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Table 2-1: Lake Storage Data for Phase 2 Lakes <br /> Lake 14 Lake 15 Lake 16 Lake 17 <br /> 0.00 0.10 0.00 0.10 0.00 0.10 0.00 0.10 <br /> 25.00 6.97 29.00 18.03 29.00 9.15 29.00 7.21 <br /> 30.50 8.00 34.50 19.70 34.50 10.30 34.50 8.10 <br /> 32.50 8.00 36.50 19.70 36.50 10.30 36.50 8.10 <br /> Lake 18 Lake 19 Lake 20 Lake 21 <br /> 0.00 0.10 0.00 0.10 0.00 0.10 0.00 0.10 <br /> 29.00 13.09 25.00 21.17 22.00 4.22 29.00 9.99 <br /> 34.50 14.30 30.50 22.80 27.50 5.00 34.50 11.90 <br /> 36.50 14.30 32.50 22.80 29.50 5.00 36.50 11.90 <br /> Lake 22 Lake 23 Lake 24 Lake 25 <br /> 0.00 0.00 0.10 0.00 0.10 0.00 0.10 <br /> 23.00 5.93 25.00 16.76 20.00 6.93 29.00 52.93 <br /> 28.50 MO 30.50 18.60 25.50 8.10 34.50 56.20 <br /> 30.50 6.80 32.50 18.60 27.50 8.10 36.50 56.20 <br /> IMF <br /> Lake 26 Note: <br /> 0.00 0.10 First column is the lake depth in(feet]. <br /> 29.00 5.67 Second column is cross-section area in[acres]at that depth. <br /> 34.50 6.50 <br /> 36.50 6.50 <br /> In addition to being used to create the stepwise linear curve for lake storage area per depth, the depth <br /> data from the Exhibits in Appendix A was used as direct input in XPSWMM, see example in Figure 2-5 <br /> below. <br /> A Node Data:Node Lake-14 � <br /> Spic Gest Inflow Data <br /> 71 ;r-WCaPa�Y -Constantlnflow <br /> Inflow a.11 <br /> G Powjit Lvau _ <br /> a <br /> Time Series Inflow <br /> 0 <br /> q Ej] User Inflow <br /> .Q Gauged Inflow <br /> Ponding .0 Dry Weather <br /> one --•Allowed #Sealed M Use Interface File Flow <br /> Link Spill Crest to 2D •Link Invert to •160.0 % <br /> 2D Inflow Capturm Initial Depth <br /> I j1 Storage Q +7utfall Q BtAP Gauged Data � <br /> OK Options Cancel <br /> Figure 2-5: Example of XPSWMM Input Data for Lake Depth and Initial Depth <br /> River Islands Phase 2 Stormwater Mitigation Rev 2 11 <br /> PACE <br />