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dc.contributor.author黄宇歆en_US
dc.contributor.authorYu-Shin Huangen_US
dc.contributor.author林清发en_US
dc.contributor.authorTsing-Fa Linen_US
dc.date.accessioned2014-12-12T02:53:51Z-
dc.date.available2014-12-12T02:53:51Z-
dc.date.issued2006en_US
dc.identifier.urihttp://140.113.39.130/cdrfb3/record/nctu/#GT009314556en_US
dc.identifier.urihttp://hdl.handle.net/11536/78531-
dc.description.abstract利用二维稳态数值模拟方法针对垂直开放柜层流气帘的热质传及动量特性影响探讨;以商业套装计算软体PHOENICS进行求解,主要焦点着重于相对湿度对流场的温湿度影响;针对六个不同雷诺数100.5至717.8及在相同雷诺数之下,不同气帘宽度0.016m、0.02m及0.024m及气帘长度0.2m与展示柜深度0.1m,及出口速度0.0583m至0.62m冷却气帘包含两相反方向涡流结构之稳态开放柜流场研究。其中气帘出口处及环境温度温度分别为5 ℃ 及25 ℃,温度差为20 ℃。而气帘出口处和环境的相对湿度分别为90% 及 60%。结果指出相同Grt下,未加入浓度差及温度差之效应时,在惯性力作用下展示柜内形成单一涡流;然而当热传及质传的浮惯比大到一个相当程度时,气帘产生bending现象且形成两个反方向的旋转涡流。而在相同雷诺数之下,缩小气帘出口宽度将可减缓气帘的bending现象。除此之外,将气帘出口倾斜一个角度后,等温线及等浓度线的扭曲现象也随之减缓。然而安置第二气帘后的结果指出,在较低的V2j下,气帘出口宽度及安置位置的影响较小。然而在较高速的第二气帘效应作用之下,气帘的bending现象有明显的减缓,且在两者相对比较下,原先气帘速度对气帘bending现象影响较小。zh_TW
dc.description.abstractA steady two-dimensional numerical simulation is conducted to investigate the momentum, heat and mass transfer in a vertical open cavity resulting from a laminar cold air curtain flowing over the open surface of the cavity, simulating that in a vertical refrigerated display cabinet. The commercial computational fluid dynamics software PHOENICS is adopted to solve the problem. Particular attention is focused on how the parameters associated with the air curtain affect the characteristics of the flow in the cabinet. Computations are performed for the air curtain Reynolds number vanying from 100.5 to 717.8 and the injection slot width ranging from 0.016 to 0.024 m for the air discharge-to-return grille separation distance fixed at 0.2 m and for the cabinet depth of 0.1 m. The temperature difference between the air discharge and ambient is 20 ℃, corresponding to Tj = 5 ℃ and Tamb = 25 ℃. The relative humidities at the air discharge and ambient are respectively fixed at 90% and 60%. Effects of various parameters on the flow, thermal and solutal characteristics in the cabinet are examined in detail. Furthermore, we proceed to investigate the possibility of retarding the air curtain bending by inclining the jet at the air discharge grille toward the ambient. Moreover, how the installation of a secondary air curtain affects the flow in the display cabinet is examined. For the limiting case in the absence of the thermal and solutal buoyancy forces, the results indicate that a single large recirculating vortex is induced by the inertia force of the air curtain for all Reb. However, when the Richardson numbers (buoyancy to inertia ratio) increases to certain level, the air curtain bends toward the cavity and the intrusion of the warm and humid air from the ambient into the cavity becomes relatively prominent. At the same Grt, when the Reb is lowered to some degree, the air curtain bending is so large and two counter-rotating flow recirculations are induced in the cabinet. However, at the same Reb, milder air curtain bending and warm air intrusion are noted at reducing the injection width. Besides, inclining the jet toward the ambient can significantly delay the air curtain bending and the distortions in the isotherms and iso-concentration lines. The results from installing a secondary air curtain indicate that at this low V2j the effects of the jet width and location on the flow are rather slight. But at higher V2j, installing the jet some distance away from the cabinet causes a significant bending of the original air curtain. However, installing a high speed secondary air curtain near the cabinet can substantially reduce the bending of the original air curtain and hence improves the cabinet performance.en_US
dc.language.isozh_TWen_US
dc.subject层流zh_TW
dc.subject气帘zh_TW
dc.subject数值模拟zh_TW
dc.subjectlaminaren_US
dc.subjectair curtainen_US
dc.title数值模拟冷藏垂直开放柜之层流气帘之动量及热质传特性研究zh_TW
dc.titleEffects of Laminar Air Curtains on Momentum, Heat and Mass Transfer in an Open Vertical Refrigerated Display Cabinet- Numerical Simulationen_US
dc.typeThesisen_US
dc.contributor.department机械工程学系zh_TW
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