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Job Summary:
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| Job Type: |
Project |
| Budget: |
$ 100-250 |
| Required
Skills: |
,
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| Attached
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(None) |
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| Status: |
Work Under Development
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Buyer Summary:
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| Username: |
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| Feedback Score: |
        
11
reviews
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| Award Reliability: |
20 posted 14 paid |
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| Location: |
Ogunquit, United States
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| Member Since: |
January 27, 2008 |
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| Invited Users: |
There are no invited users
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Description
Modification to program which is downloadable from http://www.funktool.com/index.php?id=2
1st) have you downloaded the vertical vessel volume program on www.funktool.com? Drawing of the vessel is done. The drawing of the impellers is done. 2nd) I need to have the agitator drawing be done on a separate floating dialog. In addition to the impellers, I would like to draw the shaft (depending on diameter) and the steady bearing. I had programed this once, I will check for the code. 3rd) The scheme for scaling of the drawing used to dc. to dialog directly, now the code dc to memory instead, but still with the scaling. I would like to have that changed and then scale the dc. memory to the area I need to either display or put on the excel spreadsheet. Most of the code is found in void CVesselVolCalcDlg::OnHScroll(UINT nSBCode, UINT nPos, CScrollBar* pScrollBar) // this is the scaling part which should be done more elegantly in cd. mem int rectx1=410; int recty1=700; int rectx2=920; int recty2=200; int scale;// = int(50000/(hges+m_nNozzleHgt)*0.8); int scaley= int(45000/(hges+m_nNozzleHgt)*0.8); int scalex= int(50000/(d1)*0.5); if (scaley<scalex) scale = scaley; else scale= scalex; so then whenever I draw something I need to use this for any line circle and so on dc.line to = (whatever) *scale/100) 3rd) after getting rid of the scaling, drawing into the dc. memory should be easier for the next items: drawing heating coils and vessel jackets. This would also be a floating dialog which interactively draws the components. 4th) before I send the code I would like to maintain the right to this code, and the know how. It is not much but I would like to address this. 5th) if you see the web site, I have the agitator and the heating coil as upgrades. I would like to get a solution on how I could install these comonents separately. I would suggest to have the feature downloaded attogether and install a release file for the additional features. The code has a 90 day time at which it requireds a new update
1) Remove these items in the current program red square
Move green rectangle section as shown above 3) add 3 buttons below Process Info called “Agitator” and “Heating coil” and “Heating Jacket”. 4) in the code, the drawing is done in dc. Memory. The scaling needs to be cleaned up since it was based on dc. Into dialog directly 4) The agitator button will do exactly what the red square function does now, only with a floating dialog. In addition a steady bearing will be drawn in at the specified height. And the agitator shaft will be drawn in as per specified diameter. 5) Heating coil will also be a floating dialog drawing in heating coils into the above pictures based on dc memory. 2 Coils can be drawn in. See red dots above to get an idea. Heat exchange surface calculation will be done. Info on how Dialog will look on attached project 6) Heating Jacket will also be a floating dialog drawing in heating jacket into the above pictures based on dc memory. Info on how Dialog will look on attached VC++ project. 7) The green rectangle will be moved as shown above. 8) data from the program including drawing should be inserted into the attached data sheets This would be done by pressing a button. The button would be the print button to be renamed “export to excel”
The calculations are as follows:
Coil program + calculation
Draw coil 1 + coil 2 in the main screen of the VVV program Draw the coils starting from the bottom tangent of the tank Draw the second coil off set from the 1st coil by s/2 + d/2
Maintain the limits on S, d and di as shown in dialog.
H/X area of coil1: double d; // diameter of tube int N1; // # of windings 1; int N2; // # of windings 2; double = length_of_pipe1 = (N1 * 3.14159 * ds); double HX_area_of_coil1 = 3.141 * d * length_of_pipe1; double weight_coil1 = HX_area_of_coil1 * pipethickness;
H/X area of coil2: double = length_of_pipe2 = (N2 * 3.14159 * ds); double HX_area_of_coil2 = 3.141 * d * length_of_pipe2; double weight_coil2 = HX_area_of_coil2 * pipethickness;
double weight_coils= weight_coil2+weight_coil1;
Jacket program (area calculation is done in the main program)
Draw in a jacket top bottom and shell as selected with a gap J as selected.
Area bottom:
Area Top:
Area shell
Weight of shell empty = area bottom * thickness bottom + area shell * thickness shell + area top + thickness top
Weight of shell full = Weight of shell empty + Area shell * J * density liquid
Reminder
You may not start working in this and any request before
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