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it is basically about the working of watt governor used in generators
Typology: Lecture notes
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Known Values: 1 Len. of each link(L) 105 mm 2 Initial Height(h') 100 mm 3 We. of each ball(w) 0.74 kg 4 We. of sleeve(W) 1 kg 5 Dist b/w pivot to centre of spindle (a) 52.5 mm 6 Initial Height of Sleeve (X") 194 mm
S.No Sleeve Height(X') N(act.) X(mm) Height(h) (^) a H(mm) N(th.) R(mm) Omega 1 181 93.8 13 93.5 0.472406 94.42448 97.28999 100.2781 0.7298512 0.785875 9. 2 166 100.8 28 86 0.611047 86.872328 101.4308 112.7412 0.9476022 0.960357 10. 3 150 109.5 44 78 0.733468 78.813895 106.4901 122.7922 1.217928 1.152922 11. 4 141 113.3 53 73.5 0.795399 74.279647 109.6921 127.485 1.3537589 1.27005 11. 5 143 116 51 74.5 0.781974 75.287348 108.9556 126.4916 1.4079912 1.243287 12. 6 136 117 58 71 0.828217 71.760163 111.6012 129.8563 1.4704736 1.339095 12. 7 128 120.3 66 67 0.878774 67.728276 114.875 133.3455 1.5963648 1.456935 12. 8 123 123.1 71 64.5 0.909316 65.207884 117.074 135.3538 1.6967152 1.536038 12. 9 117 127 77 61.5 0.945035 62.182922 119.8878 137.6043 1.835955 1.637543 13. 10 110 132 84 58 0.985579 58.653095 123.4426 140.0271 2.0182851 1.76666 13. F c(act.) F (th.)
90 95 100 105 110 115 120 125 130 135 0 10 20 30 40 50 60 70 80 90 SPEED vs SLEEVE DISPLACEMENT GRAPH N(act.) vs Sleeve Displacement N(th.) vs Sleeve Displacement 0
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FORCE vs RADIUS GRAPH F(act.) vs Radius F(th.) vs Radius