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石刁柏花药培养再生植株的生根研究(Ⅱ)
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作者 陈穗云 陈永 任群 《西北植物学报》 CAS CSCD 北大核心 1995年第6期43-46,共4页
石刁柏花药来源的试管苗茎尖切段基部根原基的发生和根原基发育形成根是两个不同的阶段。较低浓度的NAA和充分的养料供应是切段基部愈伤组织形成并在其中分化出根原基的必要条件,而相对的水分缺乏和能进行有效的气体交换则能促进根... 石刁柏花药来源的试管苗茎尖切段基部根原基的发生和根原基发育形成根是两个不同的阶段。较低浓度的NAA和充分的养料供应是切段基部愈伤组织形成并在其中分化出根原基的必要条件,而相对的水分缺乏和能进行有效的气体交换则能促进根原基进一步发育形成根。每个阶段应用不同的处理可使生根率达100%。 展开更多
关键词 石刁柏 花药培养 水分供应 气体交换
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Lagrangian-based investigation of multiphase flows by finite-timeLyapunov exponents 被引量:12
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作者 Jia-Ning Tang Chien-Chou Tseng Ning-FeiWang 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2012年第3期612-624,共13页
Multiphase flows are ubiquitous in our daily life and engineering applications. It is important to investigate the flow structures to predict their dynamical behaviors ef- fectively. Lagrangian coherent structures (... Multiphase flows are ubiquitous in our daily life and engineering applications. It is important to investigate the flow structures to predict their dynamical behaviors ef- fectively. Lagrangian coherent structures (LCS) defined by the ridges of the finite-time Lyapunov exponent (FTLE) is utilized in this study to elucidate the multiphase interactions in gaseous jets injected into water and time-dependent turbu- lent cavitation under the framework of Navier-Stokes flow computations. For the gaseous jets injected into water, the highlighted phenomena of the jet transportation can be observed by the LCS method, including expansion, bulge, necking/breaking, and back-attack. Besides, the observation of the LCS reveals that the back-attack phenomenon arises from the fact that the injected gas has difficulties to move toward downstream re- gion after the necking/breaking. For the turbulent cavitating flow, the ridge of the FTLE field can form a LCS to capture the front and boundary of the re-entraint jet when the ad- verse pressure gradient is strong enough. It represents a bar- rier between particles trapped inside the circulation region and those moving downstream. The results indicate that the FFLE field has the potential to identify the structures of mul- tiphase flows, and the LCS can capture the interface/barrier or the vortex/circulation region. 展开更多
关键词 Finite-time Lyapunov exponents Lagrangiancoherent structures Multiphase flow gaseous jets injectedinto water CAVITATION
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