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ssc-367 - Ship Structure Committee

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NOMENCLATURE<br />

co<br />

CLj<br />

CLO<br />

o<br />

‘tot<br />

DI<br />

D2<br />

E<br />

H<br />

I<br />

I<br />

Io<br />

K<br />

KS<br />

L<br />

N<br />

Re<br />

s<br />

s<br />

SCF<br />

‘t<br />

s~<br />

T<br />

Te<br />

v<br />

Vm<br />

v max<br />

v min<br />

Vr<br />

Y<br />

Ym<br />

Y~<br />

Coefficient of drag<br />

Design lift coefficient<br />

Base lift coefficient<br />

Fatigue damage<br />

Total fatigue damage<br />

Fatigue damage due to vortex shedding<br />

Fatigue damage due to storm<br />

Modulus of elasticity<br />

Submerged length of member<br />

Member moment of inertia<br />

Turbulence parameter<br />

Turbulence parameter<br />

Constant representingmember fixity<br />

Stability parameter<br />

Span between member supports<br />

Number of cycles to failure at hot spot stress range<br />

Reynolds number<br />

Hot spot stress range<br />

Member section modulus<br />

Stress concentration factor<br />

Strouhal number<br />

Correspondinghot spot stress range<br />

Wave period<br />

Time for which Vmin is exceeded<br />

Flow velocity normal to member axis<br />

Maximum orbital velocity due to wavemotion<br />

Maximum water particle velocity<br />

Minimum Vr, required for motion<br />

Reduced velocity<br />

Member midspan deflection<br />

Maximum member midspan deflection<br />

Refined maximum member midspan deflection

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