• Title/Summary/Keyword: 마이크로믹서

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환경관련 특허동향 - 화장실의 중수도 시스템(해성엔지니어링)

  • 한국환경기술인연합회
    • Environmental engineer
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    • s.328
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    • pp.92-96
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    • 2013
  • 본 발명은 화장실의 세면대에서 사용된 세척수 및 하수를 중수도 수질기준에 적합하도록 처리하여 화장실 용수로 재활용하는 화장실의 중수도 시스템에 관한 것이다. 화장실의 중수도 시스템의 구성을 살펴보면, 세면대에서 사용된 세척수 및 하수가 유입되는 반응조와, 상기 반응조로 유입된 세척수 및 하수를 살균 및 소독하는 마이크로버블 오존 발생장치와, 살균 및 소독된 처리수를 정장하는 처리수조와, 상기 처리수조에 저장된 처리수를 화장실 용수로 공급하는 용수공급펌프를 포함한다. 이 중에서 상기 마이크로버블 오존 발생장치는, 외부에서 유입된 공기를 정화하는 에어필터와, 상기 에어필터에서 정화된 공기를 공급하는 에어펌프와, 상기 에어펌프를 통해 유입된 공기에 자외선을 조사하여 오존을 발생시키는 오존발생기와, 상기 오존발생기에서 발생된 오존을 세척수 및 하수에 혼합시키는 기액혼합펌프와 상기 오존과 상기 세척수 및 상기 하수의 혼합 효과를 극대화하기 위한 라인믹서로 구성된다. 이와 같이 구성된 본 발명에 의한 화장실의 중수도 시스템은 상수(上水)의 소비량을 줄이고 하수(下水)의 발생량을 감소시켜 경비절감의 효과를 얻을 수 있고, 지하수의 고갈 및 생활용수의 증가에 따른 물 부족 현상에 대해 능동적으로 대처할 수 있다. 특히, 재활용된 화장실 용수에는 오존이 함유되어 화장실 내의 악취제거, 살균 및 소독효과가 있으며, 외부로 배출되는 세척수 및 하수에 포함된 유지성분을 제거하여 환경오염을 방지할 수 있다.

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Development of FMCW Level Transmitter (마이크로웨이브를 이용한 주파수변조 연속파 레벨트랜스미터의 개발)

  • Choi, Woo-Jin;Ji, Suk-Joon
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1711-1712
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    • 2007
  • 액체탱크의 레벨을 정밀측정하는 데 FMCW(Frequency Modulated Continuous Wave)를 이용하고자 한다. 우리는 1GHz 대역폭으로 Sweep하는 Frequency Source Module을 개발하여 테스트 중이다. 개발한 송수신 모듈은 주파수의 송수신을 위한 주요부품들로 구성되는데, VCO(Voltage Controlled Oscillator), 서큘레이터(Circulator), 필터(Filter), 전력분배기(Power Divider), PLL(Phase Locked Loop)제어부, 믹서, 증폭기 등이 그것이다. 이들 부품들이 위치한 RF Board와, 패치로 구성한 안테나를 이용하여 마이크로웨이브 신호를 송수신할 수 있으며, 송수신한 신호 간의 차주파수(beat frequency)성분을 측정하면 거리정보를 획득할 수 있다. 차주파수의 아날로그신호는 DSP를 이용하여 FFT를 수행하여 주파수 성분을 찾아 거리계산을 하도록 개발하였다. 거리 측정의 성능에 영향을 미치는 가장 큰 요소는 안정된 주파수를 만들어 낼 수 있느냐 하는 것이다. 본 논문에서는 제작한 VCO 모듈을 비롯한 개발 중인 각 모듈들을 소개하였다. 향후 VCO의 선형성 개선과, 난반사에 대한 Echo Cancel 알고리듬을 적용하여 제품의 상용화를 목표로 한다.

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Characterization of Microfluidic system integrated with micropump and microvalve (초미세 유체 제어 시스템 구현을 위한 마이크로 펌프와 밸브의 집적)

  • Yoo, Jong-Chul;Her, Hyun-Jung;Choi, Y.J.;Kang, C.J.;Kim, Han-Soo;Lee, Kyoung-Il;Shin, Jin-Koog;Kim, Yong-Sang
    • Proceedings of the KIEE Conference
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    • 2006.07c
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    • pp.1645-1646
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    • 2006
  • Micro ElectroMechanical Systems (MEMS) 기술을 이용한 초미세 유체 제어 시스템 (마이크로 펌프, 마이크로 밸브, 마이크로 채널, 마이크로 믹서 등)은 화학, 생명분야의 DNA 분석, 항원-항체 분석, 질병의 진단 등에 사용되는 lab-on-a-chip, micro total analysis system ($\mu$-TAS) 등에서 화학 및 바이오 유체를 제어하는 분석 시스템의 일부분으로서 사용되며 필수적으로 요구된다. 본 논문에서는 이러한 microchip을 구현하기 위해 초미세 유체 제어 소자인 마이크로 펌프와 밸브를 같은 기관 위에 polydimethylsiloxane (PDMS)와 indium tin oxide (ITO)-Glass를 사용하여 동일한 구조로 집적 하였다. 마이크로 펌프의 pumping rate은 인가 직류 펄스 전력의 주파수와 duty 비를 변화시켜 최적화하였다. 직류 펄스 전력 500 mW를 인가하였을 때 주파수 2 Hz, duty 비 7 %에서 약 $1.05{\mu}l/min$의 최대 유량이 측정되었다. 마이크로 밸브는 ITO 히터에 전력을 인가함으로서 유량의 on/off 제어가 잘 됨을 확인할 수 있었고 유체를 closing하기 위해 필요한 전력은 약 300 mW이다.

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Two-Fluid Mixing in a Microchannel (마이크로 채널에서 두 유체 혼합)

  • LIU Ying Zheng;KIM Byoung Jae;SUNG Hyung Jin
    • Journal of computational fluids engineering
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    • v.8 no.2
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    • pp.16-23
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    • 2003
  • A numerical study of the mixing of two fluids(pure water and a solution of glycerol in water) in a microchannel was carried out. By varying the glycerol content of the glycerol/water solution, the variation in mixing behavior with changes in the difference of the properties of the two fluids(e.g., viscosity, density, diffusivity) was investigated. The mixing phenomena were tested for three micromixers: a square mixer, a three-dimensional serpentine mixer, and a staggered herringbone mixer. The governing equations of continuity, momentum and solute mass fraction were solved numerically. To evaluate mixing performance, a criterion index of mixing of mixing uniformity was proposed. In the systems considered, the Reynolds numbers based on averaged properties were 1 and 10. For low Reynolds number (Re = 1), the mixing performance varied inversely with mass fraction of glycerol due to the dominance of molecular diffusion. The mixing performance by diffusion deteriorated due to a significant reduction in the residence time of the fluid inside the mixers.

3D Printing-Based Ultrafast Mixing and Injecting Systems for Time-Resolved Serial Femtosecond Crystallography (시간 분해 직렬 펨토초 결정학을 위한 3차원 프린팅 기반의 초고속 믹싱 및 인젝팅 시스템)

  • Ji, Inseo;Kang, Jeon-Woong;Kim, Taeyung;Kang, Min Seo;Kwon, Sun Beom;Hong, Jiwoo
    • Korean Chemical Engineering Research
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    • v.60 no.2
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    • pp.300-307
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    • 2022
  • Time-resolved serial femtosecond crystallography (TR-SFX) is a powerful technique for determining temporal variations in the structural properties of biomacromolecules on ultra-short time scales without causing structure damage by employing femtosecond X-ray laser pulses generated by an X-ray free electron laser (XFEL). The mixing rate of reactants and biomolecule samples, as well as the hit rate between crystal samples and x-ray pulses, are critical factors determining TR-SFX performance, such as accurate image acquisition and efficient sample consumption. We here develop two distinct sample delivery systems that enable ultra-fast mixing and on-demand droplet injecting via pneumatic application with a square pulse signal. The first strategy relies on inertial mixing, which is caused by the high-speed collision and subsequent coalescence of droplets ejected through a double nozzle, while the second relies on on-demand pneumatic jetting embedded with a 3D-printed micromixer. First, the colliding behaviors of the droplets ejected through the double nozzle, as well as the inertial mixing within the coalesced droplets, are investigated experimentally and numerically. The mixing performance of the pneumatic jetting system with an integrated micromixer is then evaluated by using similar approaches. The sample delivery system devised in this work is very valuable for three-dimensional biomolecular structure analysis, which is critical for elucidating the mechanisms by which certain proteins cause disease, as well as searching for antibody drugs and new drug candidates.

A Study on the MHD Micropump with Mixing Function (혼합 기능을 갖는 마이크로 펌프의 연구)

  • Choi, Bum-Kyoo;Kang, Ho-Jin;Kim, Min-Sock
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.34 no.6
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    • pp.579-586
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    • 2010
  • With the development of micrototal analysis systems (${\mu}TAS$), which is a result of enhancement of MEMS technology, rapid progress has been achieved in medical and biological research. The study of lab-on-a-chip (LOC) devices, which are types of ${\mu}TAS$ and which integrate the functions of mixing and analyzing tiny amounts of samples and reagents on one chip, has actively progressed. An LOC comprises microfluidic components such as micromixers and micropumps. Because the flow in a microfluidic system is generally laminar, it is very difficult to efficiently mix and feed fluid reagents. This paper presents the design and the method of fabrication of an MHD micropump for mixing fluids. By using this micropump, fluids are simultaneously mixed and pumped; this is achieved by coupling the Lorentz force and force exerted by an electric charge moving in an electric field.

Fabrication of Micro Structure Using Photo Polymer Mask and Micro Abrasive Jet Machining (Photo Polymer 마스크와 미세입자분사가공을 이용한 미세구조물 제작)

  • Ko T.J.;Park D.J.;Lee I.H.;Kim H.S.
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2005.06a
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    • pp.1175-1178
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    • 2005
  • Brittle materials, especially single-crystal silicon wafer, are widely used for sensors, IC industry, and MEMS applications. e general machining process of crack easy materials is by chemical agents, but it is hazardous and time consuming. Also, it is difficult to get high aspect ratio micro structure. As an alternative tool, an AJM(Abrasive jet machining) is promising method in terms of high aspect ratio and production cost. In this study, to get more precise detail compared to general AJM, photo polymer mask, SU-8, used in photolithography was applied in AJM. Process parameters such as abrasive diameter, air pressure, nozzle diameter, flow rate of abrasive in AJM and a variety of conditions in spin coating were decided. Finally, micro channel and mixer was fabricated to see the efficiency of the AJM with photo polymer mask.

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The study of three dimentional flow field using defocusing method in micromixer (Defocusing 기법을 이용한 마이크로 믹서내의 3 차원 유동장 측정연구)

  • Kim, Su-Heon;Yoon, Sang-Youl;Kim, Kyung-Chun
    • 한국가시화정보학회:학술대회논문집
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    • 2005.12a
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    • pp.99-102
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    • 2005
  • This study was conducted for obtaining the optimized data to build the mixer or micro fluid device as measuring the three dimensions flow field in micro mixer. To acquire the rapid diffusion on the region of low Reynolds (Re < 100), the staggered herringbone mixer using chaotic advection was selected in this case. At first, by conducting the numerical analytical virtual experiment using CFD-ACE+, three dimensions flow field in the micro mixer was estimated As this flow field was proven using defocusing particle tracing method, the behavior of micro flow with three dimensional aspects could be analyzed. Numerical analysis and flow pattern in the micro mixer by experimental verification made to be able to analyze the chaotic advection. These can be important sources for building more optimized form. Verifying the information of three dimensional flow structure, these information can be used as the data for developing and improving the $\mu$ -TAS.

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Implementation of Wideband SSM with Excellent Sideband and Carrier Suppression (우수한 측파대 및 반송파 억압을 갖는 광대역 단측파대 믹서의 구현)

  • Kim, In-Seon;Park, Young-Ju;Kim, Jang-Pyo;Jeon, Jeong-Il;Kim, Moo-Hoi
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.22 no.12
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    • pp.1097-1106
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    • 2011
  • In this paper, we present design method of wideband single-sideband mixer(SSM) with excellent sideband suppression and carrier suppression. We proposed SSM with 4-band split structure for uniform output flatness. From circuit simulation of this structure using Microwave OfficeTM, we got satisfactory results. We realized a SSM based on this results, then we experimented. The measured results show excellent agreements with the simulated results. We compared with two SSM's(target SSM(M Co. SM0218LC1CDC SSM) and our SSM) as well. The presented SSM is 3.35 times bigger, but sideband suppression is 3 dBc better and carrier suppression is 8 dBc better than those of comparative SSM, respectively.

Implementation of Down Converter for Ku-Band Application (Ku 대역용 주파수변환기의 구현)

  • 정동근;김상태;하천수
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.4 no.3
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    • pp.527-536
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    • 2000
  • This paper discusses the design of self-oscillating mixer type low noise down converter using the microwave field effect transistor. The mixer is consists of local oscillator in which high stability dielectric resonator and band pass filter to get rid of spurious oscillation at intermediate frequency stage. The microstrip antenna was integrated in the same substrate which generate 12.3GHz and low noise amplifier was also added after antenna using 3 stage of high electron mobility transistors. The output frequency from the local oscillator was chosen as 11.3GHz for the Ku-band application. The measured phase noise was -804dBc/Hz at 100kHz offset frequency, and the gain was 7~12dB in frequency range from 12.0GHz to 12.7GHz. The noise figure at intermediate frequency stage was 64H. The designed model shows less conversion loss than previous diode type mixer. The proposed mixer can be used in digital satellite broadcasting and communication system and expected to use in next generation low noise block design.

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