• Title/Summary/Keyword: 2차공기

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Analysis of Heat Transmission Characteristics through Air-Inflated Double Layer Film by Using Thermal Resistance Equation (열저항식을 이용한 공기막 이중필름의 관류전열량 특성 분석)

  • Kim, Hyung-Kweon;Jeon, Jong-Gil;Paek, Yee;Lee, Sang-Ho;Yun, Nam-Kyu;Yoo, Ju-Yeol
    • Journal of Bio-Environment Control
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    • v.22 no.4
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    • pp.316-321
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    • 2013
  • This study was carried out to analyze heat transfer characteristics and heat flow through air-inflated double layer PO film with thermal resistance method. The experiments was conducted in the laboratory controlled air temperature between 258.0 K and 278.0 K. The experimental materials were made up two layers PO film and an inflated-air layer. The thickness of air-inflated layer was fixed at 3 types of 110, 175, 225 mm. The electrical circuit analogy for heat transfer by conduction, radiation and convection was introduced. Experimental data shows that the dominant thermal resistance in heat transfer through the air-inflated double layer film was convection. Calculation errors were 1.1~18.5 W for heat flow. In result, the method of thermal resistance could be introduced for analysis of heat flow characteristics through air-inflated double layer film.

The Estimate of Air Content in the Reservoir Water intake Facilities (저수지 취수시설 공기관 내 공기량 산정식에 관한 고찰)

  • Yun, Dong-Koun;Jo, Jin-Hoon;Kim, Jin-Taek;Han, Guk-Heon;Lee, Seung-Oh
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.174-174
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    • 2012
  • 최근 농업용저수지의 경우 기상이변에 따른 수위조절을 위하여 다량의 수문을 일시에 개방하는 사례가 지역적으로 증가하고 있는 추세이다. 그에 따라 당초 목적인 농업용수를 위한 취수시설이 최근 홍수조절용으로 활용됨에 따른 취수시설 내 공동현상이 발생하고 있다. 이러한 공동현상으로 인해 수시설물의 안정성에 문제가 발생하고 그에 따른 2차 재해위험이 있을 수 있다. 따라서 본 연구에서는 공동현상 방지를 위해 취수시설 공기관 설계기준에 대하여 고찰하였다. 공동현상을 방지하고 홍수량을 적절하게 배제하기 위해서 유입되는 공기량산정식이 필요하다. 공기관 단면결정은 농업생산기반정비사업 설계기준(필댐)의 구조설계 부분에 정리되어 있지만 이는 이수측면에서 설계 및 시공이 진행됨에 따라서 취수에 대한 목적을 달성하기에는 어려움이 있다. 따라서 취수시설의 기능과 역할을 증대시키고자 취수시설 적정 공기관 설계를 분석하여 향후 신규, 개보수 및 현장 유지관리에 활용하기 위한 기초자료를 제시하였다. 이러한 공동현상 및 공기관 설계를 위하여 현장조사, 수치해석, 수리모형시험을 병행하여 문석하였다. 그 결과 취수탑의 형상변수와 수위에 대한 수치해석을 수행하여 변수가 소요공기량에 미치는 영향은 조절게이트 개폐율을 증가시킬수록 소요공기량이 증가하며, 약 80%의 개폐율에서 소요공기량이 최대가 되었다. 방수로 직경이 증가하면, 공기관 입구와 끝단의 압력차가 감소하여 소요공기량이 감소하고, 수위가 증가하면 소요공기량이 증가하는 것으로 분석되었다. 따라서 공동현상 방지를 위해 공기량 산정식은 취수터널에 연직수문이 설치되어 있는 6가지 흐름의 형태에 따라서 $/Q_w=0.04(F-1)^{0.85}$, $Q_a/Q_w=K(F-1)$, $Q_a/Q_w=0.014(F-1)^{1.4}$, $Q_a/Q_w=0.015(F-1)^{1.4}$의 관계식 중 적정한 것을 사용하여야 할 것으로 판단되며, 또한 공기관에 유입부의 허용부압은 수두로부터 1.0m이하로 하고, 공기관 내 풍속은 $45^m/s$를 기준으로 최대 $90^m/s$로 하여야 할 것으로 판단된다.

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A Study on Air Flow Analysis due to the Shape of Automotive Body (자동차 차체의 형상에 따른 공기 유동해석에 관한 연구)

  • Lee, Hyun-Chang;Cho, Jae-Ung
    • Journal of the Korea Convergence Society
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    • v.5 no.2
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    • pp.19-23
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    • 2014
  • In this study, the air resistance is studied by using flow analysis near automotive body due to the its shape. Flow velocities of airs entering into inlet plane are two kinds of 70 km/h and 100 km/h. Air resistance in case of high speed driving(100 km/h) becomes higher than regular speed driving(70 km/h) and the resistance in case of the car with wider cross section at front side becomes higher than narrower cross section. By using this analysis result, the shape of automotive body can be effectively designed in order to reduce the air resistance.

Effects of Air Pressures on the Physiology of Silkworm, Bombyx mori L. (공기압력이 잠체생리에 미치는 영향)

  • Kim, Nak-Jung;Shoh, Hae-Ryong
    • Journal of Sericultural and Entomological Science
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    • v.7
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    • pp.27-37
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    • 1967
  • 본 실험은 공기압력이 잠체생리에 미치는 영향을 알고자 수행되었으며 요약하면 다음과 같다. 1. 잠란 부화에 대하여 미치는 공기압력의 영향은 잠품종간에는 차가 없다. 2. 대기압에서 차가 적은 고압 (1 Pound/inch sguare) 또는 저압 (1 Pound/inch sguare)은 부화를 좋게하나, 압력이 클수록 처리시간이 길수록 부화에 나쁜 영향을 미친다. 3. 압력은 견중, 견층비율, 상견비율에 영향을 미치며 영향을 미치며 대기압에서 차가 클수록 처리시간이 길수록 악영향을 미친다. 4. 압력은 잠아체력을 약화시키며 저압은 특히 해롭다. 5. 잠아조직(잠체, 견사선, 소화기)간에 있어서 지방성분에 현저한 차이가 있으며, 잠체조직에서 견사선으로 이동하는 지방성분은 그 량이 적다. 6. 견형성에 있어서 각성분(탄수화물, 지방, 단백질, 회분)은 서로 밀접한 관계가 있다. 7. 압력은 화아일에 영향을 미치며 저압은 화아시간을 연장, 고압은 단축시킨다. 따라서 자웅간화아일 조절을 압력에 의해 할 수 있다. 8. 잠체생리에 미치는 환경요인은 온도, 습도, 광선뿐만 아니고 압력도 큰 영향을 미친다.

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Analysis of Air Temperature and Humidity Distributions and Energy Consumptions according to Use of Air Circulation Fans in a Single-span Greenhouse (단동온실 내 공기순환팬 사용에 따른 온습도 및 에너지소비량 비교 분석)

  • Lee, Tae Seok;Kang, Geum Choon;Kim, Hyung Kweon;Moon, Jong Pil;Oh, Sung Sik;Kwon, Jin Kyung
    • Journal of Bio-Environment Control
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    • v.26 no.4
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    • pp.276-282
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    • 2017
  • The aim of this study was to compare and analyze air temperature and humidity distribution and energy consumptions according to using air circulation fans in single-span greenhouses. The greenhouses located in Cheongnam-myeon, Cheongyang-gun, Chungcheongnam-do, Korea. There were cherry tomatoes in the greenhouses and the size of greenhouses was as follows;ridge height : 3.2 m, wide : 6 m, length : 95 m. The heating system was composed of a hot-water boiler and 6 FCUs(Fan Coil Unit)-4 FCUs were on bottom with duct and 2 FCUs were installed at 2.0 m. A total of 18 air circulation fans(impeller's diameter : 230 mm) were bilaterally arranged in 2 rows in the experimental greenhouse. The sensors for measuring air temperature and humidity were located at a quarter and three quarters of a length. The height of sensors were 0.8 m, 1.8 m. To calculate energy consumption in greenhouses, water temperature at inlet and outlet in a water pump, volume of water were measured. Form February 3rd to March 23th, temperature, humidity and energy consumptions were measured during heating time(6pm~7am). In a greenhouse without fans, the average differences of temperature and humidity were $0.75^{\circ}C$, 2.31%, respectively. The operation of fans showed their differences to $0.42^{\circ}C$, 1.8%. The standard deviation of temperature and humidity between measuring points in the greenhouse with fans was lower than the greenhouse without fans. Total energy consumptions in a greenhouse without fans were 4,673 kWh. In the greenhouse with fans, the total energy consumptions were 4,009 kWh. The energy consumptions in a greenhouse with fans 14.2% were less than the greenhouse without fans. Therefore, air circulation makes temperature and humidity uniform and saves energy consumptions for heating.

Experimental study on thermal comfort sensation and physiological responses of Koreans in various thermal conditions Part III : The effects of vertical air temperature difference in a room (한국인의 온열쾌적감 및 생리신호에 관한 연구 (Part III: 상하온도차에 관한 실험 결과))

  • 김동규;배동석;금종수;최광환;김성일;임금식;이구형
    • Proceedings of the Korean Society for Emotion and Sensibility Conference
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    • 1998.04a
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    • pp.264-269
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    • 1998
  • 본 연구에서는 겨울철 대류 난방시 발생하기 쉬운 실내 기온의 상하분포가 인체에 미치는 영향에 관하여 청년층의 피험자를 대상으로 한 체감실험을 수행하여 인체의 생리 및 심리반응에 미치는 영향을 검토하였다. 체감 실험 결과 아래와 같은 결론을 얻었다. 1) 머리부위 공기온도가 23$^{\circ}C$ 인 경우 두한족열의 경우가 두열족한의 경우에 비하여 전신온냉감 및 쾌불쾌감이 양호한 것으로 나타났다. 2)두열족한의 경우 발 부위가 서늘하다는 비율은 상하온도차가 증가($\Delta$t 3$^{\circ}C$ ->6$^{\circ}C$)하면 역시 증가하였고, 두한족열의 경우 머리 부위 온도 23$^{\circ}C$에서는 발부위온도를 증가시키면($\Delta$t 3$^{\circ}C$->6$^{\circ}C$)불쾌 비율이 증가하는 경향을 나타냈다. 3) 신체 부위별 온열감과의 관계를 보면 어깨부위에서 느끼는 온열감이 전반적으로 쾌불쾌감 및 전신온냉감과 유의차를 나타냈다. 얼굴 부위에서의 온열감은 머리부위 공기온도 $25^{\circ}C$이상에서 쾌불쾌감과 유의차를 나타냈고, 발 부위에서의 온열감은 머리부위 공기온도 $25^{\circ}C$ 이하에서 전신온냉감과 유의차를 나타냈다.

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Adjustment of the Excess Air Ratio for Stabilizing the Draft System in a Large Capacity Coal Fired Power Plant (대형 석탄화력 발전소에서 통풍계통 안정화를 위한 과잉공기비 조정)

  • Park, Kun Woo;Yoo, Ho-Seon
    • Plant Journal
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    • v.14 no.2
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    • pp.39-44
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    • 2018
  • In this study, I analyzed the effects on stabilizing the draft system, boiler efficiency when changing excess air ratio under 870 MW load limit operation condition in a large capacity coal fired power plant and decided optimum excess air ratio. It is positively necessary to choose adequate excess air ratio for stabilizing draft system because air pre-heater pressure drop and induced draft fan first stall margin are changing when adjusting excess air ratio. This study therefore, measured air pre-heater pressure drop, induced draft fan first stall margin, boiler efficiency, loss and has chosen adequate excess air ratio adjusting excess air ratio from 1.153 to 1.127. So it is recommended that the operation point needs to be changed to 1.127 that is not only to decrease air pre-heater pressure drop and to stabilize draft system and to secure stall margin but also to maintain boiler efficiency to equivalent level.

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SI Engine Hydrocarbon Emissions Reduction with Secondary Air Injection and Coolant Control (2차 공기분사 및 냉각수제어에 의한 SI 엔진의 탄화수소 배기저감)

  • 박기수;조영진;박심수
    • Transactions of the Korean Society of Automotive Engineers
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    • v.8 no.4
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    • pp.51-58
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    • 2000
  • It is well known that the majority of the emissions measured from vehicle exhaust in the US Federal Test Procedure(FTP-75) are emitted during the first 60 seconds. This paper describes an experimental study on SI engine emissions reduction after cold start with interval secondary air injection and coolant control. Secondary air injection after cold start to reduce exhaust emissions causes an exothermic reaction at the exhaust port and gives sufficient air to the catalyst. For that reason engine-out emissions oxidized in the exhaust port and the rapid heating of a catalytic converter after cold start with CSAI and ISAI are estimated. The influence of the coolant temperature on SI engine emissions has been estimated. In the present studycoolant control of the cylinder head tempeature is used to investigate the effect of coolant temperature on SI engine emissions. The results show that engine-out hydrocarbon and carbon monoxide emissions are considerably reduced with interval secondary air injection and coolant control.

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An Experimental Study for Reducing the Exhaust Hydrocarbon Emission at SI Engine Using Timed Secondary Air Injection (2차 공기 분사에 의한 스파크 점화 가솔린 엔진의 배기 Hydrocarbon 저감에 관한 실험적 연구)

  • 심현성;김세준;정석호
    • Transactions of the Korean Society of Automotive Engineers
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    • v.7 no.7
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    • pp.104-112
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    • 1999
  • An experimental study for reducing the exhaust hydrocarbon emission at spark ignition engine using timed secondary air injection is carried out . In this study, secondary air injection timings and durations are controlled to decrease the hydrocarbon emission and to increase exhaust gas temperature at cold and warm-up engine conditions. The hydrocarbon reduction rate and exhaust gas temperature are compared between timed secondary air injection and continuous air injection. The optimum secondary air injection timing for reducing the hydrocarbon emission is at the exhaust valve open timing. At some engine conditions , the hydrocarbon emissions are decreased to 10% of engine raw values and exhaust gas temperatures increase by 20$0^{\circ}C$ with times secondary air injection . Timed secondary air injection has more hydrocarbon reduction rate that continuous secondary air injection except some engine conditions.

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Study of the Shape of Car Body Affecting Flow Resistance of Air Flowing Near Car (자동차 주위에 흐르는 공기의 유동 저항에 미치는 차체의 형상 연구)

  • Lee, Hyun-Chang;Cho, Jae-Ung
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.15 no.8
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    • pp.4707-4712
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    • 2014
  • Considerable fuel in cars is consumed by air resistance. The flow resistance against the air stream was analyzed by flow analysis near the passenger car body. In this study, the models were used were cars available on the real market. Two velocities entered into inlet plane of flow were 80 km/h and 110 km/h using the flow analysis of CFX. As the study method, the velocity of air flow near the car and the pressure on the rear part of car body were investigated at the driving of car. The shapes of the study models were models 1 and 2, and the flow streams were four cases of 1, 2, 3, and 4. In case 1 among the four cases, the maximum pressure ($1.017{\times}10^5Pa$) on the rear part was highest and the maximum velocity (43.81m/s) of air flow near car body was fastest. The air drag force in the case of high speed (110km/h) driving a passenger car was higher than that of a normal driving speed (80km/h). The drag force at wide section area of the car body becomes higher than the narrow section area. The shape of the car body can be effectively designed to reduce the air resistance using the study results of this analysis.