• 제목/요약/키워드: precipitation region

검색결과 566건 처리시간 0.026초

송이(Tricholoma matsutake)생산(生産)과 관련되는 기후특성분석(氣候特性分析) (Studies on Analyzing Meteorological Elements Related with Yield of Tricholoma matsutake (S. Ito et Imai) Singer.)

  • 강안석;차동열;김양섭;박용환;유창현
    • 한국균학회지
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    • 제17권2호
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    • pp.51-56
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    • 1989
  • 송이 인공재배(人工栽培)의 기초자료(基礎資料)로 활용하고자 송이생산과 관련되는 기후특성(氣候特性)을 분석(分析)하여 다음과 같은 결과(結果)를 얻었다. 1. 10년간(年間) 연평균(年平均) 송이 수량(收量)이 30.000 kg을 상회하는 지역은 양양 등 6개 지역이 있었으며 송이생산지역은 동해안지대, 소백산지대, 영남내륙지대, 중부내륙지대의 일부지역(一部地域)에 편중되어 있음. 2. 송이생산지역의 연평균 기온은 $10{\sim}13^{\circ}C$ 범위였고 강수량은 $1000{\sim}1300mm$의 범위였으며 송이 수량(收量)과 연평균(年平均) 강수량, 연평균(年平均) 기온과의 관계(關係)는 일정한 경향이 없었음. 3. 조사지역(調査地域)(표고(標高) 110-130 m)의 송이발생기의 기온은 $15{\sim}25^{\circ}C$, 지온(地溫)은 $15{\sim}20^{\circ}C$ 범위였음. 4. 송이 수량예측 요인은 전년(前年) $4{\sim}10$월 강수량, $7{\sim}9$월 평균(平均) 최저기온(最低氣溫), $8.{\;}21{\sim}9.{\;}10$일 강수일수, $9.{\;}11{\sim}9.{\;}30$일 강수량 등이었음 5. 지온조사(地溫調査)로 송이 첫 발생시기의 예측이 가능(可能)하였음.

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내염성 식물의 탐색 및 생물학적 염해 모니터링 기술의 개발 1. 염해지 식생분석 및 식물종의 내염성 평가 (Screening of saline tolerant plants and development of biological monitoring technique for saline stress . 1. Survey of vegetation in saline region and determination of saline tolerance of the plant species of the region.)

  • 강병화;심상인
    • 한국환경농학회지
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    • 제17권1호
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    • pp.26-33
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    • 1998
  • 우리나라 염해지의 식생 현황과 식물의 염분에 대한 내성 정도를 알아보기 위해 본 실험을 수행한 결과는 다음과 같다. 간척지를 비롯한 염해지의 주요 우점초종은 명아주과의 나문재, 칠면초, 해흥나물, 퉁퉁마디와 국화과의 갯개미취 등이었으며 탈염이 진행된 곳에는 부들, 갈대, 갯꾸러미풀 등의 화본과 식물이 우점하였다. 염해지의 우점 초종은 양액에 NaCl을 200mM로 첨가하여 실시한 사경재배에서도 강한 내염성을 나타내어 간척지의 식생과 이들의 내염성과는 일치성을 나타냈다. 내염성 식물인 명아주과의 나문재, 해흥나물, 가는갯는쟁이, 칠면초와 갯개미취 등이 내염성이 강한 식물종이었으며, 마디풀과의 개여뀌, 큰개여뀌, 털여뀌와 국화과의 별꽃아재비, 진득찰 등은 내염성이 매우 약한 종으로 나타났다. 갯벌 간척 후 탈염이 진행됨에 따라 초기에는 명아주과의 나문재, 해흥나물, 칠면조 등이 우점하고 이후에는 갯개미자리, 갯질경, 갯골풀, 갯꾸러미풀 등이 우점하게되고 이후에는 물대, 갈대 등이 우점하게될 것으로 추정되었다.

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기상연구소 3개월 예측시스템의 예측성 평가 (Predictability of the Seasonal Simulation by the METRI 3-month Prediction System)

  • 변영화;송지혜;박수희;임한철
    • 대기
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    • 제17권1호
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    • pp.27-44
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    • 2007
  • The purpose of this study is to investigate predictability of the seasonal simulation by the METRI (Meteorological Research Institute) AGCM (Atmospheric General Circulation Model), which is a long-term prediction model for the METRI 3-month prediction system. We examine the performance skill of climate simulation and predictability by the analysis of variance of the METRI AGCM, focusing on the precipitation, 850 hPa temperature, and 500 hPa geopotential height. According to the result, the METRI AGCM shows systematic errors with seasonal march, and represents large errors over the equatorial region, compared to the observation. Also, the response of the METRI AGCM by the variation of the sea surface temperature is obvious for the wintertime and springtime. However, the METRI AGCM does not show the significant ENSO-related signal in autumn. In case of prediction over the east Asian region, errors between the prediction results and the observation are not quite large with the lead-time. However, in the predictability assessment using the analysis of variance method, longer lead-time makes the prediction better, and the predictability becomes better in the springtime.

남강유역 지류·지천별 영향도 평가 (The Estimation of Contribution Ratio for Sub Stream in Nam River Basin)

  • 이재운;권헌각;곽인수;윤종수;천세억
    • 환경영향평가
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    • 제21권5호
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    • pp.745-755
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    • 2012
  • The relations between tributaries and mainstream were identified with the water qualities measurements in the field. Parameters of water qualities were BOD, T-N, T-P and measurements were performed by 4 events of rainfalls for 2011. The precipitation data influenced on pollutants loads. Pollutants loads were fluctuations with the seasonal variation. Gajoacheon contributed in 18.39% of BOD, 23.79% of T-N, 15.23% of T-P and Nabulcheon contributed in 13.54% of BOD, 13.05% of T-N and 13.66% of T-P in the region from Nam River_C to Nam River_D. In case of the region from Nam River_C to Nam River_D, Yongacheon river inflowed to main stream as 23.65% of BOD, 20.74% of T-N, and 15.05% of T-P.

수퍼 마르텐사이트계 스테인리스강의 질소침투 열처리 (A Study on Nitrogen Permeation Heat Treatment of Super Martensitic Stainless Steel)

  • 유대경;성장현
    • 열처리공학회지
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    • 제19권1호
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    • pp.3-9
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    • 2006
  • The phase changes, nitride precipitation and hardness variations of 14%Cr-6.7Ni-0.65Mo-0.26Nb-0.05V-0.03C super martensitic stainless steel were investigated after nitrogen permeation heat treatment at a temperature range between $1050^{\circ}C$ and $1150^{\circ}C$. The nitrogen-permeated surface layer was transformed into austenite. The rectangular type NbN, NbCrN precipitates and fine round type precipitate were coexisted in the surface austenite layer, while the interior region that was free from nitrogen permeation kept the martensitic phase. The hardness of surface austenite showed 280 Hv, while the interior region of martensite phase represented 340 Hv. When tempering the nitrogen-permeated steel at $450^{\circ}C$, a maximum hardness of 433 Hv was appeared, probably this is attributed to the secondary hardening effect of the precipitates. The nitrogen concentration decreased gradually with increasing depth below the surface after showing a maximum of 0.3% at the outmost surface. The strong affinity between nitrogen and Cr enabled the substitutional element Cr to move from interiors to the surface when nitrogen diffuse form surface to the interior. Corrosion resistance of nitrogen permeated steel was superior to that of solution-anneaed steel in the solution of 1N $H_2SO_4$.

Rainwater Harvesting Potential in a New Residential Area in North Bujumbura, Burundi

  • Kheria, Mfuranzima;Kang, Daeseok;Sung, Kijune
    • 한국환경과학회지
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    • 제25권3호
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    • pp.447-456
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    • 2016
  • Access to clean and affordable water is one of the fundamental human rights because water is essential to life and a foundation for socioeconomic development of any country in the world. Despite the efforts to secure water supply in Burundi, the amount of water supplied by public utilities does not meet the demand of the population because population keeps increasing with fluctuation of weather conditions. This study selected north Bujumbura that is a sprawling new residential area in the western part of Burundi as a case to investigate the potential of rainwater harvesting in meeting water demand of the country. Based on a long-term average monthly precipitation in the region, the rainwater harvesting potential was assessed as a function of roof sizes, number of households, and runoff coefficients of roof materials. For the entire region of north Bujumbura, the current water supply capacity of the local water company combined with the rainwater harvesting potential resulted in the water surplus of $468,604.1m^3/yr$. Although three communes among them still showed water deficit in dry season, they still got help from rainwater to relieve their water shortage. This suggests that at the regional scale, proper storages and water quality control for harvestable rainwater could contribute to relieving the regional water shortage and allow the population growth.

황해 지역의 질소와 황 침적 추정 (Estimation of Nitrogen and Sulfur Deposition over the Yellow Sea Region)

  • 김진영;김영성;이승복;문길주
    • 한국대기환경학회지
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    • 제19권2호
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    • pp.217-229
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    • 2003
  • The amounts of nitrogen and sulfur deposited in the region of the Yellow Sea in both dry and wet forms were estimated by using the measurement data published in tile literature during tile past 10 years. In the estimation of dry deposition, concentrations at ground stations including those at a station on the Chinese side and concentrations from shipboard and aircraft measurements were used as well as deposition velocities. Wet deposition flux was determined at ground stations on the Korean side either by taking the flux data themselves or by calculating them from precipitation data in the literature. The dry deposition flux over the Yellow Sea was much greater than those China was confirmed from the fact that the total amount summing wet and dry depositions exceeded the emission amount from Korea. Dry deposition was principally made in the gaseous form due to a larger deposition velocity. Nevertheless, since the deposition velocity over water was smaller than that over the ground, dry deposition of oxidized nitrogen was smaller than wet deposition. As a whole, wet depositions of nitrogen and sulfur were 2.3 and 1.9 times 1arger than corresponding dry depositions, respectively.

($NiAl+Ni_3Al$) 2상 합금의 미세 조직과 기계적 특성에 관한 연구 (A study on the Microstructure and Mechanical Properties of Two-Phase)

  • 이종훈;최병학;이남진;김학민;이진형
    • 연구논문집
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    • 통권24호
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    • pp.161-174
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    • 1994
  • The Ni-Al intermetallic compound that has the greatest potential to be commercialized shows the high ductility at room temperature with the addition of boron, but has extremely low ductility at high temperature and oxidation environment. On this research work, the changes of microstructure and compressive fracture properties were studied in ($NiAl+Ni_3Al$) two-phase alloys. The precipitation behavior of $Ni_3Al$ after solution treatment at $1300^\circC$ for 14hrs and aging treatment at $800^{\circ}C$ for 14hrs was varied with Al content in ($NiAl+Ni_3Al$) two-phase alloys. These microstructure could be modified dramatically by suitable heat treatments. Martensite or martensite plus $Ni_3Al$ microstructure was obtained upon oil quenching from $1300^\circC$. Aging of Martensite at $800^\circC$ resulted in the $Ni_3Al$ plus NiAl phase. The compressive fracture strength and compressive fracture strain were improved by the $Ni_3Al$ plus NiAl phase mixtures at room temperature and $1100^\circC$. Microcracks are observed mostly in the region of NiAl and the interface of $NiAl-Ni_3Al$ phase after compressive test at room temperature. In the case of high temperature compressive test, microcracks are formed in the region of $Ni_3Al$ phase.

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Pt-Aluminide로 코팅된 초내열합금의 열처리에 따른 미세조직변화 (Effect of Heat Treatment on the Microstructural Evolution of Pt-aluminide Coated Ni-based Superalloy)

  • 주동원;박상현;정연길;이구현;김창석
    • 열처리공학회지
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    • 제19권2호
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    • pp.103-108
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    • 2006
  • Microstructural evolution of Pt-aluminide coated Ni-based superalloy has been investigated with ductilization heat treatment. The Pt coat was prepared on the superalloy and then aluminide coating was conducted using a pack cementation process. Samples were heat-treated at $1050^{\circ}C$ for 2 hrs and the microstructure and element analysis were preformed. A various precipitated compounds were observed within the coating layer and the diffusion region in the Pt-aluminide coating and heat treatment, indicating that the bi-phase compounds of $PtAl_2$ and NiAl were performed during the Pt-aluminide coating, whereas $M_{23}C_6$, MC, $Ni_3Al$ and ${\sigma}$ phases were precipitated in the inter-diffusion region. The bi-phase compounds of $PtAl_2$ and NiAl were transformed into the single phase compound of $PtAl_2$ with the heat treatment, increasing the amount of carbide and ${\sigma}$ phase.

강수의 물리적 특성 이해를 위한 MRR 및 PASIVEL 우적계의 관측사례 분석 (Analysis of Observational Cases Measured by MRR and PARSIVEL Disdrometer for Understanding the Physical Characteristics of Precipitation)

  • 차주완;장기호;오성남;최영진;정진임;정재원;양하영;배진영;강선영
    • 대기
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    • 제20권1호
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    • pp.37-47
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    • 2010
  • The methods measuring the precipitation drop size distribution(hereafter referred to as DSD) at Cloud Physics Observation System (CPOS) in Daegwallyeong are to use PARSIVEL (PARticle SIze and VELocity) disdrometer (hereafter referred to as PARSIVEL) and Micro Rain Radar (hereafter referred to as MRR). First of all, PARSIVEL and MRR give good correlation coefficients between their rain rates and those of rain gage: $R^2=0.93$ and 0.91, respectively. For the DSD, the rain rates are classified in 3 categories (Category 1: rr (Rain Rate) ${\leq}0.5\;mm\;h^{-1}$, Category 2: $0.5\;mm\;h^-1$ < rr < $4.0\;mm\;h^{-1}$, Category 3: rr ${\geq}4\;mm\;h^{-1}$). The shapes of PARSIVEL and MRR DSD are relatively most similar in category 2. In addition, we retrieve the vertical rain rate and liquid water content from MRR under melting layer, calculated by Cha et al's method, in Daegwallyeong ($37^{\circ}41{\prime}N$, $128^{\circ}45^{\prime}E$, 843 m ASL, mountain area) and Haenam ($34^{\circ}33^{\prime}N$, $126^{\circ}34^{\prime}E$, 4.6 m ASL, coast area). The vertical variations of rain rate and liquid water content in Daegwallyeong are smaller than those in Haenam. We think that this different vertical rain rate characteristic for both sites is due to the vertical different cloud type (convective and stratiform cloud seem dominant at Haenam and Daegwallyeong, respectively). This suggests that the statistical precipitation DSD model, for the application of weather radar and numerical simulation of precipitation processes, be considered differently for the region, which will be performed in near future.