• 제목/요약/키워드: Micro Fluidic System

검색결과 37건 처리시간 0.031초

단일채널 내 임계영역 이산화탄소 가열과정의 열유동 특성에 관한 실험적 연구 (Experimental Studies on Thermal-Fluidic Characteristics of Carbon Dioxide During Heating Process in the Near-Critical Region for Single Channel)

  • 최현우;신정헌;최준석;윤석호
    • 설비공학논문집
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    • 제29권8호
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    • pp.408-418
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    • 2017
  • Supercritical carbon dioxide ($sCO_2$) power system is emerging technology because of its high cycle efficiency and compactness. Meanwhile, PCHE (Printed Circuit Heat Exchanger) is gaining attention in $sCO_2$ power system technology because PCHE with high pressure-resistance and larger heat transfer surface per unit volume is fundamentally needed. Thermo-fluidic characteristics of $sCO_2$ in the micro channel of PCHE should be investigated. In this study, heat transfer characteristics of $sCO_2$ of various inlet conditions and cross-sectional shapes of single micro channel were investigated experimentally. Experiment was conducted at supercritical state of higher than critical temperature and pressure. Test sections were made of copper and hydraulic diameter was 1 mm. Convective heat transfer coefficients were measured according to each interval of the channel and pressure drop was also measured. Convective heat transfer coefficients from experimental data were compared with existing correlation. In this study, using measured data, a new empirical correlation to predict near critical region heat transfer coefficient is developed and suggested. Test results of single channel will be used for design of PCHE.

박테리아의 추진을 이용한 마이크로 구조의 조작 (Manipulation of Micro-Structure by Self-Powered Bacteria)

  • 김민준;변도영
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1433-1436
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    • 2008
  • Flagellate bacteria such as Escherichia coli or Serratia marcescens possess a remarkable motility system based on a reversible rotary motor. We have employed S. marcescens as microactuators in low Reynolds number fluidic environments to move a larger engineering element around. Microstructures fabricated using conventional microfabrication techniques are blotted on the swarm plate, which leaves a bacterial monolayer on the surface of the microstructure. We have investigated microstructures powered by bacteria to determine how cell orientation on the microstructure surface relates to the swarming patterns as well as how the orientation is affected by the blotting process. This study will help to refine directional control of bacterial transporters by exploiting bacterial sensory mechanisms.

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MEMS for Heterogeneous Integration of Devices and Functionality

  • Fujita, Hiroyuki
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제7권3호
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    • pp.133-139
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    • 2007
  • Future MEMS systems will be composed of larger varieties of devices with very different functionality such as electronics, mechanics, optics and bio-chemistry. Integration technology of heterogeneous devices must be developed. This article first deals with the current development trend of new fabrication technologies; those include self-assembling of parts over a large area, wafer-scale encapsulation by wafer-bonding, nano imprinting, and roll-to-roll printing. In the latter half of the article, the concept towards the heterogeneous integration of devices and functionality into micro/nano systems is described. The key idea is to combine the conventional top-down technologies and the novel bottom-up technologies for building nano systems. A simple example is the carbon nano tube interconnection that is grown in the via-hole of a VLSI chip. In the laboratory level, the position-specific self-assembly of nano parts on a DNA template was demonstrated through hybridization of probe DNA segments attached to the parts. Also, bio molecular motors were incorporated in a micro fluidic system and utilized as a nano actuator for transporting objects in the channel.

Bio-MEMS분야의 최근 연구동향 (Recent research trends on Bio-MEMS)

  • 박세광;양주란
    • 센서학회지
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    • 제19권4호
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    • pp.259-270
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    • 2010
  • MEMS(micro electro mechanical systems) is a technology for the manufacture hyperfine structure, as a micro-sensor and a driving device, by a variety of materials such as silicon and polymer. Many study for utilizing the MEMS applications have been performed in variety of fields, such as light devices, high frequency equipments, bio-technology, energy applications and other applications. Especially, the field of Bio-MEMS related with bio-technology is very attractive, because it have the potential technology for the miniaturization of the medical diagnosis system. Bio-MEMS, the compound word formed from the words 'Bio-technology' and 'MEMS', is hyperfine devices to analyze biological signals in vitro or in vivo. It is extending the range of its application area, by combination with nano-technology(NT), Information Technology(IT). The LOC(lab-on-a-chip) in Bio-MEMS, the comprehensive measurement system combined with Micro fluidic systems, bio-sensors and bio-materials, is the representative technology for the miniaturization of the medical diagnosis system. Therefore, many researchers around the world are performing research on this area. In this paper, the application, development and market trends of Bio-MEMS are investigated.

단순공정으로 제작된 마이크로/나노 하이브리드 채널의 불균형 동전기성을 이용한 미세혼합기 연구 (Simple Fabrication of Micromixer Based on Non-Equilibrium Electrokinetics in Micro/Nano Hybrid Fluidic System)

  • 유사무엘;김선민
    • 대한기계학회논문집B
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    • 제35권4호
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    • pp.385-390
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    • 2011
  • 본 연구에서는 미세채널과 나노채널의 교차부에 불균형 동전기성을 이용한 미세혼합기를 개발하였다. 채널 내 용액의 혼합은 인가된 전압에 의한 전기삼투유동과 미세채널과 나노채널 교차 부에서의 불균형 동전기성에 의한 와류현상에 의해 이루어진다. 미세채널은 PDMS 을 이용하여 소프트리소그래피 공정으로 제작하였고, 나노채널은 미세채널의 특정위치에 전기적 충격에 의한 PDMS 의 파괴로 매우 간단하게 제작하였다. 혼합성능을 평가하기 위하여 형광물질인 Rhodamine B 용액을 이용하여 혼합 전과 후의 형광 분포를 분석하였으며, 약 90%의 혼합을 얻을 수 있었다. 본 연구의 미세혼합기는 복잡한 공정을 요구하지 않고 매우 간단하게 제작되었으며, 생화학시료 분석을 위한 미세시스템에 활용될 수 있다.

미세 유체장치 내에서 Poly(Ethylene Glycol)과 Dextran 용액의 상 형성 특성 연구 (Phase-Separation Properties of Poly(Ethylene Glycol) had Dextran Solutions In Microfluidic Device)

  • 최주형;장우진;이상우
    • 대한의용생체공학회:의공학회지
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    • 제28권2호
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    • pp.244-249
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    • 2007
  • Fluidic conditions for the separation of phases were surveyed in a microfluidic aqueous two-phase extraction system. The infusion ratio between polyethylene glycol (PEG) and dextran solution defines the concentrations of each polymer in micro-channel, which determine the phase-separation. The appropriate ratio between PEG (M.W. 8000, 10%, w/v) and dextran T500 (M.W. 500000, 5%, w/v) in order to perform the separation of phases of both polymers was observed as changing the mixed ratio of both polymers. Based on the fluidic conditions, stable two-phase solutions were obtained within 4% to 8% and 3% to 1% of PEG and dextran, respectively. In addition, the characteristics of the two-phase were discussed. The separation technique studied in the paper can be applied for the implementation of a lab-on-a chip which can detect various biological entities such cells, bacterium, and virus in an integrated manner using built in a biosensor inside the chip.

바이오용 압전디스크방식 마이크로 펌프 설계 및 제작 (II) -임베드방식의 압전모듈의 최적설계 및 제작- (Design and Fabrication of PZT Disc Actuated Micro Pump for Bio-Applications (II): Optimal Design & Fabrication of Embedding-type PZT Module)

  • 김형진;장인배;서영호;김병희
    • 한국생산제조학회지
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    • 제21권3호
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    • pp.362-367
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    • 2012
  • Though a micro pump is a crucial element in miniaturized bio-fluidic systems or drug delivery systems, most of the conventional micro pumps still have some limitations to miniaturize their controller system and to obtain the sufficient back pressure which can rise over the inner pressure of human body or experimental animals. In this paper, to overcome these limitation, a new PZT disc and its controller were designed and fabricated to get the sufficient flowrate and the back pressure with guaranteeing embeddability of the controller into pumping body. The amplitudes of the disc deflections were as large as 40 ${\mu}m$ at 200 V - 100 Hz condition. As results of experiments, the flow rate and the back pressure increase when the frequency increases. The obtainable maximum flow rate and back pressure are 5.2 ml/min at 95 Hz and 13.14 kPa at 90 Hz respectively.

Implantable Drug Delivery Systems-Design Process

  • Vincent, Croquet;Benolt, Raucent;Onori, Mauro
    • International Journal of Precision Engineering and Manufacturing
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    • 제7권4호
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    • pp.40-46
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    • 2006
  • The market of programmable implantable pumps has bound to a monopolistic situation, inducing high device costs, thus making them inaccessible to most patients. Micro-mechanical and medical innovations allow improved performances by reducing the dimensions. This affects the consumption and weight, and, by reducing the number of parts, the cost is also affected. This paper presents the procedure followed to design an innovative implantable drug delivery system. This drug delivery system consists of a low flow pump which shall be implanted in the human body to relieve pain. In comparison to classical known solutions, this pump presents many advantages of high interest in both medical and mechanical terms. The first section of the article describes the specifications which would characterize a perfect delivery system from every points of view. This concerns shape, medication, flow, autonomy, biocompatibility, security and sterilization ability. Afterwards, an overview of existing systems is proposed in a decisional tree. Positive displacement motorized pumps are classified into three main groups: the continuous movement group, the fractioned translation group and the alternative movement group. These systems are described and the different problems which are specific to these mechanisms are presented. Since none of them fully satisfy the specifications, an innovation is justified.. The decisional tree is therefore extended by adding new principles: fractioned refilling and fractioned injection within the fractioned translation movement group, spider guiding system within the alternative translation movement group, rotational bearing guided device and notch hinge guided device in the alternative rotation movement group.

펄스 레이저 기반 담수용 미세 플라스틱 실시간 센서 모니터링 시스템 연구 (Study on Real Time Sensor Monitoring Systems Based on Pulsed Laser for Microplastic Detection in Tap Water)

  • 한승헌;김대근;정행윤;김선훈
    • 센서학회지
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    • 제28권5호
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    • pp.294-298
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    • 2019
  • Pulsed laser-based optical sensor monitoring systems for real time microplastic particle counting are proposed and developed in this study. To develop our real time monitoring system, we used a 450 nm pulsed laser and a photomultiplier with very high quantum efficiency. First, we demonstrated that the microplastic particle counting system could detect standard micro bead samples of 100, 250, and $500{\mu}m$ in river water. We then performed research concerning pulsed laser-based optical spectral sensor systems for real time microplastic monitoring. Additionally, we demonstrated that the real time microplastic remote monitoring system using LoRa communications could detect microplastic in the tap water resource protection area.

1차원 표면 패터닝 기법을 통한 마이크로-나노 유체 에너지 변환 소자 시스템 (Micro/Nano fluidic energy conversion system using 1D surface patterning technique)

  • 김상희;이정훈
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2011년도 제42회 하계학술대회
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    • pp.1694-1695
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    • 2011
  • 최근 에너지에 대한 관심의 증대 및 센서 노드로의 개발을 위해 무전원 동력 장치(sustainable energy conversion system)에 대한 관심이 크게 증대되고 있다. 본 연구에서는 수압(hydraulic pressure)을 이용하여 전기를 발생시키는 새로운 개념의 나노유체 에너지 변환 시스템에 대한 연구를 진행하였다. 표면 패터닝 기법을 통해 제작된 나노 채널 및 일차원 마이크로 유체 기반의 플루이딕 소자를 이용하여 외부저항, 버퍼용액의 농도, 압력에 따른 streaming potential을 구하였다. electrokinetic 현상과 이에 따른 유체의 streaming potential을 이용하여 압력(pressure)을 전기적으로 변환시키는 에너지 변환용 나노 유체시스템을 본 논문을 통해 제안하고자 한다.

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