Moving Boundary Manager, Rotational
Moving Boundary Manager, Rotational calculates normalized contact area ratio between concentric cylindrical / ring sector and shape with 1-D rotational angles.
Description
The Moving Boundary Manager, Rotational component is used for calculating normalized contact area ratio between two concentric Cylindrical / Ring Sector and Cylindrical / Ring Shape B components.
This component can take account of 1-D rotational angles connected with 1-D rotational flange.
flange_a is the rotational angle of center of Sector. flange_b is the rotational angle of center of Node[1] in Cylindrical / Ring Shape B.
The order of coefficients of normalized contact area ratio Ac_a and Ac_b output from Real Signal output ports is as follows.
a−b1, ... ,a−bn
The geometry parameters are the following.
Equations
The coefficients of normalized contact area ratio are defined as follows.
Ac_ai=AiA_a 0 ≤ Ac_ai≤1 Ac_bi=AiA_b 0 ≤Ac_bi≤1 nc_Ac_a = 1−∑Ac_ak k=1,..., Nodes_b nc_Ac_bi = 1−Ac_bi
Connections
Name
Modelica ID
flange_a
1-D Rotational angle, flange a side, angle of center of Sector
flange_b
1-D Rotational angle, flange b side, angle of center of node[1] of Shape
Ac_ai
Coefficient of normalized contact area ratio (0 to1) at flange a side
The total number of i is determined by Nodes b
Ac_a[]
Ac_bi
Coefficient of normalized contact area ratio (0 to 1) at flange b side
Ac_b[]
nc_Ac_a
Not contacted area ratio (0 to1) at flange a side
nc_Ac_bi
Not contacted area ratio (0 to1) at flange b side
nc_Ac_b[]
Parameters
Symbol
Default
Units
θ__a
Pi4
rad
Center angle of Sector (≤π)
theta
Ro__a
1
m
Outer radius of the Sector
Ro_a
Ri__a
0.5
Inner radius of the Sector
If Sector is Cylindrical Sector, input 0
Ri_a
Nodes b
4
Number of total nodes of Shape, flange b side
Nodes_b
Ro__b
2
Outer radius of the Cylindrical / Ring shape
Ro_b
Ri__b
0
Inner radius of the Cylindrical / Ring shape
If Shape is Cylindrical Shape, input 0
Ri_b
See Also
Heat Transfer Library Overview
Routing Overview
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