 본류 합류점까지와 삼천 유역의 구이저수지에서 전주천 합류점 까지를 조사구간으로 선정하였다. 문헌조사의 대상시설은 저수지, 양수장, 취입보, 하수처리장 등이며, 조사대상은 하천의 유출 특성에 영향을 줄 수 있는 시설로 최소 하루 기준으로 일 취수량 0.20㎥/s, 일 방류량 0.20㎥/s 이상이 되는 시설에 대해서만 수행하였다. 현장조사에서는 현장을 방문하여 취·배수시설의 위치와 유입구의 위치, 도수로 등을 조사하였으며, 취·배수 시설의 유량 정확도 평가를 위해 현장에서 유량측정을 수행하여 허가량과의 비교 검토를 실시하였다. 만경강은 농업용수 사용의 증가에 따라 상하류 유량반전이 빈번하게 발생하였으나 이 연구를 통해 검토한 결과 만경강 유역내의 상하류 유량반전 시기가 과거에 비해 감소하였으며, 완주군(오성교)관측소와 완주군(용봉교)관측소의 손실고가 안정적으로 변한 것으로 확인되었으며, 전주시(미산교)관측소 또한 관측소 상류에 위치한 취·배수영향을 고려하여 유출률을 산정한 결과 과거에 비해 손실고가 일정하게 유지되는 안정된 결과를 도출하였다. 따라서 유역의 유출 체계 특성을 체계적으로 관리하기 위해서는 하천의 취·배수시설에 대한 다양성을 고려하여 하천 유출 특성을 파악할 필요가 있다.

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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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Evolution Characteristics and Drivers of Gumi National Industrial Complex (구미국가산업단지의 진화 과정의 특성과 그 동인)

  • Jeon, Ji-Hye;Lee, Chul-Woo
    • Journal of the Economic Geographical Society of Korea
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    • v.21 no.4
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    • pp.303-320
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    • 2018
  • This study analyzes the characteristics of the evolution process of the Gumi National Industrial Complex as well as its external and internal drivers based on the cluster adaptation cycle model. The Gumi National Industrial Complex has made remarkable progress through expansion in spatial and industrial realm and has become a representative IT industry cluster in Korea. It evolved during a growth period from the 1990s, a maturity period from the mid-2000s, and a mature stagnation period from the mid-2010s. But it has now entered a period of decline. While external drivers at the international and national level greatly influenced the Gumi National Industrial Complex in its evolution from foundation-building to maturity, internal drivers such as the outflow of large firms as well as a lack of SME research capacity and institutional base have added to the management difficulties of SMEs in the mature stagnation period. Therefore, in order for the Gumi National Industrial Complex to move into a revitalization period that strengthens resilience against external shocks, it is necessary to enhance the capacity of SMEs by expanding the roles of the central government, local government, and support agencies. In addition, it is necessary to create and embed strong medium enterprises within the Gumi National Industrial Complex, so that the Complex can be reborn as a sustainable innovation ecosystem.

Outflow Characteristics of Nakdong River Plume (낙동강수의 유출특성에 관한 연구)

  • 김기철;김재중;김영의;한건모;최광규;장성태
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.8 no.4
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    • pp.305-313
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    • 1996
  • CTD measurements were conducted in the Nakdong estuary on the several sections or along-plume and cross-plume directions in 1993 and 1994. Internal Froude number Fi=0.22-0.35 in ebb tides and 0.14 in flood tides suggest that Nakdong river plume may go farther seawards in the along-plume direction with little mixing with the adjacent sea water after the construction of Nakdong river barrier. From Dadae-Po to Gaduk-Do section of cross-plume direction, three cores of low salinity were found. The main plume outflows from the newly made channel by cutting Ulsuk-Do after the construction of barrier. The low salinity core found near Gaduk-Do is the plume patch advected by tidal currents. Rossby deformation radius varied with the tidal cycle so that Coriolis effect is strengthened in flood tides to deepen the isohalines westwards to the Gaduk-Do site. Internal wavelike shape was found in the section of cross-plume direction during ebb tides. Richardson number of the section suggests the possibility of forming internal wave but more precise observations are necessary.

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Geotechnical investigation on causes and mitigation of ground subsidence during underground structure construction (터널 및 지중매설물 시공에 따른 지반함몰 발생 원인 및 대책에 대한 지반공학적 조사 연구)

  • Choi, Shin-Kyu;Back, Seung-Hun;An, Jun-Beom;Kwon, Tae-Hyuk
    • Journal of Korean Tunnelling and Underground Space Association
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    • v.18 no.2
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    • pp.143-154
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    • 2016
  • This study investigated the occurrences, causes, and mitigation of the recent ground subsidence and underground cavity generation events in Korea. Two main causes of ground subsidence are (1) the soil erosion by seepage during tunneling and earth excavation and (2) the damage of underground pipes. The main cause of the soil erosion during tunneling was the uncontrolled groundwater flow. Especially, when excavating soft grounds using a tunnel boring machine (TBM), the ground near TBM operation halt points were found to be the most vulnerable to failure. The damage of underground pipes was mainly caused by poor construction, material deterioration, and differential settlement in soft soils. The ground subsidence during tunneling and earth excavation can be managed by monitoring the outflow of groundwater and eroded soils in construction sites. It is expected that the ground subsidence by the underground pipe damage can be managed or mitigated by life cycle analysis and maintenance of the buried pipes, and by controlling the earth pressure distribution or increasing the bearing capacity at the upper ground of the buried pipes.