• 제목/요약/키워드: meteorological phenomena

검색결과 166건 처리시간 0.024초

Wind characteristics of a strong typhoon in marine surface boundary layer

  • Song, Lili;Li, Q.S.;Chen, Wenchao;Qin, Peng;Huang, Haohui;He, Y.C.
    • Wind and Structures
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    • 제15권1호
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    • pp.1-15
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    • 2012
  • High-resolution wind data were acquired from a 100-m high offshore tower during the passage of Typhoon Hagupit in September, 2008. The meteorological tower was equipped with an ultrasonic anemometer and a number of cup anemometers at heights between 10 and 100 m. Wind characteristics of the strong typhoon, such as mean wind speed and wind direction, turbulence intensity, turbulence integral length scale, gust factor and power spectra of wind velocity, vertical profiles of mean wind speed were investigated in detail based on the wind data recorded during the strong typhoon. The measured results revealed that the wind characteristics in different stages during the typhoon varied remarkably. Through comparison with non-typhoon wind measurements, the phenomena of enhanced levels of turbulence intensity, gust factors, turbulence integral length scale and spectral magnitudes in typhoon boundary layer were observed. The monitored data and analysis results are expected to be useful for the wind-resistant design of offshore structures and buildings on seashores in typhoon-prone regions.

EAP 액추에이터를 이용한 해양 정보 취득용 무선 전원 발생에 관한 연구 (A study on wireless power generation for marine information acquisition using EAP actuator)

  • 정은아;이기윤;정황훈;윤소남
    • 동력기계공학회지
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    • 제15권5호
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    • pp.49-53
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    • 2011
  • This study concerns about wireless power generation that uses the energy harvester with EAP actuator. The UWSN(Underwater Wireless Sensor Network) has been considered many times by many researches. Because the information of underwater is getting important to secure the resource or to predict the meteorological phenomena. But the sensor node in the UWSN is driven by the acoustic wave to communicate with other sensor node. And this acoustic wave usually spends a 100 times energy than the RF(Radio Frequency) wave due to transfermation medium(sea water). Therefore the power source of the sensor node is very important that is needed to improve in the UWSN. For this purpose, the energy harvester is made by the acrylic elastomer in this study. And the electrode is modified with an aluminum impurity to improve the efficiency of energy harvester. After that, the modified energy harvester is experimented to confirm the improvement of the energy efficiency.

Frequency analysis of nonidentically distributed large-scale hydrometeorological extremes for South Korea

  • Lee, Taesam;Jeong, Changsam;Park, Taewoong
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.537-537
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    • 2015
  • In recent decades, the independence and identical distribution (iid) assumption for extreme events has been shown to be invalid in many cases because long-term climate variability resulting from phenomena such as the Pacific decadal variability and El Nino-Southern Oscillation may induce varying meteorological systems such as persistent wet years and dry years. Therefore, in the current study we propose a new parameter estimation method for probability distribution models to more accurately predict the magnitude of future extreme events when the iid assumption of probability distributions for large-scale climate variability is not adequate. The proposed parameter estimation is based on a metaheuristic approach and is derived from the objective function of the rth power probability-weighted sum of observations in increasing order. The combination of two distributions, gamma and generalized extreme value (GEV), was fitted to the GEV distribution in a simulation study. In addition, a case study examining the annual hourly maximum precipitation of all stations in South Korea was performed to evaluate the performance of the proposed approach. The results of the simulation study and case study indicate that the proposed metaheuristic parameter estimation method is an effective alternative for accurately selecting the rth power when the iid assumption of extreme hydrometeorological events is not valid for large-scale climate variability. The maximum likelihood estimate is more accurate with a low mixing probability, and the probability-weighted moment method is a moderately effective option.

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공동주택 침기의 불확실성 분석 (Infiltration in Residential Buildings under Uncertainty)

  • 현세훈;박철수;문현준
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2006년도 하계학술발표대회 논문집
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    • pp.369-374
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    • 2006
  • Quantification of infiltration rate is an important issue in HVAC system design. The infiltration in buildings depends on many uncertain parameters that vary with significant magnitude and hence, the results from standard deterministic simulation approach can be unreliable. The authors utilize uncertainty analysis In predicting the airflow rates. The paper presents relevant uncertain parameters such as meteorological data, building parameters (leakage areas of windows, doors, etc.), etc. Uncertainties of the aforementioned parameters are quantified based on available data from literature. Then, the Latin Hypercube Sampling (LHS) method was used for the uncertainty propagation. The LHS is one of the Monte Carlo simulation techniques that is suited for our needs. The CONTAMW was chosen to simulate infiltration phenomena in a residential apartment that is typical of residential buildings in Korea. It will be shown that the uncertainty propagating through this process is not negligible and may significantly influence the prediction of the airflow rates.

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기후변화를 고려한 화학물질거동모형의 도시·산단지역 적용성 연구 (Applicability Analysis of Chemical Fate Model Considering Climate Change Impact in Municipal and Industrial Areas in Korea)

  • 유선녀;이우균
    • 한국기후변화학회지
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    • 제6권2호
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    • pp.121-131
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    • 2015
  • As the temperature has changed by climate change, changes in its own characteristic values of the chemical substance or the movement and distribution of chemicals take place in accordance with the changes of hydrological and meteorological phenomena. Depending on the impact of climate change on the chemical behavior, it is necessary to understand and predict quantitative changes in the dynamics of the environment of pollutants due to climate change in order to predict in advance the occurrence of environmental disasters, and minimize the impact on the life and the environment after the incident. In this study, we have analysed and compared chemical fate models validated by previous studies in terms of model configuration, application size and input/output factors. The potential models applicable to municipal and industrial areas were selected on the basis of characteristic of each model, availability of input parameters and consideration for climate change, identified the problems, and then presented an approach to improve applicability.

Seismic response of operational tunnels to earthquakes with foreshocks or aftershocks

  • Junyoung Lee;Jae-Kwang Ahn;Byungmin Kim
    • Geomechanics and Engineering
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    • 제38권6호
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    • pp.621-631
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    • 2024
  • In designing earthquake-resistant structures, we traditionally select dynamic loads based on the recurrence period of earthquakes, using individual seismic records or aligning them with the design spectrum. However, these records often represent isolated waveforms lacking continuity, underscoring the need for a deeper understanding of natural seismic phenomena. The Earth's crustal movement, both before and after a significant earthquake, can trigger a series of both minor and major seismic events. These minor earthquakes, which often occur in short time before or after the major seismic events, prompt a critical reassessment of their potential impact on structural design. In this study, we conducted a detailed tunnel response analysis to assess the impact of both single mainshock and multiple earthquake scenarios (including foreshock-mainshock and mainshock-aftershock sequences). Utilizing numerical analysis, we explored how multiple earthquakes affect tunnel deformation. Our findings reveal that sequential seismic events, even those of moderate magnitude, can exert considerable stress on tunnel lining, resulting in heightened bending stress and permanent displacement. This research highlights a significant insight: current seismic design methodologies, which predominantly focus on the largest seismic intensity, may fail to account for the cumulative impact of smaller, yet frequent, seismic events like foreshocks and aftershocks. Our results demonstrate that dynamic analyses considering only a single mainshock are likely to underestimate the potential damage (i.e., ovaling deformation, failure lining, permanent displacement etc.) when compared to analyses that incorporate multiple earthquake scenarios.

GNSS 가강수량과 기상인자의 상호 연관성 분석 (Comparative Analysis of GNSS Precipitable Water Vapor and Meteorological Factors)

  • 김재섭;배태석
    • 한국측량학회지
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    • 제33권4호
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    • pp.317-324
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    • 2015
  • GNSS 기상학은 1980년 중반 기상 분야에 활용 가능성이 제기된 후, 전 세계적으로 실용화 가능성이 입증되고 있으며, 현재 기상현업에 활용하기 위한 연구가 활발히 진행되고 있다. GNSS 신호의 대류권 지연오차에 기반하여 산출한 가강수량은 대기 중 수증기량을 나타낸 것으로, 기후 모니터링, 기후의 변화 탐지 등 다양한 기상현상 분석에 많이 사용되고 있다. 본 연구에서는 2014년 2월 울산에 내린 폭설현상 분석을 위해 GNSS 상시관측소와 자동기상관측장치에서 제공하는 기상관측 정보를 이용하여 가강수량을 산출하였다. 산출 과정 중 중요한 파라미터인 가중 평균 기온식은 송동섭의 모델을 적용하였다(Song, 2009a). 연구기간은 폭설이 발생한 2014년 2월과 폭설이 발생하지 않은 2013년 2월의 총 56일이다. 2014년 2월 가강수량의 평균은 11.29mm로 산출 되었으며, 폭설이 발생한 2월 9일부터 12일까지 평균 가강수량은 10.14mm로 전체 평균값보다 11.34% 낮은 값을 보였다. 폭설이 내리지 않은 2013년 2월 가강수량의 평균은 10.34mm로 2014년 평균보다 8.41% 낮은 값을 보였다. 또한 가강수량 외 AWS에서 제공하는 다른 기상인자들과 비교하여 폭설 현상에 대한 분석을 수행하였다. 그 결과 Magnus 경험식을 통해 산출한 포화수증기압 경우 GNSS 가강수량과 0.29의 낮은 상관성을 나타내었다. 또한 기상인자의 종류(강설, 강우)에 따라 가강수량의 증감패턴이 다르게 나타났으며, 강수량이 발생하기 평균 6.5시간 전에 가강수량 값이 급격히 증가한 후 감소하는 경향을 확인할 수 있었다. 이를 통해 GNSS 가강수량 패턴분석이 강수량 전조현상 분석에 유효할 것으로 판단된다.

전구강수관측(GPM) 활용을 위한 제언 (Proposing Research and Development Activities for Utilizing the Global Precipitation Measurement (GPM))

  • 손병주;남재철;박선기;안명환;유정문;이희상;장동언;허창회;배덕효;김성준;오현종;박성찬;김주홍
    • 대기
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    • 제15권1호
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    • pp.47-57
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    • 2005
  • Extending the success of the Tropical Rainfall Measuring Mission (TRMM), the spaceborne measurement of precipitation by Global Precipitation Measurement (GPM) is initiated. The GPM consists of a core satellite which will have a dual-frequency precipitation radar (DPR) and a constellation of small satellites equipped with microwave radiometers. The GPM is inherently a global program. Responding to the GPM plan, many other nations are much interested in participating in the GPM team or simply utilizing GPM products aiming at the development of meteorological technology. Korea can fully function its role if Korea is selected as a CAL/VAL site for the GPM because Korea maintains a well-established dense rain gauge network (AWS), precipitation radars, and the Haenam super site for surface observation. In this feasibility study, the necessities of the GPM project in the context of academical and social backgrounds and associated international and domestic activities are investigated. And GPM-related core technologies and application areas are defined. As a result, it is found that GPM will represent a great opportunity for us because of its ability to provide not only much enhanced three-hourly global rain products but also very useful tools for the enhancement of weather forecasting capabilities, management of water resources, development and implementation of monitoring techniques for severe weather phenomena, agricultural managements and climate application. Furthermore, rain retrieval and CAL/VAL technologies obtained during the involvement in the international GPM project will serve as basic knowledges to run our own geostationary satellite program.

풍력단지개발 예비타당성 평가를 위한 모델의 WRF 풍황자원 예측 정확도 검증 (Verification of the Validity of WRF Model for Wind Resource Assessment in Wind Farm Pre-feasibility Studies)

  • 허수영;김범석;허종철
    • 대한기계학회논문집B
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    • 제39권9호
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    • pp.735-742
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    • 2015
  • 본 논문에서는 국지적 기상현상의 모사가 가능하고 AWS, 기상탑, 또는 위성자료의 입력이 필요치 않은 WRF 기상수치모델을 이용하여, 풍력단지의 풍황자원 예측정확도 및 적용타당성을 비교 검증하고자 한다. 풍력단지개발 예비타당성단계에서 요구되는 풍황자원 예측을 위한 WRF 모델의 적용타당성 검증을 위해, 기상탑 풍황측정자료와 WAsP에 의한 풍황자원 예측결과와의 비교 검증을 수행하였고 제주도 북서쪽에 위치한 평대와 우도사이트를 비교 검증용 사이트로 선정하였다. 연 월평균풍속, 와이블분포, 연간발전량 및 바람장미의 예측결과가 실측자료와 비교 검증되었고 WRF 모델의 풍황해석결과는 WAsP의 결과에 비해 높은 예측 정확도를 나타내었다. 풍력단지개발 예비타당성 평가를 위한 WRF 모델의 풍황자원 예측가능성이 최종적으로 확인되었다.

하천 및 녹지와 온도의 관계에 대한 기초적 연구 - 청계천 복원을 중심으로 - (A Fundamental Study on the Relationship Between Riparian Vegetation and Surface Temperature - Focused on Cheonggaecheon Stream Restoration -)

  • 김재욱;이동근;오규식;성현찬
    • 한국환경복원기술학회지
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    • 제6권3호
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    • pp.79-85
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    • 2003
  • Human beings have pursued development and economic betterment; thus, enhancing convenience and prosperity. A flourish of human civilization upon the industrialization results a massive urbanization. However, human beings have connived the environmental importance in the course of rapid urbanization. The environmental quality now becomes one of the most important factors that determine the quality of life in a city. Many studies were proceeded about the heat island effect in large cities. In general, most studies have been done to investigate urban microclimate phenomena using meteorological network or AWS (automatic weather station) data. Those preceding studies do not seem to sufficiently reflect the and thus, failed to show regional representative. In this study, temporal Landsat TM satellite imageries of May 20, 1987 and May 21, 1999 were 뻐d in order to detect the surface temperature of the study area using the band 6 ($10.4{\mu}m{\sim}12.5{\mu}m$). The surface temperature distribution detected by the band 6 of Landsat TM was over layed with the land cover classification data in order to investigate the temperature difference of the paved road and the riparian areas of the stream. As a result, a surface temperature difference as much as $3^{\circ}C$ between the paved road and the riparian areas with vegetation was observed. This study concludes that the land cover change is one of the main causes of urban heat island effect which may be closely affected by the paved areas and roads. Besides, the change of the atmospheric temperature followed by the urban secular change could have been confirmed. In the case of Yangjaecheon stream which underwent a heavy environmental restoration in 1995, the temperature was decreased as much as $0.6^{\circ}C$ after the restoration. The results of this study is expected to contribute to develop an urban space in harmony with the healthy human life and the environment respecting the crucial role of vegetation to stabilize the urban environmental dynamics.