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Study on local resistance of non-Newtonian power law fluid in elbow pipes
Authors:Hao Zhang  Tiantian Xu  Xinxin Zhang  Yuxiang Wang  Yuancheng Wang  Xueting Liu
Affiliation:1. School of Thermal Energy Engineering,Shandong Jianzhu University,Jinan 250101,China;Key Laboratory of Renewable Energy Utilization Technologies in Buildings,Ministry of Education,Jinan 250101,China;2. School of Thermal Energy Engineering,Shandong Jianzhu University,Jinan 250101,China;3. Department of Thermal Engineering,University of Science and Technology Beijing,Beijing 100083,China
Abstract:This paper focuses on the flow characteristic and local resistance of non-Newtonian power law fluid in a curved 90° bend pipe with circnlar cross-soctions,which are widely used in industrial applications.By employing numerical simulation and theoretical analysis the properties of the flow and local resistance of power law fluid under different working conditions are obtained.To explore the change rule the experiment is carried out by changing the Reynolds number,the wall roughness and different diameter ratio of elbow pipe.The variation of the local resistance coefficient with the Reynolds number,the diameter ratio and the wall roughness is presented comprehensively in the paper.The results show that the local resistance force coefficient hardly changes with Reynolds number of the power law fluid;the wall roughness has a significant impact on the local resistance coefficient.As the pipe wall roughness increasing,the coefficient of local resistance force will increase.The main reason of the influence of the roughness on the local resistance coefficient is the increase of the eddy current region in the power law fluid flow,which increases the kinetic energy dissipation of the main flow.This paper provides theoretical and numerical methods to understand the local resistance property of non-Newtonian power law fluid in elbow pipes.
Keywords:non-Newtonian fluid  Local resistance coefficient  Reynolds number  Bend diameter ratio  Roughness
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