• 제목/요약/키워드: Theoretical Flow Rate

검색결과 296건 처리시간 0.028초

이론적 열유동 해석을 이용한 농산물 저장 및 유통 스마트 유닛로드 컨테이너의 통기공 최적화 설계 (Ventilation Hole Optimum Design of Smart Unit Load Container for Storage and Distribution Agricultural Products by Theoretical Heat Flow Analysis)

  • 최동수;김용훈;김진세;박천완;정현모;김기석;박종민
    • 한국포장학회지
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    • 제28권3호
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    • pp.211-215
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    • 2022
  • Air distribution occupies an important position in the smart unit load container design process for agricultural products. Inner air may be uncomfortable because of its temperature, speed, direction, and volume flow rate. It doesn't matter how efficient the ventilation equipment is if the air is not distributed well. The main aim of this study was to design the inlet and outlet fan locations of smart unit load container for agricultural products. A numerical study was performed on the effects of the location of inlet air and outlet air in relation to the container cooling sources on air distribution and thermal comfort. A concept of combining inner container cooling sources with the exhaust outlet was employed in this investigation. Also, in this research, the developed CFD (Computational Fluid Dynamics) models were thoroughly validated. This system was adopted for use in container spaces, where the exhaust outlet was located. In this study, the location of the inlet was derived through CFD for a container with a size of 1,100×1,100×1,700 mm, and it was derived that the inlet was located at the center of the lower part of the container for efficient air flow. It was efficient to position the outlet through the air inlet in the center of the lower part of the container at the top of the same side.

의류제품의 생산성 향상을 위한 방법 및 작업측정에 관한 연구-MTM법을 중심으로- (A Study on the Method and Work Measurement for Productivity Improvement of Clothing Products-With concentration in MTM Analysis-)

  • 김옥경;이순흥
    • 복식
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    • 제41권
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    • pp.185-206
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    • 1998
  • The purpose of this study was to improve productivity for maximum effects with the present equipments and staff. This study compared and analyzed the mea-sured time by using stop watch method and MTM, which was the new measuring method. The flow and results of this study were as follows: 1. This study investigated the theoretical background the efficiency for production management, and the way of productivity improvement through documentary research. 2. Setting up the standard flow on the experi-mental company production, making out a process chart and measuring the actual working hour. 3. The study measured the allowance time applying work sampling. 4. Each process of the movement analysis was filmed by video to use basic data. 5. MTM analysis was taken by choosing 10 processes from front bodice according to the basic movement of MTM. Through the results, this study exclude unneccesary movements and suggest a method for working ways. 6. Using the actual working hour measured by a stop watch calculated the pitch time and presumed the amount of daily productivity. 7. The result of the work sampling came out as 38% of allowance rate. It was 13% higher than the standard amount of woman's jacket allowance rate, which was 25%. The most influencing factor was work discussion. That was because there were commuication problem of the work way between the operator and leader. More adequate use of flow table and level passing table was needed. There were the problems that inappropriate places and sizes made the distance of movements longer and often needed more adjustment of works and surroundings. To prevent breakdowns equipments check ups were necessary before works. 8. The results of MTM analysis were as follow : the time was reduced 40% than the actual measured time by a stop watch. This was because the leveling of the operator was included in the real calculation. Also, leveling was included in MTM analysis and all the conditions were standarized. Therefore MTM method was a scientidic measuring way of establishing the standard time. The presented method of this study, suggested an ideal method eliminating unneccesary motions, and presented standardization of works. Improvement of working methods, work condition and simplifying motions in each 10 processes reduced the working time from total 656 seconds to 301 seconds. 9. The way and time of working was linked together in the MTM analysis methods. Thus data from MTM help suggest not only establishing standard time but also establishing stan-dard work. Plus it includes various ability for improvements of working ways. So it is an objective method which can be widely used in other work studies. 10. The function of a time study is to determine the amount of work produced with a given method. The work rate is used to establish the cost of labor. The wage of worker must be calculated per unit time which is deter-mined before the time study is made. This study tried to introduce the incentive rule for deciding wages according to the standard time by MTM method.

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이산화탄소 분리를 위한 순환식 중공사 막흡수기에 관한 모델링 연구 (Modeling Study on a Circulatory Hollow-Fiber Membrane Absorber for $CO_{2}$ Separation)

  • Chun, Myung-Suk;Lee, Kew-Ho
    • 멤브레인
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    • 제5권1호
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    • pp.35-43
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    • 1995
  • 이산화탄소를 포함하는 기체혼합물의 분리를 위해 액체막을 기반으로 하여 관련된 많은 연구가 시도되어 왔다. 폐가스로부터 이산화탄소를 분리하기 위해 본 연구에서는, 흡수제(absorbent)가 흡수(absoption)모듈과 전공조작식 탈착(desorption)모듈간을 계속 순환하는, 보다 개선된 형식의 순환식 중공사 막흡수기(circulatory HFMA)를 새로이 구성하고 분리성능에 관한 기초적인 해석을 하였다. 기-액 물질전달 모델식에 수치해를 적용하여 중공사 막 내부에서의 액상에 대한 농도분포를 정량적으로 예측하였고, 순환하는 흡수제의 유속에 따른 투과플럭스와 선택도의 변화거동을 살펴보았다. $CO_{2}/N_{2}$ 원료혼합기체와 흡수제로서 반응이 없는 순수(pure water)에 대해 계산을 수행하였다. 결과로 흡수제의 유량이 증가함에 따라 투과플럭스는 증가하는 반면에 종전 방식에 비해 졸은 값을 나타낸 선택도의 경우는 점차 감소하였다. 한편 투과플럭스는 진공조작변수인 탈착모듈에서의 기상압력($p_{4}$)에 크게 좌우됨을 보았다. 기존의 평판형 막모듈과의 비교로부터 예상했던 바와 같이 본 연구에서의 중공사 막모듈이 우수한 투과율을 나타냄을 확인할 수 있었다. Circulatory HFMA의 실제 설계를 위한 기초해석이 본 연구가 갖는 의의이다.

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병류흐름 중공사 분리막에 의한 메탄 분리 수치해석 (Numerical Analysis for Separation of Methane by Hollow Fiber Membrane with Cocurrent Flow)

  • 이승민;서연희;강한창;김정훈;이용택
    • Korean Chemical Engineering Research
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    • 제53권3호
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    • pp.295-301
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    • 2015
  • 폴리설폰 분리막을 이용한 바이오 메탄 가스 농축 특성을 이론적 방법으로 분석하였다. 병류 흐름 분리막 공정의 지배 방정식을 유도하고 Compaq Visual Fortran 6.6 소프트웨어를 이용하여 유도된 비선형 상미분 방정식을 수치 해석하였다. 공급 메탄 몰분율이 0.7로 주어진 전형적 운전조건에서 분리막 입구로부터 출구로 이동하면서 잔류 측 메탄몰분율은 0.7에서 0.76로 증가하였고 공급유량 대비 잔류유량 비는 1에서 0.79로 감소하였다. 공급 메탄 몰분율 또는 공급 압력이 증가할수록 잔류 측 메탄 몰분율은 증가하였다. 분리막 길이를 고정한 상태에서 분리막 면적이 감소하거나 투과 측 압력 대 공급 측 압력 비가 증가함에 따라 잔류 측 메탄 몰분율이 감소함을 확인하였다. 총 투과 분율이 증가할수록 잔류 측 메탄 몰분율은 증가하였고 메탄 회수율은 감소함을 관찰할 수 있었다.

운영 중 터널에 작용하는 간극수압 평가기법 (Evaluation of pore water pressure on the lining during tunnel operation)

  • 신종호;신용석;최규철
    • 한국터널지하공간학회 논문집
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    • 제10권4호
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    • pp.361-369
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    • 2008
  • 지중터널은 대부분 지하수위 하부에 위치하므로 지하수 처리문제는 터널의 장기운영에 있어 매우 중요하다. 배수형터널의 경우 수리기능이 원활하면 라이닝에 수압이 작용하지 않으나 장기 운영으로 인해 배수시스템의 열화가 진행되면서 라이닝 배면에 설계 시 고려하지 않았던 간극수압이 작용하게 되는데, 이를 잔류수압이라 한다. 잔류수압은 피에조미터로 그 측정이 가능하나 이는 라이닝 및 배수시스템을 훼손할 염려가 있어 부적합하기 때문에 라이닝을 손상시키지 않으면서 작용수압을 평가할 수 있고, 운영 중 라이닝의 건전도 평가(health monitoring) 시 수압상태의 파악이 가능한 비파피 예측기법이 요구된다. 본 논문에서는 이론적 및 수치해석적 방법을 사용하여 운영 중 터널에 작용하는 간극구압(잔류수압) 예측기법을 제시하였으며, 본 해석방법을 이용하면 비파괴 방법으로 라이닝에 작용하는 간극수압의 파악이 가능하다. 제안된 방법은 이론적 예측기법과 수치해석 결과인 정규화 간극수압 분포곡선과를 병용함으로써 터널 운영단계에서의 잔류수압에 대한 안정성 검토에 유용하게 활용될 수 있다.

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딥러닝을 이용한 정삼투 막모듈의 플럭스 예측 (Predicting flux of forward osmosis membrane module using deep learning)

  • 김재윤;전종민;김누리;김수한
    • 상하수도학회지
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    • 제35권1호
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    • pp.93-100
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    • 2021
  • Forward osmosis (FO) process is a chemical potential driven process, where highly concentrated draw solution (DS) is used to take water through semi-permeable membrane from feed solution (FS) with lower concentration. Recently, commercial FO membrane modules have been developed so that full-scale FO process can be applied to seawater desalination or water reuse. In order to design a real-scale FO plant, the performance prediction of FO membrane modules installed in the plant is essential. Especially, the flux prediction is the most important task because the amount of diluted draw solution and concentrate solution flowing out of FO modules can be expected from the flux. Through a previous study, a theoretical based FO module model to predict flux was developed. However it needs an intensive numerical calculation work and a fitting process to reflect a complex module geometry. The idea of this work is to introduce deep learning to predict flux of FO membrane modules using 116 experimental data set, which include six input variables (flow rate, pressure, and ion concentration of DS and FS) and one output variable (flux). The procedure of optimizing a deep learning model to minimize prediction error and overfitting problem was developed and tested. The optimized deep learning model (error of 3.87%) was found to predict flux better than the theoretical based FO module model (error of 10.13%) in the data set which were not used in machine learning.

연속냉각 중 과냉 된 $Pd_{40}Cu_{30}Ni_{10}P_{20}$ 합금 용탕의 실시간 응고거동 관찰 (In Situ Observation of Solidification Behavior in Undercooled $Pd_{40}Cu_{30}Ni_{10}P_{20}$ Alloy Melts during Linear Cooling)

  • 김지훈
    • 한국주조공학회지
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    • 제23권5호
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    • pp.276-285
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    • 2003
  • In the undercooled melt of $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy, the solidification behavior including nucleation and growth of crystals at the micrometer level has been observed in-situ by use of a confocal scanning laser microscope combined with an infrared image furnace. The $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy specimens were cooled from the liquid state to glass transition temperature. 575 K, at various cooling late under a helium gas flow. According to the cooling rate, the morphologies of the solidification front are changed among various types, irregular jog like front, columnar dendritic front, cellular grain, star like shape jog and fine grain, etc. The velocities of the solid-liquid interface are measured to be $10^{-5}{\sim}10^{-8}$ m/s which are at least two orders higher than the theoretical crystal growth rates. Combining the morphologies observed in terms of cooling rates and their solidification behaviors, we conclude that phase separation takes place in the undercooled molten $Pd_{40}Cu_{30}Ni_{10}P_{20}$ alloy. The continuous cooling transformation (CCT) diagram was constructed from solidification onset time at various linear cooling conditions with different rate. The CCT diagram suggests that the critical cooling rate for glassy solidification is about 1.5 K/s, which is in agreement with the previous calorimetric findings.

In situ analysis of capturing dynamics of magnetic nanoparticles in a microfluidic system

  • Munir, Ahsan;Zhu, Zanzan;Wang, Jianlong;Zhou, H. Susan
    • Smart Structures and Systems
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    • 제12권1호
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    • pp.1-22
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    • 2013
  • Magnetic nanoparticle based bioseparation in microfluidics is a multiphysics phenomenon that involves interplay of various parameters. The ability to understand the dynamics of these parameters is a prerequisite for designing and developing more efficient magnetic cell/bio-particle separation systems. Therefore, in this work proof-of-concept experiments are combined with advanced numerical simulation to design and optimize the capturing process of magnetic nanoparticles responsible for efficient microfluidic bioseparation. A low cost generic microfluidic platform was developed using a novel micromolding method that can be done without a clean room techniques and at much lower cost and time. Parametric analysis using both experiments and theoretical predictions were performed. It was found that flow rate and magnetic field strength greatly influence the transport of magnetic nanoparticles in the microchannel and control the capturing efficiency. The results from mathematical model agree very well with experiments. The model further demonstrated that a 12% increase in capturing efficiency can be achieved by introducing of iron-grooved bar in the microfluidic setup that resulted in increase in magnetic field gradient. The numerical simulations were helpful in testing and optimizing key design parameters. Overall, this work demonstrated that a simple low cost experimental proof-of-concept setup can be synchronized with advanced numerical simulation not only to enhance the functional performance of magneto-fluidic capturing systems but also to efficiently design and develop microfluidic bioseparation systems for biomedical applications.

미세기포 발생 펌프에서 생성되는 기포농도와 용존공기농도의 비교 (Comparison of Dissolved Air and Micro-Bubble Concentration by a Micro-Bubble Generating Pump)

  • 이창한;안갑환
    • 한국환경과학회지
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    • 제23권11호
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    • pp.1835-1842
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    • 2014
  • The goal of this study was to evaluate micro-bubble concentration ($C_{air}$) in water by air/water ratio (A/W ratio) with a micro-bubble generating pump. The estimation of micro-bubble concentration is based on the balance of inlet/outlet air and water flow rate. On net A/W ratio to be generated micro-bubble, we found that the obtained the $C_{air}$ are shown as a function of discharge pressure ($P_g$) of the micro-bubble generating pump. The correlation of the $C_{air}$ and the $P_g$ ($C_{air}=3.261P_g-1.754$) was adequately described by the least square methods with a high correlation coefficient (r = 0.9459) and calculated values fit the experimental data quite well. The $C_{air}$ was lower than theoretical dissolved air concentration ($C_{aq}$) calculated by Henry's law. The $C_{air}$ for being operated the micro-bubble generating pump was 6.75 - 39.53 mL/L, however, we found that the optimum of the $C_{air}$ to generate micro-bubble was the range from 10 to 12 mL/L.

이중램제트(이중연소/이중모드)엔진을 위한 램제트/스크램제트의 작동영역분배 및 성능민감도분석 Part II. 성능민감도 (Performance Load Balancing and Sensitivity Analysis of Ramjet/Scramjet for Dual-Combustion/Dual-Mode Ramjet Engine Part II. Performance Sensitivity)

  • 김선경;전창수;성홍계;변종렬;윤현걸
    • 한국항공우주학회지
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    • 제38권6호
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    • pp.596-604
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    • 2010
  • 이중램제트(이중연소 및 이중모드) 추진기관의 작동특성 및 주요 설계인자를 파악하기 위하여 램제트/스크램제트 추진기관에 대한 공기 및 열역학적 관점에서 이론적인 분석을 수행하였다. 엔진의 효율계수를 적용한 열역학 사이클 해석을 수행하여 각 추진기관의 성능특성을 파악하고, 흡입구 성능 특성, 연소기 입구 마하수, 연소기 형상 및 당량비(연료분사량)에 따른 성능민감도를 분석하였다. 이를 바탕으로 이중램제트 추진기관의 성능설계방향을 제안한다.