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国家自然科学基金(10872106)

作品数:8 被引量:46H指数:4
相关作者:郝鹏飞卢思傅承诵姚朝晖杨常卫更多>>
相关机构:清华大学中国直升机设计研究所更多>>
发文基金:国家自然科学基金更多>>
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8 条 记 录,以下是 1-9
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Drag reduction in ultrahydrophobic channels with micro-nano structured surfaces被引量:11
2010年
A series of experiments have been performed to demonstrate the significant drag reduction of the laminar flow in the ultrahydrophobic channels with dual-scale micro-nano structured surfaces.However,in previous experiments,the ultrahydrophobic surfaces were fabricated with micro-structures or nano-structures and the channels were on the microscale.For the drag reduction in macro-scale channels few reports are available.Here a new method was developed to fabricate ultrahydrophobic surfaces with micro-nano hierarchical structures made from carbon nanotubes.The drag reductions up to 36.3% were observed in the macro-channels with ultrahydrophobic surfaces.The micro-PIV was used to measure the flow velocity in channels.Compared with the traditional no-slip theory at walls,a significant slip velocity was observed on the ultrahydrophobic surfaces.
LU SiYAO ZhaoHuiHAO PengFeiFU ChengSong
The apparent contact angle of water droplet on the micro-structured hydrophobic surface被引量:8
2010年
The apparent contact angle of Cassie-Baxter state water droplets can be calculated by the existing theoretical formula, but due to the defects of the micro-structured hydrophobic surface and some inevitable tiny disturbances in the experiment, Cassie-Baxter state water droplets will appear partly in Wenzel state, that is, the mixed state water droplets. In this paper, apparent contact angles of Cassie-Baxter state and mixed state water droplets on micro-structured hydrophobic surfaces are compared. The research shows that if the projected area fraction of water-solid F in the Cassie-Baxter formula is replaced by the local projected area fraction of water-solid F′, the apparent contact angles of water droplets in both Cassie-Baxter state and the mixed state can be calculated. Further experimental results indicate that the contact state of water droplets nearby the outermost three-phase contact line plays a more important role in determining the apparent contact angle. This conclusion is significant to the understanding of the apparent contact angle and wetting property.
YANG ChangWei, HE Feng & HAO PengFei School of Aerospace, Tsinghua University, Beijing 100084, China
关键词:APPARENTCONTACTTHREE-PHASECONTACTMODELMODELMODEL
Study of dynamic hydrophobicity of micro-structured hydrophobic surfaces and lotus leaves被引量:10
2011年
The dynamic wetting characteristics of water droplets on silicon wafers with microscale regular pillars structures and fresh lotus leaves are investigated experimentally.We measured the static contact angle,contact angle hysteresis,and roll-off angle of water droplets on both of these superhydrophobic surfaces with a high speed contact angle meter.The dynamic contact angles and internal velocity distribution of water droplets on superhydrophobic surfaces were studied with a high-speed camera system and a particle image velocimetry (PIV) system,respectively.We found that the acceleration of water droplets when they slide off lotus leaves is greater than that of water droplets sliding off the silicon wafers with microscale pillar structures although the static contact angles of water droplets on lotus leaves are slightly smaller than those on the silicon wafers.The reason is that water droplets sliding off lotus leaves have smaller contact angle hysteresis and larger slip velocities.These results indicate that the dynamic contact angle hysteresis and sliding acceleration of liquid droplets are more suitable for reflecting the hydrophobicity of material surfaces compared with static contact angles.Our experiments also show that lotus leaves with multiscale micro/nanostructures have stronger hydrophobicity and self-cleaning properties compared with the micro-structured superhydrophobic surfaces.
HAO PengFei YAO ZhaoHui ZHANG XiWen
关键词:表面疏水性疏水表面粒子图像测速高速摄影机
Effects of gas compressibility and surface roughness on the flow in microfluidic devices被引量:1
2011年
With the development of the micro-electro-mechanical system (MEMS),the flow characteristics in micro-channels have drawn increasing attention.In this paper,numerical simulations are conducted to investigate the flow characteristics of compressible flow through micro-channels and micronozzles.An improved surface roughness viscosity model is used to simulate the effect of surface roughness on micro-channels flow characteristics.Using this model,better agreements between the computational results and the experimental data are found.The result indicates that the surface roughness is one of the important factors affecting the flow characteristics of gas through micro-channels.The numerical investigation on the expansion channel shows that by using the laminar model that considers surface roughness,the computational results and experimental data are consistent when Re<450,whereas deviation increases when Re>450.Based on the synthetic model with considerations of turbulence viscosity and surface roughness,the numerical results and the experimental data are identical.
YAO ZhaoHui HAO PengFei ZHANG XiWen
关键词:压缩气体流动特性
Static and dynamic characterization of droplets on hydrophobic surfaces被引量:2
2012年
We report on our study of the static and dynamic wetting property of hydrophobic surfaces with micro-and dual micro/nano-scale structures.Simulations based on the lattice Boltzmann method showed that the apparent contact angle of water droplets on hy-drophobic surfaces with micro-scale structures increases as solid area decreases,whereas dual micro/nano-scale structures not only increase surface hydrophobicity but also greatly stabilize the Cassie state of droplets.Droplets falling on a superhydrophobic surface distort and,depending of free energy,sometimes bounced on the surface before finally adhering to the surface.These phenomena are in agreement with experimental observations.Simulated results also show that micro/nano-scale surface structures can increase droplet rebound height,which depends on static apparent contact angle.
YAO ZhaoHui HAO PengFei ZHANG XiWen HE Feng
关键词:疏水表面格子BOLTZMANN方法动态特性液滴
具有微纳结构超疏水表面的槽道减阻特性研究被引量:15
2010年
目前一系列实验研究表明,在由一级微米结构或一级纳米结构构成的超疏水表面制成的槽道中,在层流的条件下,存在明显的减阻效应.但是以往的实验中,所采用的超疏水表面均是由一级微米结构或者纳米结构构成,并且流动槽道的尺度均是在微米量级,对于宏观尺度槽道中的流动减阻没有相应的研究.在本文中,首先介绍了一种全新的利用碳纳米管构建具有微纳二级结构的超疏水表面的方法,然后在由该表面构成的宏观尺度的槽道进行了流动阻力特性实验,实验发现由微纳二级结构构建的超疏水表面形成的宏观尺度槽道中,在层流条件下,依然具有减阻效应,且最大减阻达到36.3%.同时利用mirco-PIV技术对槽道内的流动速度进行了测量,与传统的壁面无滑移理论不同,在超疏水槽道内,发现在壁面处流体存在明显的速度滑移.
卢思姚朝晖郝鹏飞傅承诵
关键词:超疏水表面层流减阻壁面滑移
微结构疏水表面上液滴的表观接触角被引量:4
2010年
虽然微结构疏水表面上Cassie-Baxter状态液滴的表观接触角已有理论预测公式,但实验研究发现,由于微结构疏水表面上的瑕疵,以及液滴受到的各种轻微扰动等原因,很容易造成Cassie-Baxter状态液滴局部区域出现Wenzel状态的情况(即混合状态),而有关混合状态液滴表观接触角的研究还比较少.本文通过对比相同微结构疏水表面上Cassie-Baxter状态和混合状态液滴表观接触角的大小,发现将Cassie-Baxter预测公式中的固液接触面积分数F换成最外缘三相接触线处的局部固液接触面积分数F′,则能同时较好地预测上述两种情况下液滴的表观接触角;通过进一步的研究发现,表观接触角的大小仅与最外缘三相接触线处的固液接触状态有关,而与其他处的固液接触状态无关.该结果对于进一步认识微结构疏水表面上液滴的表观接触角以及润湿性质具有重要意义.
杨常卫何枫郝鹏飞
关键词:混合模型
Effect of upper contact line on sliding behavior of water droplet on superhydrophobic surface被引量:1
2009年
With a low surface energy, high apparent contact angle(>150°) and low sliding angle(<5°), superhy- drophobic surface has recently been attracting a great deal of attention. The true factor determining the sliding angle still remains unclear. In this paper, various superhydrophobic silicon surfaces with pillars are fabricated by photolithography and hydrophobized with octadecyltrichlorosilane (OTS). Relations between sliding angles and micro-structured surfaces are being investigated in detail with 10 mg water droplets in C-B state and mixed state. Experimental pictures and data show that the sliding angle is independent of pillar heights from 20 to 80 μm, increasing the space between pillars causes decrease in sliding angle, and increasing the side lengths of pillars causes increase in sliding angle. Moreover, the sliding angle is irrelevant to the state of interfacial contact area of water-solid and lower contact line. It is concluded that the sliding angle of water droplet on the micro-structured surface is merely deter-mined by the upper contact line.
YANG ChangWei HAO PengFei HE Feng
具有微纳结构超疏水表面的槽道湍流减阻机理研究
超疏水表面的优异性质使其在现代生活和工业生产中具有十分广泛的潜在应用。本文采用了碳纳米管缠绕技术和聚氟硅氧烷疏水化处理制备了具有二级微纳米结构的超疏水表面。测量了由该超疏水表面构建的槽道中的流动压差,将其与普通表面构建的...
卢思姚朝晖郝鹏飞傅承诵
关键词:超疏水表面湍流减阻壁面滑移
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