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712 S Bristol St - Plan
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712 S Bristol St - Plan
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Last modified
11/13/2025 10:30:11 AM
Creation date
11/12/2025 5:00:03 AM
Metadata
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Template:
Plan
Permit Number
101125075
Full Address
712 S Bristol St
Street Number
712
Street Direction
S
Street Name
Bristol
Street Suffix
St
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Free stream velocity 96.464 mph <br />Maximum number of iterations 500 <br />Finite volume mesh density 20.00 % <br />Turbulence model RANS k-ε <br />Numerical solver type OpenFOAM <br />Simulation type Steady Flow <br />Wind Simulation Analysis Settings No. 1 - <br />Number of nodes 102366 <br />Number of elements 204620 <br />Computational model information <br />Drag force magnitude 3.181 kip <br />Drag force in Z -1.718 kip <br />Drag force in Y 2.616 kip <br />Drag force in X 0.569 kip <br />Drag forces <br />W LC11 - Wind @ 270 <br />Free stream velocity 96.464 mph <br />Maximum number of iterations 500 <br />Finite volume mesh density 20.00 % <br />Turbulence model RANS k-ε <br />Numerical solver type OpenFOAM <br />Simulation type Steady Flow <br />Wind Simulation Analysis Settings No. 1 - <br />Number of nodes 39572 <br />Number of elements 79074 <br />Computational model information <br />Drag force magnitude 4.525 kip <br />Drag force in Z 3.070 kip <br />Drag force in Y -0.381 kip <br />Drag force in X -3.303 kip <br />Drag forces <br />Description Value Unit Notes <br />Surfaces 1,2 <br />Members 2-6 2-6 <br />Object Type All Selected To Calculate Removed Not Valid / Deact.Comment <br />Design Objects to Design <br />2 2.4 Section 2.4 (ASD), 1. to 7.Ser.Serviceability limit state All <br />1 2.3 Section 2.3 (LRFD), 1. to 5.Str.Strength limit state (LRFD)All <br />No.Design Situation Type Design Active Design Situation Type for Enumeration Method <br />DS ASCE 7 | 2016 To AISC 360 | 2022 Combinations to Design <br />8 Commercial 95 Shade Fabric Fabric <br />6 Cable PE (Pfeifer)More Metals <br />4 A36 (Plates, Strips and Sheets)Steel <br />2 A500, Grade C Steel <br />No.Name Design Type Options Comment <br />Material To MaterialLegend <br />Stiffness modification <br />User-Defined Material
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