Analisis Tegangan Termal Kaca Jendela 2D Dengan Kondisi Konduktivitas Panas Anisotropik Menggunakan Metode Elemen Hingga
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Matematika dan Ilmu Pengetahuan Alam
Abstract
This study investigates the effect of thermal stress on a 2D window pane under
anisotropic heating conditions using the finite element method. The study aims to
analyze the temperature distribution and thermal stress in the window pane
resulting from an anisotropic heat source, as well as to identify the potential crack
patterns that form. The mathematical model is based on two-dimensional heat
conduction equations combined with thermal stress analysis. The heat conduction
equation model is formulated as a two-dimensional partial differential equation
considering Robin boundary conditions, then transformed into a weak form and
solved using the finite element method. The model is solved by discrettoleransig the
domain into small triangular elements. Linier basis functions are used to
approximate the temperature field in each element, so the system is assembled into
a thermal mass matrix, a thermal stiffness matrix, and a thermal load vector. The
calculated temperature results are used to determine the principal stress
distribution, which is then normalized against the allowable stress to obtain the
crack risk map values. The research results show that the temperature distribution
in the glass is non-uniform and is strongly influenced by the direction of the heat
source. Temperatures tend to be higher in areas close to the heat source and
decrease toward more distant regions. This pattern results in a non-uniform
distribution of thermal stress, with a higher risk of cracking in areas experiencing
significant temperature changes. The direction of the heat source influences the
dominant direction of temperature and stress propagation, resulting in different
crack risk patterns. Overall, the finite element method can serve as an effective
numerical approach for analyzing thermal stresses resulting from two-dimensional
heat transfer.
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:: Finalisasi file repositori 21 Juli 2026_Kurnadi
