Simulation method of temperature field of submersible motor based on ansys Workbench
A technology of submersible motors and simulation methods, applied in the direction of electrical digital data processing, special data processing applications, instruments, etc., can solve problems such as overheating protection and inability to monitor real-time submersible motors
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specific Embodiment approach 1
[0041] Specific implementation mode one: the following combination figure 1 Describe this embodiment, the temperature field simulation method of submersible motor based on AnsysWorkbench described in this embodiment, it comprises the following steps:
[0042] Step 1: Carry out three-dimensional modeling on the stator and rotor of the submersible motor in the SolidWorks system to obtain the model of the submersible motor;
[0043] Step 2: Import the submersible motor model into the AnsysWorkbench system, and use the AnsysWorkbench system to automatically mesh the submersible motor model;
[0044] Step 3: Analyze the temperature field of the submersible motor model after automatic meshing, and use the thermodynamic differential equation of the submersible motor and the boundary conditions of the thermodynamic differential equation to determine the temperature field of the solution domain of the submersible motor model. is the temperature field generated by convection heat dissi...
specific Embodiment approach 2
[0049] Specific embodiment two: this embodiment further explains embodiment one, adopts the thermodynamic differential equation of submersible motor and the boundary condition of thermodynamic differential equation in the step 3 described in this embodiment, determines the specific temperature field of the submersible motor model solution domain The method is:
[0050] The thermodynamic differential equation of the submersible motor is:
[0051] ∂ T ∂ τ = a ( ∂ 2 T ∂ x 2 + ∂ 2 T ∂ y 2 ...
specific Embodiment approach 3
[0070] Specific implementation mode three: the following combination figure 2 and image 3 Illustrate this embodiment, this embodiment will further explain embodiment two, the concrete method that obtains the temperature field distribution nephogram of stator, rotor and guide strip of submersible motor under different loads in step four of this embodiment is: according to submersible The thermodynamic differential equation and thermodynamic differential equation boundary conditions of the oil motor determine the heat generation rate q per unit volume of the submersible motor v ;
[0071] Then determine the copper loss P of the rotor winding according to the stator resistance, rotor resistance, rated operating current and rated operating voltage of the submersible motor r_copper :
[0072] p r _ copper = 3 I s ...
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