Zbor In Urcare Si Planat Pascariu.docx

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T2( v) 

siny2( v) 

0.87 Pax( 0)  ( 0)

siny2( 91)  0.117

v

T2( v) G v



R( v ) G

Viteza ascensionala

T1( v) 

0.87 Pax( 7000)  ( 7000)

T2( v) 

v

0.87 Pax( 0)  ( 0) v

T1( x)  x 10 G T2( y )  y G R( v)  v G 5

0

0

20

40

60 xy v

80

T4( v) 

  Pax( 6000)  ( 6000) v

Plafonul de serviciu este de 6000 m T3( v) 

  Pax( 4500)  ( 4500) v

Plafonul de croaziera este de 4500 m

T1( x)  x G T2( y )  y 10 G R( v) 

v G

T4( v)  v G T3( v)  v

5

G

0

0

20

40

60 xy v

80

Viteza de infundare

 ( v ) 

R( v ) v

A ( h ) 

G

Cxo i( h )  S

B( h ) 

2 G

3

 ( v h )  A ( h )  v 

 2 K G   i( h )  S   

B( h ) v

5 ( v 0) ( vi 500) ( vii 1500) ( viii 2500)  10

 15

0

50

100 v vi vii viii

Viteza de zbor la infundare minima 1 4

2 G

K  Vmin      39.572  S  3 Cxo 

iar infundarea minima va fi 3

 ( v h )  A ( h )  v 

B( h )

siny( 39.572)  0.081

v

 ( 39.5720)  3.197 Viteza de zbor pe panta optima de planare 1 4

 K   52.08 Voptima     S  Cxo  2G

 ( 52.080)  3.644

1 fmax 

K  Cxo 2

 14.292

siny( 52.08)  0.07

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