• 제목/요약/키워드: precipitation distribution type

검색결과 74건 처리시간 0.024초

동해시의 강수 분포 특성 (The Distribution of Precipitation in Donghae-Shi)

  • 이장렬
    • 한국제4기학회지
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    • 제13권1호
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    • pp.45-52
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    • 1999
  • 본 연구에서는 동해시의 강수 분포 특성을 파악하고자(1993~1997) 해안, 동해 레이더 기상대, 서부 산지의 고도 148m, 고도 320m, 고도 842m와 같은 고도의 경포해안, 설악산 관리사무소, 소금강 관리사무소의 AWS, 대관령 기상관측소 등의 일.월별 강수자료를 분석하였다. 이 결과를 요약하면 다음과 같다. 동해시에서 1시간 최다 강수량은 62.4mm, 일 최다 강수량은 200mm, 월 최다 강수량은 355.5mm이고, 일 신적설 최심은 35.5cm이다. 여름철 강수량은 해안에서 서부 산지로 고도가 높아질수록 증가하는 경향이고, 겨울철 강수량은 해안이나 높은 산지에 많은 편이다. 동해시에 나타난 호우 중 강우량이 가장 많았던 경우는 태풍이 통과할 때이고, 그 다음은 장마전선, 저기압 통과 순이다. 일 강수량 20mm 이상이 나타난 날은 총 81일인데 이 중 44일이 여름철에 나타났다. 이는 장마전선의 북상과 오호츠크해 고기압에 의한 북동기류의 유입 때문이다. 동해시에서는 종관 환경 에 따라 해안과 높은 산지에 강설량의 차이가 나타났다.

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우리나라의 연 강수량, 계절 강수량 및 월 강수량의 확률분포형 결정 (The Determination of Probability Distributions of Annual, Seasonal and Monthly Precipitation in Korea)

  • 김동엽;이상호;홍영주;이은재;임상준
    • 한국농림기상학회지
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    • 제12권2호
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    • pp.83-94
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    • 2010
  • 본 연구의 목적은 우리나라의 연 강수량, 계절 강수 량 그리고 월 강수량의 최적 확률분포형을 선정하는 것이다. 이를 위해서 전국 32개의 강우 관측소에서 얻은 자료에 대하여 L-모멘트 비 다이어그램과 평균가중거리 값을 이용하여 각 강수량별 최적 확률분포를 산정하였으며, 최종적으로 선정된 최적 확률분포형을 관측 지점별로 적합도 검정을 실시하였다. 그 결과, 연강수량에서는 3변수 Weibull 분포(W3), 봄과 가을에는 3변수 대수정규분포(LN3), 여름과 겨울에는 일반화된 극치분포(GEV)가 관측값에 가장 잘 적합하는 것으로 나타났다. 또한, 월 강수량에서는 1월은 LN3, 2월과 7월은 W3, 3월은 2변수 Weibull 분포(W2), 4월, 9월, 10월, 11월은 일반화된 Pareto 분포(GPA), 5월과 6월은 GEV, 그리고 8월과 12월은 log-Pearson type III 분포(LP3)가 가장 잘 적합하였다. 하지만, 최적 확률분포형의 지점별 적합도 검정의 결과, 1월, 4월, 9월, 10월, 11월의 GPA와 LN3에 대한 기각율이 확률 분포의 매개변수 추정에서의 오류와 상대적으로 높은 AWD 값으로 인하여 매우 높게 나타났다. 한편, 23개 관측소의 자료를 추가하여 분석해본 결과 기존의 32개 의 관측소 자료를 이용한 것과 큰 차이를 나타내지 않았다. 종합적으로 보다 적합한 확률분포형을 선정하기 위해서는 더 장기간의 표본자료를 이용한 추가적인 연구가 필요할 것으로 판단된다.

기후변화에 따른 유통산업의 핵심 기상요인과 기업의 경제적 효율성 (Firm's Economic Efficiency and Critical Weather Information in Distribution Industry by Climate Change)

  • 이중우;고광근;전진환
    • 한국환경과학회지
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    • 제19권6호
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    • pp.787-797
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    • 2010
  • Nowadays meteorological information is systemized as a useful knowledge which has a significant effect on the overall industrial domains over the simple data. The distribution industry, which has the short life cycle, depends on the meteorological information at the strategic level. However, it is necessary to pay attention to the continuous investment in meteorological information because there is a hostility to paying for a service, particularly it does not provide accurate and reliable information. Therefore, the purpose of this study is to increase the usefulness of meteorological information in the distribution industry for its economic effectiveness from the core meteorological factors. We found significant meteorological factors (temperature, precipitation, disaster) that have a critical influence on the distribution industry through the hierarchical analysis process, and their importance according to the type of distribution channels, such as department store, large-scale discount store, convenience store, and home shopping. We performed the AHP analysis with 103 survey samples by middle managers from the various distribution channels. We found that precipitation is the critical meteorological factor across the distribution industry. Based on this result, we stress the difference in the level of the meteorological information in order for the effectiveness of each type of distribution channels.

Sensitivity of Indian Summer Monsoon Precipitation to Parameterization Schemes

  • Singh, G.P.
    • 한국제4기학회지
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    • 제24권1호
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    • pp.1-10
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    • 2010
  • The Indian summer monsoon behaved an abnormal way in 2002 and as a result there was a large deficiency in precipitation (especially in July) over a large part of the Indian subcontinent. For the study of deficient monsoon of 2002, a recent version of the NCAR regional climate model (RegCM3) has been used to examine the important features of summer monsoon circulations and precipitation during 2002. The main characteristics of wind fields at lower level (850 hPa) and upper level (200 hPa) and precipitation simulated with the RegCM3 over the Indian subcontinent are studied using different cumulus parameterization schemes namely, mass flux schemes, a simplified Kuo-type scheme and Emanuel (EMU) scheme. The monsoon circulation features simulated by RegCM3 are compared with the NCEP/NCAR reanalysis and simulated precipitation is validated against observation from the Global Precipitation Climatology Centre (GPCC). Validation of the wind fields at lower and upper levels show that the use of Arakawa and Schubert (AS) closure in Grell convection scheme, a Kuo type and Emanuel schemes produces results close to the NCEP/NCAR reanalysis. Similarly, precipitation simulated with RegCM3 over different homogeneous zones of India with the AS closure in Grell is more close to the corresponding observed monthly and seasonal values. RegcM3 simulation also captured the spatial distribution of deficient rainfall in 2002.

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Simulation of anomalous Indian Summer Monsoon of 2002 with a Regional Climate Model

  • Singh, G.P.;Oh, Jai-Ho
    • 한국제4기학회지
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    • 제22권1호
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    • pp.13-22
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    • 2008
  • The Indian summer monsoon behaved in an abnormal way in 2002 and as a result there was a large deficiency in precipitation (especially in July) over a large part of the Indian subcontinent. For the study of deficient monsoon of 2002, a recent version of the NCAR regional climate model (RegCM3) has been used to examine the important features of summer monsoon circulations and precipitation during 2002. The main characteristics of wind fields at lower level (850 hPa) and upper level (200 hPa) and precipitation simulated with the RegCM3 over the Indian subcontinent are studied using different cumulus parameterization schemes namely, mass flux schemes, a simplified Kuo-type scheme and Emanuel (EMU) scheme. The monsoon circulation features simulated by RegCM3 are compared with the NCEP/NCAR reanalysis and simulated precipitation is validated against observation from the Global Precipitation Climatology Centre (GPCC). Validation of the wind fields at lower and upper levels shows that the use of Arakawa and Schubert (AS) closure in Grell convection scheme, a Kuo type and Emanuel schemes produces results close to the NCEP/NCAR reanalysis. Similarly, precipitation simulated with RegCM3 over different homogeneous zones of India with the AS closure in Grell is more close to the corresponding observed monthly and seasonal values. RegcM3 simulation also captured the spatial distribution of deficient rainfall in 2002.

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위성 기반 재분석 강수 자료를 이용한 한반도 격자형 확률강수량 산정 (Estimation of grid-type precipitation quantile using satellite based re-analysis precipitation data in Korean peninsula)

  • 이진욱;전창현;김현준;변종윤;백종진
    • 한국수자원학회논문집
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    • 제55권6호
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    • pp.447-459
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    • 2022
  • 본 연구에서는 위성 기반 재분석 강수 자료인 PERSIANN-CCS-CDR (Precipitation Estimation from Remotely Sensed Information using Artificial Neural Networks-Cloud Classification System-Climate Data Record)을 이용하여 한반도에 대한 격자형 확률강수량을 산정하였다. 고려된 기간은 1983년부터 2020년까지 총 38개년이다. 사용된 자료의 공간해상도는 0.04°이며, 시간해상도는 3시간이다. 확률분포로는 빈도해석을 위해 일반적으로 사용되고 있는 Gumbel 분포를 사용하였으며, 매개변수 추정을 위해 확률가중모멘트법을 적용하였다. 지속기간은 3시간부터 144시간 까지, 재현기간은 2년부터 500년까지가 고려되었다. 이러한 방식으로 산정된 결과를 지상우량계인 ASOS (Automated Synoptic Observing System) 기상관측소의 강수 자료를 활용하여 산정된 확률강수량과 비교·검토하였다. 그 결과, PERSIANN-CCS-CDR 자료로부터 산정된 Gumbel 분포의 매개변수들은 지속기간이 증가함에 따라 ASOS의 결과들과 유사한 양상을 보였으며 이를 토대로 얻어진 확률강수량은 지속기간이 짧은 경우 다소 큰 차이를 보였으나, 지속기간이 18 h 이상인 경우 그 차이는 약 20% 이내로 감소함을 확인하였다. 추가적으로, 남북한 차이를 살펴보았으며 Gumbel 분포 매개변수들 중 위치 매개변수의 차이가 두드러지게 나타남을 확인하였다. 지속기간의 증가에 따른 북한의 확률강수량이 상대적으로 작게 나타났으며, 지속기간 3 h 기준 남한의 84%, 지속기간 144 h 기준 70~75% 수준인 것으로 확인되었다.

관측망 밀도가 기상 자료의 격자형 수평 분포에 미치는 영향 (Effects of Network Density on Gridded Horizontal Distribution of Meteorological Variables in the Seoul Metropolitan Area)

  • 강민수;박문수;채정훈;민재식;정보연;한성의
    • 대기
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    • 제29권2호
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    • pp.183-196
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    • 2019
  • High-quality and high-resolution meteorological information is essential to reduce damages due to disastrous weather phenomena such as flash flood, strong wind, and heat/cold waves. There are many meteorological observation stations operated by Korea Meteorological Administration (KMA) in Seoul Metropolitan Area (SMA). Nonetheless, they are still not enough to represent small-scale weather phenomena like convective storm cells due to its poor resolution, especially over urban areas with high-rise buildings and complex land use. In this study, feasibilities to use additional pre-existing networks (e.g., operated by local government and private company) are tested by investigating the effects of network density on the gridded horizontal distribution of two meteorological variables (temperature and precipitation). Two heat wave event days and two precipitation events are chosen, respectively. And the automatic weather station (AWS) networks operated by KMA, local-government, and SKTechX in Incheon area are used. It is found that as network density increases, correlation coefficients between the interpolated values with a horizontal resolution of 350 m and observed data also become large. The range of correlation coefficients with respect to the network density shows large in nighttime rather than in daytime for temperature. While, the range does not depend on the time of day, but on the precipitation type and horizontal distribution of convection cells. This study suggests that temperature and precipitation sensors should be added at points with large horizontal inhomogeneity of land use or topography to represent the horizontal features with a resolution higher than 350 m.

대기 모형에서의 벌크형 미세구름물리 모수화 방안 (Bulk-Type Cloud Microphysics Parameterization in Atmospheric Models)

  • 임교선
    • 대기
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    • 제29권2호
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    • pp.227-239
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    • 2019
  • This paper reviews various bulk-type cloud microphysics parameterizations (BCMPs). BCMP, predicting the moments of size distribution of hydrometeors, parameterizes the grid-resolved cloud and precipitation processes in atmospheric models. The generalized gamma distribution is mainly applied to represent the hydrometeors size distribution in BCMPs. BCMP can be divided in three different methods such as single-moment, double-moment, and triple-moment approaches depending on the number of prognostic variables. Single-moment approach only predicts the hydrometeors mixing ratio. Double-moment approach predicts not only the hydrometeors mixing ratio but also the hydrometeors number concentration. Triple-moment approach predicts the dispersion parameter of hydrometeors size distribution through the prognostic reflectivity, together with the number concentrations and mixing ratios of hydrometeors. Triple-moment approach is the most time expensive method because it has the most number of prognostic variables. However, this approach can allow more flexibility in representing hydrometeors size distribution relative to single-moment and double-moment approaches. At the early stage of the development of BMCPs, warm rain processes were only included. Ice-phase categories such as cloud ice, snow, graupel, and hail were included in BCMPs with prescribed properties for densities and sedimentation velocities of ice-phase hydrometeors since 1980s. Recently, to avoid fixed properties for ice-phase hydrometeors and ad-hoc category conversion, the new approach was proposed in which rimed ice and deposition ice mixing ratios are predicted with total ice number concentration and volume.

보일러용 고강도 T23강의 용접부 손상 원인 분석 (Diagnosis of cracking in T23 welds for power plant application)

  • 박기덕;안종석;신동혁;이창희
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.61-61
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    • 2009
  • This paper has been performed in order to figure out the reason of failure in T23 weldments used for boiler tube at 550 $^{\circ}C$. Defects such as cracks and cavities occurred in CGHAZ (coarse grain heat-affected-zone) and multi pass of weld metal, and these crack propagated along grain boundary. Microstructure evolution such as grain growth and carbide precipitation was investigated by optical microscope (OM), transmission electron microscope(TEM). Moreover, Auger electron spectroscope (AES) was employed in order to examine segregation along the grain boundaries. There is significant difference in grain size and precipitation distribution in the region where cracking took place. In addition, sulfur segregation was observed. Based on the results of this investigation, it has been possible to establish that this type of cracks were consistent with reheat cracking and creep damage. Selection of optimal filler metal, heat input, and PWHT temperature is required for prevention in order to avoid this type of cracking.

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WRF 모형의 적운 모수화 방안이 CORDEX 동아시아 2단계 지역의 기후 모의에 미치는 영향 (Impact of Cumulus Parameterization Schemes on the Regional Climate Simulation for the Domain of CORDEX-East Asia Phase 2 Using WRF Model)

  • 최연우;안중배
    • 대기
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    • 제27권1호
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    • pp.105-118
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    • 2017
  • This study assesses the performance of the Weather Research and Forecasting (WRF) model in reproducing regional climate over CORDEX-East Asia Phase 2 domain with different cumulus parameterization schemes [Kain-Fritch (KF), Betts-Miller-Janjic (BM), and Grell-Devenyi-Ensemble (GD)]. The model is integrated for 27 months from January 1979 to March 1981 and the initial and boundary conditions are derived from European Centre for Medium-Range Weather Forecast Interim Reanalysis (ERA-Interim). The WRF model reasonably reproduces the temperature and precipitation characteristics over East Asia, but the regional scale responses are very sensitive to cumulus parameterization schemes. In terms of mean bias, WRF model with BM scheme shows the best performance in terms of summer/winter mean precipitation as well as summer mean temperature throughout the North East Asia. In contrast, the seasonal mean precipitation is generally overestimated (underestimated) by KF (GD) scheme. In addition, the seasonal variation of the temperature and precipitation is well simulated by WRF model, but with an overestimation in summer precipitation derived from KF experiment and with an underestimation in wet season precipitation from BM and GD schemes. Also, the frequency distribution of daily precipitation derived from KF and BM experiments (GD experiment) is well reproduced, except for the overestimation (underestimation) in the intensity range above (less) then $2.5mm\;d^{-1}$. In the case of the amount of daily precipitation, all experiments tend to underestimate (overestimate) the amount of daily precipitation in the low-intensity range < $4mm\;d^{-1}$ (high-intensity range > $12mm\;d^{-1}$). This type of error is largest in the KF experiment.