• Title/Summary/Keyword: front door

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Distribution of the Scatter Ray on Chest X-ray Examinations (흉부 X선 촬영 시 산란선 분포 연구)

  • Cho, Pyong-Kon
    • The Journal of the Korea Contents Association
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    • v.12 no.7
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    • pp.255-260
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    • 2012
  • This study aims to examine the generation of scatter rays by dividing it into the presence of the subject at the chest X-ray examination, the X-ray tube and detector in the X-ray room, the front of the patient window, the outside of the entrance door of the patient waiting room, opening of the entrance door, the outside of the radiological technologist's entrance door, and the opening of the radiological technologist's entrance door, etc. When there is a subject, as the subject is thicker, more scatter rays occur at each of the spots for measurement. And when the entrance door is closed at the measurement, fewer scatter rays are generated.

A Study on the Pressure Change during the Pressurization to the Elevator Lobby (부속실 급기가압 시 압력특성 변화에 관한 연구)

  • Kim, Beom-Kyue;Park, Yong-Hwan;Kim, Hong-Sik
    • Fire Science and Engineering
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    • v.26 no.5
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    • pp.99-104
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    • 2012
  • This study investigated the pressure change in the fire room and elevator lobby during the air pressurization to the Elevator lobby with the various egress scenarios and the existence of vent holes in the fire room. The experiments revealed that pressure change was significantly affected by the open/closure scenarios of the front door and stairway door resulting in over pressure, under pressure and performance drop of the door closure. It also revealed that the required smoke defensive air velocity can be obtained only with the existence of vent holes in the fire room by the removal of back pressure in the fire room.

Analysis of Traps Incidents of Metro Train Door by Human Factors (인적요인에 의한 도시철도 출입문 끼임사건 분석)

  • Pak, Tae Young;Oh, Hyun Soo;Chang, Seong Rok
    • Journal of the Korean Society of Safety
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    • v.33 no.6
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    • pp.85-92
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    • 2018
  • This study aimed to reduce of traps incident of metro train door by suggesting preventive actions throughout analyzing why railway drivers and passengers commit unsafe behaviors which are human factors making occurrence of the incidents. The incident cases were analyzed and Incident Tree was structured by brainstorming with safety experts. In addition, the questionnaire survey was conducted for comparison with the analysis results. As the result, this study suggested driver's factors, passenger's factors, and public relation plan for safe use of metro in order to reduce the frequency of the incidents. For driver's factors, implementing job-rotation systems between railway and non-railway drivers, installing Object Detection Sensors between the metro doors and PSD, and flexible operation of dwell time were suggested. For passenger's factors, placing a platform safety person, installing a safety fence in front of the stairs and the elevators, and country wide public relations through mass media were suggested.

A Study on the Flow Structures in the Narrow Region (난접근 영역에서의 유동구조)

  • Ih, Kang-Duck
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 2008.11a
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    • pp.570-575
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    • 2008
  • Flows are studied to understand the flow structure in the narrow region that any experimental approaches are hard to access, Effects on the vehicle commodities from the flows are anticipated in the point of aerodynamics and aero-acoustics. PowerFLOW, which was well validated commercial software, was used to simulate the flow field in the small region, for example, the inner region of the fender panel, the inner region around the front door and the inner region of the trunk lid. Flows in the narrow region could be origins of door sealing problem and dust piling problem.

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Development of an Automatic Face Velocity Controller for a Fume Hood System (흄후드 시스템의 면 풍속 자동 제어기 개발)

  • Kim, Hogeol;Jeong, Kyuwon
    • Journal of the Korean Society of Manufacturing Technology Engineers
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    • v.22 no.2
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    • pp.304-309
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    • 2013
  • In chemical, medical or biology laboratories Fume Hoods are basic facilities which can protect researchers from dangerous gas as blowing the contaminated air outside. After the air inside the laboratory room is sucked into the hume hood, then, it is blew out by a fan rotated by an AC induction motor. In addition, a damper controls the inside opening of a duct, which the air flows through. The face velocity, air velocity through the front door, have to be kept constant as the set value even though the opening of the door is varied. However, conventional fume hood used to be operated by operator's manual switches. So that, in this paper an automatic control system is developed which controls the face velocity by adjusting the rotating speed of the blow motor and the opening of the damper. Experiments show that this developed system can be used at such laboratories.

3-Dimensional Finite Element Analysis of Hemming for Automotive Outer Panels by Part Model Assembling Method (부분모델 합성법을 이용한 자동차 외판의 헤밍 공정에 대한 3차원 유한요소해석)

  • 김헌영;임희택;김형종;이우홍;박춘달
    • Transactions of Materials Processing
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    • v.13 no.2
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    • pp.115-121
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    • 2004
  • Hemming is the last farming process in stamping and determines external quality of automotive outer panels. Few numerical approaches using 3-dimensional finite element model have been applied to a hemming process due to small element size which is needed to express the bending behavior of the sheet around small die comer and comparatively big model size of automotive opening parts, such as side door, back door and trunk lid etc In this study, part model assembling method is suggested and applied to the 3-dimensional finite element simulation of flanging and hemming process far an automotive front hood.

A Study on the condition of Indoor environmental safety in kindergarten (유아교육기관의 실내 환경 안전 실태에 관한 연구)

  • Choi, Eun-Jin;Han, Hae-Ryon
    • Proceedings of the Korean Institute of Interior Design Conference
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    • 2008.05a
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    • pp.242-246
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    • 2008
  • This study is to research on the condition of safe environment of kindergartens. This study is to supplement the preceding study which was based only on survey to show the result and analyze the condition and problems of the safety of kindergartens to suggest the basic database of indoor environment that cause accident. First as a theoretical study, we analyze the preceding studies according to the related regulations. And we made checklist based on this and visited and investigated two kindergartens where applied for the case study As the result, we could understand factors that can cause accidents from classroom, corridor, door, stairs, balustrade, toilet, kitchen, front door, and fire exit/shelter. Especially, in case of fire exit/shelter, the whole renewal of kindergarten was necessary which is difficult. But, though it can not be advanced right away, they should try to have facility expansion and repair works gradually. And for more study on this, active cooperation from kindergartens are in need.

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A Study of Development and Application for Side Impact Sled Test (모의 측면 충돌 시험 기법 개발 및 응용)

  • 최현진
    • Transactions of the Korean Society of Automotive Engineers
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    • v.12 no.1
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    • pp.138-144
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    • 2004
  • Occupant protection in the side impact of a vehicle becomes one of the most important issues today. So, to reduce development time and cost, it needs test equipment which conducts an accurate simulation of the side impact crash. This paper describes a new test method for side impact, which utilizes a standard 12inch-HYGE-type sled facility. If a side impact sled test can simulate vehicle intrusion very well, it will contribute to develop full-scale side impact crash performance. The newly developed sled test method enables simulation for dummy motion, injury, door velocity, trim crack, and vehicle structure to be accurate. Ant also this sled test method can be applied to the development of side air-bag.

A Study on the Structural Characteristics and Metal Ornament of Jeonju-Jang (전주장의 구조적 특징과 금구장식 연구)

  • Baik, Da hee;Lim, Seung Taek
    • Journal of the Korea Furniture Society
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    • v.28 no.3
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    • pp.207-223
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    • 2017
  • Jeonju-Jang is the wood furniture that was made in Chonbuk Jeonju province during the Joseon Dynasty, and was used by middle-upper social classes. It has value as a local cultural heritage because it has unique characteristics in terms of the shape of the furniture, the metal ornament and various functions are integrated in accordance with user's requirements. Therefore, the purpose of this study is to define the structural characteristics of the Jeonju-Jang through case studies of 16 existing artifacts in order to preserve and inherit the value as local cultural resources. The conclusion is as follows. First, Jeonju-Jang in the late period of Joseon Dynasty that is made up of one board to the bottom with the binding of the board. and the front wall, the Juibyuckkan and the Meoruemkan are omitted or made small, so the structure of the surface is simple. There are three or four drawers under the Cheon pan(top plate). There are drawers and shelf inside the hinged door. In the case of a two-layer type, there is a Gaegumeong type door which has half of one side hinged. Second, Jeonju-Jang of the Japanese Ruling Era had a Juibyuckkan by frame binding and an increase in the number of Meoruemkan. and it had independent legs. The Cheon-pan(top plate) was more left and right than both sides. Third, in the late Joseon Dynasty period as a feature of the metal ornaments, cast iron and yellow brass were used as materials. In the Japanese Ruling Era, nickel was mainly used. Various patterns were engraved and the number increased, and it became gorgeous surface as a whole.

Impact Energy Absorbtion Characteristics Review on the Initial Design of TTX Mcp Car front-end Structure (기존선 틸팅차량 Mcp Car 차체 설계초안의 충돌에너지 흡수특성 고찰)

  • Kwon Tae-Soo;Jung Hyun-Seung;Koo Jeong-Seo;Cho Tae-Min
    • Proceedings of the KSR Conference
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    • 2004.10a
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    • pp.652-656
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    • 2004
  • Crashworthy design of trains is now indispensable procedure in modern railway vehicle design for ensuring the safety of Passengers and crew. It is now widely recognized that a more strategic approach is needed in order to absorb higher level energy in a controlled manner and minimize passenger injuries effectively. The first design step in this strategic approach is the design of the front end structure(so called HE extremities) to absorb a large part of total impact energy and then the structure of passengers non-accommodation zones(so called LE extremities) is designed to absorb the rest of impact energy. In this paper, the passengers entrance door area is selected as the LE(low energy) extremities and the design of the LEE was carried out. The main part of LEE design procedures is the design of energy absorbing tubes. For this purpose, the several tube candidates are introduced and compared to each others with numerical crash simulation.

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