E. Ergur And T. Çalışır, "Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances," Thermal Science and Engineering Progress , vol.48, pp.102432, 2024
Ergur, E. And Çalışır, T. 2024. Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances. Thermal Science and Engineering Progress , vol.48 , 102432.
Ergur, E., & Çalışır, T., (2024). Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances. Thermal Science and Engineering Progress , vol.48, 102432.
Ergur, Eda, And TAMER ÇALIŞIR. "Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances," Thermal Science and Engineering Progress , vol.48, 102432, 2024
Ergur, Eda And Çalışır, TAMER. "Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances." Thermal Science and Engineering Progress , vol.48, pp.102432, 2024
Ergur, E. And Çalışır, T. (2024) . "Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances." Thermal Science and Engineering Progress , vol.48, p.102432.
@article{article, author={Eda Ergur And author={TAMER ÇALIŞIR}, title={Computational study of flow and thermal behavior of a single-cavity and multiple-orifice impinging synthetic jets under low orifice-to-target distances}, journal={Thermal Science and Engineering Progress}, year=2024, pages={102432} }