• 제목/요약/키워드: Tension transfer equation

검색결과 16건 처리시간 0.026초

굴곡의 표면을 가진 금속의 레이저 용융에 대한 열 및 유체유동 해석 (An Analysis of Heat and Fluid Flow in the Laser Surface Melting with a Deformed Surface)

  • 김영득;심복철;김우승
    • 대한기계학회논문집B
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    • 제29권1호
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    • pp.1-8
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    • 2005
  • Laser melting problems with deformed substrates are investigated by axisymmetric numerical simulations. Source-based method is used to solve the energy equation, and the momentum equations are solved in the liquid domain with SIMPLER algorithm. Using a laser beam with a top-hat heat flux distribution, this study is performed to examine the effect of surface deformation, beam power density and surface tension force on the molten pool during laser melting. Surface temperature decreases with increasing surface deformation, while surface velocity increases. It is found that surface deformation, beam power density and surface tension force have a very significant effect on heat transfer and fluid flow during laser melting.

Closed-form and numerical solution of the static and dynamic analysis of coupled shear walls by the continuous method and the modified transfer matrix method

  • Mao C. Pinto
    • Structural Engineering and Mechanics
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    • 제86권1호
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    • pp.49-68
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    • 2023
  • This study investigates the static and dynamic structural analysis of symmetrical and asymmetrical coupled shear walls using the continuous and modified transfer matrix methods by idealizing the coupled shear wall as a three-field CTB-type replacement beam. The coupled shear wall is modeled as a continuous structure consisting of the parallel coupling of a Timoshenko beam in tension (with axial extensibility in the shear walls) and a shear beam (replacing the beam coupling effect between the shear walls). The variational method using the Hamilton principle is used to obtain the coupled differential equations and the boundary conditions associated with the model. Using the continuous method, closed-form analytical solutions to the differential equation for the coupled shear wall with uniform properties along the height are derived and a numerical solution using the modified transfer matrix is proposed to overcome the difficulty of coupled shear walls with non-uniform properties along height. The computational advantage of the modified transfer matrix method compared to the classical method is shown. The results of the numerical examples and the parametric analysis show that the proposed analytical and numerical model and method is accurate, reliable and involves reduced processing time for generalized static and dynamic structural analysis of coupled shear walls at a preliminary stage and can used as a verification method in the final stage of the project.

GMAW에서 용적입사를 고려한 용융지 유동 및 형상해석 (Analysis of Weld Pool Flow and Shape Considering the Impact of Droplets in GMAW)

  • 박현성;이세현;엄기원
    • Journal of Welding and Joining
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    • 제16권2호
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    • pp.40-47
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    • 1998
  • In the present study, depressions of the GMA weld pool due to the impact of droplet are numerically investigated. The numerical simulation is conducted on the basis of the Navier-Stokes equation and the volume of fluid(VOF) functions. The kinetic energy of transferring droplet makes a depression of the weld pool surface. The surface active element affects the depression of the weld pool. The droplets transferred efficiently to the bottom of the weld pool, along with electromagnetic force make the finger shape penetration at the high current GMAW.

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Scaling law in MHD turbulence small-scale dynamo

  • Park, Kiwan;Ryu, Dongsu
    • 천문학회보
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    • 제39권2호
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    • pp.74.2-74.2
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    • 2014
  • Magnetohydrodynamics(MHD) dynamo depends on many factors such as viscosity ${\gamma}$, magnetic diffusivity ${\eta}$, magnetic Reynolds number $Re_M$, external driving source, or magnetic Prandtl number $Pr_M$. $Pr_M$, the ratio of ${\gamma}$ to ${\eta}$ (for example, galaxy ${\sim}10^{14}$), plays an important role in small scale dynamo. With the high PrM, conductivity effect becomes very important in small scale regime between the viscous scale ($k_{\gamma}{\sim}Re^{3/4}k_fk_f$:forcing scale) and resistivity scale ($k_{\eta}{\sim}PrM^{1/2}k_{\gamma}$). Since ${\eta}$ is very small, the balance of local energy transport due to the advection term and nonlocal energy transfer decides the magnetic energy spectra. Beyond the viscous scale, the stretched magnetic field (magnetic tension in Lorentz force) transfers the magnetic energy, which is originally from the kinetic energy, back to the kinetic eddies leading to the extension of the viscous scale. This repeated process eventually decides the energy spectrum of the coupled momentum and magnetic induction equation. However, the evolving profile does not follow Kolmogorov's -3/5 law. The spectra of EV (${\sim}k^{-4}$) and EM (${\sim}k^0$ or $k^{-1}$) in high $Pr_M$ have been reported, but our recent simulation results show a little different scaling law ($E_V{\sim}k^{-3}-k^{-4}$, $EM{\sim}k^{-1/2}-k^{-1}$). We show the results and explain the reason.

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Development of stress correction formulae for heat formed steel plates

  • Lim, Hyung Kyun;Lee, Joo-Sung
    • International Journal of Naval Architecture and Ocean Engineering
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    • 제10권2호
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    • pp.141-152
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    • 2018
  • The heating process such as line heating, triangular heating and so on is widely used in plate forming of shell plates found in bow and stern area of outer shell in a ship. Local shrinkage during heating process is main physical phenomenon used in plate forming process. As it is well appreciated, the heated plate undergoes the change in material and mechanical properties around heated area due to the harsh thermal process. It is, therefore, important to investigate the changes of physical and mechanical properties due to heating process in order to use them plate the design stage of shell plates. This study is concerned with the development of formula of plastic hardening constitutive equation for steel plate on which line heating is applied. In this study the stress correction formula for the heated plate has been developed based on the numerical simulation of tension test with varying plate thickness and heating speed through the regression analysis of multiple variable case. It has been seen the developed formula shows very good agreement with results of numerical simulation. This paper ends with usefulness of the present formula in examining the structural characteristic of ship's hull.

석회암 유래 토양에서의 물의 이동특성과 토양 입자 및 유기물과의 관계에 따른 Pedo-Transfer Function의 결정 (Determination of Pedo-Transfer Function Using the Relation Between Soil Particle Distribution, Organic Matter and Water Movement in Soil Originated from Limestone)

  • 허승오;정강호;손연규;하상건;김정규
    • 한국토양비료학회지
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    • 제42권2호
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    • pp.132-138
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    • 2009
  • 강원도 남부(영월)와 충북 제천, 단양 등지에 널리 분포하는 석회암에서 유래된 토양은 점토 및 철분함량이 많은 식질계 토양으로 세립(細粒)질로 구성이 되어 있고 자갈이나 잔돌이 있는 토양으로 분류되므로 토양의 침투 및 투수속도가 화강암이나 화강편마암 유래 토양과는 다른 양상을 보인다. 본 연구는 석회암 유래 토양의 침투속도와 토양층위별 투수속도 측정결과인 현장 포화수리전도도(Kfs, field saturation hydraulic conductivity)에 토양의 입도 분포 및 유기물 함량이 미치는 영향을 파악하고자 그들 사이의 상호관계를 분석하였다. 실험을 위해 이용된 토양은 과림, 모산, 장성, 마지, 안미, 평안의 6개 토양통이었고 장력 침투계(disc tension infiltrometer)와 투수속도 측정계(Guelph permeameter)로 침투 및 투수속도를 측정하고 입도 분포와 유기물함량을 분석했다. 전체 측정대상 토양의 표토 및 층위별 Kfs와 그 토양들의 모래, 미사, 점토 및 유기물 함량과는 유의한 상관관계를 찾을 수 없었다. 그것은 측정 토양이 농경지 토양 외에도 산림 토양이 포함되어 있고, 산림토양도 유기물 층이 존재한다거나 다량의 자갈이나 잔돌 등의 함량이 존재하기 때문인 것으로 여겨진다. 이것은 포화수리 전도도가 토양의 입도분포나 유기물 함량과의 관계가 있다고 했던 다수의 연구와는 상반된 결과이므로 이를 더 검토해볼 필요성이 있다. 이를 위해, 측정된 6개의 대상 토양 중에서 암쇄토인 모산통과 유기물 함량이 9.2%로 일반토양보다 월등히 높은 과림통의 O충을 제외하고 토양 입도분포 및 유기물 함량과 침투 및 투수속도와의 관계를 살펴보았다. 분석결과 모래의 함량과 Kfs의 관계는 결정계수($R^2)가 0.309로 비교적 낮게 나타나고 있지만 정의 직선 상관관계를 나타냈으며, 미사함량과는 관계가 없었고, 점토함량과는 결정계수가 0.3164로서 부의 직선 상관관계를 나타냈다. 유기물 함량과는 다른 토양 입도분포들보다 결정계수가 높으며($R^2=0.4884^{*}$) 지수함수 관계를 나타내고 있다. 이러한 결과들을 종합하면 석회암 유래토양에서의 현장포화수리 전도도는 모래나 유기물 함량이 많으면 증가하고 점토 함량이 많으면 감소할 것이므로 이들을 조합한다면 현장 포화수리전도도를 예측하는 PTF(Pedo-Transfer Function)를 작성할 수 있다. 본 연구에서는 이를 위해 모래, 점토, 유기물 함량을 고려해 PTF를 분석한 결과 점토는 다중 공선성 때문에 제외를 하고 모래와 유기물 함량만을 이용해 Kfs를 예측할 수 있는 PTF를 작성했다.