• 제목/요약/키워드: Pressure-Distance Curve

검색결과 35건 처리시간 0.024초

C-axis Orientation and Growth Structure of AIN Thin Films on $SiO_2$/Si Substrates Deposited by Reactive RF Magnetron Sputtering

  • Joo, Han-Yong;Lee, Jae-Bin;Kim, Hyeong-Joon
    • The Korean Journal of Ceramics
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    • 제3권4호
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    • pp.257-262
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    • 1997
  • Aluminum nitride(AIN) thin films were deposited on SiO$_2$/Si substrates by reactive sputtering for the application of SAW devices. The major deposition parameters such as pressure, nitrogen fraction, rf power, substrate distance were changed to find out the optimal condition for c-axis oriented thin films on an amorphous substrate. The effects of deposition parameters on the crystal structure, residual stress, and growth morphology of thin films were characterized by XRD, SEM, and TEM. The FWHM of (002) rocking curve of the films deposited at the proper condition was lower than 2.2$^{\circ}$(C=0.93$^{\circ}$). Cross-sectional TEM showed that self-aligned structure was developed just after slightly random growth at the initial stage. The frequency characteristics of test device fabricated from AIN thin films confirmed their piezoelectric property and applicability for SAW devices.

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전자기파의 감쇠패턴 및 깊이 정보 취득을 이용한 수중 위치추정 기법 (Underwater Localization using EM Wave Attenuation with Depth Information)

  • 곽경민;박대길;정완균;김진현
    • 로봇학회논문지
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    • 제11권3호
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    • pp.156-162
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    • 2016
  • For the underwater localization, acoustic sensor systems are widely used due to greater penetration properties of acoustic signals in underwater environments. On the other hand, the good penetration property causes multipath and interference effects in structured environment too. To overcome this demerit, a localization method using the attenuation of electro-magnetic(EM) waves was proposed in several literatures, in which distance estimation and 2D-localization experiments show remarkable results. However, in 3D-localization application, the estimation difficulties increase due to the nonuniform (doughnut like) radiation pattern of an omni-directional antenna related to the depth direction. For solving this problem, we added a depth sensor for improving underwater 3D-localization with the EM wave method. A micro scale pressure sensor is located in the mobile node antenna, and the depth data from the pressure sensor is calibrated by the curve fitting algorithm. We adapted the depth(z) data to 3D EM wave pattern model for the error reduction of the localization. Finally, some experiments were executed for 3D localization with the fast calculation and less errors.

Influence of complex geological structure on horizontal well productivity of coalbed methane

  • Qin, Bing;Shi, Zhan-Shan;Sun, Wei-Ji;Liang, Bing;Hao, Jian-Feng
    • Geomechanics and Engineering
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    • 제29권2호
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    • pp.145-154
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    • 2022
  • Complex geological conditions have a great influence on the mining of coalbed methane (CBM), which affects the extraction efficiency of CBM. This investigation analyzed the complicated geological conditions in the Liujia CBM block of Fuxin. A geological model of heterogeneities CBM reservoirs was established to study the influence of strike direction of igneous rocks and fault structures on horizontal well layout. Subsequently, the dual-porosity and dual-permeability mathematical model was established, which considers the dynamic changes of porosity and permeability caused by gas adsorption, desorption, pressure change. The results show that the production curve is in good agreement with the actual by considering gas seepage in matrix pores in the model. Complicated geological structures affect the pressure expansion of horizontal wells, especially, the closer to the fault structure, the more significant the effect, the slower the pressure drop, and the smaller the desorption area. When the wellbore extends to the fault, the pressure expansion is blocked by the fault and the productivity is reduced. In the study area, the optimal distance to the fault is 70 m. When the horizontal wellbore is perpendicular to the direction of coal seam igneous rock, the productivity is higher than that of parallel igneous rock, and the horizontal well bore should be perpendicular to the cleat direction. However, the well length is limited due to the dense distribution of igneous rocks in the Liujia CBM block. Therefore, the horizontal well pumping in the study area should be arranged along the direction of igneous rock and parallel plane cleats. It is found that the larger the area surrounded by igneous rock, the more favorable the productivity. In summary, the reasonable layout of horizontal wells should make full use of the advantages of igneous rock, faults and other complex geological conditions to achieve the goal of high and stable production.

굴포천 임시방수로 굴착구간 주변의 지하수 수위 변동 유형 분류 (Classification of Groundwater Level Variation Types Near the Excavated Area of the Temporary Gulpocheon Discharge Channel)

  • 김창훈;이수곤;한정상;김남주;전병추
    • 지질공학
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    • 제24권4호
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    • pp.631-641
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    • 2014
  • 지하 대수층에 가해진 수문학적 충격에서 나타난 지하수위 변화를 관측하고 분석하여 굴포천 임시방수로구간의 지하수 수위 변동 특성을 규명하였다. 지하수위란 그 지점을 지나가는 등포텐셜 값으로 지하수 압력이 그 위치에서 대기압과 균형을 이루고 있는 것으로, 이는 고정된 것이 아니라 수문학적 충격에 대응해서 변화하게 되는데 관측지점으로부터 지하수면까지의 깊이를 반복적으로 측정함으로서 파악할 수 있다. 김포-김포 국가지하수관측소의 1일 지하수 유출수문곡선의 지하수위 변화식과 변동폭을 평가요소로 하여 18개소의 관측시스템의 지하수 변동 특성을 영향형, 관측요망형, 비영향형 등으로 분류하였다. 그 결과 영향형은 전체의 50%로 수문학적 충격에 의해 수위변화가 민감하게 반영되며 임시방수로로부터 거리가우선적인 요인으로 판단된다. 관측요망형은 27.8%로 2개의 평가요소 중 1개가 기준에 미달한 경우이다. 비영향형은 22.2%로 지하수위 변화가 강우사상에 대해서만 반응함으로써 두 가지의 평가요소를 초과한 것들이다.

전기가열장치를 이용한 연약지반개량 (Improvement of Soft Ground using Electric Heating Equipment)

  • 한희수;임은상;이금성;장동훈
    • 한국지반환경공학회 논문집
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    • 제15권1호
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    • pp.5-12
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    • 2014
  • 본 논문은 심층연약지반 개량용 전기가열장치를 개발하여 경기도 화성시 인근 연약지반에 적용한 것이다. m당 1 kW의 전기를 소비하는 니켈-크롬선으로 구성된 길이 4.0 m의 전기가열장치를 지표하 3.5~6.5 m 사이에 설치하여 48시간의 지반가열을 2회, 총 96시간 실시하였으며, 온도계와 압력계를 지표하 5.0 m 지점에 매설하여 지반가열에 의한 온도 및 증기압 변화를 측정하였다. 실험결과 가열원으로부터 횡방향 거리의 온도분포 및 선단지지력의 변화는 이차함수를 나타내었으며, 둘 다 R2값은 1로 산정되었다. 또한, 전기가열로 인해 수증기가 배출됨에 따라, 함수비 및 간극수압이 감소함을 관찰할 수 있었다.

Differential gear case와 피니언 샤프트 체결을 위한 핀 압입 장치설계 및 측정에 관한 연구 (A Study on the Design and Measurement of Pin Press-Fit Device for Fastening Differential Gear Case and Pinion Shaft)

  • 장태환;권진욱;엄지현;김정아;김태규
    • 열처리공학회지
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    • 제34권1호
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    • pp.25-30
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    • 2021
  • The differential gear system is a device designed to distribute the driving force of both vehicle wheels and control the rotational speed when the vehicle turns on a curve. The differential device consists of a differential gear case, a ring gear, and a pressure ring. A differential pinion gear and side gear are mounted on the differential pinion shaft inside the differential gear case. In this study, a pin press-fitting device that mounts the pinier gear and side gear to the differential pinion shaft in the differential gear case was designed, and a jig device for pin press-fitting using servo press was developed. In addition, by precisely measuring the pin press-in load and press-in distance according to the pin hole diameter of the differential gear shaft, the optimization of the pin pressin process was established.

커먼레일시스템의 비증발 디젤 분무에서 분사율과 주변기체의 밀도에 따른 주변기체 유입 (Effect of Injection Rate and Gas Density on Ambient Gas Entrainment of Non-evaporating Transient Diesel Spray from Common-Rail Injection System)

  • 공장식;최욱;배충식;강진석
    • 한국자동차공학회논문집
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    • 제12권5호
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    • pp.19-24
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    • 2004
  • Entrainment of ambient gas into a transient diesel spray is a crucial factor affecting the following preparation of combustible mixture. In this study, the entrainment characteristics of ambient gas for a non-evaporating transient diesel were investigated using a common-rail injection system. The effects of ambient gas density and nozzle hole geometry were assessed with entrainment coefficient. Laser Doppler Velocimetry (LDV) technique was introduced to measure the entrainment speed of ambient gas into a spray. There appeared a region where the entrainment coefficients remained almost constant while injection rates were still changing. The effect of common-rail pressure, which altered the slope of injection rate curve, was hardly noticed at this region. Entrainment coefficient increased with ambient gas density, that is, the effect of ambient gas density was greater than that of turbulent jet whose entrainment coefficient remained constant. The non-dimensional distance was defined to reflect the effect of nozzle hole diameter and ambient gas density together. The mean value of entrainment coefficient was found to increase with non-dimensional distance from the nozzle tip, which would be suggested as the guideline for the nozzle design.

수중 폭발에 의한 함체의 비탄성 휘핑 응답에 관한 연구 (A Study on Inelastic Whipping Responses in a Navy Ship by Underwater Explosion)

  • 김현우;서재훈;정준모
    • 대한조선학회논문집
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    • 제58권6호
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    • pp.400-406
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    • 2021
  • The primary effect of the far-field underwater explosion (UNDEX) is the whipping of the ship hull girder. This paper aims to verify why inelastic effects should be considered in the whipping response estimations from the UNDEX simulations. A navy ship was modeled using Timoshenko beam elements over the ship length uniformly keeping the constant midship section modulus. The transient UNDEX pressure was produced using two types of the Geers-Hunter doubly-asymptotic models: compressible and incompressible fluids. Because the UNDEX model based on incompressible fluid assumption provided more increased fluid volume acceleration in the bubble phase, the incompressible fluid-based UNDEX model was adopted for the inelastic whipping response analyses. The non-linear hull girder bending moment-curvature curve was used to embed inelastic effects in the UNDEX analyses where the Smith method was applied to derive the non-linear stiffness. We assumed two stand-off distances to see more apparent inelastic effects: 40.5 m and 35.5 m. In the case of the 35.5 m stand-off distance, there was a statistically significant inelastic effect in terms of the average of peak moments and the average exceeding proportional limit moments. For the conservative design of a naval ship under UNDEX, it is recommended to use incompressible fluid. In the viewpoint of cost-effective naval ship design, the inelastic effects should be taken into account.

Effects of the Geometry of Components Attached to the Drain Valve on the Performance of Water Hammer Pumps

  • Saito, Sumio;Takahashi, Masaaki;Nagata, Yoshimi;Dejima, Keita
    • International Journal of Fluid Machinery and Systems
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    • 제4권4호
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    • pp.367-374
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    • 2011
  • Water hammer pumps can effectively use the water hammer phenomenon in long-distance pipeline networks that include pumps and allow fluid transport without drive sources, such as electric motors. The results of experiments that examined the effect of the geometric form of water hammer pumps by considering their major dimensions have been reported. In addition, a paper has also been published analyzing the water hammer phenomenon numerically by using the characteristic curve method for comparison with experimental results. However, these conventional studies have not fully evaluated the pump performance in terms of pump head and flow rate, common measures indicating the performance of pumps. Therefore, as a first stage for the understanding of water hammer pump performance in comparison with the characteristics of typical turbo pumps, the previous paper experimentally examined how the hydrodynamic characteristics were affected by the inner diameter ratio of the drive and lifting pipes, the form of the air chamber, and the angle of the drive pipe. To understand the behavior of the components attached to the valve chamber and the air chamber that affects the performance of water hammer pumps, the previous study also determined the relationship between the water hammer pump performance and temporal changes in valve chamber and air chamber pressures according to the air chamber capacity. For the geometry of components attached to the drain valve, which is another major component of water hammer pumps, this study experimentally examines how the water hammer pump performance is affected by the length of the spring and the angle of the drain pipe.

작물 흡수를 고려한 3차원 토양수분 분포 모델 개발을 통한 최적 점적 관개 연구 (A Numerical Model of Three-dimensional Soil Water Distribution for Drip Irrigation Management under Cropped Conditions)

  • 권재필;김승현;류순호;노희명
    • Applied Biological Chemistry
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    • 제43권2호
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    • pp.116-123
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    • 2000
  • 작물이 자라는 토양에서 점적 관개에 의해 일어나는 토양 수분의 분포와 이동을 3차원 직교 좌표계로 예측할 수 있는 수학적 모델을 개발하였다. 모델은 지면 증발과 증산을 고려하였으며, 이들의 계절적 현화와 하루 중의 시간변화 뿐 아니라 작물 뿌리의 성장 및 뿌리의 토양 중 분포형태도 고려하였다. 모델의 해는 block centered grid system등을 적용하여 Crank-Nicolson법과 Gauss-Seidel 반복법을 사용하여 구하였다. 모델은 실험을 통해 검증하였으며, 점적 관개의 특성을 알기 위하여 모델을 이용한 컴퓨터 모사를 실시하였고, 본 연구의 조건으로부터 다음의 결과를 얻었다. (1) 관수된 물은 점적기에서 멀어짐에 따라 그 유속이 크게 감소하였고, 관수 시간이 증가함에 따라 습윤구역의 크기가 증가하는 속도도 급격히 감소하였다. (2) 1점 관수의 경우 습윤구역은 수평 방향보다는 수직 방향으로 더 깊이까지 도달하였다. (3) 본 연구조건에서 물이용 효율은 지하 25cm지점의 4점 관수가 가장 좋았으며, 지표면 1점 관수보다 증산량은 10% 증가, 지면 증발량은 20% 감소하였다. (4) disk tension infiltrometer에 의한 토양의 수분보유도 함수는 토양수분 압출에 의한 젖음 곡선과는 상당한 차이를 나타내는 것도 알 수 있었다.

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