infoswmm theory
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InfoSWMM 2D, Suite, SWMMLive,
InfoSWMM Suite for Naperville, USA
Innovyze and InfoSWMM
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Table of ContentsWhat are We Trying to Do Here? 3Where a reWe Trying? 4
W he re a re M o st o f t he P eo pl e i n th e W or l d? 5Wewant toHe lp Peoplewith Water,Sewer and Stormwater Problems
Where are the Demo !iles? "Powerpoint !ile is #arge b$t %rgani&ed bySe'tions (
My History )* nt er a' ti on w it h W al li ng fo rd a nd D H* +
-endors .sso'iated wi th SW MM5 ++
* nf oS W MM - ersi on s + /H/%MapSWMM -ersions +3
0 lo g, W or dP re ss , Tw it te r an d # in 1e di n + 4.sia -isitors +5
.fri'a -isitors +2 $r op ea n -i si to rs + "
So$th .meri'an-isitors +(.$stralian -isitors +)
orth .meri'an -isitors /
*n noy &e Tw it ter /+*nfoSWMM, SW MM #ie %be'ts /3
*nfoSWMM Time Steps /5Most of What o$ need to 1now .bo$t the Men$s /
*n foSWMM in .r' Map /".r' Map26tensions /(
.r' MapToolbars /)*nfoSWMM 7ontrol 7enter3+
*nfoSWMM !ile Str$'t$re 3/*nfoSWMM !ile Str$'t$re 33
* nf oS W MM T il de ! il e 3 4
.r' Map0a'1wards 7ompatibility 35How To !i6 a 7orr$pt .r' Map 3
Data Sharing *n *nfoSW MM 3"How to 7reate . 8eoDatabase 3(
Pr o9 e' t %er i ew 4/* nf oS WM M P ro 9e 't S to ra ge S tr $' t$ re 4 3
P ro 9e 't 7 o m po ne nt s 4 4P ro 9e 't 7 o m po ne nt s 4 5
:$n'tions 4Storages 4"7ond$its 4(
P$mps 4)Weirs 5
%rifi'es 5+%$tlets 5/
Diiders 53%$tfall 54
S$b'at'hments 55;aingage 5
Model Sol$tion and ;es$lts 5"
*nfoSWMM Men$ %rgani&ation 5(S 'e na ri os
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Wat are We Tryin! to Do "ere#
InfoSWMM Slide $ 3 Introdu%tion"o&e
'(a&ple) Tan*s a lot tat doeselp +++ our -ebsite su!!ests te
-et -eater %o&ponent of
InfoSe-er %an size pipes usin!
synteti% and unit ydro!raps+
Tis is e(a%tly -at -e -ould
need as .entley stor&CAD %an
only use rational &etod for
desi!n so -e ave to t-ea* ti&e
of %on%entration to !et te pea*runoff to sort of &at%+
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Were are We Tryin!#
InfoSWMM Slide $ 4 Introdu%tion"o&e
'(a&ple) * wo$ld li1e to 1now what toolsmembers of the gro$p $se to model
stormwater and eal$ate the $se of
different 0MPsF 0ased on yo$r
e6perien'e whi'h are more $sef$l and
why? We wo$ld li1e to sele't one main
tool for o$r wor1 in the 'ompany to
eal$ate poll$tant loadings, land $se,
hydrology, remoal effi'ien'ies, et'F
We hae $sed mostly SWMM and ery
little Hydro7.DF * 1now MAS*7 is
pop$lar aro$nd .$stralia, SWMM in the
AS, Mi'rodrainage in the AE, et'F Herein Spain SWMM is starting to be
pop$larF
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We -ant to "elp /eople -it
Water, Se-er and Stor&-ater /roble&s
InfoSWMM Slide $ Introdu%tion"o&e
G Wat are te%o&&on features
bet-een ICM,
IWCS, IWWS et%
and te USA
/rodu%ts#G We sare a
%o&&on istoryG "o- to -e %onvert
Mi*e Urban and
oter produ%ts toInnovyze /rodu%ts
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Were are te De&o 3iles#
InfoSWMM Slide $ " Introdu%tion"o&e
seraph$sersDi'1insonAEDemo*nfoSWMM
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/o-erpoint 3ile is Lar!e but 4r!anized by
Se%tions
InfoSWMM Slide $ ( Introdu%tion"o&e
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My "istory
InfoSWMM Slide $ ) Introdu%tion"o&e
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Intera%tion -it Wallin!ford and D"I
InfoSWMM Slide $ + Introdu%tion"o&e
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Innovyze InfoSWMM 5ersions
InfoSWMM Slide $ +/ Introdu%tion"o&e
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Innovyze "24MapSWMM 5ersions
InfoSWMM Slide $ +3 Introdu%tion"o&e
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.lo!, Word/ress, T-itter and Lin*edin
InfoSWMM Slide $ +4 Introdu%tion"o&e
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3eatures of InfoSWMM
InfoSWMM Slide $ +5 Introdu%tion"o&e
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Asia 5isitors
InfoSWMM Slide $ + Introdu%tion"o&e
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Afri%a 5isitors
InfoSWMM Slide $ +" Introdu%tion"o&e
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'uropean 5isitors
InfoSWMM Slide $ +( Introdu%tion"o&e
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Sout A&eri%an 5isitors
InfoSWMM Slide $ +) Introdu%tion"o&e
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Australian 5isitors
InfoSWMM Slide $ / Introdu%tion"o&e
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Nort A&eri%an 5isitors
InfoSWMM Slide $ /+ Introdu%tion"o&e
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Calibration Concepts
7al'$lationSystem
Theoreti'alSystem
%bserationalSystem
St$dy
ThisFF
To 8ain
*nsights on
ThisFF
To Ma1e
Sense of
thisFF
InfoSWMM Slide $ /3 Introdu%tion"o&e
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T*T#2
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P%##AT.T
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T.8
P;%!*#2 M.P
#*DJ7%T;%#
#*DJAS.82
InfoSWMM, SWMM Live 4be%ts
InfoSWMM Slide $ /4 Introdu%tion"o&e
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*nfoSWMM 2D$ses SWMM
1 %b9e'ts to 'onne't the +D
etwor1 to the /D MeshF
. +D ode if it has a flood
type of /D is a$tomati'ally
'onne'ted to a SWMM 5
!i6ed %$tfall ia a 0ottom
%$tlet %rifi'eF The
7onne'tion to the /D Mesh
is from the %$tfallF
InfoSWMM Slide $ /5 Introdu%tion"o&e
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InfoSWMM Ti&e Steps
InfoSWMM Slide $ / Introdu%tion"o&e
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InfoSWMM6SWMM1 Ti&e Steps,
Iterations, Toleran%e
InfoSWMM Slide $ /" Introdu%tion"o&e
InfoSWMM
SWMM1
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;$n the Model
C$ery ;eport
Most of Wat ou need to *no- About te
Menus
InfoSWMM Slide $ /( Introdu%tion"o&e
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InfoSWMM in Ar% Map InfoSWMM is an '(tension in Ar% Map as are
InfoWater, InfoSur!e, InfoMaster and InfoSe-er+
Innovyze supports Ar% Map 7+8, 9:, 9:+9 and 9:+2;
InfoSWMM Slide $ /) Ar% Map .asi%s"o&e
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Ar% Map '(tensions Innovyze Ar% Map
/rodu%ts are '(tensions
in Ar% Map
If te '(tension is turned
off te User %annotinitialize is or er Map
InfoSWMM Slide $ 3 Ar% Map .asi%s"o&e
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Ar% Map Toolbars Ar% Map Toolbars
Use te Toolbars to so-
InfoSWMM6Se-er6Water6
Master Tools
InfoSWMM Slide $ 3+ Ar% Map .asi%s"o&e
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InfoSWMM Windo-
InfoSWMM Slide $ 3/ Ar% Map .asi%s"o&e
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InfoSWMM Control Center Create te InfoSWMM Map by %li%*in! on Initialize
If you ave proble&s ten
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InfoSWMM 3ile Stru%ture Info /rodu%ts in Ar% Map ave a M=D file and T-o
Sub Dire%tories M=D is te Ar% Map 3ile ISD., IWD. or I'D. are te D.3 files %ontainin!
te &odel data
InfoSWMM Slide $ 34 InfoSWMM .asi%s"o&e
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InfoSWMM 3ile Stru%ture Info /rodu%ts in Ar% Map ave a M=D file and T-o
Sub Dire%tories M=D is te Ar% Map 3ile ISD., IWD. or I'D. are te D.3 files %ontainin!
te &odel data
InfoSWMM Slide $ 35 InfoSWMM .asi%s"o&e
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InfoSWMM Tilde 3ile 'ditin! 3ile tat Lo%*s te 'ditin! of a /ro>e%t
InfoSWMM Slide $ 3 InfoSWMM .asi%s"o&e
K8eneralL-irt$al D0T;A2
2diting To1end5'/f//e
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Ar% Map .a%*-ards Co&patibility
InfoSWMM Slide $ 3" InfoSWMM .asi%s"o&e
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"o- To 3i( a Corrupt Ar% Map
InfoSWMM Slide $ 3( InfoSWMM .asi%s"o&e
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Data Sarin! In InfoSWMM
InfoSWMM Slide $ 3) InfoSWMM .asi%s"o&e
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InfoSWMM S%enario0s, 3a%ility Mana!er
and DataSets
InfoSWMM Slide $ 4+ InfoSWMM .asi%s"o&e
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InfoSWMM/H20Map SWMMConnection to SWMM 5
*nfoSWMM=H/%Map SWMM
SWMM5F+F2ngine
*mport of
5FF+To5F+
SWMM5!iles
26port of
!iles toSWMM5F+FO
SWMM 57alibratio
n !iles
InfoSWMM Slide $ 4/ InfoSWMM .asi%s"o&e
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InfoSWMM Connectionto HEC-RAS
*nfoSWMMTranse'ts
H27
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InfoSWMM CSS
InfoSWMM Slide $ 44 InfoSWMM .asi%s"o&e
Sele't a single or gro$p of storage nodes
7onfig$re and ;$n .nalysis
;eiew=2dit ;es$lts
Sae res$lts
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/ro>e%t 4vervie-
2a'h pro9e't 'ontains etwor1 map
etwor1 'omponent attrib$tes
Modeling parameters
Model sol$tion and res$lts
Model s'enarios
.dditional elements
INfoSWMM /ro>e%tInfoSWMM Slide $ 45"o&e
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InfoSWMM /ro>e%t Stora!e Stru%ture
etwor1 s'hemati' Stored as FMID file
Database tables and modeling files F*SD0
%ne dire'tory 'ontaining model res$lts F%AT folder 'reated after a s$''essf$l sim$lation r$n
INfoSWMM /ro>e%tInfoSWMM Slide $ 4"o&e
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/ro>e%t Co&ponents
*foSWMM Pro9e'tInfoSWMM Slide $ 4""o&e
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@ ti
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@un%tions
;epresent flow into the systemfrom S$b'at'hments
26ternal or DW!
;D**
Pla'ed where lin1s interse't
7an sere as storages d$ring
s$r'harge 'onditions Ased as 0MPBs for poll$tant
remoal
INfoSWMM /ro>e%tInfoSWMM Slide $ 4)"o&e
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Stora!es
;epresent detention=retention ponds,la1es, or $ndergro$nd str$'t$res
7an represent the wet well portion of
a lift station
%$tflow 'ontrolled by P$mp
;ating 7$re
%rifi'e
Weir
7an re'eie inflows
7an a't as 0MPBs
INfoSWMM /ro>e%tInfoSWMM Slide $ 5"o&e
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Conduits
7oney water between nodes
May be drawn in parallel
Dire'tion is 'riti'al
May 'ross witho$t 'onne'ting
M$st hae a 9$n'tion, storage,
diider, or an o$tfall at its end points
%er / shapes aailable
INfoSWMM /ro>e%tInfoSWMM Slide $ 5+"o&e
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/u&ps
;aise the hydra$li' head of thewater
!low from $pstream storage@ to
downstream node
Aser 'an 'ontrol p$mp stat$s with
operational 'ontrols Simple or
;eale%tInfoSWMM Slide $ 5/"o&e
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Weirs
7ontrol dis'harge from storages Diert flow from 'hannels or nodes
7ontrol flow in 'hannels
Aser 'an 'ontrol weir settings withoperational 'ontrols Simple or ;eale%tInfoSWMM Slide $ 53"o&e
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4rifi%es
7ontrol dis'harge from storages Diert flow from pipes or nodes
;e'tang$lar or 'ir'$lar shapes
Side or bottom orientation
Aser 'an 'ontrol orifi'e settings
with operational 'ontrols Simple
or ;eale%tInfoSWMM Slide $ 54"o&e
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4utlets
7ontrol the release rate fromstorages
!$n'tional > linear head
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Dividers
Diert flow to one spe'ified lin1
!low dierted with one of fo$r
relationships 7$toff
%erflow Tab$lar
Weir
Diiders may re'eie inflows and a't
as a 0MP Do %T $se for Dynami' Wae
.nalysis
INfoSWMM /ro>e%tInfoSWMM Slide $ 5"o&e
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4utfall
Points where flow leaes the system 0o$ndary 'onditions d$ring dynami'
wae sim$lations !ree
ormal !i6ed
Tidal
Time Series
%$tfalls may re'eie inflows and a'tas a 0MP
INfoSWMM /ro>e%tInfoSWMM Slide $ 5""o&e
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Sub%at%&ents
. s$rfa'e area that drains to onepoint
Determines rainfall sF r$noff on
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e%tInfoSWMM Slide $ 5)"o&e
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Model Solution and e%tInfoSWMM Slide $ "o&e
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InfoSWMM Menu 4r!anization
*foSWMM Pro9e't
Pro9e't Men$
2dit Men$
S'enario Men$
26'hange Men$
Main Men$-iew Men$
Tools Men$
Atilities Men$
Help Men$
InfoSWMM Slide $ +"o&e
S%enarios /urpose
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S%enarios $ /urpose 7ompare alternaties
5, +, 5, and + year rainfall eents
Dynami' wae sF 1inemati' wae
7ontrol settings
Storage si&ing
%erflow laterals
Deelopments Maintain data integrity for ea'h alternatie
7hoose the feat$res that will be modeled for ea'h
s'enario
InfoSWMM Slide $ /"o&e INfoSWMM /ro>e%t
C i S i
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Co&parin! S%enarios
*nheritan'e Details 7ompare Datasets
Dataset *D
Tab$lar Data
InfoSWMM Slide $ 3"o&e INfoSWMM /ro>e%t
St 5 t S l ti f 9D
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InfoSWMM Slide $ 4"o&e " and "
St 5enant Solution for 9D
St 5 t S l ti f 9D
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InfoSWMM Slide $ 5"o&e " and "
St 5enant Solution for 9D
I f SWMM6SWMM1 5 i bl Ti St
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InfoSWMM Slide $ "o&e " and "
InfoSWMM6SWMM1 5ariable Ti&e Step
/i d U d l ti " d li
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InfoSWMM Slide $ ""o&e " and "
/i%ard Underrela(ation, "ydrauli%s
Start ofIteration
Repeat
IterationUntilConverge
or t!ere are20 Iterations
InfoSWMM an "ro#e $
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InfoSWMM an "ro#e $
What is the!ro$de $mber
of the #in1
!ro$de $mberQ F5
;H% +F
!ro$de $mberbetween F5
and +F
;H% / +
$mber@
!ro$de $mberR +F
;H% F
H+ R H/ , ot!$ll, Some
!low;H% +F
" and "
I f SWMM 4b t
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InfoSWMM 4be%ts
InfoSWMM Slide $ )"o&e " and "
InfoSWMM Nodes and Lin*s
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InfoSWMM Nodes and Lin*s
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InfoSWMM "looe %oe
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InfoSWMM "looe %oe
!lood
ed ifPondi
ng.llow
ed
S$r'harged
on S$r'harged
;im 2leation
2leation of Highest
7onne'ting #in1
7rown
ode *nert
2leation
InfoSWMM Slide $ "/"o&e " and "
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InfoSWMM 4ter Lin*s
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InfoSWMM 4ter Lin*s
InfoSWMM Slide $ "4"o&e " and "
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InfoSWMM Lin* Sapes
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InfoSWMM Lin* Sapes
InfoSWMM Slide $ ""o&e " and "
InfoSWMM Lin* Solution /oints
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InfoSWMM Lin* Solution /oints
InfoSWMM Slide $ """o&e " and "
InfoSWMM Node Area
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InfoSWMM Node Area
InfoSWMM Slide $ "("o&e " and "
InfoSWMM Nor&al 3lo-
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Depth
7ross Se'tional .r
Hydra$li' ;adi$s
Do-nstrea& 9
Depth
7ross Se'tional .r
Hydra$li' ;adi$s
Midpoint /
7ross Se'tionalHydra$li' ;adi
Apstream 8
InfoSWMM Nor&al 3lo-
InfoSWMM Slide $ ")"o&e " and "
InfoSWMM 3i(ed Losses
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InfoSWMM 3i(ed Losses
InfoSWMM Slide $ ("o&e " and "
InfoSWMM 3i(ed Losses
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InfoSWMM 3i(ed Losses
InfoSWMM Slide $ (+"o&e " and "
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Lo- Dept
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&
Wet Well P$mp TypeP$mp7$re
Press$reode
!or'e Main!or'e Main
System
InfoSWMM Slide $ (3"o&e " and "
InoSWMM "orce Main
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!or'e Main
#in1 is !$ll
"WDC+ dt s0ottom F(5/
= ;mid+F+"
DWDC+ dt f s0ottom =
;mid
#in1 is ot !$ll DC+ dt ;f NN= ;wtd+F3333
ApstreamDepth RMa6im$m
Depth
DownstreamDepth RMa6im$m
Depth
#in1 *s !$ll
InfoSWMM Slide $ (4"o&e " and "
InfoSWMM Controls
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4b>e%ts
Node
Lin*
/u&p
Weir
4rifi%e
4utlet
Si&ulation
Attributes
Dept
"ead
Inflo-
3lo-
Status
Settin!
Ti&e
Date
Clo%*ti&e
Day
Mont
Modulated
Controls
/ID
Curve
Ti&eSeries
5alue
Mod$lated p$mp 'ontrol
26ample ;$le
;A#2 ;+
*! %D2 / D2PTH R
TH2 PAMP W/5 S2TT*8
Time Series 7/5
InfoSWMM Slide $ (5"o&e " and "
(#'p )arget Setting
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ew P$mp !low
*f ew Target QR Setting
7ontrol ;$les 2al$ated for ew Target
Set Target
2al$ate %n and %ff ;$les
Start of 2a'h Time StepTarget Setting
Setting
Setting R and Depth Q
%ff Depth
Target Setting
2al$ate7ontrol based
on Priority
Setting Target
.'tionO
!lowSetting
Setting and Depth R
%n Depth
Target Setting +
2al$ate7ontrol based
on Priority
Setting Target
.'tionO
!lowSetting
InfoSWMM Slide $ ("o&e " and "
InfoSWMM R#le I*
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Tolerance = 0.0001Convert time step
from days to minutes
Determine relativeerror in achieving
controller set point
e0 = SetPoint -ControlValue
if SetPoint !=0.0 " e0 =e0#SetPoint
e0 = e0#ControlValue
$eset previouserrors to 0 ifcontroller gets
stuc%
&se the recursiveform of the P'D
controller e(uationto determine the
ne) setting for thecontrolled lin%
p = e0 - a-*e1"if a-*%i == 0.0 "
i = 0.0else i = e0 + dt #
a-*%i
d = a-*%d + e0 -,.0+a-*e1 a-*e," #
dt
update = a-*%p + p
i d"
if fasupdate" /tolerance " update =
0.0
setting = in%a-*lin%2.targetSetting
update
Update previous
errors
a-*e, = a-*e1 a-*e1 = e0
Check that newsetting lies withinfeasible limits
if ( setting < 0.0 )setting = 0.0
if (Linka!"link#.t$pe %= &U'& setting " .0 )
setting = .0
*eturn setting
InfoSWMM Slide $ (("o&e " and "
InfoSWMM+ Processes
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Dry Weather;$noff;D** !low26ternal *nflow*nitial 7onditions8ro$nd waterStorage #osses
InfoSWMM Slide $ ()"o&e " and "
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nfiltrati
on
Evaporat
ion
Runoff
Depth
Depressi
on
Storage
Roughne
ss
Slope
Width
Alpha =
Width/Ar
ea*
Slope^1/
2 / n
Pervi
ous
Evaporat
ion
Runoff
Depth
Depressi
on
Storage
Roughne
ss
Slope
Width
Alpha =
Width/Ar
ea*
Slope^1/
2 / n
per
vious
!/DS
Evaporat
ion
Runoff
Depth
Roughne
ss
Slope
Width
Alpha =
Width/Ar
ea*
Slope^1/
2 / n
per
vious
!/o
DS
InfoSWMM Slide $ )"o&e " and "
I* Co'bination of a&ers
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" and "
I* (rocess Co'ponents
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Drain;
Stora!e;
Soil;
/ave&ent;
Surfa%e;
LIDTypeID
. #*D Pro'ess 'onsists of fie str$'t$red 'omponents or layers
+F Drain
/F Storage3F Soil
4F Paement
5F S$rfa'e
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SWMM5 H.*R.
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H&ra#lics fro' Mo#se
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H&ra#lics fro' Mo#se
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Creatin! an InfoSWMM Model
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Creatin! an InfoSWMM Model
Pro'ed$re .dd 8*S Data to an 2mpty Map
*nitiali&e Pro9e't
Set model options
Set preferen'es and defa$lt al$es
*mport networ1 'omponents
InfoSWMM Slide $ ++"o&e Creatin! a Net-o*
Creatin! an InfoSWMM /ro>e%t
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7reate a new 2S;* .r'Map Do'$ment file then .dd Data
*nitiali&e the Pro9e't Set the spatial referen'e when prompted
The modeling database and feat$re 'lasses are 'reated
Sae the pro9e't
! >
InfoSWMM Slide $ +/"o&e Creatin! a Net-o*
Settin! .asi% Model 4ptions
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%pen the 0.S2 Model %ptions
8eneral Model %ptions !low Anits
*nfiltration Model
;$noff Model
;o$ting Method
InfoSWMM Slide $ +3"o&e Creatin! a Net-o*
Settin! /referen%es and Default 5alues
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The preferen'es dialog %peration Settings
Display Settings
Sele'tion Settings
#abeling
*D and Des'ription
Defa$lt Symbol Si&es
InfoSWMM Slide $ +4"o&e Creatin! a Net-o*
InfoSWMM $ I&portin! 3eatures fro& ?IS $ ?IS ?ate-ay
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p ! y
26'hange *nformation with 8*SData So$r'es Shapefiles
!eat$re 7lasses
2nterprise 8eodatabases ia SD2@
;efresh Map after *mport
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Auto&ated Start6'nd Node Assi!n&ent
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Auto&ated Start6'nd Node Assi!n&ent
Sear'hes for 9$n'tions near pipe end points
The 'losest 9$n'tion within the spe'ified toleran'e is assigned as the start
or end node
*f importing from a geometri' networ1, $se the I toleran'e for the
sear'hing distan'e
Ase prior to etwor1 ;eiew
.pply to Domain if ne'essary
InfoSWMM Slide $ +""o&e Creatin! a Net-o*
Auto&ated Node Creation
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InfoSWMM Append Nodes
7reates 9$n'tions at all pipe end points
%nly + 9$n'tion is 'reated for m$ltiple pipe end points within the spe'ified
toleran'e
*f importing from a geometri' networ1, $se the I toleran'e for the
sear'hing distan'e
Ase prior to etwor1 ;eiew
.pply to Domain if ne'essary
InfoSWMM Slide $ +("o&e Creatin! a Net-o*
Net-or*
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Net-or*
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Model
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Model
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DW3
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*np$t DW! by 7$stomer Type
.pply di$rnal patterns to ea'h DW!
InfoSWMM Slide $ ++3"o&e 4perations Tab
DW3
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M$ltiple rows for different
$sage types ;ows are s$mmed after
being s'aled by patterns to
prod$'e the total flow
InfoSWMM Slide $ ++4"o&e 4perations Tab
/atterns
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Ased to modify flows or 'onstit$ent inflows
Ho$rly Daily
Monthly
Wee1end
InfoSWMM Slide $ ++5"o&e 4perations Tab
Initial Controls
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InfoSWMM Slide $ ++"o&e 4perations Tab
Si&ple Controls
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InfoSWMM Slide $ ++("o&e 4perations Tab
Si&ulation 4ptions ?eneral Tab
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Cal%ulates
a&ount and rate
tat rainfall is
lost to soil Bin
order to %al%ulate
e(%ess rainfall
Metod used to
%onvert e(%essrainfall into
runoff
3lo- Units to set
input units
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Metod used to
route flo- in
%onduits
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Water uality
Date=Time 'onsiderations
< .''$ra'y
< Time to r$n sim$lation< Dis1 spa'e
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;ainfall Time Step TS@
Hydrology Time
StepHydra$l
i's
*n'reasing Time
Step
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Minim$mTimeStep
Ma6im$mTimeStep
;eportTime
Step
The ;eport !ile in*nfoSWMM reports .##
of the node, lin1 and
s$b'at'hment res$ltsF
The 0inary %$tp$t !ile
only shows yo$ the
res$lts at the report timestepF
Solution) *f there is a large dis'repan'y in the graphi's and
report te6t file then the best sol$tion is to red$'e the ma6im$m
time hydra$li' time step so it is 'loser to the aerage time stepand also to ma1e the report time step 'loser to the Ma6im$m
time stepF
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4utput
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%pens in web browser
7ontains statisti's et'F
Most data 'an be fo$nd thro$gh
the ;eport Manager
Si&e of report determined by
length of sim$lation, si&e ofnetwor1 and in'l$ded report items
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2dit = manage all o$tp$t reports
and graphs< 7hange styles of te6t and titles
< 7opy graphs to 'lipboard
< Sae graphs as images
< 7opy = Paste reports into 26'el
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7reate o$tp$t reports and
graphs< Sele't graph or report type
< 7hoose elements for graphing
or reporting of res$lts
< Spe'ify a time frame for
graphs and reports
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.erage iterations per Time Step
< SWMM Min /, Ma6 Set in Dynami'Wae tab of Sim$lation %ptions
< 7loser to / is better
!a'tors infl$en'ing 'ontin$ity< ;o$ting time step
< *nitial leels $se Hotstart !ile@
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7hanges o$tp$t display $nits for< ;eports
< 8raphs
< 7onto$rs
< #abels
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Statisti'al analysis
of elements< Sim$lation d$ration
< Spe'ified time period
;eports for< Daily
< Monthly< 2ent Dependent
Statisti's ary with
feat$re type
26amples
< %$tfalls
< Sewer plant
< 7S%
InfoSWMM Slide $ +3"o&e
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7olor 'oding
Symbol si&ing
7onne't model data with.r'Map symbology
*nfoSWMM@
#abel attrib$tes = o$tp$t al$es
.r'Map #ayer Properties
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Moie of the system
Themati' maps
'hanging oer time
Played $sing -7;
style 'ontrols
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*np$t or o$tp$t data
Apdated after
sim$lations #abels optional
Details one time
step
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*np$t or o$tp$t data
Apdated after sim$lations
Details one time step
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*np$t >
C.=C7
H8#
o$tp$t@ >
;es$lt reiew
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InfoSWMM and "2:Map SWMM
InfoSWMM LIDInfoSWMM Slide $
+3"o&e
Lo- I&pa%t Develop&ent BLID
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#ow *mpa'tDeelopment feat$res
are small and part of
the s$b'at'hment
r$noff flowF They are
best sim$lated as part
of the s$b'at'hment
and to be s$''essf$lly
modeled they need tobe aried and
$nlimited in n$mberF
InfoSWMM LIDInfoSWMM Slide $
+3""o&e
Lo- I&pa%t Develop&ent BLID
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#ow *mpa'tDeelopment feat$res
are small and part of
the s$b'at'hment
r$noff flowF They are
best sim$lated as part
of the s$b'at'hment
and to be s$''essf$lly
modeled they need tobe aried and
$nlimited in n$mberF
InfoSWMM LIDInfoSWMM Slide $ +3("o&e
LID Controls and Conne%tions
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InfoSWMM LIDInfoSWMM Slide $
+3)"o&e
Si&ulation 4ptions for LID0s
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+F 2aporation and infiltration losses from
Storage nodes $nder Einemati' Wae and
Steady !lowF
/F Anlimited #ow *mpa't Deelopment=0MP
'ontrols per S$b'at'hment 'onne'ted to
infiltration and aU$ifersF
3F Poll$tant b$ild$p oer a gien land$se 'an
now be spe'ified by a time series instead
of 9$st a b$ild$p f$n'tionF
4F *mproed lin1ages between la1es, flow
ro$ting, eaporation and infiltrationF
InfoSWMM LIDInfoSWMM Slide $
+4"o&e
Water uality 3eatures
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InfoSWMM LIDInfoSWMM Slide $
+4+"o&e
'(ternal Loadin! .uildup
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Ne- 3eature o$ 'an now hae an
e6ternal time series loading ofs$b'at'hment b$ild$p as well as no b$ild$p
or the ario$s f$n'tional b$ild$pF
InfoSWMM LIDInfoSWMM Slide $
+4/"o&e
Si&ulation 4ptions for uality
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%ther Powerpoint !iles des'ribing Water
C$ality in *nfoSewer and *nfoSWMM 'an
be fo$nd here
\\Seraph\Users\Dickinson\InfoSWMM11\LI
D_BMP_WQ
InfoSWMM LIDInfoSWMM Slide $
+43"o&e
.uildup6Wasoff 4ptions
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InfoSWMM LIDInfoSWMM Slide $
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LID0s are Unli&ited /er Sub%at%&ent
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InfoSWMM LIDInfoSWMM Slide $
+45"o&e
Map Display of te Nu&ber of Units
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InfoSWMM LIDInfoSWMM Slide $
+4"o&e
LID Controls in D. Tables
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Te types of LID
Controls are defined in
te LID Controls D.
Table or in te 4peration
Tab of te Attribute
.ro-ser+
InfoSWMM LIDInfoSWMM Slide $
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LID Layers
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LID Stora!e Layer
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LID /ro%ess Co&ponents
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. #*D Pro'ess 'onsists of fie str$'t$red
'omponents or layers
+F Drain
/F Storage
3F Soil
4F Paement
5F S$rfa'e
InfoSWMM LIDInfoSWMM Slide $
+5"o&e
LID /ro%esses
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InfoSWMM LID
LID Usa!e in D. Tables
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Te types of LID Usa!e
are defined in te LID
Usa!e D. Table or at te
Sub%at%&ent .ro-ser
Level+
InfoSWMM LIDInfoSWMM Slide $
+5/"o&e
LID Usa!e at te Sub%at%&ents
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Te Nu&ber andType of LID Usa!e
alon! -it teir
Cara%teristi%s are
defined for ea%
Sub%at%&ent usin!
te LID I%on+
InfoSWMM LIDInfoSWMM Slide $
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S-ale LID
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InfoSWMM LIDInfoSWMM Slide $
+55"o&e
Co&ponents /er Sub%at%&ent
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In InfoSWMM you %an
si&ulate unli&ited
pollutants for unli&ited
landuses per
sub%at%&ent or
-atersed -it unli&ited
LID or .M/ UnitsF
InfoSWMM LIDInfoSWMM Slide $
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LID
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LID
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InfoSWMM LIDInfoSWMM Slide $
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LID Su&&ary
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LID
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LID I&port and '(port to SWMM 1
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InfoSWMM Suite 3lo- Tools
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InfoSWMM ?eneti% Al!orit& Suite Tools
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InfoSWMM Areal Suite Tools
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Aitional "eat#resin InfoSWMM
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Rainfall *epenent In4o1/InltrationMoeling/Moelling #sing R*II Anal&st
for InfoSWMM an H20MA( SWMM
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for InfoSWMM an H20MA( SWMM
InfoSWMM Slide $ +("o&e
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InfoSWMM Slide $ +)"o&e ;D** .nalyst
Step 2+ Assign a UH to at east 6 %oeUsing t!e In4o1 Icon
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InfoSWMM Slide $ +""o&e ;D** .nalyst
Step 8+ pen Up R*II Anal&st an Clic9 on %e1 to Create a R*II Session
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+F 2a'h .nalysis is .sso'iated with
%ne :$n'tion
/F o$ 'an hae one 'ombination
rainfall=flow file or two files
3F o$ need to define the ;ainfall !ile
as either *ntensity or -ol$me along
with the flow and rainfall time
interal
4F The format of both the flow and
rainfall file need to be defined
before the files 'an be read or the
analysis 'an startF
5F The fields are 'ol$mns in the .S7**
data filesF
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Step
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+F 26tra't DW! separates the dry weather
flow from the flow time series to isolate
the ;D** 'omponent of the flow time
series,
/F o$ 'an additionally separate o$t a
gro$ndwater flow 'omponent from the
dry weather flowF
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+F 26tra't DW! finds the aerage dry weather flow
for ea'h day of the wee1 and ea'h wee1end dayF/F The aerage DW! al$es 'an be edited and
altered from the al$es estimated by ;D** .nalyst
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+F o$ do get to f$rther'ontrol the ;D** Time
Series by getting rid of
possible low flow
e6traneo$s al$es $sing
the delete option, b$t
/F This sho$ld not bene'essary if yo$r dry
weather flow has a good
patternF
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;TE parameters
$sing the8eneti'
.lgorithm 8.@
/F *t is $s$ally best
to 'onstrain the
8. parameters
to a s$ggested Vor / times the
e6isting
parameter
al$esF
3F o$ 'an sae the
;TE parameters
and iteratiely
sole for ;TEF
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8. parameters
to a s$ggested Vor / times the
e6isting
parameter
al$esF
/F o$ 'an sae the
;TE parametersand iteratiely
sole for ;TEF
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p
and .ssign ;D**
to e6port to yo$rAHBs the '$rrent
al$es of the
;TE parametersF
/F The new 8. r$n
will $se the
e6ported ;TEparameter
al$esF
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Ar%Map T4C for 2D /oly!ons
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InfoSWMM Slide $ +)3"o&e InfoSWMM 2D
S%enario Mana!er, 3a%ility and D. for
Cild S%enarios
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#ow *mpa't
Deelopment feat$resare small and part of
the s$b'at'hment
r$noff flowF They are
best sim$lated as part
of the s$b'at'hment
and to be s$''essf$lly
modeled they need tobe aried and
$nlimited in n$mberF
InfoSWMM Slide $
+)4"o&e InfoSWMM 2D
9D and 2D Intera%tion 4%%urs only at a Node
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InfoSWMM Slide $
+)5"o&e InfoSWMM 2D
2D /oly!ons %an be edited in te T4C or in
te InfoSWMM Attribute .ro-ser
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InfoSWMM Slide $
+)"o&e InfoSWMM 2D
I&port of "'C$
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InfoSWMM Slide $
+)("o&e InfoSWMM 2D
D. ueries Can be Used to 3ind Model Data or
Model 4utput Usin! 4utput
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InfoSWMM Slide $
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"yeto!raps %an be eiter a Ti&e Series or an
'(ternal 3ile for Continuous Si&ulation
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InfoSWMM Slide $
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Infiltration, 'vaporation and Dept6Area
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InfoSWMM Slide $
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Type of 3or%e Mains in InfoSWMM
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3lood Types for Nodes in%lude 2D, Nodeand "'C$22 Inlet
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Many Alternate "ydrolo!y Metods
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InfoSWMM Slide $ /+"o&e InfoSWMM 2D
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4utput Statisti%s for 9D and 2D 5ariables
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InfoSWMM Slide $ /+""o&e InfoSWMM 2D
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