1 | #*--------------------------------------------------------------------- |
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2 | * EMSO Model Library (EML) Copyright (C) 2004 - 2007 ALSOC. |
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3 | * |
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4 | * This LIBRARY is free software; you can distribute it and/or modify |
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5 | * it under the therms of the ALSOC FREE LICENSE as available at |
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6 | * http://www.enq.ufrgs.br/alsoc. |
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7 | * |
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8 | * EMSO Copyright (C) 2004 - 2007 ALSOC, original code |
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9 | * from http://www.rps.eng.br Copyright (C) 2002-2004. |
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10 | * All rights reserved. |
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11 | * |
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12 | * EMSO is distributed under the therms of the ALSOC LICENSE as |
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13 | * available at http://www.enq.ufrgs.br/alsoc. |
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14 | * |
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15 | *---------------------------------------------------------------------- |
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16 | * Model for tank volume calculation |
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17 | *---------------------------------------------------------------------- |
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18 | * |
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19 | * Routine to calculate tank volume and level tank volume from |
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20 | * different geometries and orientations. |
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21 | * |
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22 | * Geometry: |
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23 | * * Flat (no head) (default) |
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24 | * * Spherical |
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25 | * |
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26 | * Orientation: |
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27 | * * Vertical (default) |
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28 | * * Horizontal |
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29 | * |
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30 | *---------------------------------------------------------------------- |
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31 | * Author: Rodolfo Rodrigues |
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32 | * $Id$ |
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33 | *--------------------------------------------------------------------*# |
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34 | |
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35 | using "types"; |
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36 | |
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37 | |
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38 | Model vol_tank |
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39 | ATTRIBUTES |
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40 | Pallete = false; |
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41 | Brief = "Routine to calculate tank volume"; |
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42 | Info = " |
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43 | Based in 2 geometry and 2 configurations/orientations |
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44 | |
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45 | == Geometry == |
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46 | * Flat (no head) (default) |
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47 | * Spherical |
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48 | |
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49 | == Orientation == |
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50 | * Vertical (default) |
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51 | * Horizontal |
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52 | "; |
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53 | |
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54 | PARAMETERS |
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55 | pi as positive (Brief="Pi value", Default=3.141593, Symbol="\pi"); |
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56 | Geometry as Switcher (Brief="Tank head type", Valid=["flat","spherical"], Default="flat"); |
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57 | Orientation as Switcher(Brief="Tank orientation", Valid=["vertical","horizontal"], Default="vertical"); |
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58 | |
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59 | VARIABLES |
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60 | V as volume (Brief="Level tank volume"); |
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61 | Vt as volume (Brief="Tank volume"); |
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62 | L as length (Brief="Tank length"); |
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63 | Level as length (Brief="Tank level"); |
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64 | D as length (Brief="Tank diameter"); |
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65 | Across as area (Brief="Tank cross section area"); |
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66 | |
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67 | EQUATIONS |
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68 | "Content volume" |
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69 | V = Across*Level; |
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70 | |
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71 | switch Orientation |
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72 | case "vertical": |
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73 | switch Geometry |
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74 | case "flat": |
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75 | "Tank volume" |
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76 | Vt = pi/4*(D^2)*L; |
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77 | "Level tank volume" |
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78 | V = pi/4*(D^2)*Level; |
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79 | |
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80 | case "spherical": |
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81 | "Tank volume" |
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82 | Vt = pi/6*D^3; |
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83 | "Level tank volume" |
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84 | V = pi/3*Level^2*(3*D/2 - Level); |
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85 | end |
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86 | case "horizontal": |
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87 | switch Geometry |
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88 | case "flat": |
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89 | "Tank volume" |
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90 | Vt = pi/4*(D^2)*L; |
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91 | "Level tank volume" |
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92 | V = ((D^2)*acos((D - 2*Level)/D)/4/'rad' - |
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93 | (D - 2*Level)*sqrt(D*Level - Level^2)/2)*L; |
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94 | |
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95 | case "spherical": |
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96 | "Tank volume" |
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97 | Vt = pi/6*D^3; |
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98 | "Level tank volume" |
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99 | V = pi/3*Level^2*(3*D/2 - Level); |
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100 | end |
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101 | end |
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102 | end |
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