• 제목/요약/키워드: climate condition

검색결과 829건 처리시간 0.027초

기후변화 환경에서의 낙엽성 참나무 6종의 발아와 초기 생장 (Impact of Germination and Initial Growth of Deciduous Six Oak Species under Climate Change Environment Condition)

  • 정헌모;김해란;유영한
    • 생태와환경
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    • 제54권4호
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    • pp.334-345
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    • 2021
  • 우리나라 산림 생태계의 주요 우점종인 낙엽성 참나무 6종의 지구온난화에 의한 초기 생장의 영향을 파악하기 위하여, 야외 (대조구)와 대조구보다 온도 (3.0℃ 상승)와 CO2 농도 (2배 상승)를 증가시킨 기후변화처리구에 종자를 파종하고 2주 간격으로 발아 및 초기 생장을 측정하였다. 그 결과 6종 참나무 유식물들의 지상부와 지하부 출현시기는 대조구보다 기후변화처리구에서 모든 종이 더 빨랐다. 잎 출현시기는 기후변화처리구에서 굴참나무, 신갈나무 그리고 졸참나무가 빨랐다. 지하부 길이는 기후변화 처리구에서 굴참나무, 신갈나무 그리고 떡갈나무가 길었고 상수리나무는 구배 간 차이가 없었으며 갈참나무와 졸참나무는 짧았다. 지상부 길이는 기후변화처리구에서 졸참나무가 길었고, 상수리나무, 신갈나무 그리고 떡갈나무는 차이가 없었으며 갈참나무는 짧았다. 이상의 결과는 지구온난화 환경에서 지상부와 잎의 출현시기가 빠르고 지하부 생장이 좋은 신갈나무의 초기 생장이 가장 유리함을 나타내었다. 반면, 기후변화처리환경에서 지상부와 지하부의 생장이 가장 낮은 갈참나무는 다른 참나무에 비하여 생육이 불리하였다. 또한 상수리나무는 지구온난화 환경에 따른 초기 생장의 차이가 적어 가장 영향이 적은 나무로 판단된다.

갈참나무와 졸참나무의 기후변화에 따른 생태지위 변화 (Changes of ecological niche in Quercus serrata and Quercus aliena under climate change)

  • 김윤서;박재훈;김의주;이정민;박지원;박여빈;김세희;서지현;전보연;유해인;김규리;이주선;강연준;유영한
    • 한국습지학회지
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    • 제25권3호
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    • pp.205-212
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    • 2023
  • 본 연구는 우리나라 산지 하천변의 잠재 자연식생의 주요 구성종인 갈참나무와 졸참나무가 기후변화조건이 되면 그들의 생태지위와 종간 관계가 어떻게 변하는지를 알아보기 위하여 시도되었다. 이를 위하여 CO2와 온도를 상승시킨 기후변화조건하에서 토양수분과 토양영양소를 4구배로 처리하고, 생육기 말기에 식물을 수확하여 형질의 생육반응을 측정하고, 생태지위폭과 중복력을 계산하고, 이를 대조구의 것과 비교하였다. 또한 두 종간의 관계는 형질값을 이용하여 주성분분석으로 해석하였다. 그 결과 기후변화시 수분환경 조건에서는 갈참나무의 생태지위폭이 졸참나무의 것보다 넓었다. 영양소 조건에서 두 종의 생태지위폭은 서로 유사하였다. 또한 기후변화시 갈참나무와 졸참나무의 토양수분에 대한 생태지위 중복역은 토양 영양소구배 보다 넓었다. 기후변화로 인하여 생태지위폭의 증가가 감소보다 더 많이 일어나는 형질들을 갖는 종은 수분구배와 영양소구배에서 모두 갈참나무이었다. 그리고 개체군들의 반응에서는 기후변화영향으로 토양수분 조건에서는 갈참나무가 졸참나무보다 적응력이 더 높아졌으나, 영양소 조건에서는 두종이 유사하였다. 이러한 결과는 기후변화조건에서 두 종간의 경쟁은 수분환경에 대하여 더 심하게 일어나고 그 때 갈참나무가 졸참나무보다 적응력이 더 높다는 것을 의미하는 것이다.

PM2.5 자동측정장비 비교 및 정도관리 방안 (Comparison of the Real-time Measurements for PM2.5 and Quality Control Method)

  • 박미경;박진수;조미라;이용환;김현재;오준;최진수;안준영;홍유덕
    • 한국대기환경학회지
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    • 제33권6호
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    • pp.616-625
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    • 2017
  • Measurements using five real-time particle samplers were compared to measurements using three NRM (National Reference Method system) filter-based samplers(Gravimetric method) at Incheon, Korea, between May and August, 2014. The purpose of this study was to suggest the quality assurance/quality control (QA/QC) method of each instrument for use in a real-time continuous particle sampler to measure the mass of airborne particles with an aerodynamic diameter less than $2.5{\mu}m$ ($PM_{2.5}$). Five real-time particle samplers of BAM1020, FH62C_14, TEOM, PM-711 and SPM-613 were evaluated by comparing its measured 23 hr average $PM_{2.5}$ concentrations with those measured with NRM filter-based samplers simultaneously. The parameters(e.g. Inlet heating condition, Slope factor, Film response, Intercept, Background, Span value) of the real-time samplers were optimized respectively by conducting test performance evaluation during 7 days in field sampling. For example, inlet heating temperature of TEOM sampler controls $35{\sim}40^{\circ}C$ to minimize the fluctuation of the real-time measurement data and background value of BAM1020 is the key factor affecting the accuracy of $PM_{2.5}$ mass concentration. We classified the $PM_{2.5}$ concentration according to relative humidity (80%) to identify water absorbed in aerosols by measuring the ${\beta}$-ray samplers(BAM1020, FH62C_14) and TEOM. ${\beta}$-ray samplers were not strongly affected by relative humidity that the difference of the average $PM_{2.5}$ concentration was about 5%. On the other hand, The TEOM sampler overestimated $PM_{2.5}$ mass concentration about 15% at low relative humidity (<80%).

기후변화 시나리오하의 기후 및 토지피복 변화가 유역 내 유출량에 미치는 영향 분석 (Impact of Changes in Climate and Land Use/Land Cover Change Under Climate Change Scenario on Streamflow in the Basin)

  • 김진수;최철웅
    • 대한공간정보학회지
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    • 제21권2호
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    • pp.107-116
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    • 2013
  • 본 연구는 새로운 기후변화 시나리오인 RCP 시나리오의 스토리라인을 기반으로 미래 토지피복변화를 예측하고, RCP 시나리오하의 미래 기후 및 토지피복 변화가 유역 내 유출량에 미치는 영향을 분석하는데 그 목적을 둔다. RCP 4.5 및 8.5하의 기후 자료가 기후변화 시나리오로 사용되었고, 토지피복변화 시나리오는 RCP 4.5 및 8.5 시나리오의 스토리라인과 로지스틱 회귀모형(LR)을 이용하여 개발된 모델에 의해 생성되었다. 기후변화만 고려한 경우, 토지피복변화만 고려한 경우로 두 가지 시나리오를 설정하고, 각각의 시나리오에 따른 대상 유역 내 유출량을 모의한 결과는 유출량의 계절적 변화를 뚜렷이 나타내었다. 기후변화는 봄과 겨울에 유출량을 증가, 여름과 가을에 유출량을 감소시키는 것으로 예측되었다. 반면 토지피복변화는 기후변화에 비해 상대적으로 유역 내 유출량 변화에 미소한 영향을 주지만, 강수 유무에 따라 유출량의 증가 및 감소 패턴이 뚜렷이 나타났다. 따라서 수자원 정책결정에 있어서 미래 토지피복변화에 따른 홍수 및 가뭄의 패턴에 적합한 수자원 정책이 필요할 것으로 판단된다.

산림경관천이모델(LANDIS-II)를 이용한 기후변화 시나리오에 따른 산림의 생물량 장기변화 추정 연구 -충청북도 영동군 학산면 봉소리 일대 산림을 중심으로 - (Long-term Effects on Forest Biomass under Climate Change Scenarios Using LANDIS-II - A case study on Yoengdong-gun in Chungcheongbuk-do, Korea -)

  • 최영은;최재용;김휘문;김성열;송원경
    • 한국환경복원기술학회지
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    • 제22권5호
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    • pp.27-43
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    • 2019
  • This study applied the LANDIS-II model to the forest vegetation of the study area in Yeongdong-gun, Korea to identify climate effects on ecosystems of forest vegetation. The main purpose of the study is to examine the long-term changes in forest aboveground biomass(AGB) under three different climate change scenarios; The baseline climate scenario is to maintain the current climate condition; the RCP 4.5 scenario is a stabilization scenario to employ of technologies and strategies for reducing greenhouse gas emissions; the RCP 8.5 scenario is increasing greenhouse gas emissions over time representative with 936ppm of $CO_2$ concentration by 2100. The vegetation survey and tree-ring analysis were conducted to work out the initial vegetation maps and data for operation of the LANDIS model. Six types of forest vegetation communities were found including Quercus mongolica - Pinus densiflora community, Quercus mongolica community, Pinus densiflora community, Quercus variabilis-Quercus acutissima community, Larix leptolepis afforestation and Pinus koraiensis afforestation. As for changes in total AGB under three climate change scenarios, it was found that RCP 4.5 scenario featured the highest rate of increase in AGB whereas RCP 8.5 scenario yielded the lowest rate of increase. These results suggest that moderately elevated temperatures and $CO_2$ concentrations helped the biomass flourish as photosynthesis and water use efficiency increased, but huge increase in temperature ($above+4.0^{\circ}C$) has resulted in the increased respiration with increasing temperature. Consequently, Species productivity(Biomass) of trees decrease as the temperature is elevated drastically. It has been confirmed that the dominant species in all scenarios was Quercus mongolica. Like the trends shown in the changes of total AGB, it revealed the biggest increase in the AGB of Quercus mongolica under the RCP 4.5 scenario. AGB of Quercus mongolica and Quercus variabilis decreased in the RCP 4.5 and RCP 8.5 scenarios after 2050 but have much higher growth rates of the AGB starting from 2050 under the baseline scenario. Under all scenarios, the AGB of coniferous species was eventually perished in 2100. In particular they were extinguished in early stages of the RCP 4.5 and RCP 8.5 scenarios. This is because of natural selection of communities by successions and the failure to adapt to climate change. The results of the study could be expected to be effectively utilized to predict changes of the forest ecosystems due to climate change and to be used as basic data for establishing strategies for adaptation climate changes and the management plans for forest vegetation restoration in ecological restoration fields.

Investigation of school building microclimate using advanced energy equipment: Case study

  • Alwetaishi, Mamdooh;Alzaed, Ali;Sonetti, Giulia;Shrahily, Raid;Jalil, Latif
    • Environmental Engineering Research
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    • 제23권1호
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    • pp.10-20
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    • 2018
  • Buildings are responsible of major energy consumption globally. In addition, they are linked to thermal comfort. The need to provide comfort becomes more crucial in schools as they are the place where students learn, and develop their skills. This research aims to investigate the energy responsiveness of new and traditional school building design, where major variation in form, amount of external walls and glazing are different. The research focused on indoor microclimate condition of selected schools in the city of Jeddah where the climate is hot and humid using advanced tools for monitoring. The research uses advanced energy equipment to measure several aspects such as floor temperature, roof temperature, globe temperature and other factors which can lead to predictable thermal comfort of users. The findings suggest that a larger area of glazing shielded from sunlight has a greater influence on both indoor condition and general thermal sensation. The finding also suggests that the glazing ratio is a major contributor on indoor thermal pattern which can result in an increase in temperature profile between from $7-10^{\circ}C$. The findings of this research can assist in the improvement in the design of the prototype school building in hot and humid climate.

태양열 온수 및 난방 일체형 복합시스템의 성능예측 (Performance Prediction of a Hot Water Supply and Panel Heating System with Solar Energy)

  • 한유리;박윤철
    • 한국태양에너지학회 논문집
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    • 제32권5호
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    • pp.11-17
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    • 2012
  • In this study, a simulation program was developed with heat transfer model in the thermal storage tank for a solar collector and burner combined heating and hot water supply system. Analysis was conducted with variation of operating condition and schedule to analyze performance of a hot water supply and panel heating system with a solar collector and burner combined thermal storage tank. The simulation program is divided two sections. One part is calculation of temperature variation of water which flows through the panel in the floor for heating of the residential house during 24 hours, and the other part is heat transfer calculation for the reaction time to get desired water temperature in the thermal storage tank. As results, light oil consumption and system performance during operation period were analyzed with variation of climate condition and with or without solar collector. Most of the case, oil could be saved about from 24 to 41% with installing the solar collector. The performance of the system is more dependent on radiation time of the solar collector rather than the intensity of the solar radiation which was adopted for the climate analysis.

고효율엔진 차량 히트펌프 시스템 개발 (Development of Heat Pump System for High Efficiency Engine Vehicle)

  • 박병덕;원종필;이원석
    • 한국산업융합학회 논문집
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    • 제10권1호
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    • pp.21-26
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    • 2007
  • As DDI or GDI engine discharges very low heat due to its high thermal efficiency, the heat source is not enough for heating the passenger compartment in cold climate condition. To remedy the heating problem, the conventional HFC-134a automotive air-conditioning system has been attempted to run as a heat pump mode. Futhermore, an auxiliary electric heater of new type was equipped to the heat pump air-conditioning loop as a new approach. Hence, a proto-type heat pump air conditioner has been made and tested to investigate the feasibility of the HFC-134a automobile air-conditioning system that could be worked as a heat pump. The experiment results showed that the sufficient heating capacity could be obtained by adding a heat pump with an new electric type auxiliary heater into the conventional heat core in low temperature condition.

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