期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
湍流流动中鲨鱼皮表面流体减阻研究进展 被引量:13
1
作者 Brian Dean bharat bhushan +4 位作者 杨绍琼(译) 李山(译) 田海平(译) 李一凡(译) 姜楠(校) 《力学进展》 EI CSCD 北大核心 2012年第6期821-836,共16页
快速游动的鲨鱼,其皮肤表面沿流动方向有序地排列着沟槽状结构,人们认为这种结构能在湍流流动中减小表面摩擦阻力.人们仿真这种生物结构来进行实验研究和应用,通过复制和改善鲨鱼皮肤表面沟槽状结构,使得摩擦阻力最大减小了近10%.在实... 快速游动的鲨鱼,其皮肤表面沿流动方向有序地排列着沟槽状结构,人们认为这种结构能在湍流流动中减小表面摩擦阻力.人们仿真这种生物结构来进行实验研究和应用,通过复制和改善鲨鱼皮肤表面沟槽状结构,使得摩擦阻力最大减小了近10%.在实验和模拟仿真中,人们不断讨论和研究湍流流动阻力的形成机制和沟槽减阻的理论特性.本文综述了沟槽减阻理论特性的一些研究方法,并且归纳定义了沟槽减阻最优几何形状及其尺寸;详细考虑流体流动的特点,给出了一种用来选择最优沟槽形状及其尺寸的方法;综述了目前的沟槽加工制造技术.由于鲨鱼皮肤表面存在少量黏液,从仿生学的角度,文章最后综述并展望了通过局部应用疏水性材料来改变沟槽附近流场属性,从而达到更大程度上减小阻力的目标. 展开更多
关键词 鲨鱼皮肤 减阻 沟槽 仿生学 湍流流动 疏水性
下载PDF
Plant Surfaces:Structures and Functions for Biomimetic Innovations 被引量:21
2
作者 Wilhelm Barthlott Matthias Mail +1 位作者 bharat bhushan Kerstin Koch 《Nano-Micro Letters》 SCIE EI CAS 2017年第2期116-155,共40页
An overview of plant surface structures and their evolution is presented. It combines surface chemistry and architecture with their functions and refers to possible biomimetic applications. Within some 3.5 billion yea... An overview of plant surface structures and their evolution is presented. It combines surface chemistry and architecture with their functions and refers to possible biomimetic applications. Within some 3.5 billion years biological species evolved highly complex multifunctional surfaces for interacting with their environments: some 10 million living prototypes(i.e., estimated number of existing plants and animals) for engineers. The complexity of the hierarchical structures and their functionality in biological organisms surpasses all abiotic natural surfaces: even superhydrophobicity is restricted in nature to living organisms and was probably a key evolutionary step with the invasion of terrestrial habitats some 350–450 million years ago in plants and insects. Special attention should be paid to the fact that global environmental change implies a dramatic loss of species and with it the biological role models. Plants, the dominating group of organisms on our planet, are sessile organisms with large multifunctional surfaces and thus exhibit particular intriguing features.Superhydrophilicity and superhydrophobicity are focal points in this work. We estimate that superhydrophobic plant leaves(e.g., grasses) comprise in total an area of around 250 million km^2, which is about 50% of the total surface of our planet. A survey of structures and functions based on own examinations of almost 20,000 species is provided, for further references we refer to Barthlott et al.(Philos. Trans. R. Soc. A 374: 20160191, 1). A basic difference exists between aquatic nonvascular and land-living vascular plants; the latter exhibit a particular intriguing surface chemistry and architecture. The diversity of features is described in detail according to their hierarchical structural order. The first underlying and essential feature is the polymer cuticle superimposed by epicuticular wax and the curvature of single cells up to complex multicellular structures. A descriptive terminology for this diversity is provided. Simplified, the functions of plant surface characteristics may be grouped into six categories:(1) mechanical properties,(2) influence on reflection and absorption of spectral radiation,(3) reduction of water loss or increase of water uptake, moisture harvesting,(4) adhesion and nonadhesion(lotus effect, insect trapping),(5) drag and turbulence increase, or(6) air retention under water for drag reduction or gas exchange(Salvinia effect). This list is far from complete. A short overview of the history of bionics and the impressive spectrum of existing and anticipated biomimetic applications are provided. The major challenge for engineers and materials scientists, the durability of the fragile nanocoatings, is also discussed. 展开更多
关键词 BIONICS SUPERHYDROPHOBICITY Hierarchical structuring Lotus effect Salvinia effect Evolution
下载PDF
Differential miRNA expression profiling of highly pathogenic avian influenza virus H5N1 infected chicken lungs reveals critical microRNAs,biological pathways and genes involved in the molecular pathogenesis
3
作者 Anamika Mishra Muhasin Asaf +5 位作者 Amod Kumar Diwakar Dattatreya Kulkarni Richa Sood Sandeep Bhatia bharat bhushan Ashwin Ashok Raut 《Virologica Sinica》 SCIE CAS CSCD 2022年第3期465-468,共4页
Dear Editor,Avian influenza is a highly contagious viral infection affecting the respiratory system.MicroRNAs(miRNAs)are small,regulatory,endogenous,non-coding RNAs of~22 nt that regulate the gene expression of the ta... Dear Editor,Avian influenza is a highly contagious viral infection affecting the respiratory system.MicroRNAs(miRNAs)are small,regulatory,endogenous,non-coding RNAs of~22 nt that regulate the gene expression of the target mRNAs by cleavage or translational repression.miRNAs are connected with the host response during avian influenza virus(AIV)infection(Wang et al.,2009,2012).In this study. 展开更多
关键词 INFLUENZA ENDOGENOUS PATHOGENESIS
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部