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- W4288680315 abstract "Current discussion is to evaluate the influence of wall properties on thermal and flow performance, through a sinusoidal inclined wavy tube. To fulfill this phenomena we consider a sinusoidal tube having wavy walls, furthermore silicon-dioxide, ferrosoferric-oxide and zinc-oxide are treated as nano-particles and combination of 40% C 2 H 6 O 2 and 60% H 2 O as a base-fluid, but after the literature review we have seen that Iftikhar et al. (2018) presented the consequence of wall properties on copper–water nano-fluid through inclined tube. The out-coming arithmetical results are simplified with the assist of mathematica and perturbation method. Further-more, we graphically evaluate the thermal and flow performance of nanofluids at different rate of solid volume fractions ( ϕ ) , rigidity parameter ( E 1 ) , Grashof number ( G r ) , slip parameter ( γ ) and heat generation parameter. we observed that Solid volume fraction ( ϕ ) of silicon dioxide, ferrosoferric oxide and zinc oxide causes the reduction of velocity profile. And velocity profile shows the opposite behavior corresponding to ( E 1 ) and ( G r ) . Temperature profile θ ( r , t ) decreases by developing the amount of ( ϕ ) for silicon dioxide, ferrosoferric oxide and zinc oxide, and temperature profile moves upward corresponding to heat parameter B. • Wall properties and thermal behavior of nano-fluids flow over an inclined sinusoidal wavy pipe is assumed. • Silicon-dioxide, ferrosoferric -oxide and zinc-oxide are treated as nano-particles and combination of 40% ethylene-glycol and 60% water as a base fluid. • We assume a sinusoidal wavy surface. • The problem is solved by using Mathematica." @default.
- W4288680315 created "2022-07-30" @default.
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- W4288680315 date "2022-10-01" @default.
- W4288680315 modified "2023-09-27" @default.
- W4288680315 title "A theoretical study on rheological effect of multiple nanoparticles on thermal performance near an inclined wavy pipe" @default.
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