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A Numerical Analysis of Turbulent Compressible Radial Channel Flow with Particular Reference to Pneumatic Controllers
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作者 gilles roy Dinh Vo-Ngoc Vadim Bravine 《Journal of Thermal Science》 SCIE EI CAS CSCD 2004年第1期24-29,共6页
A numerical analysis of turbulent axisymmetric radial compressible channel flow between a nozzle and a flat plate is presented in this paper. In particular, the application of this type of flow situation in pneumatic ... A numerical analysis of turbulent axisymmetric radial compressible channel flow between a nozzle and a flat plate is presented in this paper. In particular, the application of this type of flow situation in pneumatic dimensional control systems is considered. The Spalart-Allmaras one-equation turbulence model is used. The resulting highly coupled PDE system has been solved using the control volume based numerical approach where the power-law scheme was used extensively to compute the diffusive and convective fluxes of momentum. Results show that local Mach numbers can easily achieve and surpass unity for typical industrial configurations. Also, in the case of a standard industrial nozzle geometry, the presence of a toroidal recirculation zone that moves radially outward is clearly identified in most cases. Separated flow areas are of particular concern as it has been shown previously that they can cause nozzle fouling in industrial applications. It has been shown that the size of this region is dependant on feed pressure. Considerable differences between results obtained using the Spalart-Allmaras and standard k- εturbulence models have also been noticed. 展开更多
关键词 COMPRESSIBLE RADIAL flow numerical simulation PNEUMATIC controllers IMPINGING jet with confinement.
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Heat Transfer and Fluid Flow of Nanofluids in Laminar Radial Flow Cooling Systems
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作者 gilles roy Samy Joseph PALM Cong Tam NGUYEN 《Journal of Thermal Science》 SCIE EI CAS CSCD 2005年第4期362-367,共6页
Nanofluids 被认为选择同样有趣到常规冷却剂。传统的液体限制了热转移能力,是众所周知的什么时候与普通金属相比。在传统的液体在暂停放的极其好的金属性的粒子的小数量将更加增加他们的热转移表演,因此是相当想得到的。数字调查进... Nanofluids 被认为选择同样有趣到常规冷却剂。传统的液体限制了热转移能力,是众所周知的什么时候与普通金属相比。在传统的液体在暂停放的极其好的金属性的粒子的小数量将更加增加他们的热转移表演,因此是相当想得到的。数字调查进有在内的推迟的金属性的 nanoparticles 的冷却剂的热转移改进能力一光线, laminar 流动冷却配置被介绍。温度依赖 nanofluid 性质从在最近的文学可得到的试验性的数据被评估。结果显示可观的热转移增加与 nanoparticles 的相对小的体积部分的使用是可能的。然而,通常,这些被墙砍压力的可观的增加伴随。结果也证明与温度变量 nanofluid 性质获得的预言产出更大的热转移能力和更低的墙砍当时,强调与用经常的性质的预言相比。关键词 nanofluids - nanoparticles - 热转移 - laminar 流动 - 限制光线的流动 CLC 数字 TK 展开更多
关键词 热传递 纳米流 纳米离子 热力工程
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