Using non-equilibrium molecular dynamics simulations, we investigate the effects of nanotube size, mean flow velocity, ion concentration and temperature of an electrolyte water solution on shearing stress and nominal viscosity. It is shown that the distributed electric field arising from the electrolyte water solution has significant influences on fluid properties. Also, the temperature of the solution, which causes thermal movement, affects nanofluidic transport in nanoenvironments. The nominal viscosity and shearing stress increases as the tube diameter increases. When the temperature of solution increases or ion concentration decreases, the shearing stress and nominal viscosity increase. Simultaneous effects of ion concentration and temperature depict that the temperature effect is more dominant and these two parameters cannot be superposed. The molecular mechanisms that affect such behaviours are considered by studying radial density and radial velocity profiles in different cases.
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
Wu, Ximing
Lu, Linghong
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
Lu, Linghong
Zhu, Yudan
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
Zhu, Yudan
Zhang, Yingying
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
Zhang, Yingying
Cao, Wei
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
Cao, Wei
Lu, Xiaohua
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Nanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R ChinaNanjing Univ Technol, State Key Lab Mat Oriented Chem Engn, Nanjing 210009, Jiangsu, Peoples R China
机构:
Tokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Hanami, Kei-ichi
Umesaki, Tomoyuki
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Tokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Umesaki, Tomoyuki
Matsuda, Kazuyuki
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Tokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Matsuda, Kazuyuki
Miyata, Yasumitsu
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Natl Inst Adv Ind Sci & Technol, Nanotechnol Inst, Tsukuba, Ibaraki 3058562, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Miyata, Yasumitsu
Kataura, Hiromichi
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Natl Inst Adv Ind Sci & Technol, Nanotechnol Inst, Tsukuba, Ibaraki 3058562, Japan
JST, CREST, Kawaguchi, Saitama 3320012, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Kataura, Hiromichi
Okabe, Yutaka
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Tokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
Okabe, Yutaka
Maniwa, Yutaka
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Tokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
JST, CREST, Kawaguchi, Saitama 3320012, JapanTokyo Metropolitan Univ, Fac Sci, Dept Phys, Tokyo 1920397, Japan
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China Univ Min & Technol, Sch Mat Sci & Phys, Xuzhou 221116, Jiangsu, Peoples R ChinaChina Univ Min & Technol, Sch Mat Sci & Phys, Xuzhou 221116, Jiangsu, Peoples R China
Meng, X. W.
Kang, X.
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China Univ Min & Technol, Sch Mat Sci & Phys, Xuzhou 221116, Jiangsu, Peoples R ChinaChina Univ Min & Technol, Sch Mat Sci & Phys, Xuzhou 221116, Jiangsu, Peoples R China