corrections for tutorial of screw conveyor
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@ -4,10 +4,13 @@
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The problem is to simulate a screw conveyor with a diameter of 0.2 m and a length of 1 m with a variable pitch. It is filled with 10 mm and 9 mm spherical particles. The timestep for integration is 0.00002 s. Particles are inserted from the top of the feeder at a rate of 2800 particles/s. The number composition of large and small particles is 2:1.
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The problem is to simulate a screw conveyor with a diameter of 0.2 m and a length of 1 m with a variable pitch. It is filled with 10 mm and 9 mm spherical particles. The timestep for integration is 0.00002 s. Particles are inserted from the top of the feeder at a rate of 2800 particles/s. The number composition of large and small particles is 2:1.
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<div align="center"><b>
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<div align="center">
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<img src="./screw.jpeg" style="width: 400px;">
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<b>
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A view of the screw conveyor simulation
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A view of the screw conveyor simulation
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</b>
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</b>
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<img src="./screw.jpeg" style="width: 400px;">
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</div>
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</div>
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***
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***
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@ -48,18 +51,16 @@ in <b>settings/geometryDict</b> file
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```C++
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```C++
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motionModel rotatingAxisMotion;
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motionModel rotatingAxisMotion;
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.
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.
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.
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rotatingAxisMotionInfo
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rotatingAxisMotionInfo
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{
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{
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rotAxis
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rotAxis
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{
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{
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p1 (0 0 0.0); // first point for the axis of rotation
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p1 (0 0 0.0); // first point for the axis of rotation
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p2 (0 0 1.0); // second point for the axis of rotation
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p2 (0 0 1.0); // second point for the axis of rotation
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omega 3.14; // rotation speed (rad/s)
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omega 3.14; // rotation speed (rad/s)
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startTime 1; // when t>1 s, rotation starts
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startTime 1; // when t>1 s, rotation starts
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endTime 30; // when t>30 s, rotation stops
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endTime 30; // when t>30 s, rotation stops
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}
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}
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}
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}
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```
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```
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@ -14,11 +14,11 @@ rotatingAxisInfo
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{
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{
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rotAxis
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rotAxis
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{
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{
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p1 (0 0 0.0); // first point for the axis of rotation
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p1 (0 0 0.0); // first point for the axis of rotation
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p2 (0 0 1.0); // second point for the axis of rotation
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p2 (0 0 1.0); // second point for the axis of rotation
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omega 3.14; // rotation speed (rad/s)
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omega 3.14; // rotation speed (rad/s)
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startTime 1;
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startTime 1; // when t>1 s, rotation starts
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endTime 30;
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endTime 30; // when t>30 s, rotation stops
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}
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}
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}
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}
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