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罗布麻实生株茎和叶的解剖学观察
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作者 杨兆潜 张启秀 《西北植物学报》 CAS CSCD 2002年第7期38-48,共11页
材料取自罗布麻第一年的实生株,结果看出,罗布麻茎的皮层厚度一般白麻较厚,红麻较薄,白麻新4茎的皮层厚度达350-400μm,而红麻晋1呈150μm。但纤维束白麻一般较小而少,红麻则一般较大也较多。茎的薄壁组织中红麻淀粉较多,白麻... 材料取自罗布麻第一年的实生株,结果看出,罗布麻茎的皮层厚度一般白麻较厚,红麻较薄,白麻新4茎的皮层厚度达350-400μm,而红麻晋1呈150μm。但纤维束白麻一般较小而少,红麻则一般较大也较多。茎的薄壁组织中红麻淀粉较多,白麻较少或极少,红麻木质部导管一般较大且多,白麻相对较小而少。罗布麻红,白麻叶有明显区别,红麻叶片背腹木质部导管一般较大且多,白麻相对较小而少。罗布麻红,白麻叶有明显区别,红麻叶片背腹性明显,背面有长形细胞构成紧密的栅栏面积,而腹面为圆形或长圆形细胞组成疏松的海组织,属两面叶。白麻叶片背腹性不明显,背腹面均有栅栏组织。属等面叶。白麻叶厚,叶横切面测定,白麻新1叶厚400-425μm,红麻鲁15叶厚度125-150μm。 展开更多
关键词 罗布麻 实生株 解剖学 皮层 纤维束 栅栏组织 海绵组织 两面叶 等面
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Unsteady Numerical Simulation of Steam-Solid Two-Phase Flow in the Governing Stage of a Steam Turbine 被引量:2
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作者 Yufeng Li Peigang Yan Wanjin Han 《Journal of Thermal Science》 SCIE EI CAS CSCD 2009年第4期313-320,共8页
Solid particle erosion (SPE) in an ultra-supercritical steam turbine control stage with block configuration is investigatednumerically, based on the finite volume method and the fluid-particle coupling solver. We appl... Solid particle erosion (SPE) in an ultra-supercritical steam turbine control stage with block configuration is investigatednumerically, based on the finite volume method and the fluid-particle coupling solver. We apply the particlediscrete phase model to model the solid particles flow, and use the Euler conservation equations to solve thecontinuous phase. The investigation is focused on the influence of the solid particle parameters (such as particlediameter, particle velocity and particle trajectory) on the erosion rate of the stator and rotor blade surface in unsteadycondition. The distributions of the highly eroded zone on the stator and rotor blade surfaces are shown anddiscussed in detail according to the mechanism of solid particle/blade wall interaction. We obtain that the erosionrate of the vane blade is sensitive to the fluctuation of the potential flow field, and the smaller particle has agreater impact on the erosion distribution of rotor blade. The erosion rate does not entirely depend on the diametersize of the solid particle. 展开更多
关键词 steam turbine unsteady numerical simulation solid particle EROSION BLADE
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