introduction to comsol multiphysics version 4.2 Search Results


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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
Multiphysics, supplied by COMSOL Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL <t> Multiphysics </t> [ 42 ] shown for comparison with the integral transform results.
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Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: The adherence with the FEA results from COMSOL Multiphysics [ 42 ] is perfect to the graph scale, further contributing to the co-verification effort.

Techniques:

Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: The adherence with the FEA results from COMSOL Multiphysics [ 42 ] is perfect to the graph scale, further contributing to the co-verification effort.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.002. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transforms results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.002. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transforms results.

Article Snippet: The adherence with the FEA results from COMSOL Multiphysics [ 42 ] is perfect to the graph scale, further contributing to the co-verification effort.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.2. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transforms results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.2. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transforms results.

Article Snippet: The adherence with the FEA results from COMSOL Multiphysics [ 42 ] is perfect to the graph scale, further contributing to the co-verification effort.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 150 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 150 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: The adherence with the FEA results from COMSOL Multiphysics [ 42 ] is perfect to the graph scale, further contributing to the co-verification effort.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results. table ft1 table-wrap mode="anchored" t5 Table 6. caption a7 x = 0.6 x = 1.2 x = 2.4 x = 3.6 x = 4.8 N = 3 0.965 0.990 1.020 1.036 1.043 N = 6 0.996 0.995 1.020 1.036 1.043 N = 9 0.990 0.992 1.019 1.035 1.043 N = 12 0.990 0.992 1.019 1.035 1.043 N = 15 0.990 0.992 1.019 1.036 1.043 2 x o 0.990 0.992 1.019 1.036 1.043 COMSOL 0.991 0.993 1.019 1.035 1.043 Open in a separate window Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02.

Techniques:

Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results. table ft1 table-wrap mode="anchored" t5 Table 6. caption a7 x = 0.6 x = 1.2 x = 2.4 x = 3.6 x = 4.8 N = 3 0.965 0.990 1.020 1.036 1.043 N = 6 0.996 0.995 1.020 1.036 1.043 N = 9 0.990 0.992 1.019 1.035 1.043 N = 12 0.990 0.992 1.019 1.035 1.043 N = 15 0.990 0.992 1.019 1.036 1.043 2 x o 0.990 0.992 1.019 1.036 1.043 COMSOL 0.991 0.993 1.019 1.035 1.043 Open in a separate window Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.002. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transforms results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.002. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transforms results.

Article Snippet: Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results. table ft1 table-wrap mode="anchored" t5 Table 6. caption a7 x = 0.6 x = 1.2 x = 2.4 x = 3.6 x = 4.8 N = 3 0.965 0.990 1.020 1.036 1.043 N = 6 0.996 0.995 1.020 1.036 1.043 N = 9 0.990 0.992 1.019 1.035 1.043 N = 12 0.990 0.992 1.019 1.035 1.043 N = 15 0.990 0.992 1.019 1.036 1.043 2 x o 0.990 0.992 1.019 1.036 1.043 COMSOL 0.991 0.993 1.019 1.035 1.043 Open in a separate window Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.2. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transforms results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 50 and Da = 0.2. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transforms results.

Article Snippet: Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results. table ft1 table-wrap mode="anchored" t5 Table 6. caption a7 x = 0.6 x = 1.2 x = 2.4 x = 3.6 x = 4.8 N = 3 0.965 0.990 1.020 1.036 1.043 N = 6 0.996 0.995 1.020 1.036 1.043 N = 9 0.990 0.992 1.019 1.035 1.043 N = 12 0.990 0.992 1.019 1.035 1.043 N = 15 0.990 0.992 1.019 1.036 1.043 2 x o 0.990 0.992 1.019 1.036 1.043 COMSOL 0.991 0.993 1.019 1.035 1.043 Open in a separate window Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02.

Techniques:

Convergence of the centreline longitudinal velocity component for Re = 150 and Da = 0.02. Results obtained with COMSOL  Multiphysics  [ 42 ] shown for comparison with the integral transform results.

Journal: Proceedings. Mathematical, Physical, and Engineering Sciences

Article Title: Hybrid integral transforms for flow development in ducts partially filled with porous media

doi: 10.1098/rspa.2017.0637

Figure Lengend Snippet: Convergence of the centreline longitudinal velocity component for Re = 150 and Da = 0.02. Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results.

Article Snippet: Results obtained with COMSOL Multiphysics [ 42 ] shown for comparison with the integral transform results. table ft1 table-wrap mode="anchored" t5 Table 6. caption a7 x = 0.6 x = 1.2 x = 2.4 x = 3.6 x = 4.8 N = 3 0.965 0.990 1.020 1.036 1.043 N = 6 0.996 0.995 1.020 1.036 1.043 N = 9 0.990 0.992 1.019 1.035 1.043 N = 12 0.990 0.992 1.019 1.035 1.043 N = 15 0.990 0.992 1.019 1.036 1.043 2 x o 0.990 0.992 1.019 1.036 1.043 COMSOL 0.991 0.993 1.019 1.035 1.043 Open in a separate window Convergence of the centreline longitudinal velocity component for the Re = 300 and Da = 0.02.

Techniques: