Method for analyzing static strength characteristics of turbomachinery blade based on CPU+GPU heterogeneous parallel computing
A turbomachinery and characteristic analysis technology, applied in calculation, geometric CAD, design optimization/simulation, etc., can solve problems such as slow calculation speed, complicated boundary conditions, loads, and complex models
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example 1
[0159] The cantilever beam model is used for testing. The size of the cantilever beam is 50mm in the X direction, 4mm in the Y direction, and 3mm in the Z direction. The geometric model of the cantilever beam is as follows image 3 In (a), the finite element mesh model such as image 3 In (b), the material parameters are elastic modulus 210GPa, Poisson's ratio 0.3, and density 7850kg / m 3 . The boundary condition is that all nodes on the YOZ plane are constrained, the load is a centrifugal force load, and the angular velocity around the Z axis is 100rad / s. In order to verify the acceleration effect of parallel computing under different grid densities, the number of calculated grids is selected according to Table 1.
[0160] Table 1 Test calculation cantilever beam grid number
[0161]
[0162] Figure 4 Comparing the distribution cloud diagram of TBFEA and ANSYS results when the program calculates the cantilever beam model, it is the displacement distribution cloud diagr...
example 2
[0165] For a long blade model with a shroud / tie bar structure, the main body uses an eight-node hexahedron element, and the tetrahedron and degenerate elements are used for meshing in the transition part between the blade root and the tie bar. The unit has a total of 206,292 elements, 216,798 node, Figure 6 (a) gives the overall finite element mesh model of the long blade, Figure 6 (b), (c), and (d) show the local meshing status of the blade root platform / tie bars / shroud. In this example, regardless of the wheel rim, the four load-bearing tooth surfaces of the fir tree-shaped blade root are all fixed, and a positive pressure of 100N is applied to the contact surface of the tendon shroud part to simulate the pressure generated by the contact surface of the tendon / shroud contact surface , and finally apply a centrifugal force load with a working speed of 3000r / min.
[0166] Table 2 Summary of the maximum Von-Mises stress status of each part of the long blade
[0167]
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