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1)  riblet surface
脊状表面
1.
A method for testing drag-reduction on riblet surfaces based on the Spalding formula
基于Spalding公式的脊状表面减阻测试方法研究(英文)
2.
Exterior flow field measurement above smooth and different riblet surfaces was carried out in a low speed wind tunnel by means of hot-wire anemometry.
利用热线风速仪,对光滑表面和多个脊状表面在低速风洞中进行了表面流场测试。
3.
The numerical simulation about riblet surfaces with different spacing was carried out at different velocities.
对具有不同间隔的脊状表面在多个速度下进行了数值仿真计算,初步发现了间隔对于脊状表面减阻效果的影响规律。
2)  a slightly ridged surface
略呈脊状的表面.
3)  riblet surface drag reduction
脊状表面减阻
1.
And then the research actualities of riblet surface drag reduction technology,microbubble drag reduction technology and hydrophobic/superhydrophobic surface drag reduction technology are expounded through experimental and theoretical researches with drag reduction mechanisms purposively emphasized.
重点介绍了脊状表面减阻、微气泡减阻和疏水/超疏水表面减阻的研究现状。
4)  new V-groove surface
新型V型脊状表面
5)  cord dorsum potentials
脊髓背表面电位
1.
The cord dorsum potentials (CDF) wave form evoked by heavy current stimulation of the sural nerve and the effects produced by microinjection of L - glutamate into the controlateral nucleus reticularis gigantocellularis( NGC) on CDP were observed in light chlo-ralhydrate anesthetized and immobilized rats.
以浅麻醉和麻痹大鼠为对象,利用计算机平均技术记录强电流刺激腓肠神经诱发的脊髓背表面电位(CDP),观察对侧网状三细胞核(NGC)微量注射L一谷氨酸钠,使神经细胞兴奋后对CDP的影响。
6)  surface state
表面状态
1.
The effects of the surface state of aluminum alloy on the microstructure and the property of the friction stir-welding joint are studied.
研究了铝合金表面状态对搅拌摩擦焊焊接接头组织和性能的影响。
2.
This paper briefly presents the controlled cooling technology for the medium section steel production line in the Section Steel Plant,contrasts and analyses the surface state of the steel,both incoming and outgoing,mi- crostructure,mechanical property and deformation of rolled pieces.
简要介绍了型钢厂中型线控制冷却技术,并对投入控冷前后产品的表面状态、显微组织、力学性能及轧件变形三方面进行对照分析。
3.
More micromorphology of carbon fibers were revealed, the difference on surface state of T300 and T800 were great.
纤维表面状态的这些差异体现在其复合材料的界面力学性能
补充资料:脊脊
1.混乱;互相践踏。
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