Abstract: The information of the simulation structure model of the inner cone flowmeter is provided by the excellent flowmeter and flowmeter manufacturers. The simulation structure model was built using Gambit2.2.30. Taking into account the computer operation speed, the model is modeled in a two-dimensional axisymmetric manner. The model is established according to the size of the physical experimental prototype. The main pipe section of the flowmeter is 400mm long, and the front end is provided with a straight pipe section of 10.5 times the pipe diameter, and the flowmeter. For more flowmeter manufacturers to select models and price quotations, you are welcome to inquire. The following is the details of the article on the simulation structure model of the inner cone flowmeter. The simulation structure model was built using Gambit2.2.30. Taking into account the computer operation speed, the model is modeled in a two-dimensional axisymmetric manner. The model is established according to the size of the physical experimental prototype. The main pipe section of the flowmeter is 400mm long, the front end is provided with a straight pipe section of 10.5 times the pipe diameter, and the straight pipe section behind the flowmeter is 11.5 times long. Mesh generation uses Gambit2.2.30 software package. In order to obtain the change of pressure near the cone more accurately, the meshes near the cone are densely divided, while the meshes in the upstream and downstream straight pipe sections far away from the cone gradually become sparser. The ratio at the side sparseness is 1:15. The number of meshes of the simulated structural model is about 100,000. Figure 2 shows the local mesh of the 0.65_50_130 structural model, which accounts for 34% of the total mesh. After the structural model is established, the mesh file is imported into FLUENT 6.2.16 and solved with a separate solver. The simulated fluid is water and the temperature is 293K. The inlet condition is the velocity inlet, and the flow velocity is from 0.2m/s to 10m/s; the outlet is set as the outflow condition; the wall is the no-slip condition, and the standard wall function method is selected for the near-wall area. The N-S equations are solved by the steady-state velocity-pressure coupled SIMPLE algorithm. Figure 2 Simulation structure model of inner cone flowmeter (partial) The above is the whole content of this article. You are welcome to inquire about the flowmeter selection and quotation of our factory. 'Inner Cone Flow Meter Simulation Structural Model'
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