A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film

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HE, Ji Huan;ZHANG, Li Na.
A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film. 
Strojniški vestnik - Journal of Mechanical Engineering, [S.l.], v. 52, n.9, p. 587-591, august 2017. 
ISSN 0039-2480.
Available at: <https://www.sv-jme.eu/article/a-variational-approach-to-the-establishment-of-a-lubrication-equation-for-a-non-newtonian-thin-film/>. Date accessed: 19 nov. 2024. 
doi:http://dx.doi.org/.
He, J., & Zhang, L.
(2006).
A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film.
Strojniški vestnik - Journal of Mechanical Engineering, 52(9), 587-591.
doi:http://dx.doi.org/
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	author = {Ji Huan He and Li Na Zhang},
	title = {A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film},
	journal = {Strojniški vestnik - Journal of Mechanical Engineering},
	volume = {52},
	number = {9},
	year = {2006},
	keywords = {Reynolds-type equation; non-Newtonian flow; lubrication; perturbation methods; },
	abstract = {This paper provides a new approach to deriving a lubrication equation for a non-Newtonian thin film. The Reynolds-type equation is directly deduced from a variational principle as a stationary condition. The homotopy perturbation method is also applied in the derivation procedure.},
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He, J.,Zhang, L.
2006 August 52. A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film. Strojniški vestnik - Journal of Mechanical Engineering. [Online] 52:9
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He, Ji, & Li Na Zhang.
"A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film." Strojniški vestnik - Journal of Mechanical Engineering [Online], 52.9 (2006): 587-591. Web.  19 Nov. 2024
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AU  - Zhang, Li Na
PY  - 2006
TI  - A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film
JF  - Strojniški vestnik - Journal of Mechanical Engineering
DO  - 
KW  - Reynolds-type equation; non-Newtonian flow; lubrication; perturbation methods; 
N2  - This paper provides a new approach to deriving a lubrication equation for a non-Newtonian thin film. The Reynolds-type equation is directly deduced from a variational principle as a stationary condition. The homotopy perturbation method is also applied in the derivation procedure.
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	title = {A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film},
	journal = {Strojniški vestnik - Journal of Mechanical Engineering},
	volume = {52},
	number = {9},
	year = {2006},
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TY  - JOUR
AU  - He, Ji Huan
AU  - Zhang, Li Na
PY  - 2017/08/18
TI  - A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film
JF  - Strojniški vestnik - Journal of Mechanical Engineering; Vol 52, No 9 (2006): Strojniški vestnik - Journal of Mechanical Engineering
DO  - 
KW  - Reynolds-type equation, non-Newtonian flow, lubrication, perturbation methods, 
N2  - This paper provides a new approach to deriving a lubrication equation for a non-Newtonian thin film. The Reynolds-type equation is directly deduced from a variational principle as a stationary condition. The homotopy perturbation method is also applied in the derivation procedure.
UR  - https://www.sv-jme.eu/article/a-variational-approach-to-the-establishment-of-a-lubrication-equation-for-a-non-newtonian-thin-film/
He, Ji, AND Zhang, Li.
"A Variational Approach to the Establishment of a Lubrication Equation for a Non-Newtonian Thin Film" Strojniški vestnik - Journal of Mechanical Engineering [Online], Volume 52 Number 9 (18 August 2017)

Authors

Affiliations

  • Shanghai Donghua University, College of Science, People’s Republic of China
  • Shanghai Donghua University, College of Science, People’s Republic of China

Paper's information

Strojniški vestnik - Journal of Mechanical Engineering 52(2006)9, 587-591
© The Authors, CC-BY 4.0 Int. Change in copyright policy from 2022, Jan 1st.

This paper provides a new approach to deriving a lubrication equation for a non-Newtonian thin film. The Reynolds-type equation is directly deduced from a variational principle as a stationary condition. The homotopy perturbation method is also applied in the derivation procedure.

Reynolds-type equation; non-Newtonian flow; lubrication; perturbation methods;