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Tabs select various functions. Injector design “jets.txt” files can be imported. Intersection of jets on platen. Injector hole pattern. Jet number gets entered automatically by program as you enter the other data. Quick flux calculation for real time feedback. Various ways of
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Tabs select various functions Injector design “jets.txt” files can be imported Intersection of jets on platen Injector hole pattern Jet number gets entered automatically by program as you enter the other data. Quick flux calculation for real time feedback Various ways of transforming data
Results of 2 dimensional calculation Platen can be non-rotated, rotated, or partially rotated
Diameter plot for rotating platen Tweak up and down
Checks for intersection of holes Input hole diameter, plate thickness, and the minimum acceptable clearance
Right clicking on table pops-up a menu for manipulating data To change axes on plots: Highlight value and type in new value. There are also zoom controls These controls autoscale the axes. The lock toggles between autoscale and fixed scale
All of these controls work on the data that Is selected in the table Scale. Useful for adding small Increments of angle on selected jets. Create series. Useful for creating rings of holes or for spirals. Multi-series. Alternates between 2 or 3 different values. Green button selects 2 or 3 values. Randomize order of values in a selection You get one “undo” for any of these transformations
Blue curve is a reference you can save to see if changes are helping or hurting. Changes injector design back to stored design Hide reference Stores current design
When you first start the program you need to calculate the flux curve otherwise it is all zeros. (even though the graph shows a curve to start)
Cartesian and polar plots of the flux distribution from each hole. 2 different models are included in program. Data can be read in from external files. Data should be relative flux vs. angle in degrees.
Efficiency calculation calculates fraction of intercepted flux vs. platen radius.