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Comment

Comment on Rasool et al. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing Around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560

by
Asterios Pantokratoras
School of Engineering, Democritus University of Thrace, 67100 Xanthi, Greece
Coatings 2025, 15(9), 1060; https://doi.org/10.3390/coatings15091060
Submission received: 25 February 2025 / Revised: 24 June 2025 / Accepted: 25 June 2025 / Published: 10 September 2025

1. First Error

In the present comment, the units presented in the Nomenclature section in [1] are used.
The momentum Equation (2) in [1] is as follows:
u t + ( u x + υ r ) u = μ f 1 1 + γ ˜ n u r n σ sin 2 ( ω ) B 0 2 ρ f u + g ρ f ρ f β f ( 1 C ) ( T T ) + ( ρ p ρ f ) ( C C ) γ * ( ρ m ρ f ) ( N N ) cos Ω μ f γ ˜ n u r n 2 u r 2 1 + γ ˜ n u r n 2
In Equation (2), there are five errors:
In the Nomenclature section in [1], the units of the power law index n are N · m 2 = kg m 1 s 2 . It is well known in mathematics that the term Λ n is correct only when the power n is dimensionless. For example, the term Λ kg m 1 s 2 is meaningless. Thus, the three terms γ ˜ n u r n in Equation (2) are wrong.
The term 1 C is wrong because the pure number 1 is dimensionless, whereas the units of concentration C are m 3 . In physics, it is not permitted to add quantities with different units.
The term ( ρ p ρ f ) ( C C ) is wrong because its units are kg m 6 instead of m s 2 .

2. Second Error

The energy Equation (3) in [1] is as follows:
T t + ( u x + v r ) u = 1 ( ρ c p ) 1 r ( r ( K f T r ) ) + j ( D T r C r + D ¯ T ( T r ) 2 )
In Equation (3), there are two errors:
The units of the term 1 ρ c p 1 r r K f T r are m 1 s 1 Kelvin instead of s 1 Kelvin .
The units of the term D T r C r are m 3 s 1 Kelvin , whereas the units of the term D ¯ T T r 2 are s 1 Kelvin . In physics, it is not permitted to add quantities with different units.

3. Third Error

The concentration Equation (4) in [1] is as follows:
C t + ( u x + v r ) C = D r r ( r C r ) + D ¯ T 1 r ( r T r ) K r 2 ( C C ) ( T r ) m e E 0 K * T
In Equation (4), there are two errors:
The units of the term D ¯ T 1 r r T r are m s 1 instead of m 3 s 1 .
The units of the term K r 2 ( C C ) T r m e E 0 K * T are m m 3 s 2 Kelvin m instead of m 3 s 1 .

4. Fourth Error

In Equation (6) in [1], we have the followings:
D C r + D ¯ T T r = 0
The units of the term D C r are m 2 s 1 , whereas the unit of the term D ¯ T T r is m s 1 , and Equation (6) is wrong.

5. Fifth Error

The dimensionless Weissenberg number W e = a 3 x 2 r 2 γ ˜ 2 ( 1 ξ t ) 3 R 2 ν f is wrong because it is dimensional, with units kg 2 m 2 s 6 .

6. Sixth Error

The dimensionless parameter R i = g β f ( 1 C ) ( T w T ) x u w 2 is wrong because the term ( 1 C ) is wrong.

7. Seventh Error

The dimensionless parameter N r = ( ρ p ρ f ) C β f ρ f ( 1 C ) ( T w T ) is wrong because the term ( 1 C ) is wrong.

8. Eighth Error

The dimensionless parameter R b = γ * ( ρ p ρ f ) β f ρ f ( 1 C ) ( T w T ) is wrong because the term ( 1 C ) is wrong.

9. Ninth Error

The dimensionless parameter N b = j D C ν f is wrong because it is dimensional, with the unit m 3 .

10. Tenth Error

The equation γ = ( 1 ξ t ) ν f a R 2 1 / 2 is wrong because the unit of the LHS is m 1 (Nomenclature), whereas the RHS is dimensionless.

11. Eleventh Error

The equation A = ξ a is wrong because the unit of the LHS is m s 1 (Nomenclature), whereas the RHS is dimensionless.

12. Twelfth Error

The equation τ w = μ f u r 1 + γ ˜ u r 2 n 1 2 is wrong because the pure number 1 is dimensionless, whereas the units of the term γ ˜ u r 2 are kg m 1 s 4 .

13. Thirteenth Error

In the dimensionless Equation (12) in [1], the equation ρ = 1 is wrong because ρ is dimensional.

14. Fourteenth Error

The parameter ε in Figures 10 and 16 in [1] is unknown.

15. Fifteenth Error

In Table 2 in [1], the parameters N , Γ are unknown.

Conflicts of Interest

The author declares no conflicts of interest.

Reference

  1. Rasool, G.; Shah, S.Z.H.; Sajid, T.; Jamshed, W.; Cieza Altamirano, G.; Keswani, B.; Artidoro Sandoval Núñez, R.; Sánchez-Chero, M. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560. [Google Scholar] [CrossRef]
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MDPI and ACS Style

Pantokratoras, A. Comment on Rasool et al. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing Around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560. Coatings 2025, 15, 1060. https://doi.org/10.3390/coatings15091060

AMA Style

Pantokratoras A. Comment on Rasool et al. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing Around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560. Coatings. 2025; 15(9):1060. https://doi.org/10.3390/coatings15091060

Chicago/Turabian Style

Pantokratoras, Asterios. 2025. "Comment on Rasool et al. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing Around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560" Coatings 15, no. 9: 1060. https://doi.org/10.3390/coatings15091060

APA Style

Pantokratoras, A. (2025). Comment on Rasool et al. Spectral Relaxation Methodology for Chemical and Bioconvection Processes for Cross Nanofluid Flowing Around an Oblique Cylinder with a Slanted Magnetic Field Effect. Coatings 2022, 12, 1560. Coatings, 15(9), 1060. https://doi.org/10.3390/coatings15091060

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