The current investigation uses the finite element method to analyze the natural convective flow of Casson fluid around a tilted hot rectangular cylinder placed in a square container. The influence of Casson fluid parameter ο¨ ο© ο¨ , aspect ratio, () AR , angle of tilt () ο§ , and Rayleigh number ο¨ ο© Ra on isotherms and fluid flow pattern is enunciated. The walls of the enclosure and that of the cylinder are respectively fixed as c T and h T . Results from the findings reveal that for the range of Casson fluid parameter ο¨ ο© 0.1 1.0 ο¨ ο£ο£ , aspect ratio ο¨ ο© 0.1 0.7 AR ο£ο£ , and Rayleigh number ο¨ ο© 36 10 10 Ra
ο£ο£, investigated, the rate of heat transfer of the enclosure wall increases with increasingο¨ , AR and Ra , while for the heated rectangular obstacle, the rate of heat transfer decreases with AR growth but improves with the growth of ο¨ and Ra . At 6 10 Ra ο½ , improvement in ο§ results in heat transfer enhancement for both the enclosure and cylinder walls. However, for Ra in the interval of 35 10 10 Ra ο£ο£, the response of the thermal profiles of both the rectangular cylinder and enclosure walls to cylinder orientation depends on the values of Ra and ο§ considered.