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Fundamentos de Engenharia Aeronáutica - Volume único

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227

C D

= 0,02614

A velocidade de estol é:

v

estol

= 2 ⋅ W

ρ ⋅ S ⋅ C

Lmáx

v

estol

=

2 ⋅150

1,225 ⋅ 0,9 ⋅1,65

vestol

=12,84 m/s

A velocidade de decolagem é 20% maior que a velocidade de estol, portanto:

v

= 1 , 2 ⋅

lo

v estol

v

lo

vlo

=1,2

⋅12,84

=15,40 m/s

A força de sustentação para 0,7v lo é:

L = ⋅

2

⋅ (0,7 ⋅ v

)

⋅ S ⋅

2

lo

C L

1 ρ 275

1 2

L = ⋅1,225

⋅ (0,7 ⋅15,40)

2

⋅ 0,9 ⋅ 0,

L = 17,70 N

A correspondente força de arrasto é:

1 2

L

2

D = ⋅ ρ ⋅ (0,7 ⋅ vlo

) ⋅ S ⋅ ( C

D0

+ φ ⋅ K ⋅ C

2

)

1 2

D = ⋅1,225

⋅ (0,7 ⋅15,40)

2

D =1,67 N

⋅ 0,9 ⋅ 0,02614

A tração disponível pela hélice APC 13”x4” para 0,7v lo obtida pela leitura do gráfico

da Figura 4.2 é:

Td

= 33,207 N

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