• 제목/요약/키워드: Airflow model

검색결과 197건 처리시간 0.026초

초청정 클린룸 공조방식에 따른 기류특성에 관한 수치해석 (A Numerical Analysis on the Airflow Characteristics in Super Cleanrooms with Different Design Types)

  • 노광철;이승철;오명도
    • 설비공학논문집
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    • 제15권9호
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    • pp.751-761
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    • 2003
  • We performed the numerical analysis on the airflow characteristics in the two type of cleanroom systems, which are the axial fan type (AFT) and the fan filter unit (FFU). A computational fluid dynamic model was applied to investigate and compare the nonuniformity, the deflection angle and the air ventilation effectiveness of the two designs of cleanrooms when dampers are adjusted and not adjusted. And the flow-resistance models of the various components were used in this simulation. We know that the airflow characteristics of the cleanrooms are largely affected by damper adjusting And we also find out that the FFU system is superior to the AFT system through the comparison of the cleanroom performance indices.

Flutter behavior of graded graphene platelet reinforced cylindrical shells with porosities under supersonic airflow

  • Mohammad Mashhour;Mohammad Reza Barati;Hossein Shahverdi
    • Steel and Composite Structures
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    • 제46권5호
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    • pp.611-619
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    • 2023
  • In the present work, the flutter characteristics of porous nanocomposite cylindrical shells, reinforced with graphene platelets (GPLs) in supersonic airflow, have been investigated. Different distributions for GPLs and porosities have been considered which are named uniform and non-uniform distributions thorough the shell's thickness. The effective material properties have been determined via Halpin-Tsai micromechanical model. The cylindrical shell formulation considering supersonic airflow has been developed in the context of first-order shell and first-order piston theories. The governing equations have been solved using Galerkin's method to find the frequency-pressure plots. It will be seen that the flutter points of the shell are dependent on the both amount and distribution of porosities and GPLs and also shell geometrical parameters.

설암 환자에서 경부청소술 및 재건술에 따른 수술 전 후 기도 내 공기 유동 특성 (Flow Characteristics of Upper Airway After Neck Dissection and Reconstructive Surgery in Tongue Cancer Patients)

  • 송재민;서희림;염은섭
    • 한국가시화정보학회지
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    • 제22권2호
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    • pp.90-95
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    • 2024
  • This study examined changes in airway airflow characteristics before and after extensive surgery for tongue cancer, which includes neck dissection and reconstruction. Pre- and post-operative CBCT scans were used to model 3D upper airways. Computational fluid dynamics (CFD) simulations analyzed airflow and pressure variations. Results showed a significant reduction in airway volume post-surgery, especially in the posterior tongue and epiglottis areas, leading to increased airflow velocity and complex vortex formations. Pressure drop analysis revealed that post-surgery, higher negative pressure is required for inhalation, indicating increased breathing effort. This suggests that the surgical removal of cancerous tissues and lymph nodes, along with reconstruction, alters airway geometry significantly, potentially impacting respiratory function. The findings highlight the clinical importance of assessing airway changes in tongue cancer surgery to anticipate and mitigate postoperative respiratory complications.

균일류 하에서 작업하는 근로자의 노출농도 예측 (Prediction of Worker's Exposure in a Uniform Freestream)

  • 정유진;김환태;하현철;김태형
    • 한국산업보건학회지
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    • 제10권2호
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    • pp.140-149
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    • 2000
  • In industrial field, there are several operations where a horizontal unidirectional airflow is used to control airborne contaminants. When a worker is immersed in a uniform freestream, a recirculating airflow can be created downstream of the worker by the phenomenon of boundary layer seperation. If the contaminant source and the breathing zone are within this near-wake region, high exposure may occur. The investigation for the effect of contaminant source location on worker exposure was performed by using CFD(Computational Fluid Dynamics). The airflow field was numerically calculated by assuming a steady flow and using the standard $k-{\varepsilon}$ turbulence model. As the results were compared with experimental data, the applicability of CFD was successfully verified. Subsequently, the breathing zone concentrations of the worker were predicted and compared with experimental data. The effects of contaminant density and turbulence intensity of freestream on worker exposure were evaluated.

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하비갑개 수술 후 비강 모델 내의 세부 유동장의 실험 및 전산 유동가시화 (Experimental and Numerical Flow Visualization on Detailed Flow Field in the Post-surgery Models for the Simulation of the Inferior Turbinectomy)

  • 장지원;허고은;김성균
    • 한국가시화정보학회지
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    • 제9권3호
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    • pp.65-70
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    • 2011
  • Three major physiological functions of nose can be described as air-conditioning, filtering and smelling. Detailed knowledge of airflow characteristics in nasal cavities is essential to understanding of the physiological and pathological aspects of nasal breathing. In our laboratory, a series of experimental investigations have been conducted on the airflows in normal and abnormal nasal cavity models by means of PIV under both constant and periodic flow conditions. In this work, more specifically experimental and numerical results on the surgically modified inferior turbinate model were presented. With the high resolution CT data and a careful treatment of the model surface under the ENT doctor's advice yielded quite sophisticated cavity models for the PIV experiment. Physiological nature of the airflow was discussed in terms of velocity distribution and vortical structure for constant inspirational flow. Since the inferior and middle turbinate are key determinants of nasal airflow, the turbinectomy obviously altered the main stream direction. This phenomenon may cause local changes in physiological function and the flow resistance.

난류유동해석을 통한 환기효율의 수치해석적 연구 (Numerical Analysis of Ventilation Effectiveness using Turbulent Airflow Modeling)

  • 한화택
    • 설비공학논문집
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    • 제4권4호
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    • pp.253-262
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    • 1992
  • A numerical procedure is introduced to calculate local ventilation effectiveness using the definitions of local decay rate and local mean age. A low Reynolds number $k-{\varepsilon}$ model is implemented to calculate steady state turbulent velocity distributions, and a step-down method is used to calculate transient concentration distributions. Simulations are carried out for several different values of air change rates and several different diffuser angles in a two-dimensional model of a half scale office room. The results show that the local ventilation effectiveness within a room could vary significantly from one location to another. The nominal air change rate based on the assumption of complete mixing of room air does not provide the local ventilation effectiveness information. It is numerically proved that the local mean age distribution obtained from the transient calculation is equivalent to the steady state concentration distribution with homogeneously distributed contaminant sources.

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이중 취출구에 의한 온풍난방시의 열환경 개선 (Improvement of Thermal Enviromental by Two Air Out in Hot Air Heating)

  • 장인성;김종수
    • 수산해양기술연구
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    • 제33권3호
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    • pp.209-217
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    • 1997
  • The objective of this paper is to improve a discomfort caused by the unequal airflow and vertical temperature difference by buoyancy of the supplied hot air in the conventional hot air heating system. In order to the model experiment we manufactured the hot air heater with two air outlet and a model room. We observed the temperature, velocity and airflow distribution and calculated values of PMV and PPD using mean value of central verticality section's air temperature and velocity. We could improve distribution of vertical temperature and velocity at the central section of the model room owing to correlation of hot air of two air outlet.

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Investigation of aerosol resuspension model based on random contact with rough surface

  • Liwen He;Lili Tong;Xuewu Cao
    • Nuclear Engineering and Technology
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    • 제55권3호
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    • pp.989-998
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    • 2023
  • Under nuclear reactor severe accidents, the resuspension of radioactive aerosol may occur in the containment due to the disturbing airflow generated by hydrogen combustion, hydrogen explosion and containment depressurization resulting in the increase of radioactive source term in the containment. In this paper, for containment conditions, by considering the contact between particle and rough deposition surface, the distribution of the distance between two contact points of particle and deposition surface, rolling and lifting separation mechanism, resuspension model based on random contact with rough surface (RRCR) is established. Subsequently, the detailed torque and force analysis is carried out, which indicates that particles are more easily resuspended by rolling under low disturbing airflow velocity. The simulation result is compared with the experimental result and the prediction of different simulation methods, the RRCR model shows equivalent and better predictive ability, which can be applicable for simulation of aerosol resuspension in containment during severe accident.

제주지역 오존 및 미세먼지 고농도일의 기류패턴에 따른 농도변화와 기상조건 분석 (Variations of Ozone and PM10 Concentrations and Meteorological Conditions according to Airflow Patterns of their High Concentration Episodes on Jeju Island)

  • 한승범;송상근;최유나
    • 한국환경과학회지
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    • 제26권2호
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    • pp.183-200
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    • 2017
  • The classification of airflow patterns during high ozone ($O_3$) and $PM_{10}$ episodes on Jeju Island in recent years (2009-2015), as well as their correlation with meteorological conditions according to classified airflow patterns were investigated in this study. The airflow patterns for $O_3$ and $PM_{10}$ were classified into four types (Types A-D) and three types (Types E-G), respectively, using the HYbrid Single-Particle Lagrangian Integrated Trajectory (HYSPLIT) model and synoptic weather charts. Type A was the most dominant airflow pattern for $O_3$ episodes, being characterized by the transport of airflows from urban and industrial areas in China with the highest frequency (about 69%, with a mean of 67 ppb). With regard to the $PM_{10}$ episodes, Type E was the most dominant airflow pattern, and was mostly associated with long distance transport from Asian dust source regions along northwesterly winds, having the highest frequency (about 92%, with a mean of $136{\mu}g/m^3$). The variations in the concentration of $O_3$ and $PM_{10}$ during the study period were clarified in correlation with two pollutant and meteorological variables; for example, the high (low) $O_3$ and $PM_{10}$ concentrations with high (low) air temperature and/or wind speed and vice versa for precipitation. The contribution of long-range transport to the observed $PM_{10}$ levels in urban sites for different airflow patterns (Types E-F), if estimated in comparison to the data from the Gosan background site, was found to account for approximately 87-93% (on average) of its input. The overall results of the present study suggest that the variations in $O_3$ and $PM_{10}$ concentrations on Jeju Island are mainly influenced by the transport effect, as well as the contribution of local emissions.

SUV 차량 리어 스포일러 최적 형상에 관한 연구 (A Study on the Optimum Design of SUV Rear Spoiler)

  • 박동규
    • 한국산학기술학회논문지
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    • 제19권2호
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    • pp.689-694
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    • 2018
  • 최근 친환경 자동차 개발과 함께 대기 오염 문제 대응을 위해서 자동차 연비 개선은 차량 개발에 있어서 매우 중요하다. 개발 차량의 연비 향상을 위한 요소 중 차량 외관을 타고 흐르는 공기 흐름과 차량 후부에서의 공기 유동 현상은 중요한 요소이다. 특별히 SUV(Sports Utility Vehicle) 차량의 차량 후부 공기 유동은 리어 스포일러 설계 시 고려해야 하는 중요한 설계 항목 중 하나이다. 본 연구에서는 차량의 공기 유동에 영향을 주는 리어 스포일러의 제어 인자를 정하고 각 제어 인자의 공기 유동 특성에 대한 민감도를 시험을 통하여 비교 분석하고, 유동 저항력을 감소시킬 수 있는 스포일러의 최적 제어 인자를 결정하였다. 결정된 최적 제어 인자를 이용한 시험 모델을 만들어 시험평가하고 그 결과 값에 대한 S/N비와 평균값을 분석하여 제어 인자 값을 변경하였다. 변경된 최적 제어 인자 값을 이용한 개선 모델을 다시 제작하고 유동 시험을 실시하여 공기 저항력 감소 효과와 원가절감 효과를 확인하였다.