• Title/Summary/Keyword: a horizontal plane

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Free-strain solutions for two-dimensional consolidation with sand blankets under multi-ramp loading

  • Zan Li;Songyu Liu;Cuiwei Fu
    • Geomechanics and Engineering
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    • 제35권4호
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    • pp.385-393
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    • 2023
  • To analyze the consolidation with horizontal sand drains, the plane strain consolidation model under multi-ramp loading is established, and its corresponding analytical solution is derived by using the separation of variables method. The proposed solution is verified by the field measurement data and finite element results. Then, the effects of the loading mode and stress distribution on consolidation and dissipation of pore pressure are investigated. At the same time, the influence of hydraulic conductivity and thickness of sand blankets on soil consolidation are also analyzed. The results show that the loading mode has a significant effect on both the soil consolidation rate and generation-dissipation process of pore water pressure. In contrast, the influence of stress distribution on pore pressure dissipation is obvious, while its influence on soil consolidation rate is negligible. To guarantee the fully drained condition of the sand blanket, the ratio of hydraulic conductivity of the sand blanket to that of clay layer kd/kv should range from 1.0×104 to 1.0×106 with soil width varying from 100 m to 1000 m. A larger soil width correspondingly needs a greater value of kd/kv to make sure that the pore water can flow through the sand blanket smoothly with little resistance. When the soil width is relatively small (e.g., less than 100 m), the effect of thickness of the sand blanket on soil consolidation is insignificant. And its influence appears obvious gradually with the increase of the soil width.

스탠스 자세와 운동면의 차이에 따른 위팔어깨관절의 돌림운동이 어깨돌림근군과 몸통근군의 근전도 반응에 미치는 영향 (Effects of shoulder rotation according to stance posture and plane of motion on EMG response of shoulder rotator cuff and Trunk muscles.)

  • 김기홍;조상우;정환종;남찬희
    • 한국응용과학기술학회지
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    • 제35권3호
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    • pp.914-924
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    • 2018
  • 본 연구는 스탠스 자세와 운동면의 차이가 어깨돌림동작 시 활동근의 %MVIC를 비교분석하여 어깨강화운동을 위한 기초자료를 제공하는데 목적이 있다. 남성 8명을 무선배정하여 두발지지 자세, 한발지지 자세, 런지자세와 이마면, 수평면, 시상면에서 회전동작을 10회씩 수행하였다. 수행 중 가시위근, 가시아래근, 작은원근, 앞세모근, 배곧은근, 척수세움근, 큰가슴근, 넓은등근의 근활성도를 측정하였다. SPSS 22.0 통계프로그램을 사용하여 반복측정 일원분산분석(repeted one-way ANOVA)을 실시하였다. 첫째, 이마면에서 바깥돌림 동작 시 척추세움근은 두발지지 자세와 한발지지 자세보다 런지자세에서 높게 나타났고 안쪽돌림 동작 시 가시위근은 두발지지 자세보다 한발지지 자세, 한발지지 자세보다 런지자세에서 높게 나타났다. 둘째, 수평면에서 바깥돌림 동작 시 앞세모근은 두발지지 자세보다 한발지지 자세과 런지자세에서 높게 나타났고 안쪽돌림 동작 시 가시아래근은 두발지지 자세와 한발지지 자세보다 런지자세에서 높게 나타났으며, 큰가슴근에서는 한발지지 자세보다 두발지지 자세, 한발지지 자세보다 런지자세가 높게 나타났다. 셋째, 시상면 바깥돌림 동작 시 배곧은근은 두발지지 자세보다 한발지지 자세와 런지자세에서 유의하게 높게 나타났다. 안쪽돌림 동작 시 가시위근은 두발지지 자세보다 한발지지 자세와 런지자세에서 높게 나타났고 가시아래근은 두발지지 자세와 한발지지 자세보다 런지자세에서 높게 나타났다. 배곧은근에서 두발지지 자세와 런지자세보다 한발지지 자세에서 높게 나타났고 척추세움근은 한발지지 자세보다 두발지지 자세와 런지자세에서 높게 나타났다. 결론적으로 스탠스와 어깨의 운동면의 차이가 어깨위팔관절의 돌림운동 시 활동근들의 근활성도에 미치는 영향은 스탠스자세와 운동면에 따라서 다른 양상이 나타났으며, 이를 어깨 강화 운동프로그램에 적용한다면 보다 긍정적 효과를 기대할 수 있는 운동프로그램이 될 것으로 생각 된다.

성인남자 목부위의 연령별 형태변화에 관한 연구(제1보) -슬라이딩 게이지법에 의한 분석- (Observation on Neck Form Changes Related to Aging in Men(Part I) -Using the Sliding Gause Measurement Method-)

  • 이영숙
    • 한국의류학회지
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    • 제18권2호
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    • pp.252-262
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    • 1994
  • 성인 남자 목부위의 연령별 형태 변화를 슬라이딩 게이지법에 의하여 측정하고자 하였으며,피험자는 20대 청년층 15명, 40대 중년층 11명, 60대 노년층 11명으로 하였다. 측정 부위는 후두융기점, 목뒷점, 목앞점, 어깨점을 지나는 목부위의 수평단면형태로 하였으며, 목부위의 측면형태, 각 수평단면의 둘레, 수평단면의 전후$\cdot$좌우길이에 대하여 연령별 특징을 파악하였다. 실험결과를 요약하면 다음과 같다. 1. 목뒷점에서 수평으로 인체의 전방을 향하여 그으진 수평선에 대한 후두융기점의 위치로서 목의 측면 형태를 분석하였으며, 20대에서는 피험자 15명중 14명이 자세I과 자세II에 속하므로서 경부 자세가 바른 체형을 보여 주었으며, 40대에서는 피험자 11명중 자세II에 속하는 피험자가 3명이었으며 나머지 8명은 경부 자세가 앞으로 수그러진 체형인 자세III에 속하였다. 60대에서는 피험자 11명 모두가 자세III에 속하였다. 2. 후두융기점, 목뒷점, 목앞점, 어깨점을 지나는 각 수평 단면도의 특징에 대하여 보면,목뒷점 수평단면의 형태는 젊은층은 원형을, 중년층과 노년층으로 갈수록 타원형의 모양으로 변화하는것을 볼 수 있었다. 또한, 후두융기점의 위치가 앞으로 수그러지면서 후두융기점 을 지나는 수평단면도의 형태 역시 나이가 들수록 청년층에 비하여 뒷목 부위가 크게 되어지는 경향을 볼수 있었다. 목앞점을 지나는 수평단면은 나이가 들수록 청년층에 비하여 단면의 전후$\cdot$좌우길이가 커지는 경향을 볼 수있었으며 40대가 최대치를 나타내었다. 어깨점을 지나는 수평단면의 특징은 나이가 들수록 전후길이(두께)는 증가하고 좌우길이(너비)는 감소하는 경향을 보였다.

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SYNTHESIS OF STEREO-MATE THROUGH THE FUSION OF A SINGLE AERIAL PHOTO AND LIDAR DATA

  • Chang, Ho-Wook;Choi, Jae-Wan;Kim, Hye-Jin;Lee, Jae-Bin;Yu, Ki-Yun
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2006년도 Proceedings of ISRS 2006 PORSEC Volume I
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    • pp.508-511
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    • 2006
  • Generally, stereo pair images are necessary for 3D viewing. In the absence of quality stereo-pair images, it is possible to synthesize a stereo-mate suitable for 3D viewing with a single image and a depth-map. In remote sensing, DEM is usually used as a depth-map. In this paper, LiDAR data was used instead of DEM to make a stereo pair from a single aerial photo. Each LiDAR point was assigned a brightness value from the original single image by registration of the image and LiDAR data. And then, imaginary exposure station and image plane were assumed. Finally, LiDAR points with already-assigned brightness values were back-projected to the imaginary plane for synthesis of a stereo-mate. The imaginary exposure station and image plane were determined to have only a horizontal shift from the original image's exposure station and plane. As a result, the stereo-mate synthesized in this paper fulfilled epipolar geometry and yielded easily-perceivable 3D viewing effect together with the original image. The 3D viewing effect was tested with anaglyph at the end.

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두 이방성 띠판에 내재된 면외변형하의 등속평행 균열 (Parallel Crack with Constant Velocity in Two Bonded Anisotropic Strip Under Anti-Plane Deformation)

  • 박재완;김남훈;최성렬
    • 대한기계학회논문집A
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    • 제24권2호
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    • pp.496-505
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    • 2000
  • A semi-infinite parallel crack propagated with constant velocity in two bonded anisotropic strip under anti-plane clamped displacement is analyzed. Using Fourier integral transform a Wiener-Hopf equation is derived. By solving this equation the asymptotic stress and displacement fields near the crack tip are determined, where the results give the more general expression applicable to the extent of the anisotropic material having one plane of elastic symmetry for the parallel crack. The dynamic stress intensity factor and energy release rate are also obtained as a closed form, which are the results applicable to the problem both of dynamic and static crack under the same geometry as this study. The stress intensity factor approaches zero at the critical crack velocity which is less than the shear wave velocity, but in typical case of isotropic or orthotropic material agrees with the velocity of shear wave. Also a circular shear stress around crack tip is considered, from which the stress is shown to be approximately symmetric about the horizontal axis. Referring to the maximum stress criteria, it could be shown that a brenched crack is formed by crack growth as crack velocity increases.

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.

Improved LiDAR-Camera Calibration Using Marker Detection Based on 3D Plane Extraction

  • Yoo, Joong-Sun;Kim, Do-Hyeong;Kim, Gon-Woo
    • Journal of Electrical Engineering and Technology
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    • 제13권6호
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    • pp.2530-2544
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    • 2018
  • In this paper, we propose an enhanced LiDAR-camera calibration method that extracts the marker plane from 3D point cloud information. In previous work, we estimated the straight line of each board to obtain the vertex. However, the errors in the point information in relation to the z axis were not considered. These errors are caused by the effects of user selection on the board border. Because of the nature of LiDAR, the point information is separated in the horizontal direction, causing the approximated model of the straight line to be erroneous. In the proposed work, we obtain each vertex by estimating a rectangle from a plane rather than obtaining a point from each straight line in order to obtain a vertex more precisely than the previous study. The advantage of using planes is that it is easier to select the area, and the most point information on the board is available. We demonstrated through experiments that the proposed method could be used to obtain more accurate results compared to the performance of the previous method.

한국인 하악골 전돌증 환자의 악교정수술을 위한 ENaP(Esthetic NaP)선의 유효성에 관한 연구 (EFFICACY OF ENaP(ESTHETIC NaP)-LINE FOR ORTHOGNATHIC SURGERY OF KOREAN MANDIBULAR PROGNATHISM)

  • 김종국;박형식
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제28권5호
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    • pp.372-382
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    • 2002
  • As the most of dentofacial deformity patients indicated to orthognathic surgery have strong desire for esthetic improvement as well as functional improvement, ideal esthetic evaluation should be made at surgical prediction. Lateral cephalographs has been commonly used for surgical prediction, however, remarkable discrepancy between esthetic viewpoint by simple looking and analysis on lateral cephalographs often found on evaluation of sagittal position of the upper and lower jaws especially in cases of mandibular prognathism of Koreans. In these cases, we have been employed Esthetic NaP(ENaP)-line for corrective evaluation and ideal surgical prediction on lateral cephalographs, but the efficacy of ENaP-line has not been evaluated. This is a study on efficacy of ENaP-line for orthognathic surgery of Korean mandibular prognathism. 170 Korean patients who had been diagnosed as mandibular prognathism and planned for orthognathic surgery at Department of Oral and Maxillofacial Surgery, College of Dentistry, Yonsei University during last 10 years are studied. The obtained results are as followings; among 170 patients of mandibular prognathism, 132 patients(77.6%) had not discrepancy in evaluation of sagittal position of the maxilla between cephalometric and esthetic evaluation(they are classified as Group I), however, 38 patients(22.4%) had definite discrepancy(they are classified as Group II). ENaP-line was employed in all cephalometric analysis of Group II. The proportions of male and female were similar in both Groups. Sixteen vertical reference lines perpendicular to 16 horizontal reference lines were obtained as followings; Each of the representative degree of ${\angle}SN/AFH$, ${\angle}SN/CFH$ and ${\angle}AFH/CFH$ obtained at Group I was applied to SN plane, AFH plane and CFH plane of Group II each other, and so 16 horizontal reference lines could be obtained individually according to each of the applied degree to each plane. And then their reliability to coincide with ENaP-line of Group II was evaluated. A vertical reference line perpendicular to a horizontal line made by application of the representative degree of ${\angle}$AFH/CFH in Group I to AFH line in Group II had the most highest coincidence with ENaP-line of Group II, however, its agreement was 42% in male and 47% in female. From this results, the rest of them should be determined their corrective jaw position definitely depend on

흡입 밸브 각도에 따른 실린더 내 흡입 유동 특성 비교 (In-Cylinder Intake Flow Characteristics according to Inlet Valve Angle)

  • 엄인용;박찬준
    • 한국자동차공학회논문집
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    • 제14권3호
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    • pp.142-149
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    • 2006
  • A PIV(Particle Image Velocimetry) was applied to measure in-cylinder velocity field according to inlet valve angle during intake stroke. Two engines, one is conventional DOHC 4 valve and the other is narrow valve angle, were used to compare real intake flow. The results show that the intake flow pattern of conventional engine is more complicated than that of narrow angle one in horizontal plane and the vertical component of in-cylinder flow is rapidly decayed at the end stage of intake. On the other hand, the flow pattern of narrow angle one is relatively well arranged in horizontal plane and the vertical velocity component remains so strongly that forms large-scale strong tumble. Two engines also form commonly three tumble; two are small and bellow the intake valve and one is large-scale. The center of large scale tumble moves to bottom of cylinder as the vertical velocity increases.

연성모드법을 이용한 해양 배경소음 모델링 (Modeling of ambient noise in ocean environment using coupled mode)

  • 박중용;권혁종
    • 한국음향학회지
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    • 제41권4호
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    • pp.397-409
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    • 2022
  • 본 논문에서는 거리 종속환경에서 해수면에 의한 배경소음 모델링을 수행하였다. 모델링 환경에서 음원은 해수면 근처에서 수평 방향의 전 영역에서 위치하고, 수신기 배열은 거리 종속환경의 해양 도파관 내에 위치하였다. 거리 종속환경에서의 소음원과 수신기 간의 음파전달은 연성모드법을 사용하여 계산되었으며, 이를 이용하여 수신기 간 상호 스펙트럴 밀도행렬 식을 유도하였다. 계산된 상호 스펙트럴 밀도행렬은 소음 인텐시티, 빔형성 결과, 코히런스 함수를 계산하는 데 사용되었으며, 그 결과를 거리 독립환경에서의 결과와 비교하였다. 이를 통해 해저면 특성에 의한 수직 방향성과 거리 종속환경에 의한 수평면상의 비대칭성 특성이 모델링 결과에 반영됨을 확인하였다.