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螺管电磁铁的CAD方法
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作者 覃考 林卫东 王铁荪 《土木建筑与环境工程》 EI CSCD 1992年第S1期99-106,共8页
本文着重分析直流螺管电磁铁的结构特点,采用最小体积准则建立电磁铁数学模型,按网格法进行优化。其数学模型和优化程序具有通用性,可得到广泛应用。
关键词 电磁吸力 螺管力 稳态温升 磁通密度 网格法
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机床电器中圆锥配合件设计关键浅探
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作者 俞寿林 《机床电器》 1994年第3期2-5,共4页
文内对机床电器中一些采用螺管式电磁系统为圆锥配合结构时的一些问题作了浅探。论述了影响螺管力Fx数值的有关参数,并作出了实例计算,进一步论证了锥面气隙的重要作平。同时论述了圆锥直径、圆锥角允差对Fx的影响并作出了选用计算。
关键词 圆锥配合 螺管力 圆锥结合参数 机床 电气设备
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A Numerical Study on Fully Developed Fluid Flow and Heat Transfer in a Spiral Finned Tube
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作者 张建文 张政 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 1999年第1期56-66,共11页
In this paper, the standard k-ε two-equation model is adopted to numerically simulate fully developed fluid flow and heat transfer in a spiral finned tube within a cracking furnace for ethylene manufacturing. By vari... In this paper, the standard k-ε two-equation model is adopted to numerically simulate fully developed fluid flow and heat transfer in a spiral finned tube within a cracking furnace for ethylene manufacturing. By variable transformation, the original 3-D problem is converted into a 2-D problem in spiral coordinates. The algorithm of SIMPLEC is used to study the fully developed fluid flow and heat transfer in the spiral finned tube at constant periphery temperature and constant axial heat flux. The computed results agree pretty well with the experimental data obtained from the industry. Further studies on the fluid flows and temperature profiles at different Reynolds numbers within straight and spiral finned tubes are conducted and the mechanisms involved are explored. It is found that with the spiral finned tube, pressure drop increases to a great extent whereas heat transfer tends to be decreased. 展开更多
关键词 fluid flow and heat transfer numerical simulation finned tube spiral finned tube spiral coordinates system
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Evaluation of the heat transfer performance of helical coils of non-circular tubes 被引量:3
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作者 Jundika C.KURNIA Agus P.SASMITO Arun S.MUJUMDAR 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第1期63-70,共8页
This study addresses heat transfer performance of various configurations of coiled non-circular tubes, e.g., in-plane spiral ducts, helical spiral ducts, and conical spiral ducts. The laminar flow of a Newtonian fluid... This study addresses heat transfer performance of various configurations of coiled non-circular tubes, e.g., in-plane spiral ducts, helical spiral ducts, and conical spiral ducts. The laminar flow of a Newtonian fluid in helical coils made of square cross section tubes is simulated using the computational fluid dynamic approach. The effects of tube Reynolds number, fluid Prandtl number, coil diameter, etc., are quantified and discussed. Both constant wall temperature and constant heat flux conditions are simulated. The effect of in-plane coil versus a cylindrical design of constant coil, as well as a conical coil design is discussed. Results are compared with those for a straight square tube of the same length as that used to form the coils. Advantages and limitations of using coiled tubes are discussed in light of the numerical results. 展开更多
关键词 COIL Non-circular tube Heat transfer performance Mathematical model
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