• Title/Summary/Keyword: $45^{\circ}$ 충돌각

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Effects of Rib Angles on Heat Transfer in a Divergent Square Channel With Ribs on One Wall (한 면에 리브가 설치된 확대 정사각 채널에서 리브 각이 열전달에 미치는 효과)

  • Lee, Myung Sung;Ahn, Soo Whan
    • Journal of Advanced Marine Engineering and Technology
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    • v.39 no.6
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    • pp.609-613
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    • 2015
  • In this study, the experiments are performed to investigate the local heat transfer and pressure drops of developed turbulent flows in the diverging square channels along the axial distance. The square divergent channels are manufactured with a fixed rib height (e) = 10 mm. Four different parallel angled ribs ($a=30^{\circ}$, $45^{\circ}$, $60^{\circ}$, and $90^{\circ}$) are placed on the channel's one-sided wall only. TThe measurement are conducted within the range of Reynolds numbers from 22,000 to 79,000. The results show that a rib angle-of-attack of $45^{\circ}$ produces the best heat-transfer performance.

경사낙하 충돌조건하의 사용후핵연료 수송용기의 충돌거동

  • 구정회;서기석;정성환;도재범;김영진
    • Proceedings of the Korean Nuclear Society Conference
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    • 1995.05a
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    • pp.885-890
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    • 1995
  • 사용후핵연료 수송용기는 충돌사고에 대한 구조적 건전성을 입증하기 위하여 9 m 자유낙하조건에 대하여 수송용기의 충돌거동을 평가해야 한다. 본 연구의 목적은 수송용기가 9 m 높이에서 충돌면과 경사각을 갖고 충돌할 때의 동적거동을 파악하기 위한 것이다. 수송용기가 충돌과 함께 회전하며 연속충돌을 일으키는 45$^{\circ}$ 이하의 작은 경사각을 갖고 충돌할 매 수송용기에 발생하는 응력, 가속도, 충돌력 등을 분석하여 동적거동을 파악하였다. 또한, 수송용기의 경사각도를 변화시키며, 경사각도의 변화가 수송용기의 동적 거동에 미치는 영향을 파악하였다.

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Heat Transfer Enhancement by the Combined Effect of Louver Angle and Angle of Attack of Vertex Generator (와류발생기의 충돌각과 루버각의 상호작용에 의한 열전달촉진)

  • 박병규;정재동;이준식
    • Korean Journal of Air-Conditioning and Refrigeration Engineering
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    • v.14 no.6
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    • pp.477-484
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    • 2002
  • A numerical investigation of the performance of the plate heat exchanger with rectangular winglet is conducted to examine the combined effect of vortex generator and louver fins. Velocity and temperature fields and spanwise averaged Nu and friction factor are presented. Enhancement of heat transfer and flow loss penalty is evident. A Parametric study of three factors (Re, angle of attack and louver angle) with levels of 5 (Re= 300, 500, 700, 900, 1100), 4($\alpha=15^{\circ}, 30^{\circ}, 45^{\circ}, 90^{\circ},$), and 4($\beta=0^{\circ}, 15^{\circ}, 30^{\circ}, 45^{\circ}$), respectively, indicates the performance defined by the ratio of heat transfer enhancement to flow loss penalty shows monotonic behavior for each parameter alone but the interactions between parameters is found to be considerable effect on the performance of heat exchanger and should be considered in design. The effect of stamping is also examined.

Experimental and Numerical Investigation on Heat Transfer and Fluid Flow Characteristics in the Ribbed Square Channel (거친 사각채널에서 열전달과 유체유동 특성에 관한 실험 및 수치해석)

  • Kang, Ho-Keun;Baer, Sung-Taek;Lee, Dae-Hee;Ahn, Soo-Whan
    • Journal of Advanced Marine Engineering and Technology
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    • v.30 no.2
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    • pp.275-283
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    • 2006
  • Experiment and three dimensional numerical investigations of incompressible turbulent flow through square channels with one- and two-sided ribbed walls are performed to determine pressure drop and heat transfer. The CFX(version 5.7) software package is used for the computation. The ribbed walls have a $45^{\circ}$ inclined square rib. Uniform heat flux is maintained on whole inner heat transfer channel area. The numerical results coincide with experimental data that obtained for $7,600{\le}Re{\le}24.900$, the pitch-to-rib height ratio (p/e) of 8.0. and the rib height-to-channel hydraulic diameter ratio ($e/D_h$) of 0.0667. The results show that values of local heat transfer coefficient and friction factor in the channel with two-sided ribbed wall are higher than those in the channel with one-sided ribbed walls.

Effect of Number of Rough Walls on Pressure Drop and Heat Transfer in Roughened Channel (거친 채널에서 거친 벽면의 수가 압력강하와 열전달에 미치는 효과)

  • Kim, M.H.;Bae, S.T.;Ahn, S.W.;Kang, H.K.;Kim, C.D.;Woo, J.S.
    • Proceedings of the Korean Society of Marine Engineers Conference
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    • 2005.06a
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    • pp.1083-1090
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    • 2005
  • Repeated ribs are used on heat exchange surfaces to promote turbulence and enhance convective heat transfer. Applications include fuel rods of gas-cooled nuclear reactors, inside cavities of turbine blades, and internal surfaces pipes used in heat exchangers. Despite the great number of literature papers, only few experimental data concern detailed distributions of friction factors and heat transfer coefficients in square channels varying the number of rough walls. This issue is tackled by investigating effects of different number of ribbed walls on heat transfer and friction characteristics in square channel. The rough wall have a 45$^{\circ}$ inclined square rib. Uniform heat flux is maintained on whole inner heat transfer channel area. The heat transfer coefficient and friction factor values increase with increasing the number of rough walls.

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Effect of Number of Rough Walls on Heat Transfer in the Square Channel with a Uniform Heat Flux (일정 열유속을 가진 사각채널에서 거친 벽면의 수가 열전달에 미치는 효과)

  • Bae, S.T.;Kim, M.H.;Lee, D.H.;Ahn, S.W.
    • Journal of Power System Engineering
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    • v.9 no.1
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    • pp.30-35
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    • 2005
  • Repeated ribs are used on heat exchanger surfaces to promote turbulence and to enhance convective heat transfer. Applications include fuel rods of gas-cooled nuclear reactors, inside cavities of turbine blades, and internal surfaces pipes used in heat exchangers. Despite the great number of literature papers, only few experimental data concerns detailed distributions of friction factors and heat transfer coefficients in square channels varying the number of rough walls. This issue was tackled by investigating effects of different number of ribbed walls on heat transfer and friction characteristics in square channel. The rough wall had a $45^{\circ}$ inclined square rib. Uniform heat flux was maintained on the whole inner heat transfer channel area. The heat transfer coefficient and friction factor values increased with increasing the number of rough walls.

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Enhanced heat transfer in the convergent rectangular channels with ∧/∨-shaped ribs on one wall (한 면에 ∧/∨형 리브가 있는 2벽면 수축 사각채널의 열전달 증가)

  • Lee, Myung-Sung;Yu, Ji-Ui;Jeong, Hee-Jae;Choi, Dong-Geun;Ha, Dong-Jun;Go, Jin-Su;Ahn, Soo-Whan
    • Journal of Advanced Marine Engineering and Technology
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    • v.40 no.4
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    • pp.270-274
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    • 2016
  • The effect of the rib angle-of-attack on heat transfer in the convergent channel with ${\vee}/{\wedge}$-shaped ribs was examined experimentally. Four differently angled ribs (a = $30^{\circ}$, $45^{\circ}$, $60^{\circ}$, and $90^{\circ}$) were placed to only the one sided wall. The ribbed wall was manufactured with a fixed rib height (e) of 10 mm and rib spacing (p)-to-height (e) ratio of 10. The convergent channel had a length of 1,000 mm and a cross-sectional areas of $100mm{\times}100mm$ at inlet and $50mm{\times}100mm$ at exit. The measurement was conducted for the Reynolds numbers ranging from 22,000 to 75,000. The results show that the Nusselt number is generally higher at higher Reynolds number and that an angle-of-attack of $45^{\circ}$ at the ${\wedge}$-shaped rib produces the greatest Nusselt number.

A study on the characteristics of gasoline spray to impinge on wall (벽면에 충돌하는 가솔린 분무의 특성에 관한 연구)

  • Lee, G.Y.
    • Journal of ILASS-Korea
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    • v.10 no.1
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    • pp.17-23
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    • 2005
  • Even though a relatively complete knowledge base has been established for diesel sprays, much of the knowledge cannot be directly translated to correlate the characteristics of gasoline spray. The macroscopic characteristics of gasoline impingement spray was investigated with photographic and image processing technique by Particle Motion Analysis System. The injector with single hole nozzle diameter of 0.28 mm was used in this experiment and the injection duration was selected as 10 msec. The injection pressure with 0.3, 0.35, and 0.4 MPa, impingement distance or 70, 100 and 130m, impingement angle or 0.15, 30 and $45^{\circ}$ were employed for the variables to affect the spray characteristics of impinging spray. It is clear that there is the analogy on the spray tip penetration between the gasoline impinging jet and diesel free jet. The spray tip penetration of impinging gasoline spray is proportional to the quarter power of the time after start of injection. The maximum height of impinging gasoline spray is also proportional to the quarter power of the time regardless of impingement distance, impingement angle and injection pressure. In addition, the effect of impingement angle on the spray tip penetration is significant according to the time after start of injection, even though there is minor effect in the initial stage of time after start of injection. Moreover, there is no remarkable effect of injection pressure on the spray tip Penetration under the experimental condition used in this study.

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The Thermal and Flow Analysis in the Channel of Plate Heat Exchanger with Crossed-Discrete Ribs (직교하는 단락형 리브를 부착한 판형 열교환기 관내측 열유동 해석)

  • Lee, Kwan-Soo;Moon, Hyoung-Kyu;Chung, Kilyoan
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.23 no.5
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    • pp.678-686
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    • 1999
  • The purpose of this work is to Investigate the pressure drop and the heat transfer characteristics in the channel of plate heat exchanger with crossed-discrete ribs. The flow is assumed to be three-dimensional, laminar and periodically fully developed. Computations have been carried out for angles of attack from $0^{\circ}$ to $90^{\circ}$ and ratios of rib height from 0.15 to 0.46 for various values of Reynolds and Prandtl numbers. The heat transfer was improved by inclined ribs generating helical vortices and secondary flows. The results show that the pressure drop has a maximum value at $70^{\circ}$ and the heat transfer has a maximum value at $45^{\circ}$. As the rib height increases, the pressure drop and the heat transfer increase quadratically, and the increasing rate of pressure drop is higher than that of the heat transfer. As Reynolds number increases, the pressure drop increases in proportion to the square of Reynolds number and the heat transfer increases linearly.