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By P D Smith (Auth.)

ISBN-10: 0408011122

ISBN-13: 9780408011129

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At line 210 the angle X is converted to Y degrees and the safety factor S is calculated at line 220. If the thrust exceeds the bearing capacity the program goes to line 260 and indicates this excess thrust by printing 'THRUST TOO LARGE' before asking for a new bearing capacity to be input. If S is greater than unity the parameters Y, R, T and S are printed before the next X value is taken. Further bearing capacities can be input if required. (4) From the results it is seen that the selection of a bearing of 80 kN capacity would suffice but the safety factor is only just greater than 30 Elements of fluid mechanics unity.

1309 radian rteps). Using the current value of X the radius of the gate based on the maximum head of water H is found as R. At line 170 the total horizontal thrust component Rl is found. This is simply the hydrostatic pressure force given by VipgYPW. 12. At line 190 the resultant thrust Tl is evaluated and in the subsequent line the thrust on each of the two bearings that will be required at each end of the sluice is evaluated as T. At line 210 the angle X is converted to Y degrees and the safety factor S is calculated at line 220.

2 HOW MANY EXPERIMENTS? '? 3 HOW MANY PAIRS OF DATA POINTS PER EXPT? 517 MM READY Program notes (1) Data for the three experiments are given in lines 1—5. At lines 30— 100 the total vessel weight is input as Wl, the movable weight as W2, the number of experiments conducted as M and the number of data points per experiment as N. (2) In the loop between lines 110 and 130 the first N data values (deck v/eight positions) are read as X(I). (3) At line 140 a loop (extending to line 210) commences in which the running variable I identifies the particular set of experimental data being analysed.

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Basic Hydraulics by P D Smith (Auth.)

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