• 제목/요약/키워드: Free-falling plate

검색결과 9건 처리시간 0.027초

자유낙하하는 판의 fluttering 특성 연구 (Fluttering Characteristics of Free-falling Plates)

  • 홍슬기;채석봉;김주하
    • 한국가시화정보학회지
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    • 제15권2호
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    • pp.33-40
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    • 2017
  • Abstract In the present study, the characteristics of kinematics and dynamics in the fluttering motion of free-falling plates are investigated at Reynolds number of $10^5$. We record quasi-two-dimensional trajectories of free-falling plates with and without superhydrophobic coating using high-speed camera, and compute the drag and lift forces by trajectory analysis. Translational and angular velocities are modeled as harmonic functions with specific phase differences. In particular, periodic mass elevations near turning points are explained using the suggested models. At each turning point, a sudden drop in lift and a rapid increase in drag occur simultaneously due to fast increase in angle of attack. However, the lift is increased over the buoyancy-corrected weight of plate during gliding flight, resulting in periodic mass elevations near turning points. Superhydrophobicity is shown to increase lift but to reduce drag on a fluttering plate, resulting in the decrease of mean descent speed.

Behavior of dry medium and loose sand-foundation system acted upon by impact loads

  • Ali, Adnan F.;Fattah, Mohammed Y.;Ahmed, Balqees A.
    • Structural Engineering and Mechanics
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    • 제64권6권
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    • pp.703-721
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    • 2017
  • The experimental study of the behavior of dry medium and loose sandy soil under the action of a single impulsive load is carried out. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of soils were evaluated at different locations (vertically below the impact plate and horizontally away from it). These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and different depth ratios within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A Waterproof, and Low capacity Acceleration Transducer) that are embedded in the soil and then recorded using the multi-recorder TMR-200. The behavior of medium and loose sandy soil was evaluated with different parameters, these are; footing embedment, depth ratios (D/B), diameter of the impact plate (B), and the applied energy. It was found that increasing footing embedment depth results in: amplitude of the force-time history increases by about 10-30%. due to increase in the degree of confinement with the increasing in the embedment, the displacement response of the soil will decrease by about 25-35% for loose sand, 35-40% for medium sand due to increase in the overburden pressure when the embedment depth increased. For surface foundation, the foundation is free to oscillate in vertical, horizontal and rocking modes. But, when embedding a footing, the surrounding soil restricts oscillation due to confinement which leads to increasing the natural frequency, moreover, soil density increases with depth because of compaction, that is, tendency to behave as a solid medium.

Retardation Free In-plane Switching Liquid Crystal Display with High Speed and Wide-view Angle

  • Kang, Wan-Seok;Moon, Je-Wook;Lee, Gi-Dong;Lee, Seung-Hee;Lee, Joun-Ho;Kim, Byeong-Koo;Choi, Hyun-Chul
    • Journal of the Optical Society of Korea
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    • 제15권2호
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    • pp.161-167
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    • 2011
  • In this paper, we propose an in-plane switching (IPS) mode for liquid crystal displays (LCDs) that, in principle, is free of retardation of the LC cell. Basically, the optical configuration of the LC cell consists of an A-plate and an LC layer for switching between the dark and bright states. We could achieve a fast response time compared with the conventional in-plane LC cell because the free retardation condition of the proposed LC cell enables us to reduce the cell gap even by quarter-wave retardation without any change of the optimized LC material in the transmissive mode. Experiments for verification of the proposed in-plane switching LC cells have shown a significant reduction of the rising time and falling time simultaneously due to the small cell gap. Furthermore, we also proposed an optical configuration for wide viewing property of the retardation free IPS LCD by applying the optical films. We proved the wide-view property of the retardation free IPS LCD by comparing its optical luminance with the calculated optical property of the conventional IPS LCD.

Aerodynamic Charasteristics of Tumbling-Rectangular-Flat Plate Under Free Flight

  • Shimizu, Kosuke;Funaki, Jiro;Hirata, Katsuya
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2004년도 제22회 춘계학술대회논문집
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    • pp.353-356
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    • 2004
  • When a body falls in fluid, the body often experiences autorotations, namely, various kind of rotating motions, such as tumbling, flat spin and coming. Tumbling is a rotating motion with an axis perpendicular to a falling direction. Tumbling is a very important phenomenon in aeronautical and space engineering, ballistics and meteorology. For example, when an satellite re-en-tries into the atomosphere, its body collapses into many fragments which are disperse in the wide range of field. Some fragments fall in tumbling motion. Then tumbling is useful to predict fragment's motion.(omitted)

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자유수면에 낙하하는 물체의 충격압력 변화에 관한 연구 (A Study on the Impact Pressure of a Falling Body upon a Free Surface Water)

  • 이종붕
    • 한국산업융합학회 논문집
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    • 제4권3호
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    • pp.295-304
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    • 2001
  • The hydrodynamic impact problem was studied from 1929 to recent. Especially, Impact pressure is important for the design of the ships and offshore structure and spacecrafts, and under weapons. A ship traveling at high speed or in heavy sea has its bow and bottom damaged by high pressure caused by impact with and detachment from the water surface. Considerable impact may also occur when large waves hit the cross member or deck plate of an offshore structure within the splash zone. Many engineering cases require consideration of impact pressure, the movement of objects and change of the flow field. This study was obtained the pressure distribution of a falling body that is deadrise angle $0^{\circ}$ and deadrise angle $5^{\circ}$ upon a water surface by the experiment with the impact machine. The theoretical equation was obtained the air region and the interface and the water region which devide 3 parties between the body and the water surface for an investigation of the complete phenomena. Pressure distributions and histories compare favorably with available experimental data. The numerical results are similar to the experimental results for the impact force type with Fo(1+$cos{\pi}t/tc$).

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식품보장(食品保藏)과 수분활성(水分活性)에 관(關)한 연구(硏究) - 제 2 보 : 말쥐치육(肉)의 건조기구(乾操機構)와 수분활성(水分活性) - (Studies on Food Preservation by Controlling Water Activity - II. Dehydration Mechanism and Water Activity of Filefish Muscle -)

  • 한봉호;최수일;이종갑;배태진;박호구
    • 한국식품과학회지
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    • 제14권4호
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    • pp.342-349
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    • 1982
  • 송풍식건조과정(送風式乾燥過程) 중의 말쥐치육의 건조기구(乾操機構)와 수분활성(水分活性)과의 관계를 검토하기 위하여 $47.5^{\circ}C$에서 풍속과 공기의 상대습도를 달리하여 실험한 결과를 요약하면 다음과 같다. 전체 건조과정은 정속건조기(定速乾燥期)와 감속건조기(減速乾燥期)로 구분되었다. 정속건조기(定速乾燥期)는 건조표면(乾燥表面)이 수분활성(水分活性) 1.0을 유지하는한 계속되었으며, 온도와 상대습도가 일정할 때 정속건조속도(定速乾燥速度)는 공기의 속도(速度)의 제곱근에 비례하였다. 감속건조기(減速乾燥期)는 건조기구(乾操機構)가 서로 다른 제(第)1 및 제(第)2감속건조기(減速乾燥期)로 구분되었다. 제(第)1감속건조기(減速乾燥期)는 모세관 응축수의 건조표면(乾燥表面)으로의 이동이 불충분한 불포화표면건조기(不飽和表面乾燥期)였으며, 이 때의 건조속도(乾燥速度)는 공기의 온도가 일정할 때 상대습도에 크게 좌우되었다. 제(第)1감속건조기(減速乾燥期)와 제(第)2감속건조기(減速乾燥期)의 변환점에서 표면경화현상(表面硬化現象)이 시작되었다. 상대습도의 변화에 따라 제(第)2감속건조기(減速乾燥期)가 시작될 때의 수분활성(水分活性)과 수분함량(水分含量)은 각각 다른 값을 나타내었다. 제(第)2감속건조기(減速乾燥期)는 다시 건조기구(乾操機構)를 달리하는 두 개의 건조기(乾燥期)로 구분되었다. 제(第)2감속건조기(減速乾燥期)의 1단계는 말쥐치육 내부의 모세관 응축수가 건조표면(乾燥表面)으로 확산, 증발하여 건조가 진행되었으며, 이때의 수분의 확산계수는 $47.5^{\circ}C$에서 $2.89{\cdot}10^{-10}m^2/sec$였다. 표면경화현상(表面硬化現象)은 말쥐치육의 수분활성(水分活性)이 0.7에 이를때까지 계속되었다. 제(第)2감속건조기(減速乾燥期)의 2단계는 수분활성(水分活性) 0.45에서 시작되었다. 이 때의 건조는 말쥐치육 내부에 다분자층(多分子層)으로 흡착(吸着)한 결합수의 건조표면(乾燥表面)으로의 확산, 증발에 의하여 진행되었다. 흡착수분(吸着水分)의 분자층(分子層)의 수는 4였으며, $47.5^{\circ}C$에서의 확산계수는 $4.38{\cdot}10^{-11}m^2/sec$였다.

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Response of circular footing on dry dense sand to impact load with different embedment depths

  • Ali, Adnan F.;Fattah, Mohammed Y.;Ahmed, Balqees A.
    • Earthquakes and Structures
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    • 제14권4호
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    • pp.323-336
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    • 2018
  • Machine foundations with impact loads are common powerful sources of industrial vibrations. These foundations are generally transferring vertical dynamic loads to the soil and generate ground vibrations which may harmfully affect the surrounding structures or buildings. Dynamic effects range from severe trouble of working conditions for some sensitive instruments or devices to visible structural damage. This work includes an experimental study on the behavior of dry dense sand under the action of a single impulsive load. The objective of this research is to predict the dry sand response under impact loads. Emphasis will be made on attenuation of waves induced by impact loads through the soil. The research also includes studying the effect of footing embedment, and footing area on the soil behavior and its dynamic response. Different falling masses from different heights were conducted using the falling weight deflectometer (FWD) to provide the single pulse energy. The responses of different soils were evaluated at different locations (vertically below the impact plate and horizontally away from it). These responses include; displacements, velocities, and accelerations that are developed due to the impact acting at top and different depths within the soil using the falling weight deflectometer (FWD) and accelerometers (ARH-500A Waterproof, and Low capacity Acceleration Transducer) that are embedded in the soil in addition to soil pressure gauges. It was concluded that increasing the footing embedment depth results in increase in the amplitude of the force-time history by about 10-30% due to increase in the degree of confinement. This is accompanied by a decrease in the displacement response of the soil by about 40-50% due to increase in the overburden pressure when the embedment depth increased which leads to increasing the stiffness of sandy soil. There is also increase in the natural frequency of the soil-foundation system by about 20-45%. For surface foundation, the foundation is free to oscillate in vertical, horizontal and rocking modes. But, when embedding a footing, the surrounding soil restricts oscillation due to confinement which leads to increasing the natural frequency. Moreover, the soil density increases with depth because of compaction, which makes the soil behave as a solid medium. Increasing the footing embedment depth results in an increase in the damping ratio by about 50-150% due to the increase of soil density as D/B increases, hence the soil tends to behave as a solid medium which activates both viscous and strain damping.

능동 발진 안테나를 이용한 소형 도플러 센서 (Compact Doppler Sensor Using Oscillator Type Active Antenna)

  • 윤기호
    • 전기전자학회논문지
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    • 제15권1호
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    • pp.49-56
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    • 2011
  • 본 논문에서는 고주파 발진회로의 공진기를 패치 안테나로 사용하는 능동발진 안테나를 2.4GHz 대역에서 제안하여 소형 무선도플러 센서로서 이동체의 거리나 속도 등을 측정할 수 있게 하였다. 이동체의 움직임은 고주파 발진 주파수의 천이를 발생시키며 이를 검출하는 회로를 통해 제안된 구조의 동작을 확인하였다. 설계 제작된 무선 도플러 센서는 직경이 30mm, 높이 4.2mm 정도로 매우 작은 원형디스크 형태를 갖으며, 안테나는 2.373GHz에서 약 130도의 빔폭과 전방향 방사특성을 나타내었다. 센서의 감도 측정결과, 1m 떨어져 움직이고 있는 도체판에 대해 최소 190mV의 도플러 신호 전압을 얻었고, 센서의 자유낙하 실험으로부터 지표상의 4.5m 지점에서 부터 지표면까지 전압크기가 선형적으로 증가하였다.

능동안테나의 발진주파수 편이에 의한 소형 거리 센서 (Compact Range Detection Sensor by Oscillation Frequency Deviation of an Active Antenna)

  • 윤기호
    • 한국정보통신학회논문지
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    • 제15권3호
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    • pp.528-535
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    • 2011
  • 본 논문에서는 고주파 발진회로의 공진기가 안테나로 동작하는 2.4GHz 대역의 능동 안테나를 이용하여 이동체의 거리를 측정할 수 있는 소형 도플러 센서를 제안하였다. 이동체의 움직임에 비례하여 고주파 발진주파수의 편이를 발생시키며 이를 검출하는 회로를 통해 제안된 구조의 동작을 확인하였다. 설계 제작된 거리 감지 센서는 직경이 30mm, 높이 4.2mm 정도로 매우 작은 원형디스크 형태를 갖으며, 안테나는 2.35GHz에서 약 120도의 빔폭과 전방향 방사특성을 나타내었다. 센서의 감도 측정결과, 1m 떨어져 움직이고 있는 도체판에 대해 약 240mV의 도플러 신호 전압을 얻었고, 자유낙하 실험으로부터 지표위의 5m 지점에서부터 지표면까지 선형적인 전압크기의 증가를 보였다.