1. Turbulent decaying swirling flow in a pipe;Aghakashi;Heat Transf. Res.,2018
2. Bacher, E. V., Smith, C.R., 1985. COMBINED VISUALIZATION-ANEMOMETRY STUDY OF THE TURBULENT DRAG REDUCING MECHANISMS OF TRIANGULAR MICRO-GROOVE SURFACE MODIFICATIONS., in: AIAA Paper. AIAA. doi:10.2514/6.1985-548
3. Avram Bar-Cohen, Young I. Cho, G.A.G., n.d. Advances in Heat Transfer - Google Books [WWW Document]. URL https://books.google.ru/books?id=ELHBhHNi274C&pg=PA129&lpg=PA129&dq=rise+in+convective+heat+effect+on+drag+and+drop&source=bl&ots=ek9mrmudm4&sig=ACfU3U1P-F6ZH4bupixbixzN2i65flurqw&hl=en&sa=X&ved=2ahUKEwjczsfqtr_pAhWE4aYKHdb1B5MQ6AEwAHoECGEQAQ#v=onepage&q= (accessed 5.19.20).
4. On the boundary layer/riblets interaction mechanisms and the prediction of turbulent drag reduction;Baron;Int. J. Heat Fluid Flow,1993
5. The viscous flow on surfaces with longitudinal ribs;Bechert;J. Fluid Mech.,1989