• 제목/요약/키워드: site-specific model

검색결과 366건 처리시간 0.028초

위해성에 근거한 정화목표 산정 및 복원전략 수립 (Determination of Target Clean-up Level and Risk-Based Remediation Strategy)

  • 류혜림;한준경;남경필
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제12권1호
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    • pp.73-86
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    • 2007
  • 위해성에 근거한 복원 전략(risk-based remediation strategy, RBRS)은 위해성평가를 통하여 오염지역의 위해성 또는 오염원을 효율적으로 관리하기 위한 의사결정과정 중의 일부로서, 토양에 존재하는 독성물질이 인간이나 생태계와 같은 수용체로 전이되어 발현되는 독성을 감소시키는 것을 목적으로 한다. 토양오염에 대한 위해성평가는 토양에서 대기로 확산되어나가는 오염물질의 흡입, 토양에서 지하수로 용출된 오염물질의 섭취, 토양 자체의 섭취와 접촉 등에 의한 위해성평가를 포함하며, 오염물질의 특성뿐만 아니라 수리지질학적 자료, 토지이용용도, 수용체의 특성 등 현장의 특이적인 요소들을 충분히 고려해야 한다. 위해성에 근거한 복원전략은 위해성산정을 위한 현장조사로부터 시작하여, 구체화된 노출경로모델(conceptual site model, CSM)의 작성, 목표위해성 수준의 결정, 오염물질의 물리화학적 특성 및 독성학적 자료의 수집을 거쳐, 일반적이고 보수적인 조건 하에 가장 안전한 목표정화수준을 산정하는 Tier 1 평가와 보다 정확한 오염현장의 조사를 통하여 현장특수성을 반영하는 Tier 2 평가를 단계적으로 적용한다. 현장의 오염농도가 Tier 1으로 결정된 허용오염수준(risk-based screening level, RBSL)보다 높은 경우 Tier 2를 실시하여 현장의 특수성을 반영하는 목표정화수준(site-specific target level)을 산정하며, 이를 통하여 오염지역에 대한 과도한 정화처리나 비경제적인 복구사업 등을 피할 수 있다. 위해성에 근거한 복원전략은 이 밖에도 오염지역의 복원우선순위 결정, 토지이용용도에 따른 위해성 관리기준 수립 등 다양한 활용성을 가지지만, 여러 가지 전제조건들과 현장조사 시에 발생하는 현실적 한계 등으로 인하여 불확실성을 가진다. 이를 극복하기 위하여 정확한 CSM의 작성, 복합오염에 대한 고려, 오염물질의 이동과 거동에 영향을 미치는 환경매질의 특성과 모델 입력변수 등을 신중하게 검토해야 하며, 신뢰할 만한 현장조사기법과 독성검사기법의 확립, 국내실정에 맞는 토양 및 지하수 특성자료와 인체 노출인자 등에 대한 연구가 지속적으로 이루어져야 할 것이다.

Determination of Optimal Scan Time for the Measurement of Downstream Metabolites in Hyperpolarized 13C MRSI

  • Lee, Hansol;Lee, Joonsung;Joe, Eunhae;Yang, Seungwook;Choi, Young-suk;Wang, Eunkyung;Song, Ho-Taek;Kim, Dong-Hyun
    • Investigative Magnetic Resonance Imaging
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    • 제19권4호
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    • pp.212-217
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    • 2015
  • Purpose: For a single time-point hyperpolarized $^{13}C$ magnetic resonance spectroscopy imaging (MRSI) of animal models, scan-time window after injecting substrates is critical in terms of signal-to-noise ratio (SNR) of downstream metabolites. Pre-scans of time-resolved magnetic resonance spectroscopy (MRS) can be performed to determine the scan-time window. In this study, based on two-site exchange model, protocol-specific simulation approaches were developed for $^{13}C$ MRSI and the optimal scan-time window was determined to maximize the SNR of downstream metabolites. Materials and Methods: The arterial input function and conversion rate constant from injected substrates (pyruvate) to downstream metabolite (lactate) were precalibrated, based on pre-scans of time-resolved MRS. MRSI was simulated using two-site exchange model with considerations of scan parameters of MRSI. Optimal scan-time window for mapping lactate was chosen from simulated lactate intensity maps. The performance was validated by multiple in vivo experiments of BALB/C nude mice with MDA-MB-231 breast tumor cells. As a comparison, MRSI were performed with other scan-time windows simply chosen from the lactate signal intensities of pre-scan time-resolved MRS. Results: The optimal scan timing for our animal models was determined by simulation, and was found to be 15 s after injection of the pyruvate. Compared to the simple approach, we observed that the lactate peak signal to noise ratio (PSNR) was increased by 230%. Conclusion: Optimal scan timing to measure downstream metabolites using hyperpolarized $^{13}C$ MRSI can be determined by the proposed protocol-specific simulation approaches.

기후변화에 따른 유역의 수문요소 및 수자원 영향평가 (Impact Assessment of Climate Change on Hydrologic Components and Water Resources in Watershed)

  • 권병식;김형수;서병하;김남원
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2005년도 학술발표회 논문집
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    • pp.143-148
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    • 2005
  • The main purpose of this study is to suggest and evaluate an operational method for assessing the potential impact of climate change on hydrologic components and water resources of regional scale river basins. The method, which uses large scale climate change information provided by a state of the art general circulation model(GCM) comprises a statistical downscaling approach and a spatially distributed hydrological model applied to a river basin located in Korea. First, we construct global climate change scenarios using the YONU GCM control run and transient experiments, then transform the YONU GCM grid-box predictions with coarse resolution of climate change into the site-specific values by statistical downscaling techniques. The values are used to modify the parameters of the stochastic weather generator model for the simulation of the site-specific daily weather time series. The weather series fed into a semi-distributed hydrological model called SLURP to simulate the streamflows associated with other water resources for the condition of $2CO_2$. This approach is applied to the Yongdam dam basin in southern part of Korea. The results show that under the condition of $2CO_2$, about $7.6\% of annual mean streamflow is reduced when it is compared with the observed one. And while Seasonal streamflows in the winter and autumn are increased, a streamflow in the summer is decreased. However, the seasonality of the simulated series is similar to the observed pattern and the analysis of the duration cure shows the mean of averaged low flow is increased while the averaged wet and normal flow are decreased for the climate change.

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쌍계사 오층 석탑 부지의 지진 응답 특성 평가를 통한 1936년 지리산 지진 세기의 정량적 분석 (Quantitative Analysis on Intensity of 1936 Jirisan Earthquake by Estimating Seismic Response Characteristics at the Site of Five-story Stone Pagoda in Ssang-gye-sa)

  • 선창국;정충기;김재관
    • 대한토목학회논문집
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    • 제28권3C호
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    • pp.187-196
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    • 2008
  • 한반도 남쪽 경계 부근에 위치한 지리산 내의 불교 사찰인 쌍계사에서 1936년 7월 4일 규모 5.0의 지진이 발생하였다. 이 지진으로 인하여 쌍계사 경내 건축물과 구조물이 심각한 피해를 입었으며, 특히 지진시 사찰 내 오층 석탑의 탑두가 전도하여 추락하였다. 이 지진 피해 사례는 역사 지진 발생 이외의 강진 기록이 전무한 중진 지역의 한반도에서의 지반 운동 세기 평가에 유용하게 활용될 수 있다. 쌍계사 부지에서의 국부적 부지 효과 및 그에 따른 지반 운동을 평가하기 위하여, 시추와 크로스홀 및 SASW 시험과 같은 현장 탄성파 시험으로 구성된 종합적인 지반 조사를 사찰 경내에서 수행하였다. 조사된 지반 특성을 토대로, 다양한 지진파를 적용한 부지고유 지진 응답 해석을 0.044g부터 0.220g 범위의 여섯 가지 입력 암반 노두 가속도 수준으로 대표적 쌍계사 부지에 대해 일차원 등가선형 및 비선형 기법을 적용하여 실시하였다. 부지고유 지진 응답 결과로부터 쌍계사의 부지 주기 부근의 단주기 영역에서 증폭된 지반 운동을 확인할 수 있었다. 또한, 본 연구의 부지 응답 해석 결과와 선행 연구의 석탑 실물 크기 지진 시험 결과를 비교 분석하여 1936년 지리산 지진의 암반 노두 지진 세기를 평가하였다.

Multi-unit Level 1 probabilistic safety assessment: Approaches and their application to a six-unit nuclear power plant site

  • Kim, Dong-San;Han, Sang Hoon;Park, Jin Hee;Lim, Ho-Gon;Kim, Jung Han
    • Nuclear Engineering and Technology
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    • 제50권8호
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    • pp.1217-1233
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    • 2018
  • Following a surge of interest in multi-unit risk in the last few years, many recent studies have suggested methods for multi-unit probabilistic safety assessment (MUPSA) and addressed several related aspects. Most of the existing studies though focused on two-unit nuclear power plant (NPP) sites or used rather simplified probabilistic safety assessment (PSA) models to demonstrate the proposed approaches. When considering an NPP site with three or more units, some approaches are inapplicable or yield very conservative results. Since the number of such sites is increasing, there is a strong need to develop and validate practical approaches to the related MUPSA. This article provides several detailed approaches that are applicable to multi-unit Level 1 PSA for sites with up to six or more reactor units. To validate the approaches, a multi-unit Level 1 PSA model is developed and the site core damage frequency is estimated for each of four representative multi-unit initiators, as well as for the case of a simultaneous occurrence of independent single-unit initiators in multiple units. For this purpose, an NPP site with six identical OPR-1000 units is considered, with full-scale Level 1 PSA models for a specific OPR-1000 plant used as the base single-unit models.

Force-based seismic design of steel haunch retrofit for RC frames

  • Ahmad, Naveed
    • Earthquakes and Structures
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    • 제20권2호
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    • pp.133-148
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    • 2021
  • The paper presents a simplified force-based seismic design procedure for the preliminary design of steel haunch retrofitting for the seismic upgrade of deficient RC frames. The procedure involved constructing a site-specific seismic design spectrum for the site, which is transformed into seismic base shear coefficient demand, using an applicable response modification factor, that defines base shear force for seismic analysis of the structure. Recent experimental campaign; involving shake table testing of ten (10), and quasi-static cyclic testing of two (02), 1:3 reduced scale RC frame models, carried out for the seismic performance assessment of both deficient and retrofitted structures has provided the basis to calculate retrofit-specific response modification factor Rretrofitted. The haunch retrofitting technique enhanced the structural stiffness, strength, and ductility, hence, increased the structural response modification factor, which is mainly dependent on the applied retrofit scheme. An additional retrofit effectiveness factor (ΩR) is proposed for the deficient structure's response modification factor Rdeficient, representing the retrofit effectiveness (ΩR=Rretrofitted /Rdeficient), to calculate components' moment and shear demands for the retrofitted structure. The experimental campaign revealed that regardless of the deficient structures' characteristics, the ΩR factor remains fairly the unchanged, which is encouraging to generalize the design procedure. Haunch configuration is finalized that avoid brittle hinging of beam-column joints and ensure ductile beam yielding. Example case study for the seismic retrofit designs of RC frames are presented, which were validated through equivalent lateral load analysis using elastic model and response history analysis of finite-element based inelastic model, showing reasonable performance of the proposed design procedure. The proposed design has the advantage to provide a seismic zone-specific design solution, and also, to suggest if any additional measure is required to enhance the strength/deformability of beams and columns.

Real Time Current Prediction with Recurrent Neural Networks and Model Tree

  • Cini, S.;Deo, Makarand Chintamani
    • International Journal of Ocean System Engineering
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    • 제3권3호
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    • pp.116-130
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    • 2013
  • The prediction of ocean currents in real time over the warning times of a few hours or days is required in planning many operation-related activities in the ocean. Traditionally this is done through numerical models which are targeted toward producing spatially distributed information. This paper discusses a complementary method to do so when site-specific predictions are desired. It is based on the use of a recurrent type of neural network as well as the statistical tool of model tree. The measurements made at a site in Indian Ocean over a period of 4 years were used. The predictions were made over 72 time steps in advance. The models developed were found to be fairly accurate in terms of the selected error statistics. Among the two modeling techniques the model tree performed better showing the necessity of using distributed models for different sub-domains of data rather than a unique one over the entire input domain. Typically such predictions were associated with average errors of less than 2.0 cm/s. Although the prediction accuracy declined over longer intervals, it was still very satisfactory in terms of theselected error criteria. Similarly prediction of extreme values matched with that of the rest of predictions. Unlike past studies both east-west and north-south current components were predicted fairly well.

Using Spatial EPIC Model to Simulate Corn and Wheat Productivity: the Case of the North CHINA

  • Yang, Peng;Tan, Guoxin;Shibasaki, Ryosuke
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2003년도 Proceedings of ACRS 2003 ISRS
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    • pp.274-276
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    • 2003
  • The traditional crop productivity simulations based on crop models are normally site-specific. To simulate regional crop productivity, the spatial crop model is developed in this study by integrating Geographical Information System (GIS) with Erosion Productivity Impact Calculator (EPIC) model. The integration applied a loose coupling approach. Data are exchanged using ASCII or binary data format between GIS and EPIC model without a common user interface. The spatial EPIC model is conducted to simulate the average corn and wheat productivity of 1980s in North China. The results show that the simulation accuracy of the spatial EPIC model is acceptable. The simulation accuracy can be improved by using the detailed crop management information, such as irrigation, fertilizer and tillage schedule.

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낚시참여자의 레크리에이션전문화가 자원소비성향에 미치는 영향 (Effects of Recreation Specialization on Anglers'Consumptive Orientation)

  • 오치옥;남정호;한주형
    • 수산경영론집
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    • 제50권3호
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    • pp.43-57
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    • 2019
  • Recreation specialization and consumptive orientation are two important constructs to understand anglers' attitudes and behaviors. Although theoretical explanations and previous studies in different countries addressed the relationships between the two constructs, limited support has been provided in a context of anglers in Korea. This study developed a conceptual model explaining the causal relationships between recreation specialization, anglers' preferences (activity-specific and activity-general) and consumptive orientation. An on-site survey was conducted to anglers in the city of Busan and Gyeongnam province in 2018. A total of 614 data were analyzed using Structural Equation Modeling The study results showed that recreation specialization positively and indirectly influenced consumptive orientation via anglers' activity-specific and activity-general preferences. Theoretical and practical implications are further discussed.

Spatially variable effects on seismic response of the cable-stayed bridges considering local soil site conditions

  • Tonyali, Zeliha;Ates, Sevket;Adanur, Suleyman
    • Structural Engineering and Mechanics
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    • 제70권2호
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    • pp.143-152
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    • 2019
  • In this study, stochastic responses of a cable-stayed bridge subjected to the spatially varying earthquake ground motion are investigated for variable local soil cases and wave velocities. Quincy Bay-view cable-stayed bridge built on the Mississippi River in Illinois, USA selected as a numerical example. The bridge is composed of two H-shaped concrete towers, double plane fan type cables and a composite concrete-steel girder deck. The spatial variability of the ground motion is considered with the coherency function, which is represented by the components of incoherence, wave-passage and site-response effects. The incoherence effect is investigated by considering Harichandran and Vanmarcke model, the site-response effect is outlined by using hard, medium and soft soil types, and the wave-passage effect is taken into account by using 1000, 600 and 200 m/s wave velocities for the hard, medium and soft soils, respectively. Mean of maximum response values obtained from the analyses are compared with those of the specific cases of the ground motion model. It is concluded that the obtained results from the bridge model increase as the differences between local soil conditions cases of the bridge supports change from firm to soft. Moreover, the variation of the wave velocity has important effects on the responses of the deck and towers as compared with those of the travelling constant wave velocity case. In addition, the variability of the ground motions should be considered in the analysis of long span cable-stayed bridges to obtain more accurate results in calculating the bridge responses.