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Tributary Volume <br />for Each Strap <br />(Includes End <br />Caps and the <br />Cylinder) <br />Vol tri ks Vol ec Leff ks Vol cyl_per_lengthks 0=if <br />Vol ec Leff ks Vol cyl_per_lengthks Na 1=if <br />Leff ks Vol cyl_per_length otherwise <br /> <br />Vol tri <br />4739 <br />3277 <br />3857 <br />gal <br />Tributary Volume <br />Strap Tension <br />Distribution Factor <br />F' <br />Voltri <br />Voltk <br />39.9 <br />27.6 <br />32.5 <br />%  F'100.0 % <br />Hold Down Load <br />Actual per Strap <br />Location <br />Loadstp_actual Loadten_actual BFrF' <br />Load Actual <br />Tributary Volume Hold <br />Down Load per Strap <br />(without risers) with <br />Water to Grade <br />Loadstp_actual <br />5287 <br />3655 <br />4302 <br />lbf <br />Each strap has 2 <br />anchor points therefore <br />the tension in the strap <br />and hardware will be <br />the strap hold down <br />load divided by 2 for <br />each <br />Tension Load Actual <br />per Strap <br />Tstp_actual Load ten_actual BFrF' <br />2 <br />Tank Buoyancy, Rotten Robbie No 69, <br />Manteca CA, dwg 17366-001, 10ft DWT <br />Date Printed: 9/7/2023 Page 38 of 46