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MF BLC 02a - Moodle

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Page 2: MF BLC 02a - Moodle

Une turbine Γ  gaz opΓ¨re avec 2 compresseurs et unrΓ©gΓ©nΓ©rateur. Les paramΓ¨tres de l’air Γ  l’entrΓ©e du systΓ¨me sontπ’‘π’‘πŸπŸ = 𝟏𝟏𝟎𝟎𝟏𝟏. πŸ‘πŸ‘πŸ‘πŸ‘πŸ‘πŸ‘πŸ’πŸ’ et π‘»π‘»πŸπŸ = 𝟐𝟐𝟐𝟐𝟎𝟎𝟏𝟏, la tempΓ©rature Γ  l’entrΓ©e de laturbine est π‘»π‘»πŸ‘πŸ‘ = πŸπŸπŸπŸπŸ‘πŸ‘πŸπŸ. Le rapport de compression total est𝒓𝒓𝒑𝒑 = 𝟏𝟏, 𝜸𝜸 = 𝟏𝟏. πŸ’πŸ’, 𝒄𝒄𝒑𝒑 = 𝟏𝟏𝟎𝟎𝟎𝟎𝟏𝟏 ⁄𝑱𝑱 πŸ‘πŸ‘π’Œπ’Œ 𝟏𝟏. Calculer le rendement del’installation si: πŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏 πŸ’πŸ’) 𝜼𝜼π‘ͺπ‘ͺ = 𝟎𝟎. πŸ–πŸ–πŸπŸ = πœΌπœΌπ‘»π‘», 𝝈𝝈 =𝟎𝟎. 𝟏𝟏

Ce problΓ¨me sera d’abord regardΓ© Γ©tape par Γ©tape et par lasuite, au moyen d’une formule abrΓ©gΓ©e

Page 3: MF BLC 02a - Moodle

Pression intermΓ©diaire 𝑝𝑝π‘₯π‘₯ (optimisΓ©e)

𝑝𝑝π‘₯π‘₯ = 𝑝𝑝1𝑝𝑝2 = 5𝑝𝑝12 = 2.236𝑝𝑝1

Ξ” =𝑝𝑝2𝑝𝑝1

π›Ύπ›Ύβˆ’1𝛾𝛾

= 51.4βˆ’1

1.4 = 1.5838

Compression 1-a

Ξ”βˆ— =𝑝𝑝π‘₯π‘₯𝑝𝑝1

π›Ύπ›Ύβˆ’1𝛾𝛾

= 2.2360.41.4 = 1.2584

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

𝑺𝑺

𝟏𝟏𝟏

𝟐𝟐𝟏 πŸ’πŸ’π’‘π’‘πŸπŸ

π’‘π’‘πŸπŸπ‘»π‘»

𝒑𝒑𝒙𝒙𝑨𝑨

❸

❹

❢

= ='2 2 3p p p

❷

Page 4: MF BLC 02a - Moodle

𝑺𝑺

𝟏𝟏𝟏

𝟐𝟐𝟏 πŸ’πŸ’π’‘π’‘πŸπŸ

π’‘π’‘πŸπŸπ‘»π‘»

𝒑𝒑𝒙𝒙𝑨𝑨

❸

❹

❢

= ='2 2 3p p p

❷

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

= 𝑇𝑇1 Ξ”βˆ—

= πŸ‘πŸ‘πŸŽπŸŽπŸπŸπŸπŸ

π‘»π‘»πŸ’πŸ’ = 𝑇𝑇1𝑝𝑝π‘₯π‘₯𝑝𝑝1

π›Ύπ›Ύβˆ’1𝛾𝛾

= 290 Γ— 1.2584

𝑾𝑾π‘ͺπ‘ͺ = 𝑐𝑐𝑃𝑃 π‘‡π‘‡π‘Žπ‘Ž βˆ’ 𝑇𝑇1) + 𝑐𝑐𝑝𝑝(𝑇𝑇2β€² βˆ’ 𝑇𝑇1β€²

𝑇𝑇1β€² = 𝑇𝑇1, 𝑇𝑇2

β€² = π‘‡π‘‡π‘Žπ‘Ž

𝑾𝑾π‘ͺπ‘ͺ = 2𝑐𝑐𝑃𝑃𝑇𝑇1 Ξ”βˆ— βˆ’ 1

( )2 1 005 290 1 2584 1= Γ— Γ— Γ— βˆ’. .

= 𝟏𝟏𝟏𝟏𝟎𝟎. 𝟎𝟎 πŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘π’Œπ’Œ

Page 5: MF BLC 02a - Moodle

𝑺𝑺

𝟏𝟏𝟏

𝟐𝟐𝟏 πŸ’πŸ’π’‘π’‘πŸπŸ

π’‘π’‘πŸπŸπ‘»π‘»

𝒑𝒑𝒙𝒙𝑨𝑨

❸

❹

❢

= ='2 2 3p p p

❷

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

Ξ” =𝑝𝑝2𝑝𝑝1

π›Ύπ›Ύβˆ’1𝛾𝛾

=𝑇𝑇2𝑇𝑇1

=𝑇𝑇3𝑇𝑇4

Travail produit par la turbine

π‘Šπ‘Šπ‘‡π‘‡ = 𝑐𝑐𝑃𝑃 𝑇𝑇3 βˆ’ 𝑇𝑇4 = 𝑐𝑐𝑃𝑃𝑇𝑇3 1 βˆ’1π›₯π›₯

= πŸ‘πŸ‘πŸŽπŸŽπŸŽπŸŽ. πŸ’πŸ’ β„πŸπŸπ‘±π‘± πŸ‘πŸ‘π’Œπ’Œ

𝑾𝑾𝑻𝑻 = 1.005 Γ— 973 Γ— 1 βˆ’1

1.5838

= 1.5838

Page 6: MF BLC 02a - Moodle

𝑺𝑺

𝟏𝟏𝟏

𝟐𝟐𝟏 πŸ’πŸ’π’‘π’‘πŸπŸ

π’‘π’‘πŸπŸπ‘»π‘»

𝒑𝒑𝒙𝒙𝑨𝑨

❸

❹

❢

= ='2 2 3p p p

❷

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

point A

𝑇𝑇𝐴𝐴 = 𝑇𝑇2β€² + 𝜎𝜎(𝑇𝑇4 βˆ’ 𝑇𝑇2

β€²)

= 365 + 0.7(614.3 βˆ’ 365) = 539.5 𝐾𝐾

𝑄𝑄 = 𝑐𝑐𝑝𝑝(𝑇𝑇3 βˆ’ 𝑇𝑇𝐴𝐴) = 1.005(973 βˆ’ 539.5)

= πŸ’πŸ’πŸ‘πŸ‘πŸπŸ. 𝟎𝟎 β„πŸ‘πŸ‘π‘±π‘± πŸ‘πŸ‘π’Œπ’Œ

𝑇𝑇4 = ⁄𝑇𝑇3 Ξ” = ⁄973 1.5838 = 614.3𝐾𝐾

𝑇𝑇2β€² =

Chaleur fournie (Ξ” = 1.5838)

π‘‡π‘‡π‘Žπ‘Ž = 365𝐾𝐾

Page 7: MF BLC 02a - Moodle

𝑺𝑺

𝟏𝟏𝟏

𝟐𝟐𝟏 πŸ’πŸ’π’‘π’‘πŸπŸ

π’‘π’‘πŸπŸπ‘»π‘»

𝒑𝒑𝒙𝒙𝑨𝑨

❸

❹

❢

= ='2 2 3p p p

❷

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

Le rendement

πœ‚πœ‚ =π‘Šπ‘Šπ‘‡π‘‡ βˆ’ π‘Šπ‘ŠπΆπΆ

𝑄𝑄

𝜼𝜼 = 𝟎𝟎. πŸ’πŸ’πŸ–πŸ–πŸπŸ

𝑄𝑄 = 435.6 β„π‘˜π‘˜π½π½ π‘˜π‘˜π‘”π‘”

π‘Šπ‘Šπ‘‡π‘‡ = 360.4 ⁄𝐾𝐾𝐽𝐽 π‘˜π‘˜π‘”π‘”π‘Šπ‘ŠπΆπΆ = 150.6 π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘”

Page 8: MF BLC 02a - Moodle

𝜼𝜼 =1.5838 βˆ’ 1

1.5838 Γ— 3.35 Γ— 1 βˆ’2 1.5838 βˆ’ 1

11.5838 βˆ’ 1

1.5838 Γ— 0.7 Γ— 3.35 Γ— 1 + 1 βˆ’ 0.7 3.35 βˆ’ 1 βˆ’ 1.5838 βˆ’ 11

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟏𝟏 = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

= 𝟎𝟎. πŸ’πŸ’πŸ–πŸ–πŸπŸ

Ξ” =𝑝𝑝2

𝑝𝑝1

οΏ½π›Ύπ›Ύβˆ’1𝛾𝛾

= 1.5838

Ξ¦ =𝑇𝑇3

𝑇𝑇1=

973290 = 3.35

πœ‚πœ‚π‘π‘ = πœ‚πœ‚π‘‡π‘‡ = 1, 𝜎𝜎 = 0.7

πœ‚πœ‚ =

Ξ” βˆ’ 1Ξ” Ξ¦πœ‚πœ‚π‘‡π‘‡ βˆ’

2 Ξ” βˆ’ 1πœ‚πœ‚πΆπΆ

Ξ” βˆ’ 1Ξ” 𝜎𝜎 Ξ¦πœ‚πœ‚π‘‡π‘‡ + 1 βˆ’ Οƒ Ξ¦ βˆ’ 1 βˆ’ Ξ” βˆ’ 1

πœ‚πœ‚πΆπΆ

Page 9: MF BLC 02a - Moodle

( )

( )

2 1 5838 11 5838 1 3 35 0 851 5838 0 85

1 5838 1 1 5838 10 7 3 35 0 85 1 0 7 3 35 11 5838 0 85

βˆ’βˆ’ Γ— Γ— βˆ’=

βˆ’ βˆ’Γ— Γ— Γ— + βˆ’ βˆ’ βˆ’

.. . .. .

. .. . . . .. .

Ξ·

1

32

1 1

9731 5838 3 35290

Tpp T

Ξ³Ξ³

βˆ’

βˆ† = = Ξ¦ = = =

. , .

= 𝟎𝟎. πŸ‘πŸ‘πŸπŸπŸŽπŸŽ

π‘Šπ‘Šπ‘‡π‘‡π‘ π‘  = 360.4 π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜ 𝑔𝑔

π‘Šπ‘ŠπΆπΆπ‘ π‘  = 150.6 π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜ 𝑔𝑔

𝑝𝑝1 = 101.3π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜, 𝑇𝑇1 = 290𝐾𝐾, 𝑇𝑇3 = 973πΎπΎπ‘Ÿπ‘Ÿπ‘π‘ = 5, 𝛾𝛾 = 1.4, 𝑐𝑐𝑝𝑝 = 1005 ⁄𝐽𝐽 π‘˜π‘˜π‘”π‘” οΏ½ πΎπΎπŸ’πŸ’)𝜼𝜼π‘ͺπ‘ͺ = 𝟎𝟎. πŸ–πŸ–πŸπŸ = πœΌπœΌπ‘»π‘», 𝝈𝝈 = 𝟎𝟎. 𝟏𝟏

𝑾𝑾π‘ͺπ‘ͺ = ⁄150.6 0.85 = 𝟏𝟏𝟏𝟏𝟏𝟏. 𝟐𝟐 β„πŸ‘πŸ‘π‘±π‘± πŸ‘πŸ‘π’Œπ’Œ 𝑾𝑾𝑻𝑻 = 0.85(360.4) = πŸ‘πŸ‘πŸŽπŸŽπŸŽπŸŽ. πŸ‘πŸ‘ β„πŸ‘πŸ‘π‘±π‘± πŸ‘πŸ‘π’Œπ’Œ

𝜼𝜼

Page 10: MF BLC 02a - Moodle

Les conditions pour l’installation ci-dessous sont les suivantes: p01= 101.3 kPaet T01=288 K. Le rapport de compression est rc =9, T03=1380K, Ξ·C =0.87, Ξ·T1=0.89, Ξ·T2 =0.89. Le pouvoir calorifique est LHV=43000kJ/kg et la pression Γ  lasortie de la turbine de puissance T2 est p05=120 kPa. ConsidΓ©rez Ξ·m =1 Ξ³c=1.4 etΞ³t =1.333 et calculez:

β€’ Le rapport dΓ©bit massique de carburant /dΓ©bit massique d’air: f β€’ La tempΓ©rature T05 Γ  la sortie de la turbine de puissance (T2)β€’ Le travail spΓ©cifique utile We

‒ La rendement thermique du système ηth

Page 11: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, rc =9, T03=1380K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89,LHV=43000kJ/kg , p05=120 kPa. Ξ³c=1.4 , Ξ³t =1.333, Ξ·m=1, cpt=1.148kJ/kg, cpc=1.004kJ/kg

Compresseur

02 01cp r p=

( 1)/

02 0111

c cc

c

rT TΞ³ βˆ’ Ξ³ βˆ’

= + Ξ· (1.4 1)/1.49 1288 1

0.87

βˆ’ βˆ’= + =

. kPa911 7

. K577 53

Chambre de combustion f

1.148 1380 1.004 577.5343000 1.148 1380Γ— βˆ’ Γ—

= =βˆ’ Γ—

.0 0243

9 101.3= Γ— =

πŸ’πŸ’?

πŸ’πŸ’ =𝑐𝑐𝑝𝑝|𝑑𝑑𝑇𝑇03 βˆ’ 𝑐𝑐𝑝𝑝|𝑐𝑐𝑇𝑇02

𝐿𝐿𝐿𝐿𝐿𝐿 βˆ’ 𝑐𝑐𝑝𝑝|𝑑𝑑𝑇𝑇03

Page 12: MF BLC 02a - Moodle

03 02p p= .= kPa911 7

.= K1132 5( ) ( )1 1.0041380 577.53 2881 0.0243 1.148

= βˆ’ βˆ’+

Turbine liΓ©e

.= kPa370 81.333/(0.333)1380 1132.5911.7 1

0.89 1380βˆ’ = βˆ’ Γ—

p01= 101.3 kPa, T01=288K, rc =9, T03=1380K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89,LHV=43000kJ/kg , p05=120 kPa. Ξ³c=1.4 , Ξ³t =1.333, Ξ·m=1, cpt=1.148kJ/kg, cpc=1.004kJ/kg

T05 ?

π‘»π‘»πŸŽπŸŽπŸπŸ? . , .= =020 0243 577 53f T K

𝑇𝑇1➌ ➍

π‘»π‘»πŸŽπŸŽπŸ’πŸ’ = 𝑇𝑇03 βˆ’1

πœ‚πœ‚π‘šπ‘š 1 + 𝑓𝑓𝑐𝑐𝑝𝑝|𝑐𝑐

𝑐𝑐𝑝𝑝|𝑑𝑑𝑇𝑇02 βˆ’ 𝑇𝑇01

π’‘π’‘πŸŽπŸŽπŸ’πŸ’ = 𝑝𝑝03 1 βˆ’π‘‡π‘‡03 βˆ’ 𝑇𝑇04

πœ‚πœ‚π‘‡π‘‡1𝑇𝑇03

)⁄𝛾𝛾𝑑𝑑 (π›Ύπ›Ύπ‘‘π‘‘βˆ’1

Page 13: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, rc =9, T03=1380K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89,LHV=43000kJ/kg , p05=120 kPa. Ξ³c=1.4 , Ξ³t =1.333, Ξ·m=1

Turbine de puissance

(.333)/1.3331201132.5 1 0.89 1370.8

= βˆ’ βˆ’ .= K884 8

(1.0243) 1.148(1132.5 884.8)= Γ— βˆ’

04 05(1 ) ( )= + βˆ’e ptW f c T T

. /= kJ kg292 27

eth

Wf LHV

Ξ· =Γ—

292.270.0243 43000

=Γ—

.= 0 279

π‘»π‘»πŸŽπŸŽπŸπŸ? 𝑾𝑾𝒄𝒄? πœΌπœΌπ’„π’„π’•π’•?

𝑇𝑇2 ➎➍

. . . ,= = =04 04370 8 1132 5 0 0243p kPa T K f

𝑓𝑓 = 0.0243

𝑇𝑇04 = 1132.5𝐾𝐾𝑝𝑝04 = 370.8π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜π‘»π‘»πŸŽπŸŽπŸπŸ = 𝑇𝑇04 1 βˆ’ πœ‚πœ‚π‘‡π‘‡2 1 βˆ’

𝑝𝑝05

𝑝𝑝04

οΏ½π›Ύπ›Ύπ‘‘π‘‘βˆ’1 ⁄) 𝛾𝛾𝑑𝑑

Page 14: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, rc =9, T03=1380K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89,LHV=43000kJ/kg , p05=120 kPa. Ξ³c=1.4 , Ξ³t =1.333, Ξ·m=1

( )

( )

2 11

1 11 1

βˆ† βˆ’βˆ† βˆ’ Ξ¦ βˆ’βˆ†

= βˆ† βˆ’ βˆ† βˆ’Ξ¦ + βˆ’ Ξ¦ βˆ’ βˆ’ βˆ†

Ξ·Ξ·Ξ·

Οƒ Ξ· ση

TC

TC

Ξ¦ =𝑇𝑇03𝑇𝑇02

= 4.792

βˆ†=𝑝𝑝02𝑝𝑝01

οΏ½π›Ύπ›Ύβˆ’1𝛾𝛾

= 1.873

𝜼𝜼 = 𝟎𝟎. πŸ‘πŸ‘πŸ‘πŸ‘πŸπŸ

Οƒ = 0

Page 15: MF BLC 02a - Moodle

β€’ La tempΓ©rature et la pression Γ  l’entrΓ©e du compresseur C sont T01 = 288 K et p01 = 101.3 kPa

β€’ Le rendement du compresseur (C) Ξ·c =87 %β€’ La pression Γ  la sortie du compresseur p02 = 1216 kPa

β€’ Le rendement des turbines Ξ·t =89 %β€’ La tempΓ©rature Γ  la sortie des chambres de combustion T03 = T05 =1400 K β€’ Le pouvoir calorifique : LHV=43000 kJ/kg

B

Page 16: MF BLC 02a - Moodle

ConsidΓ©rez cp = 𝒄𝒄𝒄𝒄𝒔𝒔𝒄𝒄𝒄𝒄 et calculez:

β€’ Le travail de compressionβ€’ La pression 𝑝𝑝05 = 𝑝𝑝04

β€’ La travail utile produit par la seconde turbineβ€’ L’efficacitΓ© thermiqueβ€’ La consommation spΓ©cifique

B

Page 17: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, T03=1400K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89, LHV=43000kJ/kg ,p02=1216 kPa. Ξ³c=1.4 Ξ·m=1, cp=1.004 kJ/kg-K

EntrΓ©e du compresseur :

01 288=T K

Sortie du compresseur

π’˜π’˜π’„π’„?

π‘»π‘»πŸŽπŸŽπŸπŸπ’”π’” = πŸπŸπŸ–πŸ–πŸπŸ. πŸ–πŸ–K

π‘»π‘»πŸŽπŸŽπŸπŸ = πŸŽπŸŽπŸ‘πŸ‘πŸŽπŸŽ. πŸ‘πŸ‘K

π‘»π‘»πŸŽπŸŽπŸπŸπ’”π’”π‘‡π‘‡01

=𝑝𝑝02𝑝𝑝01

π›Ύπ›Ύβˆ’1𝛾𝛾

= (π‘Ÿπ‘Ÿπ‘π‘)π›Ύπ›Ύβˆ’1

𝛾𝛾 = (12)0.2857

π‘»π‘»πŸŽπŸŽπŸπŸ = 𝑇𝑇01 + Ξ€02π‘ π‘ βˆ’Ξ€01πœ‚πœ‚π‘π‘

= 630.3𝐾𝐾

β€œ Pont isentropique ”

Page 18: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, T03=1400K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89, LHV=43000kJ/kg ,p02=1216 kPa. Ξ³c=1.4 Ξ·m=1

299.10.87

= = =Ξ·

cscr

c

ww

343.830.89

= = =Ξ·

trts

t

ww

π’˜π’˜π’„π’„?

πŸ‘πŸ‘πŸ’πŸ’πŸ‘πŸ‘. πŸ–πŸ–πŸ‘πŸ‘ πŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

= 𝟐𝟐𝟐𝟐𝟐𝟐. πŸπŸπŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

πŸ‘πŸ‘πŸ’πŸ’πŸ‘πŸ‘. πŸ–πŸ–πŸ‘πŸ‘ πŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

πŸ‘πŸ‘πŸ–πŸ–πŸŽπŸŽ. πŸ‘πŸ‘πŸ’πŸ’ πŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

οΏ½π’˜π’˜π’„π’„π’”π’” = 𝑐𝑐𝑝𝑝(𝑇𝑇02𝑠𝑠 βˆ’ 𝑇𝑇01) = 1.0045(585.8 βˆ’ 288

π’˜π’˜π’„π’„π’“π’“ = π’˜π’˜π’„π’„π’“π’“ =

, cp=1.004 kJ/kg-K

β€œ Pont isentropique ”

Page 19: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, T03=1400K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89, LHV=43000kJ/kg ,p02=1216 kPa. Ξ³c=1.4 Ξ·m=1

΀03 = 1400Κ

Processus isentropique 3-4

π‘»π‘»πŸŽπŸŽπŸ’πŸ’π’”π’” = 𝑇𝑇03 βˆ’π‘€π‘€π‘‘π‘‘π‘ π‘ 

𝑐𝑐𝑝𝑝

π‘»π‘»πŸŽπŸŽπŸ’πŸ’ = 𝑇𝑇03 βˆ’π‘€π‘€π‘‘π‘‘π‘Ÿπ‘Ÿπ‘π‘π‘π‘

= 𝟏𝟏𝟎𝟎𝟏𝟏𝟏𝟏. πŸπŸπŸ•πŸ•

οΏ½π’‘π’‘πŸŽπŸŽπŸ’πŸ’ = πŸ‘πŸ‘πŸπŸπŸπŸ. πŸ–πŸ– πŸ‘πŸ‘πŸ‘πŸ‘πŸ’πŸ’ (𝑝𝑝03 = 𝑝𝑝02

Processus rΓ©el 3-4

π’‘π’‘πŸŽπŸŽπŸ’πŸ’

𝑝𝑝03=

𝑇𝑇04𝑠𝑠

𝑇𝑇03

⁄𝛾𝛾 π›Ύπ›Ύβˆ’1

π’‘π’‘πŸŽπŸŽπŸ’πŸ’?

, cp=1.004 kJ/kg-K

𝑀𝑀𝑑𝑑𝑠𝑠 = 386.34 π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜ 𝑔𝑔

π‘€π‘€π‘‘π‘‘π‘Ÿπ‘Ÿ = 343.83 π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜ 𝑔𝑔= 𝟏𝟏𝟎𝟎𝟏𝟏𝟏𝟏. πŸ’πŸ’πŸ•πŸ•

Page 20: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, T03=1400K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89, LHV=43000kJ/kg ,p02=1216 kPa. Ξ³c=1.4 Ξ·m=1

Processus 5-6

π’˜π’˜π’„π’„πŸπŸπ’“π’“ = 𝑐𝑐𝑝𝑝 𝑇𝑇05 βˆ’ 𝑇𝑇06𝑠𝑠 πœ‚πœ‚π‘‘π‘‘ = πŸ’πŸ’πŸŽπŸŽπŸ‘πŸ‘. πŸπŸπŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

𝑝𝑝04 = 𝑝𝑝05 = 395.82 π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜

π‘»π‘»πŸŽπŸŽπŸŽπŸŽπ’”π’” = πŸπŸπŸ’πŸ’πŸ–πŸ–. πŸπŸπŸ•πŸ•π‘π‘06

𝑝𝑝05=

π‘»π‘»πŸŽπŸŽπŸŽπŸŽπ’”π’”

𝑇𝑇05

⁄𝛾𝛾 π›Ύπ›Ύβˆ’1

𝑇𝑇03 = 𝑇𝑇05 = 1400 𝐾𝐾

π’˜π’˜π’„π’„πŸπŸπ’“π’“?

❷

𝑝𝑝06 = 𝑝𝑝01 = 101.3 π‘˜π‘˜π‘˜π‘˜π‘˜π‘˜

, cp=1.004 kJ/kg-K

Page 21: MF BLC 02a - Moodle

p01= 101.3 kPa, T01=288K, T03=1400K, Ξ·C=0.87, Ξ·T1 =0.89, Ξ·T2 =0.89, LHV=43000kJ/kg ,p02=1216 kPa. Ξ³c=1.4 Ξ·m=1

EfficacitΓ© thermique

[ ]. 05 04 03 02( ) ( )= βˆ’ + βˆ’ =c c pq c T T T T𝑇𝑇04 = 1057.1K

𝑇𝑇03 = 1400 K 𝑇𝑇02 = 630.3K

𝑇𝑇05 = 1400K

𝟏𝟏𝟏𝟏𝟏𝟏𝟐𝟐. 𝟏𝟏 πŸ‘πŸ‘ ⁄𝑱𝑱 πŸ‘πŸ‘ π’Œπ’Œ

𝟎𝟎. πŸ‘πŸ‘πŸ’πŸ’πŸ–πŸ– 𝑺𝑺𝑺𝑺π‘ͺπ‘ͺ =3600

πœ‚πœ‚π‘‘π‘‘π‘‘ Γ— 𝐿𝐿𝐿𝐿𝐿𝐿

𝟎𝟎. πŸπŸπŸ’πŸ’πŸ‘πŸ‘π‘±π‘±

πŸ‘πŸ‘π‘Ύπ‘Ύ 𝒕𝒕=

36000.348 Γ— 43000 =

πœ‚πœ‚π‘‘π‘‘π‘‘ =𝑀𝑀𝑑𝑑2π‘Ÿπ‘Ÿ

π‘žπ‘žπ‘π‘.𝑐𝑐=

403.71159.5

=

, cp=1.004 kJ/kg-K

❷

𝑀𝑀𝑑𝑑2π‘Ÿπ‘Ÿ = 403.7π‘˜π‘˜ ⁄𝐽𝐽 π‘˜π‘˜ 𝑔𝑔

Page 22: MF BLC 02a - Moodle

32’’

14

4’’ 4

2

Les conditions pour ce cycle rΓ©gΓ©nΓ©ratif sont les suivantes: p01= p04 =8 bar etT1=30oC. Le rapport de compression est rc =4, T3=850oC ,Ξ·C =0.85= Ξ·T , Οƒ =0.7,et le dΓ©bit massique οΏ½Μ‡οΏ½π’Ž = πŸ‘πŸ‘πŸŽπŸŽ πŸ‘πŸ‘π’Œπ’Œ/𝒔𝒔. ConsidΓ©rez 𝑐𝑐𝑝𝑝= 𝑐𝑐𝑐𝑐𝑐𝑐𝑐𝑐𝑐𝑐 (air) et calculez:

Page 23: MF BLC 02a - Moodle

β€’ La tempΓ©rature Γ  la sortie de la turbine de puissance (T libre)β€’ La tempΓ©rature Γ  l’entrΓ©e de la chambre de combustion 𝑇𝑇2β€²β€².β€’ La tempΓ©rature Γ  l’entrΓ©e du rΓ©gΓ©nΓ©rateur 𝑇𝑇2

β€’ La tempΓ©rature Γ  la sortie du rΓ©gΓ©nΓ©rateur 𝑇𝑇4β€²β€²

β€’ La puissance consommΓ©e par le compresseurβ€’ La puissance gΓ©nΓ©rΓ©e par les turbines

32’’

14

4’’ 4

2

Page 24: MF BLC 02a - Moodle

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 195 0C

T04= 568 0C

T04s= 517 0C

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

T01=303 K

π‘»π‘»πŸŽπŸŽπŸπŸπ’”π’”π‘‡π‘‡01

=𝑝𝑝02𝑝𝑝01

π›Ύπ›Ύβˆ’1𝛾𝛾

= (π‘Ÿπ‘Ÿπ‘π‘)π›Ύπ›Ύβˆ’1

𝛾𝛾 = (4)0.2857

β€œ Pont isentropique ”

T02S=450.2 K

Page 25: MF BLC 02a - Moodle

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 568 0C

T04s= 517 0C

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

450.2 3033030.85βˆ’

= +02 0102 01

βˆ’= +

Ξ·s

c

T TT T

03 1123T K= β†’

𝑝𝑝04

𝑝𝑝03=

𝑇𝑇04𝑠𝑠

𝑇𝑇03

⁄𝛾𝛾 π›Ύπ›Ύβˆ’1 β€œ Pont isentropique ”

14

=𝑇𝑇04𝑠𝑠

1123

⁄𝛾𝛾 π›Ύπ›Ύβˆ’1

𝑇𝑇04S = 755.7𝐾𝐾

= πŸ’πŸ’πŸπŸπŸŽπŸŽ. 𝟐𝟐𝟏𝟏

Page 26: MF BLC 02a - Moodle

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 545 0C

T04s= 4830C

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

04 755.7β†’ =sT K

T K04 817.7=

π‘»π‘»πŸŽπŸŽπŸ’πŸ’ = 𝑇𝑇03 βˆ’ πœ‚πœ‚π‘‡π‘‡(𝑇𝑇03 βˆ’ 𝑇𝑇04𝑆𝑆)

π‘»π‘»πŸŽπŸŽπŸ’πŸ’ = 1123 βˆ’ 0.85 1123 βˆ’ 755.7 = 817.7K

Page 27: MF BLC 02a - Moodle

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

02 02

04 02

" 0.7T TT T

Οƒ βˆ’= =

βˆ’ 02 02 04 02" ( )T T T T= + βˆ’Οƒ

02 02 04 04" "βˆ’ = βˆ’T T T T

04 04 02 02" "= + βˆ’T T T T 2’’

4’’ 4

2

K715.2

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 545 0C

T04s= 4830C

T K04 817.7=π‘»π‘»πŸŽπŸŽπŸπŸ = πŸ’πŸ’πŸπŸπŸŽπŸŽ. 𝟐𝟐𝟏𝟏

π‘»π‘»πŸŽπŸŽπŸπŸβ€²β€² = 476.2 + 0.7(817.7 βˆ’ 476.2) =

Page 28: MF BLC 02a - Moodle

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

04 " 817.7 476.2 715.2 578.6= + βˆ’ =T K

T K04 " 578.6β†’ =

02 01( ) 30 1.004(476.2 303)= βˆ’ = Γ— βˆ’

c PW mc T T

03 04( ) 30 1.004(1123 817.7)= βˆ’ = Γ— βˆ’t pW mc T T

cW kW5216.8 =

kW9196=

04 02 02 "T T T

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 545 0C

T04s= 4830C

002 02 4 10" 715.2 476.2 817.7 303 K→ = = = =T K T K T K T

Page 29: MF BLC 02a - Moodle

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

9196=tW kW

002 02 4 10" 714.2 476.2 867.1 303 K→ = = = =T K T K T K T

5216=cW kW

( ) / 132.7 /= βˆ’ =

e t cW W W m kJ kg

''03 021123 715.2= =T K T K

''03 02( ) 407.8 /= βˆ’ =Pq c T T kJ kg

132.7 0.32407.8

= = =Ξ· eWq

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 545 0C

T04s= 4830C

Page 30: MF BLC 02a - Moodle

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

Ξ” = 4π›Ύπ›Ύβˆ’1

𝛾𝛾 = 1.4886

Ξ¦ =𝑇𝑇3

𝑇𝑇1=

1123303

= 3.706

cp = 1.004 β„π‘˜π‘˜π½π½ π‘˜π‘˜π‘”π‘”. 𝐾𝐾

We = cpT1Ξ” βˆ’ 1

ΔηTΞ¦ βˆ’

ΔηC

= 139.88 β„π‘˜π‘˜π½π½ π‘˜π‘˜π‘”π‘”. 𝐾𝐾

2”

22s

3

44s

4”

p01= 8 bar

p02= 32 bar

T01= 30 0C

T03= 850 0C

T02= 203 0C

T04= 545 0C

T04s= 4830C

002 02 4 10" 714.2 476.2 867.1 303 K→ = = = =T K T K T K T

Page 31: MF BLC 02a - Moodle

p01= p04= 8 bar T01=30 0C, T03=850 0C, rC =4, Ξ·C=0.85, Ξ·T =0.85, LHV=43000kJ/kg ,Οƒ=0.7. Ξ³c=1.4 Ξ·m=1,οΏ½Μ‡οΏ½π’Ž=30 kg/s

Ξ” = 1.4886 Ξ¦ = 3.706 cp = 1.004 β„π‘˜π‘˜π½π½ π‘˜π‘˜π‘”π‘”. 𝐾𝐾

We = 139.88 β„π‘˜π‘˜π½π½ π‘˜π‘˜π‘”π‘”. 𝐾𝐾

Q = cpT1 Ξ¦ βˆ’ 1 +Ξ” βˆ’ 1

Ξ·C+ Οƒ Ξ¦ 1 βˆ’ Ξ·T

Ξ” βˆ’ 1Ξ”

βˆ’ 1 +Ξ” βˆ’ 1

Ξ·C

Q = 411.81π‘˜π‘˜π½π½/π‘˜π‘˜π‘”π‘”

139.88 0.34411.81

= = =Ξ· eWq

002 02 4 10" 714.2 476.2 867.1 303 K→ = = = =T K T K T K T