• 제목/요약/키워드: Cold air distribution system

검색결과 52건 처리시간 0.027초

도시환경 개선을 위한 바람길숲 조성 계획기법 개발 연구 - 대전광역시를 사례로 - (A Study on the Wind Ventilation Forest Planning Techniques for Improving the Urban Environment - A Case Study of Daejeon Metropolitan City -)

  • 한봉호;박석철;박수영
    • 한국조경학회지
    • /
    • 제51권2호
    • /
    • pp.28-41
    • /
    • 2023
  • 본 연구의 목적은 대전광역시를 사례로 도시환경 개선을 위한 도시 바람길숲 조성 계획기법을 개발하고자 하였다. 미세먼지 및 폭염 공간분석을 통해 상대적으로 심각한 집중지역의 유역권을 공간단위로 도출하였고, 해당 유역권 내 찬공기 유동 잠재성이 있는 지역을 바람길숲 조성 대상권역으로 선정하였다. 미세먼지 극심지역은 대덕구 대전산업단지 재생사업지구, 유성구 대덕테크노밸리 일대가 해당되었다. 폭염 발생 우심지역은 대덕산업단지(목상동), 대전산업단지 재생사업지구(대화동), 오정동 밀집주거지(오정동) 일대가 해당되었다. 대전 지점 자동기상관측장비(AWS) 측정 결과 낮과 밤의 평균 풍속은 0.1-1.7m/s, 밤 시간 바람 유동이 낮보다 저조하였고, 밤에 외곽 산림에서 생성되는 찬공기의 이동을 원활하게 유도하는 바람길숲 계획이 필요하였다. 대전광역시 미세먼지·폭염 집중관리 권역은 대전천 권역, 유등천 권역, 갑천-유등천 권역, 갑천 권역으로 총 4개 권역이었다. 바람길숲 조성계획 사례는 4개 권역 중 대전광역시 구도심이며, 바람길 조성 효과가 높을 것으로 추정되는 갑천-유등천 권역을 대상으로 제시하였다. 갑천-유등천 권역은 계족산 서사면 산림, 우성이산 남사면 산림에서 생성된 찬공기를 갑천, 유등천과 가로숲을 통해 연결하여 도심으로 찬공기 확산될 수 있도록 바람길숲을 계획하였다. 바람길숲 대상 권역 선정 후 해당 권역 내 기후톱지도, 바람형성기능 평가도 작성, 바람장미(밤) 현황 파악, 미세먼지 발생현황, 지표면 온도 분포현황을 상세하게 파악하였다. 이를 통해 바람길숲 계획 구상 및 유형별 세부 대상지를 파악하였다. 그리고 바람길숲 유형별 조성방향 설정과 조성방향에 따른 세부 실행계획을 수립하였다.

춘천의 안개발생과 관련된 기상특성분석 및 수치모의 (Analysis of Meteorological Features and Prediction Probability Associated with the Fog Occurrence at Chuncheon)

  • 이화운;이귀옥;백승주;김동혁
    • 한국대기환경학회지
    • /
    • 제21권3호
    • /
    • pp.303-313
    • /
    • 2005
  • In this study, meteorological characteristics concerning the occurrence of fog are analyzed using 4-years $(2000\~2003)$ data at Chuncheon and the probability of prediction is investigated. From the analysis of meteorological characteristics, the fog at Chuncheon occurred before sunrise time and disappeared after that time and lasted for $2\~4$ hours. When fog occurred, on the whole, wind direction was blew the northerly and wind speed was below 2.1m/s. Especially, about $42\%$ of foggy day fell on the calm $(0\~0.2\;ms^{-1})$ conditions. The difference between air temperature and dew point temperature near the surface were mainly less than $2^{\circ}C$. For the lack of water surface temperature, the water surface temperature was calculated by using Water Quality River Reservoir System (WQRRS) and then it was used as the surface boundary condition of MM5. The numerical experiment was carried out for 2 days from 1300 LST on 14 October 2003 to 1300 LST on 16 October 2003 and fog was simulated at dawn on 15 and 16 October 2003. Simulated air temperature and dew point temperature indicate the similar tendency to observation and the simulated difference between air temperature and dew point temperature has also the similar tendency within $2^{\circ}C$. Thus, the occurrence of fog is well simulated in the terms of the difference between air temperature and dew point temperature. Horizontal distribution of the difference between air temperature and dew point temperature from the numerical experiment indicates occurrence, dissipation and lasting time of fog at Chuncheon. In Chuncheon, there is close correlation between the frequency of fog day and outflow from Soyang reservoir and high frequency of occurrence due to the difference between air and cold outlet water temperature.

초음속 노즐 출구에 대칭적으로 설치한 추력방향제어장치인 램프 탭의 연구 (An study on the ramp tabs for thurst vector control symmetrically installed at the supersonic nozzle exit)

  • 김경련;고재명;박종호
    • 한국유체기계학회 논문집
    • /
    • 제10권6호
    • /
    • pp.32-37
    • /
    • 2007
  • Aerodynamic forces and moments have been used to control rocket propelled vehicles. If control is required at very low speed, Those systems only provide a limited capability because aerodynamic control force is proportional to the air density and low dynamic pressure. But thrust vector control(TVC) can overcome the disadvantages. TVC is the method which generates the side force and roll moment by controlling exhausted gas directly in a rocket nozzle. TVC is classified by mechanical and fluid dynamic methods. Mechanical methods can change the flow direction by several objects installed in a rocket nozzle exhaust such as tapered ramp tabs and jet vane. Fluid dynamic methods control the flight direction with the injection of secondary gaseous flows into the rocket nozzle. The tapered ramp tabs of mechanical methods are used in this paper. They installed at the rear in the rocket nozzle could be freely moved along axial and radial direction on the mounting ring to provide the mass flow rate which is injected from the rocket nozzle. In this paper, the conceptual design and the study on the tapered ramp tabs of the thurst vector control has been carried out using the supersonic cold flow system and schlieren system. This paper provides the thrust spoilage, three directional forces and moments and distribution of surface pressure on the region enclosed by the tapered ramp tabs.

Flow Distributions in the Channel of Plate Heat Exchanger Applied in Vacuum Evaporating Distiller System

  • Jin, Zhen-Hua;Park, Gi-Tae;Choi, Soon-Ho;Chung, Han-Shik;Jeong, Hyo-Min
    • 대한설비공학회:학술대회논문집
    • /
    • 대한설비공학회 2008년도 하계학술발표대회 논문집
    • /
    • pp.389-394
    • /
    • 2008
  • Nowadays Plate Heat Exchanger (PHE) is widely used in different industries such as chemical, food and pharmaceutical process and refrigeration due to the efficient heat transfer performance, extreme compact design and efficient use of the construction material. In present work, PHE is applied in the fresh water generator system. Fresh water generators or desalinators are installed in ship to convert seawater to fresh water using heat from engines. PHE is an important part of a condensing or evaporating system. Among many of factors which should be concentrated on, the heat transfer and pressure drop is most important parts during sizing and rating the performance of PHE. Flow maldistribution is common but it will significantly reduce the heat exchanger performance. In this paper provide a overview of PHE cover basic of theory and conduct a numerical approach for flow distribution in plate channel. An experimental study on the performance of fresh water generator system which developed by plate heat exchanger will presented in future research. Thus, extensive experiment and analysis is required to study the thermal and fluid flow characteristics of PHE.

  • PDF

건물 적용을 위한 태양열 집열기 기능을 갖는 BIPV 시스템의 기초적 연구 (A Fundamental Study of BIPV System Functioned as Solar Collector for Building Application)

  • 민성혜;서승직
    • 한국태양에너지학회 논문집
    • /
    • 제27권1호
    • /
    • pp.91-98
    • /
    • 2007
  • Perimeter zone is one of the weakest area in buildings and it makes an increase of heating and cooling loads, in addition to condensation or discomfort with cold-draft to residents in winter. Because of this, it needs to be reinforced by active systems. However, they use fossil fuel, and ultimately greenhouse effect is urged. Thus, we proposed BIPV system functioned as solar collector which can substitute active system. As an fundamental stage, heat balance equation in steady-state by Fortran was used not only, in winter for pre-heating effect and electric power capacity during the day, but also in summer, for the latter during the day and sky radiation effect during the night. Especially, we should have considered shading on PV by IES Suncast, since even a little bit of it makes the efficiency too low for the PV modules to work. As a result, in summer day, the PV panel should be tiled in 70 degrees to gain the most electric power. Moreover, we could verify that this model makes higher temperature and heat flux under 0.02 m/s. On the other hand, the PV had the high efficiency with high velocity because of cooling effect behind the PV. Therefore, we should regard the air current distribution later on.

5-cycle 모드 특성에 따른 온실가스 배출특성 및 배출량 보정식 개발 연구 (A Study on the Developments of Emission Correction Formula and Emission Characteristics of Greenhouse Gas by 5-Cycle Mode)

  • 박진성;임재혁;이민호;김기호
    • 동력기계공학회지
    • /
    • 제21권6호
    • /
    • pp.94-100
    • /
    • 2017
  • Due to the environmental problems caused by the greenhouse effect, regulation of $CO_2$ emissions is getting stronger day by day. In paricular, regulations of automobiles $CO_2$ emissions are being strengthen. However, existing $CO_2$ measurement methods do not reflect the environment and operating conditions on actual roads. Emissions of $CO_2$ can be increased by various conditions such as environmental condition(temperature and humidity) and driver's tendency(aggressive and passive). Therefore it is necessary to reflect the conditions of various actual roads such as 5-cycle test method on behalf of the existing $CO_2$ emission measurement method. The 5-cycle measurement method has five test modes; FTP-75, HWFET, US06, SC03, Cold FTP-75. The method reflects the following three environments and operating conditions as compared to conventional method; Using heater at low temperature, Aggressive driving such as rapid acceleration or deceleration, Using air conditioner at high temperature. Because of these various conditions of each test cycle, the 5-cycle method can reflect actual environments and operating conditions. This paper attempt to analyze $CO_2$ emission characteristics based on the results measured through the 5-cycle mode and develop the correction formula that can derive the results of the 5-cycle test method using existing test methods. As a result, the developed correction formula is expected to reduce $CO_2$ emissions and cut down expense for testing 5-cycle mode.

해양심층수 기능성소금 제조를 위한 분무건조기 특성의 수치해석적 연구 (A Numerical Study on the Spray Dryer Characteristic for Manufacture of Deep Sea Water Salt)

  • 김현주;신필권;박성제
    • 한국해양공학회:학술대회논문집
    • /
    • 한국해양공학회 2003년도 추계학술대회 논문집
    • /
    • pp.24-29
    • /
    • 2003
  • Deep sea water has cold temperature, abundant nutrients and minerals, and good water quality that is pathogen-free and stable. Compared with surface water, deep sea water contains more nutrition salt, such as nitrogen and phosphor. Moreover, if has the good balance of minerals. Because of the ability of the spray drying process to produce a free-flowing power considering of spherical particles with a well-defined size distribution and the rapid drying times for heat-sensitive material, spray drying is attractive for a wide range of applications spray drying is a unique unit operation in which powders are produced from a liquid feed in a single processing step. Key component of the process are atomizer, spray chamber. Design of spray chamber should be based on the atomizer type, the production rate, and the particle size required. Because of the complex processes taking place during spray drying, traditional design method are based on pilot-plant tests and empirical scale-up rules. Modern technique such as CFD have a role to play in design and troubleshooting.

  • PDF

추력방향제어장치인 램 탭의 개념설계 및 성능 연구 (A performance study and conceptual design on the ramp tabs of the thrust vector control)

  • 김경련;고재명;박순종;박종호
    • 대한기계학회:학술대회논문집
    • /
    • 대한기계학회 2007년도 춘계학술대회B
    • /
    • pp.3068-3073
    • /
    • 2007
  • Aerodynamic forces and moments have been used to control rocket propelled vehicles. If control is required at very low speed, Those systems only provide a limited capability because aerodynamic control force is proportional to the air density and low dynamic pressure. But thrust vector control(TVC) can overcome the disadvantages. TVC is the method which generates the side force and roll moment by controlling exhausted gas directly in a rocket nozzle. TVC is classified by mechanical and fluid dynamic methods. Mechanical methods can change the flow direction by several objects installed in a rocket nozzle exhaust such as tapered ramp tabs and jet vane. Fluid dynamic methods control the flight direction with the injection of secondary gaseous flows into the rocket nozzle. The tapered ramp tabs of mechanical methods are used in this paper. They installed at the rear in the rocket nozzle could be freely moved along axial and radial direction on the mounting ring to provide the mass flow rate which is injected from the rocket nozzle. In this paper, the conceptual design and the performance study on the tapered ramp tabs of the thurst vector control has been carried out using the supersonic cold flow system and shadow graph. Numerical simulation was also performed to study flow characteristics and interactions between ramp tabs. This paper provides to analyze the location of normal shock wave and distribution of surface pressure on the region enclosed by the tapered ramp tabs.

  • PDF

Study on Cooling Characteristics of the Tunnel Type Pressure Pre-Cooling System

  • Lee W. O.;Yun H. S.;Lee K. W.;Jeong H.;Cho K. H.;Cho Y. K.;Lee J. H.
    • Agricultural and Biosystems Engineering
    • /
    • 제4권2호
    • /
    • pp.58-65
    • /
    • 2003
  • An understanding of the cooling requirements of horticultural commodities begins with adequate knowledge of their biological responses. All fresh horticultural products are living organisms, carrying on the many biological processes that are essential to the maintenance of life. The pre-cooling is essential technique for the construction of cold chain system, which is necessary to maintain marketing quality of fresh produces during the transportation and distribution. The purpose of this study is to develop the pressure cooling tunnel using conveyer for the reduction of labor and improvement of pre-cooling efficiency. Performance of developed facility was tested for the strawberries, tomatoes and Chinese cabbages. Cooling ratio as a result of pre-cooling efficiency was 1.57, 1.56 and 1.32 for strawberries, tomatoes, and Chinese cabbages respectively. Cooling ratio decreased with increasing the distance of heat conduction from surface to center. The cooling ratio of Chinese cabbages was lower than that of fruit because of its head and leaf. In aspect of cooling uniformity, there was no significant difference of final temperature among inlet, outlet and middle layers of cold air in fresh produces. After pre-cooling treatment, quality changes were measured for the weight loss, Vit. C content, and titratable acidity. The quality of pre-cooling treatment was better than that of non-treatment and was kept on well during long-term storage.

  • PDF

차가운 표면위에서의 습공기 유동의 습도 및 속도가 착상분포 특성에 미치는 영향 (Effects of Humidity and Velocity on Frost Distribution Characteristics of Humid Air Flow on Cold Surfaces)

  • 권정태;류근호;임효재;한지원;권영철
    • 에너지공학
    • /
    • 제14권4호
    • /
    • pp.213-218
    • /
    • 2005
  • 습공기 유동의 착상조건하에서의 열 및 물질 전달 특성을 이해하기 위해서, 미니 열풍동을 제작하고 열풍동의 시험부인 사각덕트 아랫면에 알루미늄 평판을 설치하고 평판의 중심력에 전기냉각모듈(Peltier device)을 부착하였다. 현미경(해상도 0.05mm)을 이용하여 습공기 유동 방향으로 알미늄 평판위의 7개점의 서리 두께를 측정하였으며, 전자저울(해상도 1mg)을 이용하여 각 운전시간대까지의 발생된 서리의 총괄 질량을 측정하였다. 여러 가지의 실험조건에서 서리두께와 서리질량 그리고 알미늄 평판상의 온도 분포 등을 구하고, 이로부터 습공기 유동의 습도 및 속도가 서리의 성장 특성에 미치는 영향을 분석하였다.