h3. General Program Information
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h5. Inputs Needed to Call the Flocculation Tank Program
h5. Inputs Defined Within the Flocculation Tank Program
*Plant{*}{*}{~}origin{~}*
* x: 0m
* y: 0m
* x: 0m
*EN{*}{*}{~}PipeSpec{~}* = 4
*W{*}{*}{~}InletChannel{~}* = 0.245m
*H{*}{*}{~}InletChannel{~}* = 0.3m
*W{*}{*}{~}FlocChannel{~}* = W{~}Sed~/2
*L{*}{*}{~}Sed{~}* = 3.021m
*W{*}{*}{~}Sed{~}* = 1m
*H{*}{*}{~}Sed{~}* = 1.1m
*N{*}{*}{~}FlocChannels{~}* = 2
*T{*}{*}{~}PlantWall{~}* = 0.15m
*T{*}{*}{~}Mp{~}* = 0.15m
*N{*}{*}{~}SedTanks{~}* = 3
*Amp{*}{*}{~}FlocBaffle{~}* = 0.5in
*Per{*}{*}{~}FlocBaffle{~}* = 8.5
*N{*}{*}{~}Baffle{~}* = 1
*X{*}{*}{~}FlocBaffle{~}* = 4in
*T{*}{*}{~}FlocBaffle{~}* = 4mm
*AN{*}{*}{~}FlocBaffle{~}* = 90deg
*N{*}{*}{~}FlocBaffleCol{~}* = 1
*Y{*}{*}{~}FlocBaffle{~}* = 7cm
*W{*}{*}{~}FlocPort{~}* = 0.379m
*L{*}{*}{~}Floc{~}* = (LSed)*(N{~}FlocChannels~)
*H{*}{*}{~}Floc{~}* = H{~}Sed~
*H{*}{*}{~}FlocPort{~}* = 0.75m
*totalfloc{*}{*}{~}dim{~}* =
* x: L{~}Floc~/N{~}FlocChannels~
* y: (N{~}FlocChannels~\*W{~}FlocChannel~) + ((N{~}FlocChannels~ \- 1)*T{~}PlantWall~)
* z: H{~}Floc~
*wall{*}{*}{~}dim{~}* =
* x: totalfloc{~}dim0~ + (2T{~}PlantWall~)
* y: T{~}PlantWall~
* z: totalfloc{~}dim2~
*flocport{*}{*}{~}dim{~}* is composed of a for loop with the range 0 to (N{~}FlocChannels~ \- 2). While in the for loop:
*flocport{*}{*}{~}dim0,i{~}* =
* x: W{~}FlocPort~
* y: T{~}PlantWall~
* z: H{~}FlocPort~
*channelopening{*}{*}{~}dim{~}* =
* x: W{~}InletChannel~
* y: T{~}PlantWall~
* z: H{~}InletChannel~
*floc{*}{*}{~}origin{~}* =
* x: Plant{~}Origin0~
* y: Plant{~}Origin1~ + N{~}SedTanks~(W{~}Sed~ + T{~}PlantWall~)
* z: Plant{~}Origin2~
\*wall{~}origin~ is composed of a for loop with the range 0 to (N{~}FlocChannels~ \- 2). While in the for loop:
*wall{*}{*}{~}origin0,i{~}* =
* x: Plant{~}Origin0~ \- totalfloc{~}dim0~ \- T{~}PlantWall~
* y: Plant{~}Origin1~ + N{~}SedTanks~(W{~}Sed~ + T{~}PlantWall~) + (W{~}FlocChannel~\*(1 + i)) + (T{~}PlantWall~\*i)
* z: Plant{~}Origin2~
*flocport{*}{*}{~}origin{~}* is composed of a for loop with an if statement embedded in the program scrip. The range of the for loop is from 0 to (N{~}FlocChannels~ \- 2)
If round(round(i/2) - (i/2)) = 0 then:
*flocport{*}{*}{~}origin0,i{~}* =
* x: Plant{~}Origin0~ \- W{~}FlocPort~
* y: Plant{~}Origin1~ + N{~}SedTanks(W{~}Sed\~ + T{~}PlantWall~) + (W{~}FlocChannel~\*(1 + i))
* z: Plant{~}Origin2~
If round(round(i/2) - (i/2)) = 1
*flocport{*}{*}{~}origin0,i{~}* =
* x: Plant{~}Origin0~ \- totalfloc{~}dim0~
* y: Plant{~}Origin1~ + N{~}SedTanks(W{~}Sed\~ + T{~}PlantWall~) + (W{~}FlocChannel~\*(1 + i))
* z: Plant{~}Origin2~
\*channelopening{~}origin~ =
* x: floc{~}origin0~ \- totalfloc{~}dim0~
* y: floc{~}origin1~ \- T{~}PlantWall~
* z: floc{~}origin2~ + totalfloc{~}dim2~ \- H{~}InletChannel~
\*Y{~}FlocBaffles~ is composed of a for loop with the range 0 to (N{~}FlocChannels~ \- 1). While in the for loop:
Y{~}FlocBaffles0,j~ = Plant{~}Origin1~ + (N{~}SedTanks*(W{~}Sed\~ + T{~}PlantWall~)) + ((N{~}FlocChannels~ \- j - 1)*(W{~}FlocChannel~ + T{~}PlantWall~))
h3. Technical Program Outline
h5. Floctanktankscript
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*layer1* \- [Layer{~}new~|AutoCAD Basics Layer] creates a floctank layer that is dark grey.
layer1 <-\- layer{~}new~("floctank",dkgrey)
*Tank1* <-\- creates a tank. See [Tank Help|AutoCAD Tank Program] for details on the tank function.
Tank1 <-\- Tank(floc{~}origin~, totalfloc{~}dim~, T{~}PlantWall~)
floc{~}origin~ \-
* x: Plant{~}Origin0~
* y: Plant{~}Origin1~ + N{~}SedTanks~(W{~}Sed~ + T{~}PlantWall~)
* z: Plant{~}Origin2~
totalfloc{~}dim~ \-
* x: L{~}Floc~/N{~}FlocChannels~
* y: (N{~}FlocChannels~\*W{~}FlocChannel~) + ((N{~}FlocChannels~ \- 1)*T{~}PlantWall~)
* z: H{~}Floc~
T{~}PlantWall~ = 0.15m
*layerset1* \- [Layer{~}set~|AutoCAD Basics Layer] selects the layer that the user is currently working on.
*layerset1* <\- layer{~}set~("0")
*layerfreeze1* \- [Layer{~}freeze~|AutoCAD Basics Layer] freezes the selected layer.
*layerfreeze1* <\- layer{~}freeze~("floctank")
h5. Floctankwallscript
*local* \- [Layer{~}new~|AutoCAD Basics Layer] creates a new layer "floctankwall" that is dark grey.
*local* <\- layer{~}new~("floctankwall",dkgrey)
local enters a for loop for the range 0 to (N{~}flocChannels~ \- 2).
*local* <\- stack(local,box(wall{~}origin0,i~,wall{~}origin0,i~ + wall{~}dim~),box(flocport{~}origin0,i~,flocport{~}origin0,i~,flocport{~}origin0,i~ + flocport{~}dim0,i~)subtractD(wall{~}origin0,i~,flocport{~}origin0,i~))
*layerset2* \- [Layer{~}set~|AutoCAD Basics Layer] selects the layer that the user is currently working in.
*layerset2* <\- layer{~}set~("0")
*layerthaw2* \- [Layer{~}thaw~|AutoCAD Basics Layer]unlocks the layer "floctank" so that it can be edited.
*layerthaw2* <\- layer{~}thaw~("floctank")
*bigunion1* \- [Union{~}allA~|AutoCAD Basics Unions] selects all of the objects on a page and joins them together to form a single object.
*bigunion1* <\- union{~}allA~
*layerfreeze2* \- [Layer{~}freeze~|AutoCAD Basics Layer] locks the selected layer "floctank" so that no edits can be made.
*layerfreeze2* <\- layer{~}freeze~("floctankwall")
*local* <\- stack(local,layerset2,layerthaw2,bigunion1,layerset2,layerfreeze2)
h5. Floctankchannelopeningscript
*layer3* \- [Layer{~}new~|AutoCAD Basics Layer] creates a new, dark grey, layer "flocchannelhole."
*layer3* <\- layer{~}new~("flocchannelhole",dkgrey)
*box3* \- [Box|AutoCAD Basics Box] takes the input of two points to create a 3D rectangular box.
*box3* <\- box(channelopening{~}origin~,channelopening{~}origin~ + channelopening{~}dim~)
*channelopening{*}{*}{~}origin{~}* =
* x: floc{~}origin0~ \- totalfloc{~}dim0~
* y: floc{~}origin1~ \- T{~}PlantWall~
* z: floc{~}origin2~ + totalfloc{~}dim2~ \- H{~}InletChannel~
*channelopening{*}{*}{~}origin{~}* *+ channelopenining{*}{*}{~}dim{~}*
* x: floc{~}origin0~ \- totalfloc{~}dim0~ + W{~}InletChannel~
* y: floc{~}origin1~
* z: floc{~}origin2~ + totalfloc{~}dim2~
*layerset3* \- [Layer{~}set~|AutoCAD Basics Layer] selects the layer that the user is currently working in.
*layerset3* <\- layer{~}set~("0")
*layerthaw3* \- [Layer{~}thaw~|AutoCAD Basics Layer]unlocks the layer "floctankwall" so that it can be edited.
*layerthaw3* <\- layer{~}thaw~("floctankwall")
*viewtop* \- [Viewtop1|AutoCAD Basics Views] rotates the object so that it is viewed from the top.
*viewtop* <\- viewtop1
*subtract3* \- [SubtractD|AutoCAD Basics Subtractions] uses two points to identify which object to subtract from.
*p1* = floc{~}origin~
* x: Plant{~}Origin0~
* y: Plant{~}Origin1~ + N{~}SedTanks~(W{~}Sed~ + T{~}PlantWall~)
* z: Plant{~}Origin2~
*p2* =
* x: floc{~}origin0~ - totalfloc{~}dim0~
* y: floc{~}origin1~ - T{~}PlantWall~
* z: floc{~}origin2~ + totalfloc{~}dim2~ - H{~}InletChannel~
*bigunion* - [Union{~}allA~|AutoCAD Basics Unions] selects all of the objects on a page and joins them together to form a single object.
*bigunion* <- union{~}allA~
*layerfreeze3* - [Layer{~}freeze~|AutoCAD Basics Layer] locks the selected layer "floctankwall" so that no edits can be made.
*layerfreeze3* <- layer{~}freeze~("floctankwall")
h5. Floctankbafflescript
*local* - [Layer{~}new~|AutoCAD Basics Layer] creates a new light purple layer "baffle."
*local* <- layer{~}new~("baffle",ltpurple)
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*box1* \- creates a box
box1 <-\- box(wall{~}origin~, )
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*box2* \-
box2 <-\- box(flochole{~}origin~, )
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*subtract0* \-
subtract0 <-\- subtractD( , )
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*union1* \-
union1 <-\- unionC( , )
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*box3*\-
box3 <-\- box( , )
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*subtract1* \-
subtract1 <-\- subtractD( , )
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*bigunion* \-
bigunion <-\- union{~}allA~
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*layerset* \-
layerset <-\- layer{~}set("0")
*layerfreeze1* \-
layer{~}freeze~("floctank")
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