Implementasi Metode Elemen Hingga Galerkin dalam Model Difusi-Adveksi 2D Untuk Penyebaran Inokulum pada Pohon Gaharu
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Matematika dan Ilmu Pengetahuan Alam
Abstract
Agarwood is a high value resin widely used in the beauty, perfume, and
pharmaceutical industries. However, the availability of high-quality agarwood
remains limited, partly due to the uneven distribution of inoculum during the
artificial inoculation process. This study analyzes this phenomenon from a
mathematical perspective, as distribution imbalances directly impact the quality
and quantity of the resin. Therefore, an approach is needed that is not only
descriptive but also capable of predicting inoculum dispersion patterns in a
measurable way. This study aims to develop a two-dimensional diffusion-advection
model and implement the finite element method using the Galerkin approach as a
numerical solution technique. The model is formulated as a non-stationary partial
differential equation, then converted to a weak form and discretized using
triangular elements. Calculations are performed through a combination of manual
analysis and numerical simulation using MATLAB, with variations in the number
and position of injection sources. Simulation results show that mesh density affects
accuracy, where a fine mesh produces a smoother and more stable distribution.
Furthermore, the number and orientation of injection sources play a significant
role in the uniformity of the distribution. The two- and four-source configurations
still produce a concentrated distribution, while the six and eight source
configurations show a more even distribution. Although the eight-source
configuration yields the most homogeneous results, the six-source configuration
was selected as the optimal solution because it is more efficient and still produces
a sufficiently good distribution.
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:: Finalisasi file repositori 21 Juli 2026_Kurnadi
