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E-mail
380509448@qq.com
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Phone
13391289849,15821843903
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Address
Room 1223, Building 2, No. 58 Weiwu Road, Jiading District, Shanghai
Shanghai Tonghan Science and Education Equipment Co., Ltd
380509448@qq.com
13391289849,15821843903
Room 1223, Building 2, No. 58 Weiwu Road, Jiading District, Shanghai
DyFlow Fluid Dynamics Flow Field Simulation Software Experimental Teaching Equipment
(1)DyFlow Fluid Dynamics Flow Field Simulation Software Experimental Teaching Equipment DyFlowChinese versionThe post-processing part of fluid dynamics flow field simulation software provides various convenient visualization tools, including slicing, vector generation, streamline generation, particle expression, etc. We have fully covered the post-processing functions of current global fluid software, while also being simple and easy to operate.
(2DyFlow Fluid Dynamics Flow Field Simulation Software Experimental Teaching Equipment )DyFlowChinese software mathematical modelWe adopt an incompressible model and automatically select a solver based on actual working conditions to adjust the algorithm without the need for manual intervention.
(3)DyFlow Fluid Dynamics Flow Field Simulation Software Experimental Teaching Equipment The software can be used for three-dimensional flow analysis, and can complete flow field simulation under various reference frames, steady and unsteady flow analysis, incompressible and compressible flow calculation, laminar and turbulent flow simulation, heat transfer and thermal mixing analysis, porous media analysis, etc.
(4)Experimental conditions can be calculated based on actual experimental input parametersDyFlow simulation results, calculate and simulate the pressure, velocity, flow direction, Reynolds coefficient, drag coefficient, flow rate, etc. at any point under any experimental conditions, and verify the experimental results of Bernoulli equation.
(5)According to the device Establish a 3D model, collect actual pressure, temperature, environmental humidity and other conditions through sensors, adjust the valve opening, and automatically simulate and calculate the results under various working conditions.
(6)Through the flow field visualization window Uview, Observe the pressure and velocity distribution of liquid flow.
(7)For different working conditions, it is possible to complete full data comparison, data analysis, and data visualization for multiple working conditions. (8)Based on laminar or turbulent models, the internal structure of the airflow, including the overall distribution of velocity and pressure, can be simulated simultaneously. Observe the internal structure of the airflow and explore the experimental mechanism from the liquid flow structure.
(9)It can simulate the analysis of local flow fields in various sections, including distribution cloud maps, high-value streamline animations, etc.
(10) Data toOutput in "vkt" format, which can be analyzed in various software.Using polyhedral mesh analysis,STL format geometric description, removes unnecessary geometric noise, and has excellent computational performance.adoptDesign a solver in the format of Finite Volume Method, combined with automatic mode optimization of the grid and automatic matching of boundaries, and combined with external sensor data and input data to complete automated airflow related working condition analysis.
(11)Teaching flow field numerical simulation software for calculating experimental pipeline flow field operation and post video, including the main operation steps, including setting working conditions->Start calculation ->View calculation results ->Attach post-processing operations. The video includes the following functions a, b, c, d, and e, and the video time should not be less than 60 seconds.a. Select the experimental project, check the experimental project to be simulated in the pop-up dialog box, and set the valve parameters; b. Set parameters and enter the corresponding flow rate in the pop-up data collector dialog box; c. In the calculation operation bar, click the "Calculate" button to enter the calculation state and wait for the calculation to end; d. The calculation has been completed. Click "Finish" and then click the "Select Experimental Project" button. Check the experimental projects that have already been calculated and displayed. The calculated data has been obtained and can be further processed; e. To visualize the flow rate "U", click on the calculation result on the tree graph, and then select flow tracking on the post-processing toolbar. Click on the newly generated 'Flow Tracking 1' node in the tree diagram, set the seed type to point source in the attribute table, set the position of the sphere in the view, and click apply. Select 'U' as the coloring data in the attribute table coloring column.
(12)The device can scan the QR code of the device through a mobile phone to watch the experimental demonstration animation. The animation content is created using modern 3D modeling methods, and the animation video is accompanied by a full process voice explanation, achieving a vivid and emotional effect.
(13)The device is equipped with an intelligent online learning system that combines virtual and real teaching modes. It can be experienced through account login mode. The audio and video resource section includes animated videos that use modern 3D modeling methods. The animated videos are accompanied by full process voice explanations, achieving a vivid and emotional effect.