년 - 년
저속치환 공조시스템에 대한 연구(I) - 냉방의 경우 -
한국기계항공기술학회(구 한국기계기술학회) 한국기계항공기술학회지(구 한국기계기술학회지) 제3권 제1호 2001.06 pp.65-73
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4,000원
압력손실을 고려한 양돈시설의 반폐회로 환기시스템의 환기량 및 혼합비율 평가
[Kisti 연계] 한국농공학회 한국농공학회논문집 Vol.65 No.1 2023 pp.61-72
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The increase in the rearing intensity of pigs has caused deterioration in the pig house's internal environment such as temperature, humidity, ammonia gas, and so on. Traditionally, the widely used method to control the internal environment was through the manipulation of the ventilation system. However, the conventional ventilation system had a limitation to control the internal environment, prevent livestock disease, save energy, and reduce odor emission. To overcome this problem, the air-recirculated ventilation system was suggested. This system has a semi-closed loop ventilation type. For designing this system, it was essential to evaluate the ventilation rates considering the pressure loss of ducts. Therefore, in this study, pressure loss calculation and experiment were conducted for the quantitative ventilation design of a semi-closed loop system. The results of the experiment showed that the inlet through which external air flows should always be opened. In addition, it was also found that for the optimum design of the semi-closed loop ventilation system, it was appropriate to install a damper or a backflow prevention device rather than a ventilation fan.
수지의 혼합장치의 최적화 시스템을 위한 분쇄 및 분산 유동해석에 관한 연구 KCI 등재
한국기계항공기술학회(구 한국기계기술학회) 한국기계항공기술학회지(구 한국기계기술학회지) 제21권 제1호 2019.02 pp.171-175
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4,000원
This study was successfully achieved out the optimized system for dispersing and mixing condition of resin liquid. The flow analysis was simulated according to the shape of the impeller and the stirring tank using ANSYS software and optimized in advanced design. As a result, it was confirmed that the shape and double number of the impeller on the flow field are influenced better effects in a range of mixing and diffusion areas comparing to single number of impeller. It was considered that stirring was performed more quickly and efficiently under the condition of double numbers and saw tooth type impeller. This result can be applied practically for the mixing tank in the industrial application and avaliable used to make a new system for painting equipment.
서라운드 사운드 녹음을 위한 장비 셋팅 및 믹싱에 관한 연구
한국공학안전보건예술학회 한국공학안전보건예술학회 논문지 제5권 1호 2013.08 pp.85-91
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4,000원
국내에서의 공연실황 녹음은 스테레오 방식과 스폿 마이킹(spot-miking) 방식을 혼합한 방식으로 주로 이루어져왔으나 최 근에는 복수의 모노 마이크를 이용한 서라운드 마이크 어레이(Surround Microphone Array)나 “구”형태의 서라운드 마이크 와 휴대용 멀티 트랙 녹음기와 DAW(Digital Audio Workstation) 시스템을 조합하여 녹음 자체를 서라운드 포맷으로 녹음하 는 방식이 시도되고 있다. 서라운드 사운드가 가지고 있는 형식상의 장점은 잘 알려져 있으나 실제 공연실황 녹음을 서라운 드로 진행하고 스테레오 방식과 비교 청취하는 경우는 적었으며 본 연구를 통하여 녹음, 믹싱 및 비교청취를 함으로써 서라 운드 녹음의 장점을 확인할 수 있었다.
Stereo and spot-miking was a major recording method at concert hall. However, many types of surround recordings are tried recently. Combining a surround microphone array which is made of multiple mono microphones or a surround microphone and portable multi-track recorder or DAW(Digital Audio 'Workstation) system, more and more venues are recorded and mixed in surround sound system. The benefits of surround sound format are well known, however, not many surround recording were tried and analyzed before. Through this research, we have found that the advantage of surround recording and mixing over conventional stereo format.
냉각제습 및 혼합과정에 의한 백연저감 열교환 시스템의 열전달 성능 KCI 등재
한국기계항공기술학회(구 한국기계기술학회) 한국기계항공기술학회지(구 한국기계기술학회지) 제23권 제6호 2021.12 pp.1112-1118
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4,000원
In this paper, a heat exchange system using cooling dehumidification and mixing process was proposed as an experimental study for a white smoke reduction heat exchanger system under winter condition. The white smoke reduction heat exchange system is divided into an EA part, SA part, W part and mixing zone. For the operating conditions, three types (Cases 1, 2, and 3) were selected depending on whether EA fan, SA fan, and A-W heat exchanger were operated. In addition, in order to visualize the white smoke exhausted from the mixing zone, it was photographed using CCTV. In order to investigate the performance of the white smoke reduction heat exchange system, the temperature reduction rate and absolute humidity reduction rate of EA and the heat recovery rate of W were calculated. The temperature change of EA and SA according to operating conditions was most effective in Case 3, and the temperature and absolute humidity at the outlet of the mixing zone were greatly reduced. From the results of the white smoke visualization, it was confirmed that the white smoke generation mechanism was different depending on the operating conditions, and the amount of white smoke generation was greatly reduced.
A Study on User Interface Based on Hand Gesture Recognition for Live Video Mixing System
보안공학연구지원센터(IJUNESST) International Journal of u- and e- Service, Science and Technology Vol.8 No.9 2015.09 pp.317-326
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Development in digital technology and video technology significantly contributes to increases of the utilization of video sources in a variety of performances. At the same time, the necessity to promptly control and change the video gets higher, especially in live performance. In these circumstances, if the performer could control the video depending on actions without need of direct contact to the device, live video performance will be much faster and more convenient. In other cases, DJ who carries out mixing music in club and DJ party would like to take a role of visual performer as well, or control background video in realtime corresponding to the music being played. In these cases, gesture recognition based non-contact interface could be advantageous over a traditional way of touching or contacting the device directly. To this end, the starting point of our study is to devise the user interface that enables a live video production making use of hand gesture recognition device. However, the hand gesture recognition based user interface might cause unintended wrong recognition due to similarity of device-controlling hand gesture and normal hand gesture. To prevent this, we introduce the gesture-recognition mode switcher using pre-gesture.
Design and Implementation of Fire Detection System Using New Model Mixing KCI 등재
국제문화기술진흥원 International Journal of Advanced Culture Technology(IJACT) Volume 9 Number 4 2021.12 pp.260-267
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In this paper, we intend to use a new mixed model of YoloV5 and DeepSort. For fire detection, we want to increase the accuracy by automatically extracting the characteristics of the flame in the image from the training data and using it. In addition, the high false alarm rate, which is a problem of fire detection, is to be solved by using this new mixed model. To confirm the results of this paper, we tested indoors and outdoors, respectively. Looking at the indoor test results, the accuracy of YoloV5 was 75% at 253Frame and 77% at 527Frame, and the YoloV5+DeepSort model showed the same accuracy at 75% at 253 frames and 77% at 527 frames. However, it was confirmed that the smoke and fire detection errors that appeared in YoloV5 disappeared. In addition, as a result of outdoor testing, the YoloV5 model had an accuracy of 75% in detecting fire, but an error in detecting a human face as smoke appeared. However, as a result of applying the YoloV5+DeepSort model, it appeared the same as YoloV5 with an accuracy of 75%, but it was confirmed that the false positive phenomenon disappeared.
한국생물공학회 한국생물공학회 학술대회 2009 추계학술대회 및 국제심포지움 2009.11 p.87
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A novel disposable bioreactor system utilizing a pneumatic mixing technology has been developed recently (PBS Biotech, Inc.). Since this technology does not require any external mechanical device for liquid agitation, it can offer a simple, compact, and scalable bioreactor system. Cell culture performance in larger scale units up to 250 L was studied and compared to that of a 300 L stainless steel bioreactor. In addition, 2 L units of this bioreactor system were evaluated to be representative scale-down models that can be used for process development and characterization while maintaining the same mixing mechanism. In this presentation, the new features of this novel disposable bioreactor will be introduced and then the results from biological tests involving CHO cell lines expressing recombinant monoclonal antibodies will be discussed.
보안공학연구지원센터(IJSIP) International Journal of Signal Processing, Image Processing and Pattern Recognition Vol.9 No.7 2016.07 pp.213-220
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Optical networks offer higher data rates, and are fast and error free. However, non-linearity hinders them from being a perfect medium. Especially, FWM degrades the transmission characteristics of the optical systems and networks. FWM may result in crosstalk among optical channels. The paper presents a new approach to suppress the effect of four wave mixing using combination of hybrid modulator and optical rectangular filters. The performance of DWDM system and behaviour of four wave mixing is analysed. Hybrid modulator used here consists of Mach-Zehnder modulator followed by dual drive Mach-Zehnder and AM modulator. The system comprises of 8 channels each of data rate 5 Gbps. Also, comparative analysis is carried out using different fibres (Single mode fibre and ITU-T G.655). The maximum achieved Q-factor for SMF is 13.05 and 17.87 in case of ITU-T G.655.Dispersion compensating fibre is used to control dispersion. System is analysed for the length of 580 km in case of SMF and 530 km in case of ITU-T G.655.
[Kisti 연계] 한국신재생에너지학회 한국신재생에너지학회 학술대회논문집 2011 p.100
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본 연구과제는 유망상품인 "발전용 MCFC 모듈형 BOP" 중 가습기 내부에 장착되는 연료-물 Mixing 시스템을 개발하는 것이다, 가습기 내부에서 공급된 연료-물은 연료전지 스택(Stack)으로부터 가습기로 유입된 고온의 가스로부터 열을 공급 받아 증발 및 혼합과정을 거치게 되며, 스팀-연료 혼합기로 형성되어 개질기(reformer)로 공급되게 된다. 이때, 물과 연료의 공급 상태에 따라 균일한 스팀-연료 혼합기가 형성되는지가 결정되며, 경우에 따라서는 고온의 가습기 내부의 국부적 온도분포의 큰 차이를 발생시켜 용접부의 균열을 발생시킬 수도 있기 때문에, 가습기의 설계와 함께 중요한 장치로 여겨진다. 본 연구에서는 다양한 가습기에 적용이 가능한 Mixer 모델을 설정하고, Analytic calculation을 통한 노즐설계와 1pass/Full scale 성능 실험 장치를 통해 상용화를 목표로 추진 되었으며, 특히 노즐별 유량분배 변동율은 ${\pm}3%$ 이내로 달성하고, 스팀/연료 공급 비율은 2:1 이내로 달성할 수 있는 시스템을 구축하게 될 것이다. 최종적으로 개발 완료 시 다양한 가습기에 직접 장착하여 운전이 가능할 수 있도록 실용화에 중점을 두고, 보다 안정적인 성능을 나타낼 수 있는 제품 개발이 가능하리라 사려된다.
Development of a Gas Mixing System for Controlled Atmosphere(CA) Chambers
[Kisti 연계] 한국농업기계학회 Agricultural and biosystems engineering Vol.2 No.1 2001 pp.31-36
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Based on the viscous flow characteristics of gas through capillary tube, a simple and cheap gas mixing system was developed for controlling gas compositions in CA chambers. The gas flow rate through capillary tube had a linear relationship with pressure, (length)$^{-1}$ and (radius)$^4$ of capillary tube, which agreed well with Hagen-Poiseuille’s law. The relationship between flow rate and combined parameters was described as Q=0.000209724($\pi$ r$^4$P/$\mu$L) and the coefficient of determination was 0.9984. The developed system could control gas concentrations in CA chambers within $\pm$0.3% deviation compared to the preset concentrations. It was possible to predict the required time and required gas flow rate for exchanging the gs in CA chamber to a certain concentration of gas by using the mathematical model developed in this study.
Study on the Gas-Liquid Mixing System by Using Ejector
[Kisti 연계] 한국동력기계공학회 한국동력기계공학회지 Vol.12 No.3 2008 pp.5-11
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산업공정에서 널리 사용하는 반응기는 성질이 상이한 물질을 혼합하는 시스템으로서 본 연구에서는 이젝터(ejector)에 의한 반응기의 개발을 수행하였다. 액체-가스 이젝터는 구동유체에 의하여 기체가 흡입되면서 각종 유해가스를 제거하는 목적 또는 기체와 액체의 혼합 등 목적으로 사용된다. 본 실험에서 액체구동 가스혼합반응기의 실험 장치를 구축하고 이젝터 내부의 유동패턴과 기체용해도 자료를 도출하며 고효율 이젝터 설계를 위한 진공도 측정과 디퓨저 각도가 다른 이젝터의 실험 및 수치해석을 수행하였다. 이젝터의 성능은 흡입 측에서의 진공압력으로 평가되며 이 진공압력은 이젝터의 노즐 설계 및 유동조건에 의하여 결정되므로 이에 대한 기본적인 특성 도출이 선결되어야 한다. 순환유체의 유량이 70LPM, 80LPM 90LPM조건에서 두 가지 디퓨저에 대하여 비교실험을 수행하였다. 실험적 연구와 수치해석연구를 통하여 혼합성능과 이젝터의 내부유동특성에 대하여 고찰한 결과 디퓨저의 각도가 5.0도일 때 진공도가 더욱 높으며 구동액체의 유량이 작을 때는 진공도차이가 크지만 유량이 증가함에 따라 진공도 차이가 감소된다. 구동액체의 유량이 증가할수록 용존산소농도는 증가하며 디퓨저의 각도가 5.0도일 때는 용존산소 농도가 더 높게 나타나는 것을 확인할 수 있었다.
CFD Simulation of Multiphase Flow by Mud Agitator in Drilling Mud Mixing System
[Kisti 연계] 한국해양공학회 한국해양공학회지 Vol.35 No.2 2021 pp.121-130
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In this study, a computational fluid dynamics (CFD) simulation based on an Eulerian-Eulerian approach was used to evaluate the mixing performance of a mud agitator through the distribution of bulk particles. Firstly, the commercial CFD software Star-CCM+ was verified by performing numerical simulations of single-phase water mixing problems in an agitator with various turbulence models, and the simulation results were compared with an experiment. The standard model was selected as an appropriate turbulence model, and a grid convergence test was performed. Then, a simulation of the liquid-solid multi-phase mixing in an agitator was simulated with different multi-phase interaction models, and lift and drag models were selected. In the case of the lift model, the results were not significantly affected, but Syamlal and O'Brien's drag model showed more reasonable results with respect to the experiment. Finally, with the properly determined simulation conditions, a multi-phase flow simulation of a mud agitator was performed to predict the mixing time and spatial distribution of solid particles. The applicability of the CFD multi-phase simulation for the practical design of a mud agitator was confirmed.
NUMERICAL EXPERIMENTS OF VERTICAL MIXING IN ESTUARINE SYSTEM
[Kisti 연계] 한국수자원학회 한국수자원학회 학술대회논문집 2005 pp.924-925
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Study on the Gas-Liquid Mixing Characteristics in Reactor System Using Ejector
[Kisti 연계] 대한기계학회 대한기계학회 학술대회논문집 2007 pp.2708-2713
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The aim of this paper is further studies to achieve deeper understanding in this field. First investigate the influence of operating conditions and design parameters on the hydrodynamics and the mass transfer properties of a loop reactor. This paper provides a literature review on the ejectors applications in the mixing system. A number of studies are grouped and discussed in several topics such as the background, theory of ejector, mixing characteristics, optimization of the system. Since the high efficiencies reactor using ejector widely used in gas-liquid system, especially in a number of chemical and biochemical processes. This is due to their high efficiency in gas dispersion resulting in high mass transfer rate and low power requirements. Thus ejector has been applied to the mixing system. An investigation on hydrodynamics and mass transfer characteristics of gas-liquid ejector has been carried out using three-dimensional CFD modeling.
[Kisti 연계] 대한설비공학회 Korean journal of air-conditioning and refrigeration engineering Vol.18 No.4 2010 pp.297-307
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The use of two-phase ejector in improving the performance of transcritical $CO_2$ refrigeration system needs further experimental verification particularly the effects of its geometrical design. In this study, experimental data were gathered for ejectors with different mixing cross-sectional areas at different operating temperature and pressure. The results have shown that a smaller mixing area yields higher efficiency due to its higher pressure recovery and entrainment ratio, but its advantages are limited to lower ejector inlet pressure $P_c$. A larger mixing area is required for higher cooling capacity which can be achieved at higher ejector inlet pressure or lower ejector inlet temperature but excessive increase in this area considerably decreases the efficiency of the system. In this study, the ejector with the largest mixing area was the most inefficient and reduced the COP up to 10% compared to most efficient type. It demonstrates the significant effect of ejector's geometrical features, particularly the mixing cross-sectional area and its related geometrical ratio, in the performance of $CO_2$ ejector system. The effect of motive nozzle inlet condition on pressure recovery profile has been more evident for ejector with smaller mixing area while the evaporator temperature has the least effect in the performance of the system. In the conditions used in this study, using ejector yielded a COP improvement of up to 35% compared to the conventional system.
The Electron temperature and Density properties of Mixing gas in ICP Lighting system(Ne:Xe, Ne:Ar)
[Kisti 연계] 대한전기학회 대한전기학회 학술대회논문집 2005 pp.2424-2426
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In whole world consciousness of environment maintenance have increased very quickly for he end of the 20th century. To use and disuse toxic substances have been controled at the field of industry. Also the field of lighting source belong to environmental control. And in the future the control will be strong. In radiational mechanism of fluorescence lamp mercury is the worst environmental problem. In radiational mechanism of fluorescence lamp mercury is the worst environmental problem root. In the mercury free lighting source system the Xe gas lamp is one type. And the Ne:Xe and Ne:Ar mixing gas lamp improvements firing voltage of Xe gas lamp. Purpose and subject of this study are understand, efficiency, ideal of Ne:Xe and Ne:Ar plasma which mercury free lamp. Before ICP was designed, basic parameters of plasma, which are electron temperature and electron density, were measured and calculated by langmuir probe data. Property of electron temperature and electron density were confirmed by changing ratio of Ne:Xe and Ne:Ar.
The Proposal of a Quantitative Evaluation Method on Mixing Loss in the HVAC System Design
[Kisti 연계] 대한설비공학회 Korean journal of air-conditioning and refrigeration engineering Vol.9 No.2 2001 pp.62-68
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It is a serous subject for energy conservation to prevent the energy loss caused by the mixture of heated and cooled air jets in perimeter and interior zone of a building operated with tow kinds of air-conditioning system simultaneously. The purpose of this paper is to clarify the quantitative and qualitative mechanisms of mixing loss and to propose a evaluation method for it. By using the dynamic heat load calculation, heat extraction load of a typical office building in Busan are calculated. According to the results, numerical simulations based on CFD(Computational Fluid Dynamics) were performed in order to evaluate mixing loss in the physical size of HVAC system. Then, the distributions of air temperature and airflow patterns according to the differences of set-point temperature are analyzed to grasp relations how to influence mixing loss.
Evaluation of Microwave Dielectric Properties of MgO-TiO2 System by Dielectric Mixing Rules
[Kisti 연계] 한국세라믹학회 한국세라믹학회지 Vol.47 No.2 2010 pp.163-168
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Effects of compositions on the microwave dielectric properties of the MgO-$TiO_2$ system were investigated as a function of the molar ratio of MgO to $TiO_2$ ($0.9{\leq}MgO/TiO_2\;(x){\leq}1.2$). With the compositional changes, secondary phases of $MgTi_2O_5$ and $Mg_2TiO_4$ were also detected along with $MgTiO_3$. Microwave dielectric properties of the specimens were dependent on the types of phases developed in the sintered specimens. A single phase of $MgTiO_3$ showed a dielectric constant (K) of 18.2, a quality factor (Qf) of 198,000 GHz, and a temperature coefficient of resonant frequency (TCF) of $-51\;ppm/^{\circ}C$. However, the dielectric properties of the specimens with a secondary phase of $MgTi_2O_5$ (K=19.9, Qf=48,000 GHz) and/or $Mg_2TiO_4$ (K=15.6, Qf=56,000 GHz) were worsened. Dependence of the microwave dielectric properties on the secondary phase of the MgO-$TiO_2$ system was also discussed in terms of dielectric mixing rules.
[Kisti 연계] 한국세라믹학회 한국세라믹학회지 Vol.44 No.9 2007 pp.477-482
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The effect of the mixing ratio of compounds in a slag-OPC-Gypsum system on the physical properties of Slag cement is investigated in this study. $Na_2SO_4$ was used as an alkali activator. Blast furnace slag cement was prepared from a mixture of blast furnace slag, ordinary Portland cement and anhydride gypsum. The fluidity and the compressive strength according to the ratio of each mixture were analyzed in statistical analyses in order to discover the parameters influencing the fluidity and compressive strength. The results showed that the hydration of blast furnace slag took place with the addition of $Na_2SO_4$ and that column-crystalline ettringite was created as the main hydration product of the blast furnace slag. In addition, it was found that the compressive strength of blast furnace slag cement tends to increase when the ordinary Portland cement content is higher up to three days. However, it is known that the compressive strength tends to increase as the blast furnace slag content becomes higher with increases in the level of OPC after 28 days. As a result of this analysis, it is believed that the ordinary Portland cement content influences the initial compressive strength of blast furnace slag cement, and that in later days this is highly influenced by the slag content.
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