• Title/Summary/Keyword: Wall following

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Earth Pressures Acting on the Rigid Wall under Incremental Load (점증하중에 의한 강성벽체에 작용하는 토압)

  • Chon, Yong-Baek;Kwon, Uk-Hwa
    • Journal of the Korean Society of Industry Convergence
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    • v.5 no.3
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    • pp.247-254
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    • 2002
  • This study has researched the following conclusion to compare to the existing theory and to examine lateral earth pressure, which have measured to add incremental load on sandy soil, and were different in types of compaction by modeling earth pressure test. Lateral earth pressure by incremental load shows that it is increasing at depth forty four centimeters as 2/3H point for wall high, and under 2/3 H point the variation of earth pressure on incremental load is not conspicuous. Therefor, the more a position of surcharge load is close with fixed wall, the more a variation of lateral earth pressure marks considerably. According to relative compaction density of soil, lateral earth pressure turns up larger effective value for layer compaction test to a thickness of thirty three centimeters than layer compaction test to a thickness of twenty centimeters by the roller.

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A Study on the Effectiveness of Heat Infrared Imaging Method for Monitoring the Physical Condition of the Mortar Walls

  • Yoshioka Ryouhei;Tachiiri Kaoru;Asari Kimihiro;Gotoh Keinosuke
    • Proceedings of the KSRS Conference
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    • 2004.10a
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    • pp.545-548
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    • 2004
  • In Japan for protecting the slides of steep sloped areas covering the face of slopes by sprayed mortar became popular since 1970s. But, these mortar walls are getting older now. In this background, this study aims to find ways to develop a diagnostic technique of these faces of slope without physically contacting or destroying them. In doing so, we have used heat infrared imaging processing method and developed a simulation model to predict the weak portion of the wall. The results revealed that, by following the model vacuum of mortar wall can be detected having thickness up to 15cm.

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New Wall Impaction Model for Diesel Spray (디젤분무의 새로운 벽면충돌모델)

  • Park K.
    • Journal of computational fluids engineering
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    • v.2 no.2
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    • pp.80-88
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    • 1997
  • A new wall impaction model for diesel spray is described in this paper. The gas phase is modelled in terms of the Eulerian continuum conservation equations of mass, momentum, energy and fuel vapour fraction. The liquid phase is modelled following the discrete droplet model approach. The droplet parcel contains many thousands of drops assumed to have the same size, temperature and velocity components. The droplet parcel equations of trajectory, momentum, mass and energy are written in Lagrangian form. The new drop-wall interaction model is proposed, which is based on experimental investigations on individual drops, and it is applied for the general non-orthogonal grid. The model is then assessed through comparison with experiments over a wide range of test conditions of sprays. The results are in good agreement with experimental data.

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Postinfarction Left Ventricular Free Wall Rupture (급성 심근경색후 좌심실벽 파열 -2례보고-)

  • 김도균
    • Journal of Chest Surgery
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    • v.33 no.10
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    • pp.834-838
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    • 2000
  • Left ventricular free wall rupture following acute myocardial infarction (AMI) is the second most common cause of death and has been reported to be responsible for 4 to 24% of all infarction deaths. The rupture occurs anywhere from a few hours to several days after AMI. The common findings of ventricular rupture are persistent chest pain bradycardia and shock. This may be often mistaken for the ruptured dissection of the ascending aorta. The different points from dissection are 1) persistent chest pain 2)persistent ST segment elevation and 3) only intramural hematoma in ascending aorta. We have sucessfully managed two patients with postinfarction myocardial rupture. Surgical management consisted of infarctectomy repairi of the ventricular rupture and coronay artery bypass grafting. We conclude that successful surgical management of ventricular free wall rupture should require prompt diagnosis and emergency operation.

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Development and Assessment of Wall Spray Impaction Model (벽면분무충돌모델의 개발과 평가)

  • Park K.
    • 한국전산유체공학회:학술대회논문집
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    • 1996.05a
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    • pp.137-142
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    • 1996
  • A new wall impaction model for spray and its assessment are described in this paper. The gas phase is modelled in terms of the Eulerian continuum conservation equations of mass, momentum, energy and fuel vapour fraction. The liquid phase is modelled following the discrete droplet model approach. The droplet parcel contains many thousands of drops assumed to have the same size, temperature and velocity components. The droplet parcel equations of trajectory, momentum, mass and energy are written in Lagrangian form. The new drop-wall interaction model is proposed, which is based on experimental investigations on individual drops, and it is applied for the general non-orthogonal gird. The model is then assessed through comparison with experiments over a wide range of test conditions of sprays. The results are in good agreement with experimental data.

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A RADIOGRAPHIC STUDY OF THE PANORAMIC INNOMINATE LINE II (파노라마 X선사진상의 무명선에 관한 연구 II)

  • Choi Karp-Shik;Lee Kang-Sook
    • Journal of Korean Academy of Oral and Maxillofacial Radiology
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    • v.25 no.1
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    • pp.109-114
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    • 1995
  • The purpose of this study was to investigate the changes of the shape of the panoramic innominate line and also to examine the relation of the panoramic innominate line to maxillary posterior wall according to positional changes in panoramic radiographs of the patients who had no pathoses in the maxillary sinus and adjacent bony structures. Thus these panoramic radiographs were obtained and evaluated in standard, forward 10mm, backward 10mm, chin down 10°, and chin up 10° positions. And the following results were obtained : 1. Panoramic innominate lines were not changed in shape according to various positional changes in panoramic radiography. 2. The panoramic innominate line was observed to be more clear images and decreased distance to the posterior wall of maxillary sinus at forward 10mm and chin down 10° positions. And the panoramic innominate line was observed more blurred images and increased distance to the posterior wall of maxillary sinus at backward 10mm and chin up 10° positions.

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Numerical Analysis of the Effect of Injection Pressure Variation on Impaction Spray Characteristics (분사압력변화가 충돌분무특성에 미치는 영향에 관한 수치적 고찰)

  • 김승철
    • Journal of Advanced Marine Engineering and Technology
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    • v.23 no.1
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    • pp.47-53
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    • 1999
  • Small compression-ignition direct injection engines have been developed as a measure to improve a fuel efficiency and reduce harmful exhaust gases. Those small engines generally employ high injection pressure increase on the spray impacting on a wall is discussed in this paper. The gas phase is modelled by the Eulerian continuum conservation equations of mass momentum energy and fuel vapour fraction. The liquid phases is modelled following the discrete droplet model approach in Lagrangian form and the droplet wall interaction is modelled as a func-tion of the velocity normal to impaction lands. The droplet distributions vapor fractions and gas flows are analyzed in various injection pres-sure cases. The penetrations of wall spray and vapor increase and the Sauter mean diameter decreases with increasing injection pressure.

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Response of Spatially Developing Turbulent Boundary Layer to Spanwise Oscillating Electromagnetic Force (횡 방향 진동하는 전자기력에 대한 공간 발달하는 난류 경계층의 반응)

  • Lee, Joung-Ho;Sung, Hyung Jin
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.29 no.11 s.242
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    • pp.1189-1198
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    • 2005
  • Direct numerical simulations were performed to investigate the physics of a spatially developing turbulent boundary layer flow subjected to spanwise oscillating electromagnetic forces in the near wall region. A fully implicit fractional step method was employed to simulate the flow. The mean flow properties and the Reynolds stresses were obtained to analyze the near-wall turbulent structure. It is found that skin friction and turbulent kinetic energy can be reduced by the electromagnetic forces. The decrease in production is responsible fur the reduction of turbulent kinetic energy. Instantaneous flow visualization techniques were used to observe the response of streamwise vortices and streak structures to spanwise oscillating forces. The near-wall vortical structures are affected by spanwise oscillating electromagnetic forces. Following the stopping of the electromagnetic force, the flow eventually relaxes back to a two-dimensional equilibrium boundary layer.

Suppression of Magnetization Ringing After Domain Wall Collision Studied by Micromagnetic Simulation

  • Djuhana, Dede;Piao, Hong-Guang;Lee, Sang-Hyuk;Jun, Su-Hyeong;Shim, Je-Ho;Kim, Dong-Hyun
    • Journal of Magnetics
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    • v.13 no.4
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    • pp.120-123
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    • 2008
  • Magnetization ringing following domain wall collision on a ferromagnetic nanowire has been investigated by micromagnetic simulation. Suppressed magnetization ringing is observed with the introduction of a small ribbon to the nanowire. Magnetization ringing has been analyzed in a frequency space by a fast Fourier transform. With the introduction of a small ribbon and/or taping of the wire, the amplitude of ringing is reduced with a shifted frequency peak.

Hearing Improvement by Ossicular Reconstruction (이소골 재형에 의한 청력 증진술)

  • 김인술;천경두;조순곤;박재균;강현녕;김주일
    • Proceedings of the KOR-BRONCHOESO Conference
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    • 1979.05a
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    • pp.3.3-4
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    • 1979
  • Since 1968, we have performed intact canal wall tympanoplasty with mastoidectomy and reported its methods and results on several occasions. We also reported ossicular reconstruction for hearing improvement after intact canal wall tympanoplasty with mastoidectomy. Many problems were noticed, so several variable operation methods were performed. This paper deals with the following: A checked up of hearing progress after ossicular reconstruction with a 93 cases out of a total 153 cases who had undergone this operation. This covered a period of January, 1973 to February, 1979 in our Department of Otolaryngology.

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