• Title/Summary/Keyword: Industrial hood

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A Study on Improvement of Inhalation Efficiency of Hood in Ventilation System for Elimination of Industrial Dust (산업용 분진 제거를 위한 배기장치 내 후드의 흡입성능 개선에 관한 연구)

  • Yang, Ho-Dong;Oh, Yool-Kwon
    • Journal of the Korean Society of Safety
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    • v.23 no.2
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    • pp.1-6
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    • 2008
  • The present study investigates on improvement of inhalation efficiency of hood in ventilation system for elimination of industrial dust. The hood, one of local exhaust ventilation system, has an important function to inhale a pollution source such as harmful dust and industrial waste. In this study, in order to improve the inhalation efficiency of the industrial hood, a new device named "gas-guide-device" was attached to inside of hood. The thermal fluid commercial code "Phoenics ver 3.1" was used to analyze the flow velocity distribution at the hood inlet and around the hood after gas-guide-device was installed. And the flow velocity on each position inside and around the hood was actually measured using the hot wire type anemometer under the same condition as that of numerical analysis. Also, in order to identify the optimum shape of gas-guide-device, numerical analysis and experiments are performed under various conditions and their results are presented. The results of this study revealed that the hood attached with gas-guide-device was higher the inhalation efficiency than that for without one and can be possible to improve the capture velocity of the industrial dust. And the optimum shape of gas-guide-device was identified that the ratio of two sizes of gas-guide-device, X to Y, has 4 to 6 on the basis of the hood size in use and the width (b) of gas-guide-device.

Development of Industrial Ventilation system Design Software for the Improvement of Industrial Environment (작업환경 개선을 위한 산업환기 시스템 설계 소프트웨어 개발)

  • 김태형;배병훈
    • Journal of Environmental Science International
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    • v.5 no.6
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    • pp.683-697
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    • 1996
  • Industrial ventilation is a crucial engineering measure to protect workers from hazardous airborne contaminants. Designing a ventilation system is not an easy task. To solve this problem, many U. S. computer programs and softwares have been developed. In Korea, asoftware, called as VPMC, was developed by Korea Industrial Safety Corporation. But VPMC could not stand alone since it can be used to design not a hood, but a ventilation system. In this research, therefore, a preprocessing software was developed. It can be used to design general ventilation system, canopy hood, open surface tank hood. The program was written in Microsoft Visual Basic. In near future, this software will be incorporated into a total package software which can be used to design a whole ventilation system.

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A Study of Local Ventilation Design on PC Programm (국소환기 설계의 전산화에 관한 연구)

  • Yoon, Myong Cho
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.3 no.2
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    • pp.213-226
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    • 1993
  • The purpose of this study is to computerize the design of single source for a duct work system which is essential for the improvement of working places. There are different types of hood, such as general hood, push pull hood and canopy hood. And out of these three types, general hood and canopy hood were used as subjects of this study. The software used here was Quattro Pro 123 programm, and the hardware was IBM PS/SX(type 5510-SK4 S/N 83-05164). And the results are tabulated in

    and
    . All of the hazardous factors of working places, except for physical factors, such as noise, vibration, illumination and etc, are control measurement related. In order words, workiong places that have problems with toxic gas, mist, fume, dust, odors, biological factors or wetness can be improved by means of the local ventilation design. However, the reqires very complicate processes, and in the case of canopy hood, particularly, one runs into difficulties due to frequent discrepancies generated from calculations through many processes. Recently, progress of the computer hardware technics has been dazzling, and also the software is development rapidly. As proven in the results of this study, it is good that designs for industrial ventilation systems are readily available for easy use. It is hopeful that young scholars will develop easier and quicker methods for local ventilation designs in the future.

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  • A Study on Improvement of Industrial Hood in Ventilation System for Elimination of Harmful Material and Dust (유해물질 및 공업용 분진 제거를 위한 산업용 후드 개선에 관한 연구)

    • Kim, Young-Sun;Oh, Yool-Kwon
      • Korean Journal of Air-Conditioning and Refrigeration Engineering
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      • v.20 no.4
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      • pp.238-244
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      • 2008
    • This study investigates on the improvement of inhalation effect of hood which attached new device named as "gas-guide-device" in local exhaust ventilation system for the effective elimination of harmful material and dust in manufacturing factory. The gas-guide-device having a diamond shape is composed of width (b) and two sides of a device (X, Y) and its size is selected the industrial hood under application in manufacturing factory after due consideration. In order to investigate the effect of gas-guide-device, numerical and experimental study is performed that the flow velocity is calculated and is measured by a commercial program "COMSOL $Multiphysics^{TM}$" and a hot wire type of anemometer, respectively. The numerical and experimental results are revealed is a similar pattern and flow velocity has improved to hood attached gas-guide-device. Also, the numerical method and result is also verified the dependance. Moreover, the optimum shape and size of gas-guide-device is revealed that the width (b) and the ratio of two sides of gas-guide-device (X, Y) has 125mm and 4 to 6.

    Fabrication of Scanning Fixture for Flexible Panels (유연 판넬의 스캐닝 고정구 제작)

    • Yin, Jeong-Je
      • Journal of the Korea Academia-Industrial cooperation Society
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      • v.11 no.11
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      • pp.4080-4086
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      • 2010
    • In this study, a scanning fixture for flexible parts such as large automotive panels is developed. For the minimization of the weight deflection of a hood outer panel, the N-2-1 fixture principle for flexible parts is adopted in the fixture design. The designed fixture for a hood outer panel is fabricated using the Alufix system. The springback of the entire hood outer panel can be measured successfully by the laser scanning with the developed fixture, which verifies the usefulness of the proposed design method for the flexible panels.

    A Numerical Study on Performance Improvement of Canopy Hood in Melting Process (용해공정의 캐노피 후드 성능 개선에 관한 수치 해석적 연구)

    • Jung, Yu-Jin;Shon, Byung-Hyun;Lee, Sang-Man;Jung, Jong-Hyeon
      • Journal of the Korea Academia-Industrial cooperation Society
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      • v.14 no.3
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      • pp.1519-1526
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      • 2013
    • This study reviewed the capturing performance of a canopy hood used in some melting processes of a casting manufacturing factory through a site survey. In addition, this study compared and evaluated the flow field and pressure field for the plans to enhance the hazardous air pollutants collection capacity by using CFD model. The case-2(flange attached + double hood) can be improved in terms of collection performance, but is expected to increase in hood static pressure by about 70% more than the existing structure, so it was shown that its site applicability is not good. It is judged that the shape of case-3(flange attached + double cone attached) is most suitable to improve the suction efficiency. This is because a double cone is installed at the center of the opening to concentrate the flow rate on the edge of the hood and control the hume rising to the center of the hood without a static pressure rise via the slope of the cone.

    A Study on Inhalation Force Improvements of Ventilation Hood For Removed a Pollution Source (유해물질 제거를 위한 국소배기장치 후드의 흡입력 증가에 관한 연구)

    • Yang, Ho-Dong;Kim, Young-Sun;Oh, Yool-Kwon
      • Proceedings of the KSME Conference
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      • 2007.05b
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      • pp.2327-2332
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      • 2007
    • This study investigates on the inhalation force improvements of hood consisted one of the local ventilation systems attached the new device named as gas-guidance-device for removed a pollution source. The numerical method applying finite element method is calculated the velocity and pressure distributions of a moving fluid at the beginning and the inside of a hood with and without the gas-guidance-device in hood. And, the experimental study is measured the wind velocity using the anemometer at the same condition of numerical study. Also, the optimum shape of gas-guidance-device which is suitable for hood shape derived from the numerical and experimental results. The results of this study is supplied the important data to an industrial field for control of a pollution source in the engineering aspect. Moreover, the introduced technique of hood attached the gas-guidance-device is very useful to remove the harmful materials such as dust and waste happened in the manufacturing factory.

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    Improvement of Capturing Velocity in the Fume Hood using Computational Fluid Dynamics(I) - Uniform flow (전산유체역학을 이용한 흄후드 제어유속 개선(I) - 균일류)

    • Jung, Jong-Hyeon;Lee, Sang-Woon;Lee, Sang-Man;Shon, Byung-Hyun;Lee, Jung-Hee;Jung, Yu-Jin
      • Journal of the Korea Academia-Industrial cooperation Society
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      • v.14 no.2
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      • pp.962-969
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      • 2013
    • This study used Computational Fluid Dynamics(CFD) to assess the properties of the air current inflow and the flow velocity distribution in the fume hood. In order to verify the effect of improvement, it was also predicted the characteristics of the flow pattern in case the hood face is structurally improved. The assessment of the capture velocity with the existing fume hood confirmed maximum 23 to 30% difference as compared to the root mean square (RMS). And the hood face showed great difference in flow velocity, with the flow velocity in the upper part is 58 to 68% faster than that in the lower part of the hood. So, as a result of the improvement of the hood designed to maintain a steady exhaust at the hood face (that is, installing a baffle on the inner wall and designing the slot type face), a difference of maximum 7% as compared to RMS appeared while maximum 12% differentiation in flow velocity through sections was predicted, showing mitigation of much of the difference in control velocity as compared to the previous structure.

    Evaluation of Capture Efficiencies of Push-Pull Hood Systems by Trace Gas Method under the Presence of Some Cross-draft (방해기류 존재시 추적자 가스법을 이용한 푸쉬풀 후드 효율 평가)

    • Kim, Tae-Hyeung;Ha, Hyun-Chul;Kang, Ho-Gyung
      • Journal of Korean Society of Occupational and Environmental Hygiene
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      • v.16 no.3
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      • pp.290-301
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      • 2006
    • A push pull hood system is frequently applied to control contaminants evaporated from an open surface tank. Efficiency of push pull hood system is affected by various parameters, such as, cross draft, vessel shapes, tank surface area, liquid temperature. A previous work assisted by flow visualization technique qualitatively showed that a strong cross draft blown from the pull hood to push slot could destroy a stable wall-jet on the surface of tank, resulting in the abrupt escape of smoke from the surface. In this study, the tracer gas method was applied to determine the effect of cross-draft on the capture efficiency qualitatively. A new concept of capture efficiency was introduced, that is, linear efficiency. This can be determined by measuring the mass of tracer gas in the duct of pull hood while the linear tracer source is in between push slot and pull hood. By traversing the linear tracer source from the push slot to the pull hood, it can be found where the contaminant is escaped from the tank. Total capture efficiency can be determined by averaging the linear efficiencies. Under the condition of cross-draft velocities of 0, 0.4, 0.75, 1.05 and 1.47m/s, total capture efficiencies were measured as 97.6, 95.4, 94.6, 92.7 and 70.5% respectively. The abrupt reduction of efficiency with cross-draft velocity of 1.47m/s was due to the destruction of tank surface wall-jet by the counter-current cross-draft. The same phenomenon was observed in the previous flow visualization study. As an alternative to overcome this abrupt efficiency drop, the 20% increase of hood flow rates was tested, resulting in 20% efficiency increase.

    A Study on the Hood Performance Improvement of Pickling Tank using CFD (전산유체역학을 이용한 산세조 후드 성능 개선에 관한 연구)

    • Jung, Yu-Jin;Park, Ki-Woo;Shon, Byung-Hyun;Jung, Jong-Hyeon
      • Journal of the Korea Academia-Industrial cooperation Society
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      • v.15 no.1
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      • pp.593-601
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      • 2014
    • In this study, we investigated the methods of improving the capturing ability of acid fume by assessing the performance of slot-type external hood installed on both sides of an open surface tank for acid washing process. A field survey and the results of computational fluid dynamics revealed that capturing performance of existing hoods is very poor. To solve such problem, 'push-pull hood' that pushes from one side of an open surface tank and pulls on the other side was suggested. The initial prediction was that if a push-pull hood is used, the acid fume of an acid-washing tank surface could be moved towards the hood through the push flow. However, this study has confirmed that if the push flow velocity becomes too high, it could spread to other areas due to flooding from the hood. Therefore, if the push air supply is maintained at around 25 $m^3/min$(push 10 m/s), proper control flow is formed on the surface of a tank and acid fume that stayed at the upper part of the tank is smoothly captured toward the hood, significantly enhancing the capturing performance.


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