• 제목/요약/키워드: Air and water environment

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산지계류의 계절적 수온변동 특성 및 영향인자 분석 (Seasonal Variations of Stream Water Temperature and its Affecting Factors on Mountain Areas)

  • 남수연;최형태;임홍근
    • 한국물환경학회지
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    • 제35권4호
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    • pp.308-315
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    • 2019
  • The objective of this study was to investigate mountain stream water and air temperatures, area, latitude, altitude, and forest coverage in headwater catchments located in Kangwon-do, Mid-eastern Korea from 2015 to 2017. Daily mean value of mountain stream water temperature was approximately $6^{\circ}C$ lower than the daily mean value of air temperature on the monitoring sites during the observation period. Monthly mean value of mountain stream water temperature increased with increasing monthly mean value of air temperature from May to August during the observation period. Seasonal variations of mountain stream water temperature were dependent on air temperature rising and falling periods. Correlation analysis was conducted on mountain stream water temperature to investigate its relationship with air temperature, area, latitude, altitude, and forest coverage of air temperature rising and falling periods. The correlation analysis showed that there exists a relationship (Correlation coefficient: -0.581 ~ 0.825; p<0.05), particularly the air temperature showed highest correlation with mountain stream water temperature. Regression equations could be developed due to contribution of air temperature to affect mountain stream water temperature (Correlation coefficient: 0.742 and 0.825; p<0.01). Therefore, a method using various parameters based on air temperature rising and falling periods, could be recommended for predicting mountain stream water temperature.

기후변화에 따른 미래 하천 수온 예측을 위한 비선형 기온-수온 상관관계 구축 (Building a Nonlinear Relationship between Air and Water Temperature for Climate-Induced Future Water Temperature Prediction)

  • 이길하
    • 환경정책연구
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    • 제13권2호
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    • pp.21-38
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    • 2014
  • 지구의 온난화로 인하여 기온이 상승하고 이에 대응하여 수온 증가가 감지되고 있다. 하천의 수온 변화는 수질과 생태계, 특히 용존산소변화와 생물체의 이동으로 이어진다. 기온 변화가 하천의 수질과 생태 환경에 미치는 영향을 추정하기 위해서 수온 상승의 시기와 하천 어종에 대한 이해가 필요한데 이를 위하여 미래의 수온을 예측할 필요가 있다. 환경부 산하 국립환경과학원에서 설치한 국가수질관측망 자료와 기상청 기상관측소의 기온 자료를 활용하여 기온-수온 비선형 상관관계모형을 구축하였다. 기온-수온 대표 관계인 비선형 로지스틱(Logistic) 함수에 포함된 4개의 매개변수를 결정하기 위하여 SCE최적화 기법을 이용하였다. 기온-수온 상관관계는 시간규모에 따른 최대 온도와 최소 온도에 차이가 있으나 수질 또는 생태 반응의 적당한 시간규모에 해당하는 주 평균 온도를 이용하여 분석하였다. 전반적으로 우리나라 하천의 기온-수온 관계는 선형보다는 비선형 모형에서 NSC와 RMSE가 더 우수하여 비선형 모형이 적합한 것으로 나타났다. 연구 결과는 미래의 기온 상승 변화에 반응하는 수질, 수문 및 생태반응에 대비하여 공학기술자 또는 정책입안자에게 적절한 기후변화 대책 방향을 설정하는 데 지침을 제공할 것이다.

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생활 오배수를 이용한 중수처리 공급장치의 기술성 고찰 (Technical Considerations of Recycling Water Treatment/Supply Apparatus using Living Waste Water)

  • 조정식;이희완;김홍민
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 하계학술발표대회 논문집
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    • pp.493-498
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    • 2008
  • The several water resources are showed recently the various pollution types due to the industrialization and the disarranged district development. The living waste water, plant waste water and so are contaminated continuously and the recycling water is concerned highly to save the cost and to improve the environment as the general people. The dust and the heavy metal in the air and the acid rain are contaminating the river water and the underground water. The clean environment is on the rise to the general people and is to be the social problems. There is going to complement and repair the water supplying and fire extinguishing pipeline to save the construction cost and improve the environment in the construction facilities parts. Therefore, in this paper the recycling water treatment/supply apparatus using the living waste water is considerated technically and is raised on the practical uses.

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기온 변화에 따른 팔당호 수온 영향 및 이력현상 (Effect of Air Temperature Changes on Water Temperature and Hysteresis Phenomenon in Lake Paldang)

  • 유순주;임종권;이보미
    • 환경영향평가
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    • 제29권5호
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    • pp.323-337
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    • 2020
  • 국내 최대 상수원인 팔당호를 대상으로 기온과 수온의 변화를 살펴보고 장기간 기온과 수온의 연속 자료를 활용하여 이력 현상을 살펴보았다. 계절 Mann-Kendall을 적용한 팔당호 인근 양평의 기온 변화 추세는 지난 47년간(1973~2019) 증가(0.048 ℃/yr)에 비하여 최근 27년간(1993~2019) 기온의 증가(0.060 ℃/yr)가 컸다. 팔당호와 유입 하천에서 수온은 기온과의 상관성이 높으나(R > 0.9, p < 0.005) 호소인 팔당댐앞 지점에서의 수온은 하천 수온 상승에 비하여 느리고 기온 하강기에 들어서 수온이 서서히 감소하였고 수심 평균 수온도 상승기와 하강기 모두 호소 표층보다 변화가 더디게 나타났다. 이는 호소가 하천보다 수체 규모 면에서 크고 체류시간이 길기 때문에 열에너지를 흡수하고 감소하는데 시간이 걸리는 수온의 이력 현상이 크게 작용하는 것으로 판단된다.

불포화 토양내 유류성분의 포화도 평가를 위한 분배추적자의 활용 방안

  • 박기호;박민호;신항식;고석오
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2006년도 총회 및 춘계학술발표회
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    • pp.20-28
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    • 2006
  • Partitioning tracer tests were conducted to quantify the saturation degree of diesel and water in unsaturated soil, respectively. The use of partitioning tracers that partition into diesel, water, and air (i.e., three-phase partitioning), is in attractive alternative to traditional coring and analysis method. These gaseous partition tracers not global warming gas like CFC's are Butane, Acetylene, Ethylene, Methylene chloride, and Methane. The glass column packed with sandy soil was prepared, in which a three-phase system of air, water, and diesel was maintained. Conservative and partition gas tracers were injected into the columns and detected easily using a single GC detector(FID). For each tracer, a method of moments was used to estimate partition coefficient between water, diesel. and the air, respectively. The results from the column studies showed that the diesel/air tracer partition coefficient ranged from 8.2 to 868 and 9.2 for water/air. Saturation degree of diesel and water in the column, predicted by the partition coefficients obtained from tests, was underestimated up to 66% and 23% respectively.

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수막하우스의 유량 및 수온에 따른 열전달 특성 분석 (Analysis of Heat Transfer Characteristics in Response to Water Flow Rate and Temperature in Greenhouses with Water Curtain System)

  • 김형권;김승희;권진경
    • 생물환경조절학회지
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    • 제25권4호
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    • pp.270-276
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    • 2016
  • This study analysed overall heat transfer coefficient, heat transmission, and rate of indoor air heating provided by water curtain in order to determine the heat transfer characteristic of double-layered greenhouse equipped with a water curtain system. The air temperatures between the inner and outer layers were determined by the water flow rate and inlet water temperature. Higher water flow rate and inlet water temperature resulted in the increased overall heat transfer coefficient between indoor greenhouse air and water curtain. However, it was found that with higher levels of water flow rate and inlet water temperature, indoor overall heat transfer coefficient was converged about $10W{\cdot}m^{-2}{\cdot}^oC^{-1}$. The low correlation of overall heat transfer coefficient between water curtain and air within double layers was likely because the combination of greenhouse shape, wind speed and outdoor air temperature as well as water curtain affected the heat transfer characteristics. As water flow rate and inlet water temperature increased, the heat transferred into the greenhouse by water curtain also tend to rise. However it was demonstrated that the rate of heat transmission from water curtain into greenhouse with water curtain system using underground water was accounted for 22% to 28% for total heat lost by water curtain. The results of this study which quantify heat transfer coefficient and net heat transfer from water curtain may be a good reference for economical design of water curtain system.

Al 7075-T651의 부식피로균열 성장 거동에 관한 연구(II) (A Study on Corrosion Fatigue Crack Growth Behavior in Al 7075-T651(II))

  • 한지원;우흥식
    • 한국안전학회지
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    • 제14권2호
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    • pp.3-10
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    • 1999
  • Fatigue crack growth rates in commercial plate of high strength Al 7075-T651 were investigated for the T-L direction in air, water and sea water. In this paper the effect of cyclic load wave-form(trapezoid and triangle) on fatigue crack growth rates in air, water and sea water environments were investigated using standard LEFM testing procedures. It was founded that the fatigue crack growth behaviors were not affected by cyclic load wave-forms. In region II (stable crack growth region), the fatigue crack growth behaviors were insensitive to cyclic load wave-forms and were sensitive to environment i.e. fatigue crack growth behaviors were higher in sea water than in air for all cyclic load wave-form. The result of fractographical morphology in air, water and sea water by SEM showed obvious dimple rupture and typical striation in air, but transgranular fracture surface in water and sea water. The values m are not affected by corrosion environments but C are different values.

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실내조경에 있어서 양치식물의 수분환경 관리방안에 관한 연구 (A Study on the Management Plan of Water Environment of Ferns in the Interior Landscape)

  • 주진희;방광자;설종호
    • 한국조경학회지
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    • 제27권1호
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    • pp.122-131
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    • 1999
  • Indoor environments are usually less than optimal for the growth of ferns, especially in regards to the water condition. These studies were performed to investigate responses involved in causing growth of ferns and presume management plan against the water deficit under indoor conditions. The effect of air humidity and soil moisture on the ferns was examined in Adiantume raddianum and Selaginella kraussiana. Results of experiments are as follows; 1. Under a low humidity condition, having a 25-50% RH. ornamental value of ferns decreased much more than under a 90% RH. Under a low soil moisture, such as sand treatment, ornamental value of ferns also decreased. 2. Leaf chlorophyll content, water content and stomata situations increased as air humidity and soil moisture went up. 3. Even if air humidity and soil water were not enough for ferns growth, the extending of irrigation cycle was helpful. 4. Under extremely low air humidity conditions, some water management, namely, using water holding soil or extending of irrigation cycle was desirable. Other methods of increasing air humidity, including water instruments such as ornamental pools, waterfalls, or fountains, grouping plants together were also helpful. But spraying water on leaves increased injury to ferns growth because of excess evaporation from the leaves. Though these studies, we learn that ferns are susceptible to water condition such as air humidity, soil water and water management. If other environmental factos are maintained with optimal conditions, water condition plays an important role in ferns growth in indoor environments.

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환경오염으로 인한 동굴생태환경의 변화와 환경오염물질 분석에 관한 연구 (A Study on the change of Ecological Environment in Cave cause by the Pollution of Cave Environment and Analysis of Environmental Pollutants in Cave)

  • 이경호
    • 동굴
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    • 제61호
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    • pp.5-16
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    • 2000
  • Recently many environmental researcher are concerned about the ecological environment and the issue of environmental pollution in cave. In this paper we discuss about air pollution, water pollution, state of water quality, ecological environment and situation of environmental public damage in cave The concerning of air pollution in cave is mainly to the type of secondary contamination, which much is developed in various fields recently. The natural water in the most of cave is no problems but ground water has slitting with natural water during much raining period. The state of water quality is gradually contaminated with artificial environmental pollution, that is, the contents of kinds of Aluminum, Nickel, Copper, Zinc and Calcium are higher than before. On the other hand it is very important things to keep the control of constant temperature, darkness and humidity in cave. The contamination by lamp flora and even black colored contamination are appeared nowadays. The ecological environment in cave destructed by growing of mi coorganism. In fact the internal of cave is shielded with the state of climate of cave external but the environment of internal cave is contaminated, because blowing from external climate state. In addition to environmental pollution caused by carbon dioxide and body temperature of tourists. By the way eco-examination of cave is black color public damage, green color one and white color one has been discovered, so we need to have the situation of demand of environmental reservation alternatives.

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자연환기 온실의 환기회수에 따른 포그냉방시스템의 냉방효과 (The Cooling Effect of Fog Cooling System as Affected by Air Exchange Rate in Natural Ventilation Greenhouse)

  • 김문기;김기성;권혁진
    • 생물환경조절학회지
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    • 제10권1호
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    • pp.10-14
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    • 2001
  • 포그냉방시스템의 냉방효과는 온실 내부의 상대습도, 공기유동과 밀접한 관계가 있다. 냉방설계용 VETH선도에서 냉발효율은 환기회수의 증가와 그에 상응하는 분무수량의 증가로 인하여 개선될 수 있다. 시간제어방식을 이용한 무차광 실험온실에서 분당 환기회수가 평균 0.77회, 분무수량이 2,009g 일 때 온실 내부의 기온이 31$^{\circ}C$로 외부기온과 거의 같게 나타났으며, 이 때의 증발효율은 82%이다. 분당 환기회수가 평균 0.26회, 분무수량이 1.256g인 경우 무냉방 온실의 기온과 비슷한 37.1$^{\circ}C$였다. 차광율 70%인 실험온실의 분당 환기환수가 평균 2.59회, 분무수량이 2,009g 일 때, 내부의 상대습도는 증가하나 기온은 하강하지 못했다. 그러나 분당 환기회수가 평균 2.33회, 분무수량이 2,009g인 경우 내부의 기온이 31.4$^{\circ}C$로 이 때 온실의 유입구 풍속은 최고 1.9m.s$^{-1}$였다. 시간제어의 경우 일정간격으로 일정한 수량을 분무하기 때문에 분무입자가 모두 증발하지 못하고 온실 내부에 누적되어 온실 내부의 상대습도를 증가시켜 냉방효율을 감소 시키는 원인이 되고 차광망이 온실내부의 공기흐름을 차단하여 증발효율을 감소시키는 것으로 나타났다. 포그냉방시스템의 냉방효율을 높이기 위해서는 온실 내부의 상대습도에 의한 제어방식과 내부 공기의 순환에 대한 연구가 필요하다.

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