• 제목/요약/키워드: temporal energy

검색결과 404건 처리시간 0.023초

Evapotranspiration Estimation Study Based on Coupled Water-energy Balance Theory in River Basin

  • Xue, Lijun;Kim, JooCheol;Li, Hongyan;Jung, Kwansue
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2018년도 학술발표회
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    • pp.146-146
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    • 2018
  • Basin evapotranspiration is the result of water balance and energy balance, which is affected by climate and underlying surface characteristics, the process is complex, and spatial and temporal variability is large, the evapotranspiration estimation of river basin is an important but difficult problem in the field of hydrology, over the years, many scholars devoted to the basin actual evapotranspiration estimation and achieved excellent results. We discuss Budyko coupled water-energy balance theory and evaporation paradox, then use the Fu's equation to estimate actual evapotranspiration yearly in different areas with different dryness. The result shows that Fu's equation has high precision for estimating evapotranspiration yearly in our selected study area, and the estimation result has higher precision in the area with high dryness. Then, we propose an improved formula which can be used to estimate actual evapotranspiration monthly. Furthermore, we found that the parameter in the formula reflects general conditions of underlying surface and it is affected by several factors, at last, we tried to propose the calculation formula. The study indicates that Fu's equation provides a reliable method for evapotranspiration estimation in dry regions as well as semi-humid and semi-arid regions, which has great significance for forecasting river basin water resources and inquiring into ecological water requirement.

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Numerical simulation of a toroidal single-phase natural circulation loop with a k-kL-ω transitional turbulence model

  • Yiwa Geng;Xiongbin Liu;Xiaotian Li;Yajun Zhang
    • Nuclear Engineering and Technology
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    • 제56권1호
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    • pp.233-240
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    • 2024
  • The wall friction correlations of oscillatory natural circulation loops are highly loop-specific, making it difficult to perform 1-D system simulations before obtaining specific experimental data. To better predict the friction characteristics, the nonlinear dynamics of a toroidal single-phase natural circulation loop were numerically investigated, and the transition effect was considered. The k-kL-ω transitional turbulence and k-ω SST turbulence models were used to compute the flow characteristics of the loop under different heating powers varying from 0.48 to 1.0 W/cm2, and the results of both models were compared with previous experiments. The mass flow rates and friction factors predicted by the k-kL-ω model showed a better agreement with the experimental data than the results of the k-ω SST model. The oscillation frequencies calculated using both models agreed well with the experimental data. The k-kL-ω transitional turbulence model provided better friction-factor predictions in oscillatory natural circulation loops because it can reproduce the temporal and spatial variation of the wall shear stress more accurately by capturing the movement of laminar, transition turbulent zones inside unstable natural circulation loops. This study shows that transition effects are a possible explanation for the highly loop-specific friction correlations observed in various oscillatory natural circulation loops.

Wind and solar energy: a comparison of costs and environmental impacts

  • Carnevale, Ennio A.;Lombardi, Lidia;Zanchi, Laura
    • Advances in Energy Research
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    • 제4권2호
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    • pp.121-146
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    • 2016
  • This study is concerned with the analysis of two renewable technologies for electric energy production: wind energy and photovoltaic energy. The two technologies were assessed and compared by economic point of view, by using selected indicators characterized by a clear calculation approach, requirement of information easy to be collected, clear, but even complete, interpretation of results. The used economic indicators are Levelized Cost of Energy, $CO_2$ abatement cost and fossil fuel saving specific cost; these last two specifically aimed at evaluating the different capabilities that renewable technologies have to cut down direct $CO_2$ emissions and to avoid fossil fuel extraction. The two technologies were compared also from the environmental point of view by applying Life Cycle Assessment approach and using the environmental impact categories from the Eco-indicator'95 method. The economic analysis was developed by taking into account different energy system sizes and different geographic areas in order to compare different European conditions (Italy, Germany and Denmark) in term of renewable resource availability and market trend. The environmental analysis was developed comparing two particular types of PV and wind plants, respectively residential and micro-wind turbine, located in Italy. According to the three calculated economic indicators, the wind energy emerged as more favorable than PV energy. From the environmental point of view, both the technologies are able to provide savings for almost all the considered environmental impact categories. The proposed approach, based on the use of economic and environmental indicators may be useful in supporting the policies and the decision making procedures concerned with the promotion and use of renewables, in reference to the specific geographic, economic and temporal conditions.

고해상도 일사량 관측 자료를 이용한 UM-LDAPS 예보 모형 성능평가 (Evaluation of UM-LDAPS Prediction Model for Solar Irradiance by using Ground Observation at Fine Temporal Resolution)

  • 김창기;김현구;강용혁;김진영
    • 한국태양에너지학회 논문집
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    • 제40권5호
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    • pp.13-22
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    • 2020
  • Day ahead forecast is necessary for the electricity market to stabilize the electricity penetration. Numerical weather prediction is usually employed to produce the solar irradiance as well as electric power forecast for longer than 12 hours forecast horizon. Korea Meteorological Administration operates the UM-LDAPS model to produce the 36 hours forecast of hourly total irradiance 4 times a day. This study interpolates the hourly total irradiance into 15 minute instantaneous irradiance and then compare them with observed solar irradiance at four ground stations at 1 minute resolution. Numerical weather prediction model employed here was produced at 00 UTC or 18 UTC from January to December, 2018. To compare the statistical model for the forecast horizon less than 3 hours, smart persistent model is used as a reference model. Relative root mean square error of 15 minute instantaneous irradiance are averaged over all ground stations as being 18.4% and 19.6% initialized at 18 and 00 UTC, respectively. Numerical weather prediction is better than smart persistent model at 1 hour after simulation began.

움직임 벡터 필드의 상관도 향상을 통한 효과적인 MCTF 방법 (Effective MCTF based on Correlation Improvement of Motion Vector Field)

  • 김종호
    • 한국정보통신학회논문지
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    • 제18권5호
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    • pp.1187-1193
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    • 2014
  • 본 논문에서는 웨이블릿 변환 기반의 스케일러블 비디오 부호화의 핵심 요소인 움직임 보상 시간적 필터링 (motion compensated temporal filtering; MCTF)의 성능향상을 위한 효과적인 움직임 예측 기법을 제안한다. MCTF의 성능향상과 밀접한 관련이 있는 픽셀 연결성을 개선하기 위하여 변형 중간값 연산 및 주변 블록의 움직임 벡터를 이용한 움직임 예측 방법으로 움직임 벡터 필드를 평탄화한다. 또한 영상의 복잡도 등의 특성에 따라 가변 블록크기로 움직임 예측을 수행하여 움직임 벡터 필드의 상관도를 더욱 향상시킨다. 제안하는 방법은 시간적 필터링 과정에서 고주파 프레임으로 분해되는 에너지를 줄여 MCTF 및 전체 스케일러블 부호기의 성능을 향상시킨다. 실험결과 기존의 고정 블록크기 전역탐색 방법과 비교하여 제안하는 방법이 시간적 고주파 부대역 프레임에 포함된 에너지를 최대 30.33%까지 감소시키는 것을 확인하였다.

중력모델을 적용한 미세먼지 흐름 패턴 시공간 시각화 (Spatio-temporal Visualization of PM10 Flow Pattern Using Gravity Model)

  • 이건우;염재홍
    • 한국측량학회지
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    • 제37권6호
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    • pp.417-426
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    • 2019
  • 이 연구에서는 미세먼지 시공간 변화 표현의 단점을 개선하고자 미세먼지를 흐름으로 시각화하였다. 일반적으로 미세먼지 흐름 시각화는 농도 분포와 바람장을 중첩해 표현하지만 도시 단위 이하 국지적 이동의 경우 바람과 미세먼지 이동이 다를 수 있으므로 바람장을 사용하는 것이 적합하지 않을 수 있다. 제시하는 시각화 방법론은 미세먼지 자료에서 직접 흐름 정보를 추출한다는 점에서 기존 연구와 차별성을 갖는다. 공간 상호작용을 설명하는 중력모델을 확장한 흐름 추출 방법을 미세먼지 자료에 적용하여 미세먼지 분포 변화에서 흐름 정보를 추출하였다. 이를 위해 공간보간법을 이용하여 미세먼지 분포도를 작성하였으며 추출된 미세먼지 흐름 정보를 물방울 모양의 움직이는 입자를 이용해 동적으로 시각화하였다. 산업 및 교통 활동이 시작하는 오전 5~7시 시간대를 대상으로 서울시 미세먼지 평균 흐름을 시각화하였으며 미세먼지 요인 중 하나인 교통정보와 연계하여 시각적으로 관련성을 분석하였다.

Morphological variability of intertidal Eisenia arborea (Laminariales, Ochrophyta) at Punta Eugenia, Baja California Sur

  • Parada, Gloria M.;Riosmena-Rodriguez, Rafael;Martinez, Enrique A.;Hernandez-Carmona, Gustavo
    • ALGAE
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    • 제27권2호
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    • pp.109-114
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    • 2012
  • Water motion is one of the main drivers in morphological variability in species within de order Laminariales, and most of our current knowledge is based on subtidal populations. $Eisenia$ $arborea$ is a dominant kelp species in the North Pacific, widely distributed along the Baja California Peninsula from mid intertidal down to subtidal areas. This species presents great variability in the intertidal zone but it has not been yet evaluated such variability according to wave exposure. The present work also identifies the spatial / temporal variation, particularly respect to the presence of stipes without medulla (hollow stipes) a feature common among other brown seaweeds. We evaluated the effects of wave action in morphological variation of intertidal $Eisenia$ $arborea$ (Laminariales, Ochrophyta) at Punta Eugenia. The spatial and temporal variation sampling was surveyed between February, May, July, and August 2004 in the intertidal of Punta Eugenia, Baja California Sur. Our results have shown that exposed sites correlate with increased length and width of stipes as compared to more protected sites. Hollow stipes frequency changed more in association with temporal variation than with spatial heterogeneity suggesting nutrient limitation for thalli development. Our results suggest that $Eisenia$ $arborea$ compensate by morphological modifications the stress of living in the intertidal zone by showing larger stipes. Hollow stipes might be are also a mechanical adaptation to increase survival in high energy environments.

도로 주변의 PM10, NOx 및 O3의 시공간적 농도 분포 연구 (Temporal and Spatial Distributions of PM10, NOx and O3 around the Road)

  • 권오열;안영상
    • 한국대기환경학회지
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    • 제22권4호
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    • pp.440-450
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    • 2006
  • PM10, NOx, and $O_3$ were measured at six locations, of which each three is horizontally and vertically distributed respectively, in an apartment complex around the heavily traffic road. Those were measured seven times a day with two hours interval starting from 8 o'clock in the morning for 15 days during May 2005 $\sim$ September 2005. PM10 and NOx showed high concentrations in rush hours while low concentrations in midday due to the direct emissions from automobiles in operation. Temporal variations of 01 showed very much similar trend appeared in normal urban atmospheres. The spatial distributions of PM10, NOx and $O_3$ showed that almost all of concentrations were higher in a row of Roadside > Surface at 130 m apart from the road > Surface at 230 m apart from the road > 3rd floor of apartment building > 15th floor of apartment building > 27th floor of apartment building. Model equations, which can project spatial concentration distributions, were constructed by combining the horizontal and the vertical linear regression equations derived from six mean values corresponding to six measuring locations. According to inter-comparison of PM10, NOx, and $O_3$ with the constructed model equations, concentration gradients were higher in a row of Vertical direction of NOx > Vertical direction of PM10 > Horizontal direction of NOx > Horizontal direction of PMIO > Vertical direction of $O_3$ > Horizontal direction of $O_3$. Why concentration gradient of particulate PM10 is lower than that of gaseous NOx is in question, and should be studied.

객체 탐지 모델을 활용한 전기 아크 위험성 예측 시스템 개발 (Development of Prediction of Electric Arc Risk using Object Dection Model)

  • 이규빈;김승연;안동혁
    • 스마트미디어저널
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    • 제9권1호
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    • pp.38-44
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    • 2020
  • 전기에너지에 대한 높은 의존도 때문에 국내에서 발생하는 화재 중 전기화재가 상당한 비중을 차지한다. 국내에서 발생하는 전기화재 4건 중 3건이 전선의 단락이나 접촉 불량에 의한 전기 아크에 의해 발생했다. 전기 아크란 절연체 사이에서 발생하는 전기적 전류의 방전 현상으로 순간적으로 상당한 열을 내뿜는다. 아크에 의한 전기 화재를 줄이기 위해서 본 연구에서는 전기 아크 위험성 예측을 목표로 한다. 아크 감지기에서 아크 데이터를 수집하고 시간순대로의 아크 데이터를 기반으로 그래프로 변환하였다. 머신 러닝의 데이터 학습에 서로 다른 시계열 데이터의 수로 변환한 그래프들을 사용하였다. 생성된 학습 모델의 성능을 측정하기 위해서 테스트 데이터를 기반으로 평가를 진행하였다. 결과에서 예측 시 사용하는 시계열 아크 데이터의 수가 20개일 때 예측률이 86%로 우수함을 확인하였다.

건물과 지역요인을 고려한 서울시 건물에너지 소비 실증분석 (An Empirical Analysis of Building Energy Consumption Considering Building and Local Factors in Seoul)

  • 이수진;김기중;이승일
    • 국토계획
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    • 제54권5호
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    • pp.129-138
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    • 2019
  • This study aims to empirically examine the relationship between building energy consumption and building and local factors in Seoul. Building energy issue is an important topic for low carbon and eco-friendly city development. Building physical, socio-economic and environmental factors effect to increasing or decreasing energy consumption. However, there are different characteristic in each area, and this kind of variable has a hierarchical structure. The multi-level model was used to consider the hierarchical structure of the variables. In this study, a multi-level model was applied to confirm the difference between areas. Spatial area is Seoul, Korea and the temporal scope is August, summer season. As the result, in Model 1 (Null Model), ICC is 0.817. This shows that the energy consumption differs by 8.174% due to factors at the Dong level. Model 2 (Random Intercept Model) suggests that building's physical factors and Average age, Household size and Land price in Dong level have significant effects on Building energy consumption. In Model 3 (Random Coefficient Model), random effect variables have intercepts and slopes to vary across groups. This study provides a perspective for policy makers that the building energy reduction policies to be applied for buildings should be differently applied on area. Furthermore, not only physical factors but also socio-economic and environmental factors are important when making energy reduction policy.