• Title/Summary/Keyword: 추운 기후

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Detachable Liner and Insulation of Outdoor Clothing (착탈식 라인어와 아웃도어 의복의 보온성)

  • Kim, Chil-Soon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.26 no.12
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    • pp.1756-1764
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    • 2002
  • 본 연구의 목적은 의복시스템 내 에서 착탈이 가능한 라이너 가 있을 때 얼마만큼의 보온성 이 증가되는가를 알고자 하는 것이다. 서로 다른 섬유조성 과 두께를 가지는 3개 의 의복앙상블을 선정하여 움직일 수 있는 마네킨을 사용하여 14$^{\circ}C$로 조절되어 있는 인공기후실에서 보온성을 측정하였다. 그 결과 라이너 사용 후 보온성이 증가되었는데 그 정도는 라이너 의 두께 와 섬유조성에 따라서 다르며 약 0.5 clo 증가하였다. 이 결과로부터 착탈 가능한 라이너의 사용으로 추운기후에 어느 정도 적응 할 수 있는가를 확인할 수 있었다.

체리밸리사(Cherry Valley) 원종오리 사양관리(최신판)

  • Korea Duck Association
    • Monthly Duck's Village
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    • v.63 no.9
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    • pp.78-79
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    • 2008
  • 원종오리들은 단일일령의 농장에서 이상적으로 수용가능하나, 그러나 일령별 계군에서도 적합한 관리시 더욱 훌륭한 생산성을 얻을 수 있다. 원종오리들은 성장단계에 따라 다른 축사에서도 사육이 가능하며, 또는 단일령의 축사에서 사육을 해도 문제가 없다. 원종오리의 원활한 수용을 위해서는 편안하고 안전한 환경의 제공이 필수적이다. 한국의 기후는 추운 겨울과 뜨거운 여름이 있는 대륙성 기후이기 때문에 영국의 온대성 기후와는 확연히 다르다. 그렇기 때문에 체리밸리는 뚜렷한 계절상의 차이가 있는 기후와 환경에서 최적으로 오리를 사육 할 수 있도록 지역적으로 설계된 건물과 기기들을 사용할 것을 추천한다. 영국의 축사 설계는 한국에 적합지 않다.

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극한기후에서의 엔진 냉간시동(cold starting)과 관련된 트라이볼로지

  • 안효석
    • Tribology and Lubricants
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    • v.8 no.1
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    • pp.1-6
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    • 1992
  • 한$\cdot$CIS(구 소련연방) 관계 정상화에 따라 국내기업의 러시아 진출이 다각도로 검토되고 있다. 이에 즈음하여 국산자동차, 건설중장비류의 러시아 진출도 예상할 수 있는데 이 경우 기술적으로 반드시 해결되어야 할 부분중에 추운 기온하에서의 원할한 엔진시동을 빼놓을 수 없다. 따라서 본 해설을 통해 이에 대해 개략적으로나마 다루어 보고자 한다. 본 해설의 주된 내용은 러시아 과학원 산하 연구소로 시베리아 야쿠츠크(Yakutsk)에 소재한 비금속연구소(Insititute of Nonmetallic Materials)의 기술자료를 토대로 했으며 과학기술처 조사연구사업 결과의 일부임을 밝힌다.

Prediction of Changes in the Potential Distribution of a Waterfront Alien Plant, Paspalum distichum var. indutum, under Climate Change in the Korean Peninsula (한반도에서 기후변화에 따른 수변 외래식물인 털물참새피의 분포 변화 예측)

  • Cho, Kang-Hyun;Lee, Seung Hyun
    • Ecology and Resilient Infrastructure
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    • v.2 no.3
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    • pp.206-215
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    • 2015
  • Predicting the changes in the potential distribution of invasive alien plants under climate change is an important and challenging task for the conservation of biodiversity and management of the ecosystems in streams and reservoirs. This study explored the effects of climate change on the potential future distribution of Paspalum distichum var. indutum in the Korean Peninsula. P. distichum var. indutum is an invasive grass species that has a profound economic and environmental impact in the waterfronts of freshwater ecosystems. The Maxent model was used to estimate the potential distribution of P. distichum var. indutum under current and future climates. A total of nineteen climatic variables of Worldclim 1.4 were used as current climatic data and future climatic data predicted by HadGEM2-AO with both RCP 2.6 and RCP 8.5 scenarios for 2050. The predicted current distribution of P. distichum var. indutum was almost matched with actual positioning data. Major environmental variables contributing to the potential distribution were precipitation of the warmest quarter, annual mean temperature and mean temperature of the coldest quarter. Our prediction results for 2050 showed an overall reduction in climatic suitability for P. distichum var. indutum in the current distribution area and its expansion to further inland and in a northerly direction. The predictive model used in this study appeared to be powerful for understanding the potential distribution, exploring the effects of climate change on the habitat changes and providing the effective management of the risk of biological invasion by alien plants.

Late Pleistocene Paleovegetation and Paleoclimate of the Uiwang Area Based on Pollen Analysis (화분 분석을 통한 의왕시 지역의 후기 플라이스토세 고식생 및 고기후 연구)

  • Chung, Chull-Hwan;Lim, Hyoun-Soo;Yoon, Ho-Il
    • Journal of the Korean earth science society
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    • v.31 no.7
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    • pp.698-707
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    • 2010
  • The Late Pleistocene pollen record from the Poil-dong, Uiwang, Kyunggi-do, reveals that mixed coniferous and deciduous broadleaved forests were spread along with herb and fern understory. Palynofloral changes reflect climate fluctuations. From ca. 43,100 to 41,900 cal. yr BP, a mixed coniferous and deciduous broadleaved forest combined with open grassland occupied the study area, which indicates cooler condition than today. During the period of ca. 41,900-41,200 cal. yr BP, along with fern understory a decrease in subalpine conifers and an increase in temperate deciduous broadleaved trees suggest a climatic amelioration. A climatic deterioration, as evidenced by an increase in subalpine conifers and a decrease in the density of vegetation cover, occurred from ca. 41,200 to 39,700 cal. yr BP.

Distributional Change and Climate Condition of Warm-temperate Evergreen Broad-leaved Trees in Korea (한반도 난온대 상록활엽수의 분포변화 및 기후조건)

  • Yun, Jong-Hak;Kim, Jung-Hyun;Oh, Kyoung-Hee;Lee, Byoung-Yoon
    • Korean Journal of Environment and Ecology
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    • v.25 no.1
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    • pp.47-56
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    • 2011
  • The research was conducted to find optimal habitats of warm-temperate evergreen broad-leaved trees, and to investigate climate factors to determine their distribution using classification tree (CT) analysis. The warm-temperate evergreen broad-leaved trees model (EG-model) constructed by CT analysis showed that Mean minimum temperature of the coldest month (TMC) is a major climate factor in determining distribution of warm-temperate evergreen broad-leaved trees. The areas above the $-5.95^{\circ}C$ of TMC revealed the optimal habitats of the trees. The coldest month mean temperature (CMT) equitable to $-5.95^{\circ}C$ of TMC is $-1.7^{\circ}C$, which is lower than $-1^{\circ}C$ of CMT of warm-temperate evergreen broad-leaved trees. Suitable habitats were defined for warm-temperate evergreen broad-leaved trees in Korea. These habitats were classified into two areas according to the value of TMC. One area with more than$-5.95^{\circ}C$ of TMC was favorable to trees if the summer precipitation (PRS) is above 826.5mm; the other one with less than $-5.95^{\circ}C$ of TMC was favorable if PRS is above 1219mm. These favorable conditions of habitats were similar to those of warm-temperate evergreen broad-leaved trees in Japan. We figured out from these results that distribution of warm-temperate evergreen broad-leaved trees were expanded to inland areas of southern parts of Korean peninsula, and ares with the higher latitude. Finally, the northern limits of warm-temperate evergreen broad-leaved trees might be adjusted accordingly.

Analysis on uncertainty in Probable Maximum Precipitation estimation with the pseudo-adiabatic assumption (위단열 가정을 기반한 가능최대강수량 산정의 불확실성 분석)

  • Kim, Youngkyu;Son, Minwoo;Kim, Sunmin;Tachikawa, Yasuto
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.58-58
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    • 2022
  • 본 연구는 수분최대화방법(Moisture-maximizing method)를 기반으로 PMP(Probable Maximum Precipitation)을 산정하는 방법론을 평가하는 것을 목적으로 수행되었다. 수분최대화 방법은 특정 호우사상의 대기 수분 조건을 극대화하여 PMP 를 산정한다. 여기서, 대기 수분 조건은 대기 표면부터 상층부의 총 수분량으로부터 얻어지는 가강수량(Precipitable water, PW)으로 표현된다. PW 는 라디오존데로부터 직접 관측 및 수집되지만, 장기간 수집이 어렵고, 수집된 자료는 다수의 이상치 및 결측치를 포함한다. 이에 따라, WMO(World Meteorological Organization)에서는 표면 이슬점을 이용하여 위단열 가정(Pseudo-adiabatic assumption)하에PW 를 간접적으로 산정하는 방법론을 기반한 PMP 산정을 권고한다. 본 연구는 일본의 다수의 지역을 대상으로 실제 PW 를 이용하는 방법과 표면 이슬점을 이용하는 방법을 기반으로 산정된 수분최대화방법의 변수들의 편차를 분석하였다. 그 결과, 따듯한 기후 특성을 나타내는 일본의 남부지역은 두 방법의 편차가 매우 작았지만, 추운 기후 특성을 나타내는 일본의 북부지역은 표면 이슬점으로 산정된 PW 가 실제 PW 에 비해 과소 산정되어 PMP 를 과대 산정시켰다. 특히, 이불확실성은 호우 발생 시 표면 이슬점이 18℃ 이하일 때, 두드러지게 나타났다. 본 연구는 이불확실성을 밝히기 위해 실제 라디오존데로부터 관측된 대기 상층부의 대기 프로파일 검토하였다. 그 결과, 표면에서 가까운 대기 상층부의 위치에서 불규칙적으로 이슬점이 증가하는 패턴을 나타냈지만, 위단열 가정은 이를 묘사하기 어려웠다. 이는 결국 실제 PW 에 비해 이슬점을 이용하여 산정된 PW 가 과소 산정되는 결과로 이어졌다. 결과적으로, 호우 발생 시 표면 이슬점이 18℃ 이하로 낮은 지역에서 산정된 PW 를 적용하는 수분최대화방법으로 산정된 PMP 는 낮은 신뢰도를 나타낸다.

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Seasonal Onset and Duration in South Korea (우리나라 사계절 개시일과 지속기간)

  • Choi, Gwang-Yong;Kwon, Won-Tae;Robinson David A.
    • Journal of the Korean Geographical Society
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    • v.41 no.4 s.115
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    • pp.435-456
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    • 2006
  • This study examines the long-term spatial patterns and recent trends of seasonal onsets and durations defined by daily temperatures in South Korea for the period 1973-2004. Spatially, spring and winter onset dates show approximately 44 day and 63 day maximum difference respectively between south and north (Seongsanpo to Daegwallryeong) attributable to the impacts of latitudes and altitudes. In contrast, summer onset, which is more affected by proximity to oceans and altitudes than by latitudes, begins earlier in interior low elevated areas than in the coastal areas but earliest at higher latitudes than Jeiu Island. Five climatic types regarding the seasonal cycles in South Korea are spatially clustered according to the combination of longer seasonal durations. As a reflection of recent climate changes on seasonal cycles in South Korea, winter duration was shortened by 10 days during the post-1988 period due to a late winter onset of 4 days and an early spring onset of 6 days. The winter reduction began in the southern regions of the Korean Peninsula in the mid-1980s and spread northward during the 1990s period, ultimately appearing everywhere. In urbanized cities, where much of the surface is covered with asphalt or concrete, the winter reduction was intensified and summer duration was locally incremented. The reduced winter duration in recent decades shows significant teleconnections with variations of geopotential height (925hPa) in the eastern Arctic region ($0-90^{\circ}E$, $65-85^{\circ}N$) during the cold season. The reduction in winter duration in South Korea agrees with results in overall global warming trends as a climate change signal.

Wintering Population Change of the Cranes according to the Climatic Factors in Cheorwon, Korea: Effect of the Snow Cover Range and Period by Using MODIS Satellite Data (기후요인에 의한 철원지역 두루미류 월동개체수 변화 - MODIS 위성영상을 이용한 눈 덮임 범위와 지속기간의 영향 -)

  • Yoo, Seung-Hwa;Lee, Ki-Sup;Jung, Hwa-Young;Kim, Hwa-Jung;Hur, Wee-Haeng;Kim, Jin-Han;Park, Chong-Hwa
    • Korean Journal of Ecology and Environment
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    • v.48 no.3
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    • pp.176-187
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    • 2015
  • In this study, we hypothesized that the size of wintering crane population would change due to the climate factors. We assumed that wintering population size would differ by climate values in January, which is the coldest period in year. Especially, White-naped cranes were able to choose wintering site between Cheorwon and other alternative place where snow coverage had low influence, differing from Red crowned cranes. For this reason, we predicted the population size of White-naped cranes would fluctuate according to the extent of snow coverage in Cheorwon. Therefore we used snow coverage data based on MODIS and climate data from KMA (Korea Meteorological Administration) that are generally used. We analyzed the crane's population size in Cheorwon in January from 2002 to 2014. The temperature in the Cheorwon increased from 2002 to wintering period in 2007~ 2008 and went down, showing the lowest temperature in 2011~ 2012. With this phenomenon, warmth index showed the similar pattern with temperature. Amount of newly accumulated snow (the amount of snow that fallen from 0:01 am to 11:29 pm in a day) was low after 2002, but rapidly increased in 2010~ 2011 and 2011~ 2012. The area of snow coverage rapidly declined from 2002 to 2005~ 2006 but suddenly expanded in wintering period in 2009~ 2010 and 2010~ 2011. Wintering population size of the White-naped cranes decreased as snow coverage area increased in January and the highest correlation was found between them, compared to the other climatic factors. However, the number of individuals of Red crowned cranes had little relationship with general climate factors including snow cover range. Therefore it seems that population size of the Red crowned crane varied by factors related with habitat selection such as secure roosting site and area of foraging place, not by climatic factors. In multiple regression analysis, wintering population of White-naped cranes showed significant relationship with logarithmic value of snow cover range and its period. Therefore, it suggests that the population size of the White-naped crane was affected by snow cover range n wintering period and this was because it was hard for them to find out rice grains which are their main food items, buried in snow cover. The population size variation in White-naped cranes was caused by some individuals which left Cheorwon for Izumi where snow cover had little influence on them. The wintering population in Izumi and Cheorwon had negative correlation, implying they were mutually related.

Numerical Analysis of Frost Depth behind the Lining of Road Tunnel in Gangwon Province (수치해석을 통한 강원지역 도로터널 라이닝 배면지반의 동결깊이 분석)

  • Son, Hee-Su;Jun, Kyoung-Jea;Yune, Chan-Young
    • Journal of the Korean GEO-environmental Society
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    • v.18 no.3
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    • pp.15-23
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    • 2017
  • Gangwon Province, located in the northeastern part of South Korea, is the coldest area in South Korea with 90% of the total area as mountainous. Therefore, tunnel damage has been reported continuously in winter. But there has been lack of researches on frost heave occurring behind tunnel lining. In this study, numerical analysis was conducted to investigate the frost depth in road tunnel constructed in Gangwon province. Based on the database on road tunnel and weather in Gangwon province, a standard tunnel shape and geotechnical properties of ground was determined. And then thermal analysis for the frost depth according to the temperature change and ground conditions were conducted. Analysis result showed that the sensitivity to frost heave of metamorphic rock and sedimentary rock is higher than sand. Lower initial ground temperature leads to deeper frost depth and consequently increases frost damage. In addition, lining thickness, specific heat capacity, and thermal conductivity also affect greatly on the variation of frost depth.