• Title/Summary/Keyword: Pressure difference sensor

Search Result 95, Processing Time 0.022 seconds

A Study on the Improvement of Comfortable Living Environment by Using real-time Sensors

  • KIM, Chang-Mo;KIM, Ik-Soo;SHIN, Deok-Young;LEE, Hee-Sun;KWON, Seung-Mi;SHIN, Jin-Ho;SHIN, YongSeung
    • 웰빙융합연구
    • /
    • 제5권4호
    • /
    • pp.19-31
    • /
    • 2022
  • Purpose: This study was conducted to identify indoor air quality in various living spaces using sensors that can measure noise, vibration, fine dust, and odor in real time and to propose optimal indoor air quality maintenance management using Internet of Things(IoT). Research design, data and methodology: Using real-time sensors to monitor physical factors and environmental air pollutants that affect the comfort of the residential environment, Noise, Vibration, Atmospheric Pressure, Blue Light, Formaldehyde, Hydrogen Sulfide, Illumination, Temperature, Ozone, PM10, Aldehyde, Amine, LVOCs and TVOCs were measured. It were measured every 1 seconds from 4 offices and 4 stores on a small scale from November 2018 to January 2019. Results: The difference between illuminance and blue light for each measuring point was found to depend on lighting time, and the ratio of blue light in total illumination was 0.358 ~ 0.393. Formaldehyde and hydrogen sulphide were found to be higher than those that temporarily attract people in an indoor office space that is constantly active, requiring office air ventilation. The noise was found to be 50dB higher than the office WHO recommendation noise level of 35 ~ 40dB. The most important factors for indoor environmental quality were temperature> humidity> illumination> blue light in turn. Conclusions: Various factors that determine the comfort of indoor living space can be measured with real-time sensors. Further, it is judged that the use of IoT can help maintain indoor air quality comfortably.

베일러 작업 시 트랙터 소요동력 분석 (Analysis of Power Requirement of Agricultural Tractor during Baler Operation)

  • 김용주;이대현;정선옥;박승제;최창현
    • Journal of Biosystems Engineering
    • /
    • 제36권4호
    • /
    • pp.243-251
    • /
    • 2011
  • Purpose of this study was to analyze power requirement of an agricultural tractor for baler operation. First, a power measurement system was developed and installed in a 75 kW agricultural tractor. Strain-gages with a telemetry system were used to measure torques of transmission and PTO input shafts. An engine tachometer was used to measure rotational speed of transmission and PTO input shafts. The measurement system also included pressure sensors to measure pressure of hydraulic pumps, an I/O interface to acquire the sensor signals, and an embedded system to determine power requirements. Second, field experiments were conducted at two PTO speed levels, and proportion of utilization ratio of rated engine power and power consumption of major parts (transmission input shaft, PTO input shaft, main hydraulic pump, and auxiliary hydraulic pump) were analyzed. Results of usage proportion of engine power for PTO speed level 1 and 2 were 4.1 and 2.2%, 31.5 and 16.3%, 49.6 and 59.7%, 14.4 and 20.8%, and 0.4 and 1.0%, respectively, for ratio of measured engine power to rated engine power of less than 25%, 25 ~ 50%, 50 ~ 75%, 75 ~ 100%, and greater than 100%. The results showed that the usage proportion increased in the range with the ratio of power requirement to rated engine power of over than 50% when the PTO gear was shifted from P1 to P2. Averaged engine power requirement for baling operation, tying and discharging operation, and total operation were 43.3, 37.3, and 42.0 kW and 49.0, 37.0, and 47.4 kW, respectively, for PTO speed level 1 and 2. Paired t-test showed significant difference in power consumption of engine, transmission input shaft, and PTO input shaft for different PTO speed levels. Therefore, the power consumption of engine for baler operation increased when the PTO gear was shifted from P1 to P2. It was indicated that the power requirement of tractor was affected by the PTO rotational speed for baler operation.

APCVD법에 위해 제조된 $\alpha$-$Fa_{2}O_{3}/SnO_{2}$계 박막의 가연성 가스 감지 특성 평가 (Characterization to flammable gas $\alpha$-$Fa_{2}O_{3}/SnO_{2}$ system thin film fabricated by APCVD)

  • 심성은;이세훈;최성철
    • 한국결정성장학회지
    • /
    • 제10권2호
    • /
    • pp.105-110
    • /
    • 2000
  • APCVD(Atrmos phere Pressure Vapor Deposition)법으로 $\alpha$-$Fa_{2}O_{3}/SnO_{2}$계 박막 가스센서 소자를 제조하여 열처리(Heat treatment)하였으며, 가연성 가스($CH_4$, $H_2$, LPG)에 대하여 감지 특성(Sensitivity)을 측정하였다. 감지특성 향상을 위해 소자를 $400^{\circ}C$, $450^{\circ}C$, $500^{\circ}C$, $550^{\circ}C$, $600^{\circ}C$에서 각각 2시간동안 열처리하였으며 $500^{\circ}C$에서 2시간 동안 열처리하였을 때 가장 우수한 감응도를 조사하였다. 특히 $H_2$에 대하여 가장 민감한 반응을 보였다. 최적의 작동온도를 찾기 위해 $100^{\circ}C$~$300^{\circ}C$으로 변화하며 가스 감응도를 조사하였다. 제작된 소자는 작동온도 $175^{\circ}C$, 측정 범위 500ppm ~ 10,000ppm에서 $H_2$일 경우 감지도가 62%~76%를 가졌으며, $CH_2$의 경우 16%~58%, LPG의 경우 8%~37%이였다. 또한 열처리한 것과 안한 것의 감응도의 차이는 약 10%이었다. LPG 1,000ppm에서의 장기안정성은 감응도 30%의 값으로 수렴하였다.

  • PDF

사출금형코어 및 성형수지 변화에 따른 두께 방향 수축률에 관한 연구 (A Study on The Thickness Shrinkage of Injection Molded Parts with The Variation of Injection Mold Core and Molding Materials)

  • 신성현;정의철;김미애;채보혜;손정언;김상윤;윤경환;이성희
    • Design & Manufacturing
    • /
    • 제13권2호
    • /
    • pp.17-21
    • /
    • 2019
  • In this study, selective laser sintered 3D printing mold core and metal core were used to investigate the difference of the thickness shrinkage from the gate of the injection molded part at a constant interval. SLS 3D printing mold core was made of nylon-based PA2200 powder and the metal core was manufactured by conventional machining method. As the PA2200 powder material has low strength, thermal conductivity and high specific heat characteristics compared with metal, molding conditions were set with the consideration of molten temperature and injection pressure. Crystalline resin(PP) and amorphous resin(PS) with low melting temperature and viscosity were selected for the injection molding experiment. Cooling time for processing condition was selected by checking the temperature change of the cores with a cavity temperature sensor. The cooling time of the 3D printing core was required a longer time than that of the metal core. The thickness shrinkage of the molded part compared to the core depth was measured from the gate by a constant interval. It was shown that the thickness shrinkage of the 3D printing core was 2.02 ~ 4.34% larger than that of metal core. In additions, in the case of metal core, thickness shrinkage was increased with distance from the gate, on the contrary, in the case of polymer core showed reversed aspect.

오일러와 라그랑주 관측방식의 연직 자료 비교 (Comparison of the Vertical Data between Eulerian and Lagrangian Method)

  • 배혁진;권병혁;김상진;이경훈;이건명;김유진;서지우;구유정
    • 한국전자통신학회논문지
    • /
    • 제18권6호
    • /
    • pp.1009-1014
    • /
    • 2023
  • 복합 환경 신도시의 시공간 고해상도 관측 자료 확보를 위해 오일러 방식과 라그랑주 방식의 종합 관측이 수행되었다. 라그랑주 방식인 두 라디오존데는 관측지점이 다르거나 관측 시각이 달라도 대체로 서로 일치하는 기압, 풍속, 풍향을 산출하였다. 온도 센서가 노출된 라디오존데는 낮 동안 고도가 높아지면서 태양 복사의 영향을 받아 상대적으로 높은 기온을 산출하였다. 오일러 방식의 윈드프로파일러와 라디오존데 비교에서 관측 시각의 차이에 따른 풍향과 풍속의 차이를 확인하였다. 수평적으로 균질장이 아닐 때, 두 관측방식의 자료를 비교하려면 이류 성분을 고려할 필요성을 의미하는 결과이다. 본 연구에서는 두 관측방식 자료의 효과적 비교를 위해 오일러 방식의 관측 주기에 따른 고도 구간별로 다른 시각의 관측 자료를 사용하는 방법을 제시하였다.