• 제목/요약/키워드: tube internal

검색결과 586건 처리시간 0.026초

나선형코일 튜브 비등2상 유동 수치해석 (Numerical Simulation of Boiling 2-Phase Flow in a Helically-Coiled Tube)

  • 조종철;김웅식;김효정;이용갑
    • 한국전산유체공학회:학술대회논문집
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    • 한국전산유체공학회 2004년도 춘계 학술대회논문집
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    • pp.49-55
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    • 2004
  • This paper addresses a numerical simulation of the flow and heat transfer in a simplified model of helically coiled tube steam generator using a general purpose computational fluid dynamic analysis computer code. The steam generator model is comprised of a cylindrical shell and helically coiled tubes. A cold feed water entered the tubes is heated up, evaporates. and finally become a superheated steam with a large amount of heat transferred continuously from the hot compressed water at higher pressure flowing counter-currently through the shell side. For the calculation of tube side two-phase flow field formed by boiling, inhomogeneous two-fluid model is used. Both the internal and external turbulent flows are simulated using the standard k-e model. The conjugate heat transfer analysis method is employed to calculate the conduction in the tube wall with finite thickness and the convections in the internal and external fluids simultaneously so as to match the fluid-wall-fluid interface conditions properly. The numerical calculations are peformed for helically coiled tubes of steam generator at an integral type pressurized water reactor under normal operation. The effects of tube-side inlet flow velocity are discussed in details. The results of present numerical simulation are considered to be physically plausible based on the data and knowledge from previous experimental and numerical studies where available.

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액압성형 시험을 통한 알루미늄 튜브 재료의 성형한계도 (Forming Limit Diagram of an Aluminum Tube Through Hydroforming Tests)

  • 김정선;이진규;박종연;이동재;김헌영;김형종
    • 소성∙가공
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    • 제14권6호
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    • pp.514-519
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    • 2005
  • A tube hydroformability testing system was designed and fabricated enabling to apply the forming condition along arbitrarily pre-programmed internal pressure-axial feed path. The free-bulging and T-forming tests were carried out on the extruded aluminum (A6063) tube specimens with 40.6 mm outer diameter and 2.25 mm thickness. Nine different combinations of internal pressure and axial feed, yielding different strain paths from one another, were taken into consideration in order to induce bursting at various deformation modes. Major and minor strains were automatically measured from deformed grids around the fracture using a stereo-vision-based surface strain measurement system, named ASIAS. The forming limit diagram of the A6063 tube material was successfully obtained. Most of the data points acquired from free bulging and T-forming tests appeared in the range of negative minor strain on the FLD and are mostly located near the strain paths calculated from explicit finite element simulations. The forming limit obtained from tests after pre-tension was considerably lower than that from tests without pre-tension, which showed the strain path-dependency of the forming limit as well known in the sheet forming fold.

사출성형 공정에서 고화층이 캐비티 압력에 미치는 영향 (Frozen Layer Effect on Internal Cavity Pressure during Injection Molding)

  • 이호상
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 추계학술대회 논문집
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    • pp.474-479
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    • 2005
  • Experimental and theoretical studies of internal cavity pressure during injection molding of a spiral tube cavity were carried out. The frozen layer thickness and the evolution of internal cavity pressure were calculated using a commercial software (C-MOLD). The evolution of the internal cavity pressure was recorded during injection molding of polystyrene into a spiral tube mold. To explain the differences observed between the calculated and measured internal cavity pressure, a pressure correction factor (PCF) was introduced based on the plane stress theory. This factor was determined by analyzing the stress state in the melt and calculating the frozen layer thickness near the mold wall. The corrected and experimental pressures have been compared to validate the applicability of the pressure correction factor.

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국내 유튜브 영상으로 배포된 변비 완화 운동 콘텐츠의 의료진에 의한 평가 (Medical Professionals' Review of YouTube Videos Pertaining to Exercises for the Constipation Relief)

  • 이태희;김성은;박경식;신정은;박선영;류한승;김정욱;이유진;조영신;박수연;대한소화기기능성질환.운동학회 변비연구회
    • 대한소화기학회지
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    • 제72권6호
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    • pp.295-303
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    • 2018
  • Background/Aims: The primary aims of this study were to evaluate the content quality of YouTube videos on exercises to help relieve constipation and to assess whether the video source, exercise types, and popularity affected their quality. Methods: Eight gastroenterologists independently evaluated the exercises presented in the constipation YouTube videos for seven items: image quality, usefulness in relieving constipation (quality 1), usefulness for general physical health (quality 2), difficulty in following, activity intensity, fun, and overall quality. Raters were asked open-ended questions to evaluate the strengths and weaknesses of the videos. Five-point ordinal scales were used to score each item aforementioned, with the exception of image quality and overall quality that used a six-point Likert scale. Results: The 20 videos had a mean length of 268 seconds and a mean viewership of 32,694. The most common video source was commercial (n=10), and the most common type of physical activity was yoga (n=11). The median values of image quality, quality 1, quality 2, difficulty in following, activity intensity, fun, and overall quality were 3, 2, 2, 2, 2, 2, and 2, respectively. Yoga videos had significantly higher median quality 1 values (3) compared with massage videos (2, adjusted p=0.006) and 'others' videos (2, adjusted p<0.001). A lack of medical evidence was the most common answer to open-ended questions about the weaknesses of each video. Conclusions: Overall, YouTube exercise videos presented a low-quality content. This study highlights the need for evidence-based comprehensive educational videos addressing exercises for treating constipation.

압축을 받는 내부 구속 중공 RC 기둥의 내부 구속력 (Internal Confining Stress of Internally Confined Hollow Columns under Compressive Load)

  • 원덕희;한택희;김승준;강영종
    • 한국강구조학회 논문집
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    • 제25권3호
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    • pp.243-254
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    • 2013
  • 내부구속중공 RC(Internally Confined Hollow RC, ICH RC) 기둥이란 중공 RC 기둥의 중공부에 내부튜브를 삽입하여 코어 콘크리트를 3축 구속 상태에 놓이게 하여 기둥의 강도와 연성도를 증가시킨 기둥이다. ICH RC 기둥의 구속응력에 대한 연구는 선행 연구자에 의하여 이루어 졌으나 외부 구속응력에 대한 연구만 진행된 상태이다. 본 연구에서는 중공 RC 기둥과 ICH RC 기둥의 구속응력을 유한요소 해석프로그램을 이용하여 분석하였다. 이론 구속응력과 외부 구속응력 그리고 내부 구속응력과의 관계를 도출하였으며, 이를 이용하여 기존의 내부 튜브 파괴조건식을 기반으로 수정 내부튜브 파괴 조건식을 제안하였다. 이론 구속응력과 내부 구속응력과의 관계를 회귀 분석식을 이용하여 나타내어 내부 구속응력을 쉽게 산정할 수 있다. 또한 수정 내부 튜브 파괴 조건식을 이용하여 ICH RC 기둥을 설계할 경우 동일 구속응력대비 기존의 파괴조건식보다 약 50%의 내부 튜브 두께를 감소할 수 있어 경제성을 확보하였다.

축대칭 튜브 하이드로포밍 공정의 유한요소 시뮬레이션 (Finite Element Simulation of Axisymmetric Tube Hydroforming Processes)

  • 김용석;금영탁
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2001년도 추계학술대회 논문집
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    • pp.58-61
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    • 2001
  • An implicit finite element formulation for axisymmetric tube hydroforming is investigated. In order to describe normal anisotropy of the tube, Hill's non-quadratic yield function is employed. The frictional contact between die and tube and frictionless contact between tube and fluid are considered using the mesh-normal vector computed from finite element mesh of the tube. In order to verify the validity of the developed finite element formulation, the axisymmetric tube bulge test is simulated and simulation results are compared with experimental measurements. In the axisymmetric tube hydroforming process, an optimal hydraulic curve is pursued by performing the simulation with various internal pressures and axial forces.

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축대칭 튜브 하이드로포밍 공정의 유한요소 시뮬레이션 (Finite Element Simulation of Axisymmeric Tube Hydroforming Processes)

  • 김용석;금영탁
    • 소성∙가공
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    • 제11권1호
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    • pp.75-83
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    • 2002
  • Recently, the hydroforming process is widely applied to the automotive industry and rapidly spreaded to other industries. In this paper, An implicit finite element formulation for simulating axisymmetric tube hydroforming processes is performed. In order to describe normal anisotropy of the tube, Hill's non-quadratic yield function is employed. The frictional contact between die and tube and the frictionless contact between tube and fluid are considered using the mesh-normal vectors computed from the finite element mesh of the tube. The complete set of the governing relations comprising equilibrium and interfacial equations is linearized for Newton-Raphson procedure. In order to verify the validity of the developed finite element formulation, the axisymmetric tube bulge test is simulated and the simulation results are compared with experimental measurements. In a simulation of stepped circular tube hydroforming processes, an optimal hydraulic pressure curve is pursued by considering simultaneously internal pressures and axial forces.

이중튜브의 액압 성형특성 연구 (Hydroforming Characteristics of Double Layered Tube)

  • 권승오;이혜경;정기석;문영훈
    • 소성∙가공
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    • 제16권8호
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    • pp.567-574
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    • 2007
  • Double layered tube is assembled with an inner tube and an outer tube, similar in material or not, contacting closely and deforming simultaneously when subjected to external force. For the manufacturing of double layered tube, the hydroforming assembly technology has several advantages. Therefore in this study, hydroforming characteristics of double layered tube was investigated. The free bulge test was performed to produce formability diagrams of double layered tubes at various forming pressure and feeding amounts. The hexagonal shape hydroforming test was also performed to estimate the dimensional accuracies of double layered tube through the corner filling ratio and the gap between inner and outer tube. Besides experimental analyses, the analytical model that can predict internal pressure for the hydroforming of double-layered tube was proposed and experimentally validated.

Successful Treatment of Tracheal Invasion Caused by Thyroid Cancer Using Endotracheal Tube Balloon Inflation under Flexible Bronchoscopic Guidance

  • Han, Yang-Hee;Jung, Bock-Hyun;Kwon, Jun Sung;Lim, Jaemin
    • Tuberculosis and Respiratory Diseases
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    • 제77권5호
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    • pp.215-218
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    • 2014
  • Tracheal invasion is an uncommon complication of thyroid cancer, but it can cause respiratory failure. A rigid bronchoscope may be used to help relieve airway obstruction, but general anesthesia is usually required. Tracheal balloon dilatation and stent insertion can be performed without general anesthesia, but complete airway obstruction during balloon inflation may be dangerous in some patients. Additionally, placement of the stent adjacent to the vocal cords can be technically challenging. An 86-year-old female patient with tracheal invasion resulting from thyroid cancer was admitted to our hospital because of worsening dyspnea. Due to the patient's refusal of general anesthesia and the interventional radiologist's difficulty in completing endotracheal stenting, we performed endotracheal tube balloon dilatation and argon plasma coagulation. We have successfully treated tracheal obstruction in the patient with thyroid cancer by using endotracheal tube balloon inflation and a flexible bronchoscope without general anesthesia or airway obstruction during balloon inflation.

FSI 기법을 이용한 Self Inflating Tire의 펌핑 튜브 내부 유동 해석 (Analysis for Internal Flow of Tube on the Self Inflating Tire Using the FSI Method)

  • 김명준;성인철;황인경;박태원
    • 한국자동차공학회논문집
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    • 제24권6호
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    • pp.660-667
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    • 2016
  • Maintaining proper tire air pressure is an essential element in ensuring vehicle safety. UHP Tires that boast of many safety features are increasing in the market. In particular, the development of "Self-Inflating Tire" technology is accelerating around the globe. Self-inflating tire refers to a technique for maintaining appropriate tire pressure. An internal regulator senses when tire inflation pressure has dropped below the set air pressure. The tire boosts air through the valve when rolling and compressed air enters into the tire. This procedure keeps the tire air pressure at an appropriate level and increases tire safety. Flow analysis of the internal tube is required to examine self-inflating tires. In this study, a method of tube flow analysis using the FSI Method is proposed. The valve system is also implemented to optimize the regulator and sensor.