4.3. Experimental verification of analytical method
In recent years, studies have been conducted by computer assisted analytical methods. The findings of such analyses can differ from the real phenomena under study depending on the accuracy of the model, the shape of the mesh, and the boundary conditions used. Thus, analytical studies need to be experimentally validated, including the present study. In this study, experimental verification was attempted before the acoustic analysis for various excitation frequencies. In the analysis using SYSNOISE, the acoustic excitation entered at a node at the entrance of the suction housing (Fig. 17).
4.3. Experimental verification of analytical methodIn recent years, studies have been conducted by computer assisted analytical methods. The findings of such analyses can differ from the real phenomena under study depending on the accuracy of the model, the shape of the mesh, and the boundary conditions used. Thus, analytical studies need to be experimentally validated, including the present study. In this study, experimental verification was attempted before the acoustic analysis for various excitation frequencies. In the analysis using SYSNOISE, the acoustic excitation entered at a node at the entrance of the suction housing (Fig. 17).
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