• 제목/요약/키워드: Surface Equation of State

검색결과 196건 처리시간 0.031초

Nonlinear numerical modelling for the effects of surface explosions on buried reinforced concrete structures

  • Nagy, N.;Mohamed, M.;Boot, J.C.
    • Geomechanics and Engineering
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    • 제2권1호
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    • pp.1-18
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    • 2010
  • The analysis of structure response and design of buried structures subjected to dynamic destructive loads have been receiving increasing interest due to recent severe damage caused by strong earthquakes and terrorist attacks. For a comprehensive design of buried structures subjected to blast loads to be conducted, the whole system behaviour including simulation of the explosion, propagation of shock waves through the soil medium, the interaction of the soil with the buried structure and the structure response needs to be simulated in a single model. Such a model will enable more realistic simulation of the fundamental physical behaviour. This paper presents a complete model simulating the whole system using the finite element package ABAQUS/Explicit. The Arbitrary Lagrange Euler Coupling formulation is used to model the explosive charge and the soil region near the explosion to eliminate the distortion of the mesh under high deformation, while the conventional finite element method is used to model the rest of the system. The elasto-plastic Drucker-Prager Cap model is used to model the soil behaviour. The explosion process is simulated using the Jones-Wilkens-Lee equation of state. The Concrete Damage Plasticity model is used to simulate the behaviour of concrete with the reinforcement considered as an elasto-plastic material. The contact interface between soil and structure is simulated using the general Mohr-Coulomb friction concept, which allows for sliding, separation and rebound between the buried structure surface and the surrounding soil. The behaviour of the whole system is evaluated using a numerical example which shows that the proposed model is capable of producing a realistic simulation of the physical system behaviour in a smooth numerical process.

반응표면분석법을 이용하여 노광기 램프하우스의 냉각조건 수치해석 (Numerical Analysis for Cooling Condition of a Lamp House in the Exposure Device by Response Surface Methodology)

  • 김영신;전의식
    • 한국산학기술학회논문지
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    • 제15권3호
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    • pp.1265-1271
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    • 2014
  • 노광기의 램프 냉각은 노광성능 및 기기수명에 큰 영향을 미친다. 본 논문에서는 노광장치로 유입되는 냉각공기의 속도를 도출하기 위해 램프하우징 내부의 열유동 해석을 수행하였다. 램프하우징의 냉각성능은 하부와 측면의 냉각 공기 속도에 의해 영향을 받는다. 하부 및 측면의 냉각 공기 속도를 독립변수로 설정하고, 상부 반사경 온도, 타원경의 온도 및 상부 배출공기의 온도를 종속변수로 설정하였다. 효율적인 냉각 해석을 위해 반응표면분석법에 의해 해석 조건을 설정하였다. 설정된 조건에 따라 해석을 수행하였으며, 수행된 결과를 바탕으로 냉각 공기 속도에 따른 램프 하우징 주요부 온도를 예측할 수 있는 회귀식을 도출하였다. 또한 종속변수를 목표온도까지 냉각하기 위한 냉각공기의 유입속도를 설정하였다.

진동다짐에 의한 기초사석의 침하거동 (Settlement Behavior of Foundation Rubble-mound by Vibro-Compaction)

  • 유건선
    • 대한토목학회논문집
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    • 제31권4C호
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    • pp.127-136
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    • 2011
  • 기초사석 위에서 진동하중을 받는 진동다짐판의 침하는 일시적인 진폭과 소성침하로 나타낼 수 있다. 최대 진동하중이 사석의 지지력을 초과하지 않는 한, 소성침하량은 극한값으로 수렴하며 궁극적으로 정상적인 진동을 한다. 이러한 진동다짐의 침하거동에 대한 실내실험은 수평방향이 구속된 시료에 대하여 진동하중이 전체면적에 작용하도록 수행되었거나 진동대에 시료를 놓고 실험을 수행한 것이 대부분이다. 그러나 실제 현장에서는 진동하중이 기초사석 표면적의 일부에만 적용되고 있다. 본 연구에서는 현장조건에 맞게 쇄석에 진동하중을 작용토록 하였다. 쇄석에 대한 진동다짐실험에 따르면 전체 침하량의 약 90%가 2분 이내에 발생하며, 정적 및 동적응력을 포함한 진동응력 수준이 증가할수록 침하는 증가하였다. 진동다짐시, 진동다짐수, 진폭, 침하량, 재하폭, 진동응력의 상관관계를 나타내는 식을 제안하였다.

고해상도 Landsat 8 위성자료기반의 지표면 온도 산출 (Retrieval of Land SurfaceTemperature based on High Resolution Landsat 8 Satellite Data)

  • 지준범;김부요;조일성;이규태;최영진
    • 대한원격탐사학회지
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    • 제32권2호
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    • pp.171-183
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    • 2016
  • 2013년부터 2014년까지 관측된 Landsat 8 위성자료로부터 지표면 온도를 산출하였고 산출된 지표면 온도는 지상에서 관측된 지표면 온도를 이용하여 보정하였다. 지표면 온도지도는 Landsat 8로부터 산출된 지표면 온도를 지상에서 관측된 지표면 온도와의 선형 회귀식을 이용하여 계산되었다. 계절과 년에 대한 지표면 온도는 각각 계절과 년에 대하여 사례들을 평균하여 계산되었다. 지표면 온도는 도시의 공업 또는 상업지역에서 높은 온도가 나타나는 반면, 서울주변의 높은 고도의 산악과 해양, 강 등에서 낮은 지표면 온도가 나타났다. 위성에서 산출된 지표면 온도를 보정하기 위하여 서울을 포함한 수도권지역에서 관측되는 기상청 종관측소 3개 지점 (서울(지점번호: 108), 인천(지점번호: 119), 수원(지점번호: 112))의 지표면 관측 자료를 이용하여 선형회귀방법을 적용하였다. Landsat 8의 지표면 온도는 모든 자료에서 기울기가 0.78이었고 5개의 흐린날을 제외한 맑은 상태의 자료에서 0.88이었다. 그리고 초기 지표면온도에서 상관계수는 0.88이었고 평방근 오차 (Root Mean Sqare Error (RMSE))는 $5.33^{\circ}C$이었다. 지표면 온도 보정이후에는 상관계수는 0.98 그리고 RMSE는 $2.34^{\circ}C$이었으며 회귀식의 기울기는 0.95로 개선되었다. 계절 및 년 지표면 온도는 상업지역과 공업지역 그리고 도시와 주변지역을 잘 표현하였다. 결과적으로 지상에서 관측된 지표면 온도를 이용하여 위성에서 산출된 지표면온도를 보정하였을 때 실제 상태와 유사한 분포를 보였다.

연료분사펌프의 윤활 특성 개선: 제2부 - 그루브의 적용 (Improvement of the Lubrication Characteristics of Fuel Injection Pump for Medium-Speed Diesel Engines: Part II - Application of Grooves)

  • 홍성호;이보라;조용주
    • Tribology and Lubricants
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    • 제31권5호
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    • pp.213-220
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    • 2015
  • This study evaluates the effect of grooves on the stem part of a plunger on the lubrication characteristics of a fuel injection pump (FIP) by using hydrodynamic lubrication analysis. The current study uses the two-dimensional Reynolds equation to evaluate the changes in lubrication characteristics with variations in clearance, viscosity, and grooves for a laminar, incompressible, and unsteady state flow. This study investigates the lubrication characteristics by comparing the dimensionless minimum film thickness or the film parameter, which is the ratio of the minimum film thickness to surface roughness. The analysis method for the groove section differs depending on the depth of the groove. For instance, in the case of a shallow groove, the film thickness equation considers the depth of the groove, while in the case of a deep grove, it considers the flow continuity. The lubrication characteristics of the FIP are more sensitive to changes in the groove width than to changes in other design variables. Moreover, the application of a groove is more effective under low viscosity conditions. The smaller the distance from the edge of the stem part to the first groove in the case of shallow grooves, the better are the lubrication characteristics of the FIP. In contrast, in the case of deep grooves, the lubrication characteristics of the FIP improve as the distance increases. The application of shallow grooves is more effective for improving the lubrication characteristics than the application of deep grooves.

연료분사펌프의 최적 간극 설계 (Optimal Design of Clearance in Fuel Injection Pump)

  • 홍성호;이보라;조용주;박종국
    • Tribology and Lubricants
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    • 제31권4호
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    • pp.148-156
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    • 2015
  • In the study, a design process for ensuring optimal clearance in a fuel injection pump(FIP) is suggested. Structure analysis and hydrodynamic lubrication analysis are performed to determine the optimal clearance. The FIP is simulated using Hypermesh, Abaqus 6.12 to evaluate the reduction of clearance when the maximum supply pressure is applied. The reduction in clearance is caused by the difference in the deformations between the barrel and plunger. When the deformation of the plunger is larger than that of the barrel, a reduction in clearance at the head part occurs. On the other hand, the maximum clearance reduction equals the maximum deformation in the stem part, because the deformation of barrel does not occur in this region. The clearance of FIP should be designed to be larger than maximum reduction of clearance in order to avoid contact between the plunger and barrel. In addition, the two-dimensional Reynolds equation is used to evaluate lubrication characteristics with variations of viscosity, clearance and nozzle for a laminar, incompressible, unsteady state flow. The equation is discretized using the finite difference method. The lubrication characteristics of FIP are investigated by comparing film parameter, which is the ratio of the minimum film thickness and surface roughness. The optimal clearance of FIP is to be designed by considering the maximum reduction in clearance, lubrication characteristics, machining limits and tolerance of clearance.

Multi-dimensional extreme aerodynamic load calculation in super-large cooling towers under typical four-tower arrangements

  • Ke, Shitang;Wang, Hao;Ge, Yaojun
    • Wind and Structures
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    • 제25권2호
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    • pp.101-129
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    • 2017
  • Local transient extreme wind loads caused by group tower-related interference are among the major reasons that lead to wind-induced damage of super-large cooling towers. Four-tower arrangements are the most commonly seen patterns for super-large cooling towers. We considered five typical four-tower arrangements in engineering practice, namely, single row, rectangular, rhombic, L-shaped, and oblique L-shaped. Wind tunnel tests for rigid body were performed to determine the influence of different arrangements on static and dynamic wind loads and extreme interference effect. The most unfavorable working conditions (i.e., the largest overall wind loads) were determined based on the overall aerodynamic coefficient under different four-tower arrangements. Then we calculated the one-, two- and three-dimensional aerodynamic loads under different four-tower arrangements. Statistical analyses were performed on the wind pressure signals in the amplitude and time domains under the most unfavorable working conditions. On this basis, the non-Gaussian distribution characteristics of aerodynamic loads on the surface of the cooling towers under different four-tower arrangements were analyzed. We applied the Sadek-Simiu procedure to the calculation of two- and three-dimensional aerodynamic loads in the cooling towers under the four-tower arrangements, and the extreme wind load distribution patterns under the most unfavorable working conditions in each arrangement were compared. Finally, we proposed a uniform equation for fitting the extreme wind loads under the four-tower arrangements; the accuracy and reliability of the equation were verified. Our research findings will contribute to the optimization of the four-tower arrangements and the determination of extreme wind loads of super-large cooling towers.

규칙파(規則波)에 놓인 구(球)의 수평운동(水平運動)에 대(對)한 해석(解析) (On the Surge Motion of a Freely-Floating Sphere in a Plane Progressive Wave)

  • 박찬욱;최항순
    • 대한조선학회지
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    • 제18권1호
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    • pp.19-27
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    • 1981
  • The surge motion of a freely-floating sphere in a regular wave is studied within the framework of a linear potential theory. The fluid is assumed to be perfect and only the steady-state harmonic motion in a water of infinite depth is considered. A velocity potential describing the fluid motion is decomposed into three parts; the incident wave potential, the diffraction potential and the radiation potential. In this paper the diffraction potential and the radiation potential are analysed by using multipole expansion method. Upon calculating pressures over the immersed surface of the sphere, the hydrodynamic forces are evaluated in terms of Froude-Krylov, diffraction, added mass and damping forces as functions of the frequency of the incident wave. Finally the frequency dependence of two pertinent parameters, the amplitude ratio and the phase lag between the motion of the sphere and that of the incident wave is derived from the equation of motion. As for numerical results the general tendency of the present calculation shows good agreement with Kim's work who also treated this problem utilizing the Green's function method.

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車輪과 鐵路의 連成振動에 관한 硏究 (A Stusy on the Coupled Vibration of Train Wheel and Pail - Dynamic Characteristics of Train Wheel with the Stepped Thickness -)

  • 김광식;박민태
    • 대한기계학회논문집
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    • 제11권1호
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    • pp.63-73
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    • 1987
  • 본 논문에서는 차륜을 등방성, 균질 재료라고 가정하였으며 웨브와 림의 두께 가 서로 다른 환형원판으로써 내원주는 고정되고 외원주는 자유라고 가정하였다. 외 원주상의 한 점에서 철로와의 구름조건에 따라 변하는 반경방향의 반력에 의한 내평면 압축응력과 원판의 회전에 의한 내평면 압축응력을 고려하고, 두께가 변하는 웨브와 림의 경계면에서의 연속조건을 이용하여 차륜의 횡진동방정식을 세워서 Rayleigh-Ritz 방법으로 수치해석을 하여 고유진동수와 임계좌굴하중을 계산하고, 실제 차륜의 1/6크 기로 형상화하여 제작한 연성진동장치로 실험하여 이론치와 비교, 검토하였다.

Sub-sea 트리 튜빙 행어(tubing hanger)의 구조 신뢰성 해석 (Structural Reliability Analysis of Subsea Tree Tubing Hanger)

  • 김현진;양영순;김성희
    • 대한조선학회논문집
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    • 제51권3호
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    • pp.212-219
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    • 2014
  • As subsea production has been revived up, the demand of subsea equipment has also been increased. Among the equipment, subsea tree plays a major role in safety. The tubing hanger is one of the most important components in subsea tree. In this study structural reliability analysis on dual bore tubing hanger of subsea tree is performed. The target reliability which is introduced in ISO regulation is used for judging whether tubing hanger is safe or not. The considered loads are working pressure, working temperature and suspended tubing weight. Thermal-stress analysis on tubing hanger is performed and kriging model is created based on the results of FEM analysis. According to von Mises criterion, limit state equation can be estimated. Reliability analysis is performed by using level 2 method and the result is verified by that of Monte Carlo Simulation. For finding most probable failure point, enhanced HL-RF method is adopted. Because the reliability of model doesn't reach target reliability, an improvement measure should be considered. Thus, it is suggested to change the material of tubing hanger main body to AISI 4140.