Добавил:
Upload Опубликованный материал нарушает ваши авторские права? Сообщите нам.
Вуз: Предмет: Файл:
Aircraft_design.pdf
Скачиваний:
692
Добавлен:
03.06.2015
Размер:
15.01 Mб
Скачать

548

 

 

Aircraft Cost Considerations

 

Table 16.14. Bizjet data for DOC estimation

 

 

 

 

 

 

 

 

 

 

 

 

 

Aircraft details

Turbofan details (two engines)

Conversion factors

 

 

 

 

 

 

MTOW – 9,400 kg

TSLS/Engine – 17.23 kN

1 nm = 1.852 km

 

OEW – 5,800 kg

Dry Weight – 379 kg

U.S. gallon = 6.78 lb

 

MEW – 5,519 kg

Bypass Ratio – 3.2

1 lb = 0.4535 kg

 

Payload – 1,100 kg

No. of Compressor Stages – 10

1 ft = 0.3048 m

 

Range – 2,000 nm

Overall Compressor Ratio – 14

1 kg fuel = 0.3245 gallon

 

Block Time – 5.38 hr

No. of Shafts = 2

 

 

 

Block Fuel – 2,233 kg

Fuel Cost = $0.75 per U.S. gallon

 

 

Notes:

10 passengers

It has one high-pressure compressor, four-stage low-pressure compressor, and one fan. Aircraft price = $7 million

Engine price = $1 million

Total aircraft acquisition cost = $8 million (total investment per aircraft; price includes spares)

Then, DOC per hour = (fixed charges + trip charges)per hour and DOC per trip =

t × (DOC)per hour and DOC per aircraft mile = DOC×100×block time and DOC per pas-

range

senger mile per nautical mile

DOC×100×block time

.

 

= range×number of passengers

16.5.2 Worked-Out Example of DOC: Bizjet

Based on the previous formulations, this section works out the DOC of the Bizjet example. Rather than working on an entire fleet, only one aircraft is worked out herein. Input for the DOC calculation of the Bizjet is provided herein; manhour rates are in [3]. All cost figures are in U.S. dollars and are rounded up to the next higher figure. Table 16.14 provides aircraft and engine details.

The DOC is computed for a single aircraft to obtain the trip cost rather than the per-hour cost. A lifespan of 14 years is used with a residual value of 10% of the total investment.

Aircraft Price

Total investment = $8 million

Utilization (per block hour per annum in hours/year)

 

Utilization, U = (

 

3,750

) × 5.38 = 637.75 × 5.38 = 3,431 hours per year

 

(5.38+0.5

 

where t = block time for the mission = 5.38 hours

Fixed-Cost Elements

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Depreciation

=

0.9×8×106

×

5.38

=

$807 per trip

 

 

 

14×3,431

 

 

 

 

6

 

 

5.38

 

$665 per trip

 

Loan interest repayment

=

0.053×8×10

 

×

=

 

 

 

 

 

 

 

 

 

3,431 6

 

 

 

 

Insurance premium

=

0.005

×

[

8×10

 

×

5.38]

=

$63 per trip

 

 

 

 

 

 

 

 

 

3,431

 

 

 

 

Crew salary and cost

(a) Flight crew

493 × 5.38 = $2,652 per trip for two crew

(b) Cabin crew = 0 because there is no cabin crew

Trip-Cost Elements

Landing fees = 7

.8 9.4

× 5.38 = $74 per trip

5×.38

16.5 Aircraft Direct Operating Cost

 

 

 

 

 

 

 

549

 

Navigational charges

=

 

100 1.1

 

×

*

 

×

5.38

=

$803 per trip

 

 

 

 

0.5×2,000×1.852

 

9.4

 

 

 

 

 

 

5.38

 

 

50

 

 

 

 

 

Ground-handling charges =

5.×38

× 5.38 = $110 per trip

Airframe maintenance, material, and labor

(a) airframe labor

=

 

×

 

×

 

+

 

(5.52 × 1.02 + 75)

 

×

 

+

5.38

 

 

 

(0.09

 

5.52

 

1.02

 

6.7

 

 

350

)

 

0.8

 

0.68 × (5.38

0.25)

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

× 63 = (1.853) × 1.448 × 63 = $169 per trip

 

 

 

 

 

 

 

 

(b) airframe material cost = (

4.2+2.2×(5.380.25)

) × 7 × 5.38 = $109 per trip

 

 

5.38

 

where Cairframe = $7 million

Total airframe maintenance (material + labor) = 910 + 109 = $1,019 per trip

Engine maintenance, material, and labor

(a)engine labor = 0.21 × 63 × 1.018 × 0.89 × (1 + 1.72)0.4 = $17.88 per hour where T = 17.23 KN = 1.72 tons

C1 = 1.27 0.2 × 3.20.2 = 1.018 C3 = 0.032 × 10 + 0.57 = 0.89

(b)engine material cost = 2.56 × (1 + 1.72)0.8 × 1.018 × (0.652 + 0.89)

= 5.7 × 1.542 = $8.79 per hour

where C2 = 0.4 × (14/20)1.3 + 0.4 = 0.652

C1 and C3 are the same as before.

(c) direct engine maintenance cost (labor + material)

2

(17.88 8.79)

 

(5.38 + 1.3)

 

$ 308 per trip

= ×

+

×

(5.38

0.25)

=

 

 

 

Fuel charges = 2, 233 × 0.3245 × 0.75 = $544 per trip

The baseline Bizjet DOC is summarized in Table 16.15. Then, DOC per hour = 7,045/5.38 = $1,309.50 per hour.

DOC per aircraft nm = 7,045 = $3.52 per nm per trip

2,000

DOC per passenger mile per nm = 7,045 = $0.352 per nm per passenger

2,000 × 10

DOC details of a midsize, high-subsonic transport aircraft are in Appendix C.

OC of the Variants in the Family

Large Variant: MTOM = 10,800 kg and 14 passengers

Aircraft Price = $9 million

Ownership Cost Element = $1,727

Crew Cost = $3,047

Fuel Cost = $625

Maintenance/Operational Charges = $2,650

Total Operational Cost = $8,049

Then, DOC per hour = $8,049/5.38 = $1,496.40 per hour

The DOC per aircraft nm = 8,049 = $4.025 per nm per trip

2,000

550

Aircraft Cost Considerations

Table 16.15. Bizjet summary of DOC per trip (in U.S. dollars)

Fixed cost elements

 

 

 

 

 

 

 

 

 

Depreciation

807

 

 

 

Interest on Loan

665

 

 

 

Insurance Premium

63

 

 

 

Total Ownership Cost

1,535

 

 

 

Flight Crew

2,652

 

 

 

Cabin Crew

0

 

 

 

Total Fixed Cost Elements

4,187

 

 

 

Trip Cost Elements

 

 

 

 

Fuel Charges

544

 

 

 

Navigational Charges

803

 

 

 

Landing Charges

74

 

 

 

Ground-handling Charges

110

 

 

 

Maintenance (Airframe)

1,019

 

 

 

Maintenance (Engine)

308

 

 

 

Total Trip Cost Elements

2,858

 

 

 

Total DOC

$7,045 per trip

 

 

 

 

 

 

The DOC per passenger mile per nm =

8,049

= $0.2875 per nm per passenger.

2,000×14

Smaller Variant: MTOM = 7,900 kg and six passengers

Aircraft Price = $6.2 million

Ownership Cost Element = $1,228

Crew Cost = $2,201

Fuel Cost = $451

Maintenance/Operational Charges = $1,916

Total Operational Cost = $5,796

Then, DOC per hour = $5,796/5.38 = $1,077.30 per hour.

The DOC per aircraft nm = 5,796 = $2.898 per nm per trip.

2,000

The DOC per passenger mile per nm = 5,796 = $0.483 per nm per passenger.

2,000 × 6

Соседние файлы в предмете [НЕСОРТИРОВАННОЕ]