• Title/Summary/Keyword: unsteady heat transfer

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Unsteady Conjugate Heat Transfer Analysis of a Cooled Turbine Nozzle with High Free Stream Turbulence

  • Seo, Doyoung;Hwang, Sunwoo;Son, Changmin;Kim, Kuisoon
    • International Journal of Aeronautical and Space Sciences
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    • 제18권2호
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    • pp.279-289
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    • 2017
  • In this study, a series of conjugate heat transfer (CHT) analyses are conducted for a stage of a fully cooled high-pressure turbine (HPT) at elevated levels of free stream turbulence (Tu = 5% and 25.7%). The goal of the analyses is to investigate the influence of high turbulence intensity on the fluid-thermal characteristics of a nozzle guide vane (NGV). The turbine inlet temperature is defined by considering a typical radial temperature distribution factor (RTDF). The Unsteady Reynolds Average Navier-Stokes (URANS) CHT simulations are carried out using CFX 15.0, a commercial CFD package. The presented CFD modeling approach for high turbulence intensity is verified with the experimental data from two types of NASA C3X NGVs with films. The computation grid is generated for both the fluid and solid domains. The fluid domain grid is created using a tetrahedral grid system with prism layers because of its complex geometry, and the solid domain grid is composed of only tetrahedral elements. The analytical results are compared to understand the effect of turbulence on flow characteristics and metal temperature distributions. The results obtained in this study provide useful insights on the effects of high free stream turbulence and unsteadiness. The results also lead to the proposal of meaningful turbine design guidelines.

열선의 직선시공과 감기시공의 동파방지 효과 비교를 위한 3차원 비정상 수치해석 (Comparison of the Effects of Straight and Twisted Heat Trace Installations Based on Three-dimensional Unsteady Heat Transfer)

  • 최명영;전병진;최형권
    • 한국화재소방학회논문지
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    • 제30권1호
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    • pp.49-56
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    • 2016
  • 본 논문에서는 동절기 소방배관의 동파방지를 위한 열선의 직선 시공과 감기 시공의 효과를 수치해석을 통하여 분석하였다. 두 시공법들의 효과 분석을 위하여 3차원 에너지방정식과 비정상 비압축성 Navier-Stokes 방적식의 비정상 해를 구하였다. 수치해석에서 물의 자연대류와 소방 배관의 열전도 방정식이 상호작용을 하므로 복합열전달 해석을 상용코드 ANSYS-FLUENT에서 제공하는 압력-속도 연성기법들 중의 하나인 SIMPLE 알고리즘을 이용하여 수행하였다. 수치해석을 통하여 시간에 따른 배관 내의 유동장 및 온도분포와 배관 내 물의 최대 및 최소온도 변화를 고찰하였다. 수치해석 결과 배관 단위 길이 당 투입열량이 동일한 경우에 감기 시공과 직선 시공의 동파방지 효과는 거의 동일함을 확인하였다. 따라서, 열선 손상과 단락 등을 고려하면 직선 시공이 더 나은 시공법이라 판단된다.

맥동류에 놓인 등온 원통의 열전달 응답 (Heat Transfer Response of an Isothermal Cylinder to Fluctuating Cross Flow)

  • 권영필;이병호
    • 대한기계학회논문집
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    • 제10권5호
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    • pp.706-712
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    • 1986
  • 본 연구는 맥동류의 진동 속도가 평균 유속에 비하여 매우 작은 경우로서 Re- ynolbs수가 40 이하 층류유동에 관한 것이다. 부력은 무시하고 비압축성의 점성유체 에 관한 비정상 Navier-Stokes 방정식과 에너지방정식의 선형 섭동방정식을 구하고, 진동성분의 복소진폭을 수치적으로 풀어서 저항력과 함께 열전달 응답의 진폭과 위상 을 구하였다.

실린더 헤드의 비정상 열전달 및 열응력 해석 (Unsteady heat transfer and thermal stress analysis of a gasoline engine cylinder head)

  • 박진무;임영훈;김병탁
    • 오토저널
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    • 제12권3호
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    • pp.41-52
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    • 1990
  • In this study are determined the unsteady temperature and thermal stress fields for a domestic 4-cylinder, 4-cycle gasoline engine cylinder head by the three-dimensional finite element method. A representative part of the cylinder head is modelled as a combination of hexahedron isoparametric elements, and the time-dependent temperature and the heat transfer coefficient of the gas are imposed as the thermal boundary conditions for the engine speeds of 500 rpm and 2000 rpm. The obtained results, which are represented graphically, indicate that the amplitudes of temperature fluctuation during a cycle are about 10.deg. C and 3.deg. C respectively on the surface of combustion chamber, and the maximum temperature fields occur at 30.deg. , 10.deg. respectively before the initiation of the exhaust stroke. Thermal stress fields due to non-uniform temperature distributions show that compressive stress is much larger than tensile stress throughout a cycle. It is also found that the compressive stress varies with substantial amplitude between the exhaust port and ignition plug hole, and the high tensile stress with small fluctuation occurs between exhaust port and the adjacent head bolt hole.

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원주 주위의 비정상 층류유동과 열전달에 대한 수치해석 (Numerical Analysis for the Unsteady Laminar Flow and Heat Transfer Around a Circular Cylinder)

  • 조석호;남청도;부정숙
    • Journal of Advanced Marine Engineering and Technology
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    • 제15권2호
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    • pp.64-72
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    • 1991
  • The unsteady, two-dimensional laminar flow and heat transfer of an incompressible, constant-property fluid flowing around a circular cylinder are numerically analyzed. The Navier-Strokes equation and the energy equation are solved by the finite difference method. The range of the Reynolds number is 10 to 100 and the Prandtl number considered is 0.7. The contours of the flow pattern, equi-vorticity line and isotherm pattern around a circular cylinder are shown. Also, numerical solutions of the surface vorticity, pressure coefficient, drag coefficient, local Nusselt number and mean Nusselt number are obtained. The numerical results for the final time fo calculation are compared with the other available experimental and theoretical results for the steady state and are found to be in good agreement with them.

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가압 분무실내 스프레이 충돌판에서 나타나는 비정상 열전달 측정에 관한 연구 (An Experimental Study on Unsteady Heat Transfer of Spray-Impinging Plate in a Pressurized Chamber)

  • 조창권;이열;구자예
    • 대한기계학회논문집B
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    • 제24권1호
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    • pp.60-67
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    • 2000
  • An experimental investigation on transient heat transfer phenomena of impinging diesel-spray on a flat plate in a pressurized chamber is carried out. A diesel spray is injected from a single-hole nozzle and impinges to a heated flat plate in the chamber. A fast-response thermocouple installed in the top surface of the plate measures the transient variation of surface temperature of the plate under various conditions of the chamber pressures. Utilizing the semi-infinite model, the temporal variation of the heat flux on the plate is determined. Effects of various parameters, such as vertical distances between the nozzle and the plate, radial distances from the injection-axis, and the chamber pressures, on the heat flux characteristics of impinging diesel-spray are studied.

Effects of Surface Radiation on the Unsteady Natural Convection in a Rectangular Enclosure

  • Baek, Seung-Wook;Kim, Taig-Young
    • International Journal of Aeronautical and Space Sciences
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    • 제3권1호
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    • pp.95-104
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    • 2002
  • Numerical solution of the full Navier-Stokes equation as well as the energy equation has been obtained for the unsteady natural convection in a rectangular enclosure. One side wall was maintained at very high temperature simulating fires. Especially the effect of surface radiation was taken into account. While the enclosed air was assumed to be transparent, the internal walls directly interacted one another through the surface radiation. Due to a significant temperature difference in the flow field, the equation of state was used instead of the Boussinesq approximation. It was found that the rapid heating of the adiabatic ceiling and floor by the incoming radiation from the hot wall made the evolution at thermo-fluid field highly unstable in the initial period. Therefore, the secondary cells brought about at the floor region greatly affected the heat transfer mechanism inside the enclosure. The heat transfer rate was augmented by the radiation, resulting in requiring less time for the flow to reach the steady state. At the steady state neglecting radiation two internal hydraulic jumps were clearly observed in upper/left as well as in lower/right comer. However, the hydraulic jump in the lower/right comer could not be observed for the case including radiation due to its high momentum flow over the bottom wall. Radiation resulted in a faster establishment of the steady state phenomena.

열전달을 고려한 고속 주축계의 열특성 해석에 관한 연구 (A Study on the Thermal Characteristics of the High Speed Spindle considering Heat Transfer)

  • 백경근;김수태;최대봉;김태형
    • 한국공작기계학회:학술대회논문집
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    • 한국공작기계학회 2000년도 추계학술대회논문집 - 한국공작기계학회
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    • pp.285-290
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    • 2000
  • Unsteady-state temperature distributions and thermal deformations in high speed spindle are studied. For the analysis, three dimensional model is built considering heat transfer characteristics such as natural and forced convection coefficients Temperature distributions and thermal deformations are analyzed by using the finite element method. Results of analysis are compared with the measured data.

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NUMERICAL SOLUTIONS OF AN UNSTEADY 2-D INCOMPRESSIBLE FLOW WITH HEAT AND MASS TRANSFER AT LOW, MODERATE, AND HIGH REYNOLDS NUMBERS

  • AMBETHKAR, V.;KUSHAWAHA, D.
    • Journal of the Korean Society for Industrial and Applied Mathematics
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    • 제21권2호
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    • pp.89-107
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    • 2017
  • In this paper, we have proposed a modified Marker-And-Cell (MAC) method to investigate the problem of an unsteady 2-D incompressible flow with heat and mass transfer at low, moderate, and high Reynolds numbers with no-slip and slip boundary conditions. We have used this method to solve the governing equations along with the boundary conditions and thereby to compute the flow variables, viz. u-velocity, v-velocity, P, T, and C. We have used the staggered grid approach of this method to discretize the governing equations of the problem. A modified MAC algorithm was proposed and used to compute the numerical solutions of the flow variables for Reynolds numbers Re = 10, 500, and 50000 in consonance with low, moderate, and high Reynolds numbers. We have also used appropriate Prandtl (Pr) and Schmidt (Sc) numbers in consistence with relevancy of the physical problem considered. We have executed this modified MAC algorithm with the aid of a computer program developed and run in C compiler. We have also computed numerical solutions of local Nusselt (Nu) and Sherwood (Sh) numbers along the horizontal line through the geometric center at low, moderate, and high Reynolds numbers for fixed Pr = 6.62 and Sc = 340 for two grid systems at time t = 0.0001s. Our numerical solutions for u and v velocities along the vertical and horizontal line through the geometric center of the square cavity for Re = 100 has been compared with benchmark solutions available in the literature and it has been found that they are in good agreement. The present numerical results indicate that, as we move along the horizontal line through the geometric center of the domain, we observed that, the heat and mass transfer decreases up to the geometric center. It, then, increases symmetrically.

차량워셔액 가열시스템에서 충전재 및 유로의 재질에 따른 열전달 특성 연구 (Heat transfer characteristics with materials of the filler and flow path in vehicle washer heater system)

  • 차우섭;김태권
    • 한국산학기술학회논문지
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    • 제15권5호
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    • pp.2628-2634
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    • 2014
  • 동절기에 차량 전면유리의 결빙이나 이물질을 제거하기 위하여 워셔액 가열시스템 적용이 점차 늘어나고 있다. 이 워셔액 가열 시스템은 짧은 시간동안 목표온도까지 워셔액이 가열되도록 설계되어야 한다. 본 연구에서는 급속하게 워셔액을 가열하기 위하여 차량 워셔액 가열 시스템의 내부 부품의 재질에 따라 열전달 특성을 해석하였다. 해석을 위해 열유동 전산해석에서 사용하고 있는 CFD(Computational Fluid Dynamics) 상용코드인 ANSYS-FLUENT 소프트웨어를 이용하였다. 본 모델은 3차원 비정상상태의 축대칭 모델로 Fluent에서 제공하는 압력기반(Pressure-Based) 기법 중의 하나인 Coupled 기법을 적용하였다. 이 결과를 통하여 충전재 및 유로의 최적화된 재질을 찾게 되었다. 충전재 재질은 낮은 밀도를 가진 공기가 실리콘카바이드보다 빠르게 가열되었다. 유로재질은 니켈보다 열전달계수가 약 4배 정도 큰 구리가 내부에 열을 균일하게 전달되어 메탄올의 가열 시간을 단축하여 효율이 더 높게 나왔다.