• 제목/요약/키워드: Environment chamber

검색결과 845건 처리시간 0.031초

반무반사실내 VHF 대역 안테나 측정환경 구현 (Quiet Zone Implementation for VHF Antenna Measurement in Semi-Anechoic Chamber)

  • 문정익
    • 전기전자학회논문지
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    • 제16권4호
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    • pp.290-296
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    • 2012
  • 본 논문에서는 반무반사실내에서 반사체와 시간영역 측정을 이용한 반사파의 효과적인 억제 기술을 제안하고 있다. 제안한 기법을 이용하여 측정 영역상에 전기장의 균일도를 향상시켜 완전 무반사실과 유사한 안테나 측정환경을 구현할 수 있었다. 구현한 측정환경의 성능은 측정을 통하여 검증하였으며 소형 VHF대역 안테나 측정에 사용 가능할 것으로 판단된다.

실내외 압력 차에 따른 단창과 이중창의 틈새로 침투된 간접흡연의 입자 크기 분포 특성 (Characterization of Particle Size Distribution of Infiltrated Secondhand Smoke through the Gap in a Single Glazed and a Secondary Glazed Window by Indoor and Outdoor Pressure Differences)

  • 김정훈;이기영
    • 한국환경보건학회지
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    • 제44권4호
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    • pp.360-369
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    • 2018
  • Objectives: Outdoor tobacco smoke can penetrate into the indoor environment through cracks in the building envelope. This study aimed to characterize the particle size distribution of infiltrated secondhand smoke (SHS) through the gap in a single glazed and a secondary glazed window according to pressure differences in a chamber. Methods: Two polyvinyl chloride sliding windows were evaluated for infiltration, one with a glazed window and the other with a secondary glazed window. Each window was mounted and sealed in a polycarbonate chamber. The air in the chamber was discharged to the outside to establish pressure differences in the chamber (${\Delta}P$). Outdoor smoking sources were simulated at a one-meter distance from the window side of the chamber. The particle size distribution of the infiltrated SHS was measured in the chamber using a portable aerosol spectrometer. The particle size distribution of SHS inside the chamber was normalized by the outdoor peak for fine particles. Results: The particle size distribution of SHS inside the chamber was similar regardless of window type and ${\Delta}P$. It peaked at $0.2-0.3{\mu}m$. Increases in particulate matter (PM) concentrations from SHS infiltration were higher with the glazed window than with the secondary glazed window. PM concentrations of less than $1{\mu}m$ increased as ${\Delta}P$ was increased inside the chamber. Conclusions: The majority of infiltrated SHS particles through window gap was $0.2-0.3{\mu}m$ in size. Outdoor SHS particles infiltrated more with a glazed window than with a secondary glazed window. Particle sizes of less than $1{\mu}m$ were associated with ${\Delta}P$. These findings can be a reference for further research on the measurement of infiltrated SHS in buildings.

眼前房내에 이식한 생쥐배의 초기발생에 관한 연구 (Studies on the Early Development of the Mouse Embryo Transplanted in the Anterior Chamber of the Eye)

  • 조완규;김문규
    • 한국동물학회지
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    • 제15권1호
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    • pp.25-33
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    • 1972
  • 배아의 발생에 대한 연구는 in vivo 나 in vitro의 방법을 통해 근래 비?적 활발하게 진행되고 있다. 이들의 연구결과에 따르자면, 성분이나 함량 혹은 물리학적 성질이 혈청따위의 체액과는 다른 전방수가 들어차 있는 안전방의 환경은 배아의 발생에 극히 부적당한 곳이라 할 수 있다. 그럼에도 불구하고 본실험의 결과를 보면 초기배아의 발생은 극히 정상적으로 진행되고 있다. 이런 점에 비추어 우리는 두 가지 가능성을 추론할 수 있다. 첫째는, 배아의 어느 한정된 범위에서는 그의 환경에 쉽게 적응할 수 있는 능력을 가지고 있을 것이라는 생각이다. 배아세포가 미분화의 상태에 있다는 점과 대사의 정도가 분화된 다른 세포들에 비해 비교적 낮다는 점을 고려할 때 이들 배아는 안전방내의 환경과 같은 특수한 곳에서도 능히 생존할 수가 있는 것이다. 둘째는, 배아를 받아들인 후 전방수의 특성이 달라질 것이라는 점이다. 토끼에서는 일단 안전방내의 전방수가 유출되고 나면 혈청과 비슷한 체액이 약8시간 동안 안전방내에 형성되고 그뒤 차차로 본래의 전방수로 대치된다. 쥐에서도 이러한 체액이 안전방내에 형성된다면 배아를 받아들인 안전방내의 전방수의 성질이 혈청과 비슷해지므로 배아의 발생이 가능해질 수가 있다. 단지 그러한 체액이 전방수의 유출 후 120시간까지 그대로 남아있을 것인가에 대한 의문은 그대로 남아있지만 위의 두가지 가능성에 대하여는 배아의 생태나 행동과 관련시켜 앞으로 더 연구해야 할 것이다.

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저층 경계면 연구용 Benthic chamber(BelcI) 개발 (The Development of a Benthic Chamber (BelcI) for Benthic Boundary Layer Studies)

  • 이재성;박경수;강범주;김영태;배재현;김성수;박정준;최옥인
    • 한국해양학회지:바다
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    • 제15권1호
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    • pp.41-50
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    • 2010
  • 소형선박에서 운영이 가능한 연안용 benthic chamber(BelcI)를 개발했다. 운영상에 유연성이 큰 BelcI는 연안 저층 경계면 연구에 폭넓게 이용될 수 있을 것으로 판단된다. BelcI는 몸체, 자동채수기, 교반기 및 전자제어부로 구성된다. 운영상에 유연성을 극대화하기 위해 몸체는 사각 셀 단위의 2단 구조로 설계했다. 센서신호의 증폭, 교반기 및 채수장치 제어회로를 초 전력 소모 회로로 구성하여 외부 전원장치를 제거했다. PIV(particle image velocimetry)기법으로 측정한 chamber 내부의 유체유통은 전형적인 radial-flow impeller의 특성을 나타냈다. chamber내 물의 혼합 시간은 약 30초로 추정되었으며, 바닥면에서 shear velocity($u^*$)는 약 $0.32\;cm\;s^{-1}$였다. 산경계층(DBL) 두께는 약 $180{\sim}230\;{\mu}m$였다. 현장에서 측정한 산소소모율은 약 $84\;mmol\;O_2\;m^{-2}\;d_{-1}$로 선상배양결과 보다 2배 이상 컸다. 저층 영양염 플럭스는 "질산+아질산"이 $0.18\;{\pm}\;0.07\;mmol\;m^{-2}\;d^{-1}$, 암모니움이 $2.3\;{\pm}\;0.5\;mmol\;m^{-2}\;d^{-1}$, 인산인이 $0.09\;{\pm}\;0.02\;mmol\;m^{-2}\;d^{-1}$, 규산규소가 $23\;{\pm}\;1\;mmol\;m^{-2}\;d^{-1}$로 추정되 었다.

OWC 파력발전장치의 공기실 성능예측에 대한 수치적인 연구 (Numerical Prediction of Chamber Performance for OWC Wave Energy Converter)

  • 김길원;현범수;류진;홍기용
    • 한국해양환경ㆍ에너지학회지
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    • 제13권2호
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    • pp.91-98
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    • 2010
  • 진동수주형 파력발전장치에서 공기실 내의 수면 변화와 덕트 내 유량의 왕복유동은 시스템의 작동 성능을 결정짓는 매우 중요한 요소이다. 공기실 내의 수면 변화를 고찰하기 위하여 상용 CFD 코드인 Fluent 6.2를 이용하여 구현한 수치조파수조를 사용하였다. 수치조파수조의 지배방정식은 연속방정식과 Reynolds 평균 N-S 방정식이고 자유수면은 Two-phase VOF 기법을 이용하여 추적하였다. 공기실 내의 수면 변화와 공기실 윗부분에 설치된 덕트 내의 왕복유량을 계산하여 고찰하였고, 계산의 정확도를 검증하기 위하여 실험결과와 비교 분석을 수행하였다. 또한 동일한 입사파 조건에서 공기실 - 덕트 시스템의 노즐 비율이 시스템이 미치는 영향을 고찰하여 분석을 하였다.

Visibility Measurement in an Atmospheric Environment Simulation Chamber

  • Tai, Hongda;Zhuang, Zibo;Jiang, Lihui;Sun, Dongsong
    • Current Optics and Photonics
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    • 제1권3호
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    • pp.186-195
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    • 2017
  • Obtaining accurate visibility measurements is a common atmospheric optical problem, and of vital significance to civil aviation. To effectively evaluate and improve the accuracy of visibility measurements, an outdoor atmospheric simulation chamber with dimensions of $1.8{\times}1.6{\times}55.7m^3$ was constructed. The simulation chamber could provide a relatively homogeneous haze environment, in which the visibility varied from 10 km to 0.2 km over 5 hours. A baseline-changing visibility measurement system was constructed in the chamber. A mobile platform (receiver) was moved from 5 m to 45 m, stopping every 5 m, to measure and record the transmittance. The total least-squares method was used to fit the extinction coefficient. During the experiment conducted in the chamber, the unit weight variance was as low as $1.33{\times}10^{-4}$ under high-visibility conditions, and the coefficient of determination ($R^2$) was as high as 0.99 under low-visibility conditions, indicating high stability and accuracy of the system used to measure the extinction coefficients and strong consistency between repeated measurements. A Grimm portable aerosol spectrometer (PAS) was used to record the aerosol distribution, and then Mie theory was used to calculate the extinction coefficients. The theoretical results were found to be consistent with the measurements and exhibited a positive correlation, although they were higher than the measured values.

Assessment of the Particulate Matter Reduction Potential of Climbing Plants on Green Walls for Air Quality Management

  • Jeong, Na Ra;Kim, Jeong-Hee;Han, Seung Won;Kim, Jong-Cheol;Kim, Woo Young
    • 인간식물환경학회지
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    • 제24권4호
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    • pp.377-387
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    • 2021
  • Background and objective: To improve air quality, particulate matter (PM) can be reduced using green infrastructure. Therefore, in this study, we aimed to determine the particulate matter reduction potential of climbing plants used for green walls, an element of vertical green infrastructure. Methods: A sealed chamber with controlled environmental variables was used to assess the PM reduction level caused by climbing plants. PM concentration in the plant chamber was measured after two and four hours of PM exposure, and the reduction potential was assessed based on the leaf area. Results: Compared to the empty chamber (Control), the PM reduction speed per hour was higher in the plant chamber, which confirmed that climbing plants contribute to the reduction of PM in the air. The PM reduction speed immediately after exposure in the plant chamber was high, but this slowed over time. Additionally, PM has been continuously reduced in plants with large leaves. As a result of calculating the particulate matter reduction level based on leaf area, it was found that there was a difference by particle size. Actinidia arguta, Parthenocissus tricuspidata, Trachelospermum asiaticum, and Euonymus fortunei var. radicans showed a high reduction effect. The trichomes on the leaf surface of Trachelospermum asiaticum were found to affect PM reduction. Conclusion: PM adsorption on the leaf surface is an important factor in reducing its concentration. It was possible to compare different plants by quantifying the amount of PM reduction during a fixed time period. These results can be used as the basic data to select the plant species suitable for urban green walls in terms of PM reduction.

Survival of Microorganisms on Antimicrobial Filters and the Removal Efficiency of Bioaerosols in an Environmental Chamber

  • Kim, Sung Yeon;Kim, Misoon;Lee, Sunghee;Lee, JungEun;Ko, GwangPyo
    • Journal of Microbiology and Biotechnology
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    • 제22권9호
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    • pp.1288-1295
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    • 2012
  • Exposure to bioaerosols causes various adverse health effects including infectious and respiratory diseases, and hypersensitivity. Controlling exposure to bioaerosols is important for disease control and prevention. In this study, we evaluated the efficacies of various functional filters coated with antimicrobial chemicals in deactivating representative microorganisms on filters or as bioaerosols. Tested functional filters were coated with different chemicals that included (i) Ginkgo and sumac, (ii) Ag-apatite and guanidine phosphate, (iii) $SiO_2$, ZnO, and $Al_2O_3$, and (iv) zeolite. To evaluate the filters, we used a model ventilation system (1) to evaluate the removal efficiency of bacteria (Escherichia coli and Legionella pneumophila), bacterial spores (Bacillus subtilis spore), and viruses (MS2 bacteriophage) on various functional filters, and (2) to characterize the removal efficiency of these bioaerosols. All experiments were performed at a constant temperature of $25^{\circ}C$ and humidity of 50%. Most bacteria (excluding B. subtilis) rapidly decreased on the functional filter. Therefore, we confirmed that functional filters have antimicrobial effects. Additionally, we evaluated the removal efficiency of various bioaerosols by these filters. We used a six-jet collision nebulizer to generate microbial aerosols and introduced it into the environmental chamber. We then measured the removal efficiency of functional filters with and without a medium-efficiency filter. Most bioaerosol concentrations did not significantly decrease by the functional filter only but decreased by a combination of functional and medium-efficiency filter. In conclusion, functional filters could facilitate biological removal of various bioaerosols, but physical removal of these by functional was minimal. Proper use of chemical-coated filter materials could reduce exposure to these agents.

실물형 액체로켓 연소기 지상 연소 성능 결과 (Combustion Performance of a Fullscale Liquid Rocket Thrust Chamber)

  • 서성현;김종규;문일윤;한영민;최환석;이수용;조광래
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.235-239
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    • 2005
  • 저궤도 위성 발사체에 적용 가능한 추력 30 tonf급의 연소기가 설계/제작되어 전반적인 연소 시험을 마쳤다. 터보 펌프식 개방형 사이클에 적용 가능한 재생냉각형으로 제작된 본 연소기는 초기 연소 성능 및 기능 검증을 위해 내열재 방식의 연소실을 이용하여 연소 시험을 수행하였다. 설계 조건을 중심으로 넓은 작동 구간에서 본 연소기는 안정된 연소 성능을 보였다. 연소기의 물리적 손상 또한 발생하지 않았으며, 만족할 만한 기능적 특성을 나타내었다. 연소기의 성능은 연소 효율이 95%, 그리고 지상 비추력이 254초로 초기 설계 대비 초과 내지는 동등 수준의 결과를 보였다.

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혼합계수(K-Factor) 증가에 따른 사업장의 환기 조건 및 효율 개선에 관한 연구 (An Experimental Study for the Improvement of Ventilation Conditions and Effectiveness in the Manufacturing Industry by Increasing the Mixing Factor (K-Factor))

  • 이윤호;이석원;이경호;김현욱
    • 한국산업보건학회지
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    • 제29권3호
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    • pp.343-350
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    • 2019
  • Objectives: This study aims to identify whether ventilation conditions and their effectiveness can be significantly improved in an experimental chamber by increasing the mixing factor (K-Factor). Methods: In a chamber with a volume of $1m^3$, air velocity was measured at six different points with four roof fans in the upper part of the chamber being operated in order. The impact of the ventilation conditions was analyzed when the flow rates were increasing and the first inlet of the chamber was either open or closed. Smoke patterns were also observed at four corner points where ventilation was limited. Kruskal Wallis and Mann-Whitney tests were performed to compare air velocities measured in the chamber. Results: The air velocities measured at only the third point increased significantly from $0.03{\pm}0.03m/s$ (door open) and $0.05{\pm}0.06m/s$ (door closed) with two fans, $0.08{\pm}0.08m/s$ with three fans, and $0.09{\pm}0.09m/s$ with four fans operating (p<0.05). However, air velocities at the four corner points did not significantly increase. Smoke patters also showed that the open inlet of the chamber had no effect on improvement of ventilation conditions and effectiveness. Conclusions: In this study, the air velocities at six points in the chamber did not significantly increase despite the increase in the mixing factor and flow rates of ventilation in the controlled environment. Therefore, the inflow of outdoor air throughout an open inlet and installation of a forced ventilation system can potentially increase the indoor air velocity and improve ventilation condition without an increase in the mixing factor.