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weight and performance calculations for the Boeing 737-900ER

***** PRELIMINARY FILE ****

Boeing 737-900ER | Continental | N39423 | 737-924ER landing

Boeing 737-924ER N39423 van Continental

Boeing 737-900ER

role : jet airliner

importance : ****

first flight : operational : March 2007

country : United States of America

design :

production : 505 737-900ER aircraft

general information :

Version with longer range. July 2005 it is launched with an order for 30

pieces placed by the Indonesian Lion Air. Price for a 737-900ER 112.6 mln USD 2019.bereikcom Continental

primary users : Continental, Lion Air

Accommodation:

flight crew : 2 cabin crew : 6

passengers : seating for 176 in two class : 12 business class and 164 economy class seats ( 32 -in pitch)

exit limit : 215 passengers

engine : 2 GE-Snecma CFM56-7B24 turbofan engines of 106.75 [KN] (23998.0 [lbf])

dimensions :

wingspan : 34.31 [m], length : 42.11 [m], height : 12.55 [m]

wing area : 125.0 [m^2] fuselage exterior width : 3.76 [m]

Boeing 737-900ER  | Delta Air Lines | side view

weights :

empty weight : 44676 [kg]

operating empty weight : 44676 [kg] max. structural payload : 23045 [kg]

Zero Fuel weight (ZFW) : 67721 [kg] max. landing weight (MLW) : 71350 [kg]

max.take-off weight : 85139 [kg] weight fuel : 23737 [kg] (29671 [liter])

performance :

Max. operating Mach number (Mmo) : 0.84 [Mach] (938 [km/hr]) at 7620 [m]

normal cruise speed : 880 [km/hr] (Mach 0.84 ) at 11582 [m] (35 [%] power)

economic cruise speed : 833 [km/hr] (Mach 0.79 ) at 11582 [m]

service ceiling : 12500 [m]

range with max fuel : 5460 [km] (ATA domestic fuel reserves - 370.0 [km] alternate)

Boeing 737-900ER | Lion AIr | PK-LFT

Lion Air Boeing 737-900ER PK-LFT

description :

low-wing cantilever monoplane with retractable landing gear with nose wheel

two spar fail-safe wing structure

with double slotted flaps with slotted LE flaps (slats) ,with spoilers airfoil : NACA with supercritical cross-section

sweep angle 3/4 chord: 25.0 [°]

engines attached with pylons to the wing, main landing gear attached to the wings, fuel tanks in the wings and fuselage

construction : all-metal aluminium-alloy stressed-skin construction with pressurized fuselage

fuselage shape : 0

calculation : *1* (dimensions)

measured wing chord : 6.39 [m] at root

mean wing chord : 3.64 [m]

calculated average wing chord tapered wing with rounded tips: 3.65 [m]

wing aspect ratio : 9.42 []

seize (span*length*height) : 18132 [m^3]

calculation : *2* (fuel consumption)

oil consumption : 6.4 [kg/hr]

fuel consumption (econ. cruise speed) : 3391.6 [kg/hr] (4239.4 [litre/hr]) at 29 [%] power

distance flown for 1 kg fuel : 0.25 [km/kg] at 11582 [m] height, sfc : 55.4 [kg/KN/h]

total fuel capacity : 29671 [litre] (23737 [kg])

calculation : *3* (weight)

weight engine(s) dry : 4740.0 [kg] = 22.20 [kg/KN]

weight 64 litre oil tank : 5.47 [kg]

oil tank filled with 1.3 litre oil : 1.2 [kg]

oil in engine 2.6 litre oil : 2.3 [kg]

fuel in engine 11.7 litre fuel : 8.54 [kg]

weight fuel lines 63.3 [kg]

weight engine cowling 555.1 [kg]

weight thrust reversers 85.4 [kg]

total weight propulsion system : 5461 [kg](6.4 [%])

***************************************************************

Accommodation cabin facilities:

typical 2-class cabin layout for 176 passengers : economy : pitch : 81.3 [cm] ( 3+3 ) seating in

29.7 rows

weight seats : 920.0 [kg]

high density seating passengers : 215 [pax] at 6 -abreast seating in 35.8 rows, pitch 71.1

[cm] (28-in)

Boeing 737-900ER | interior arrangements

pax density, normal seating : 0.66 [m2/pax], high density seating : 0.54 [m2/pax]

weight 4 lavatories : 57.5 [kg]

weight 3 galleys : 229.1 [kg]

weight overhead stowage for hand luggage : 61.6 [kg]

Alaska Airlines takes delivery of the first Boeing 737-900 ER featuring  Boeing's new “Space Bins” | World Airline News

Alaska air 737-900ER interior

weight 4 wardrobe closets : 35.2 [kg]

weight 61 windows : 55.3 [kg]

weight 6 1.83x0.86 [m] entrance/exit doors : 275.0 [kg]

weight 2 freight doors (belly) : 72.8 [kg]

belly baggage/cargo hold volume front : 24.50 [m3]

belly baggage/cargo hold volume rear : 31.82 [m3]

passenger compartment volume : 149 [m3]

passenger cabin max.width : 3.53 [m] cabin length : 33.91 [m] cabin height : 2.20 [m]

floor area : 116.0 [m2]

weight cabin facilities : 1706.6 [kg]

safety facilities:

weight 4 over wing emergency exits : 87.4 [kg]

weight 9 hand fire extinguisher : 26 [kg]

weight cockpit voice recorder (CVR) and flight data recorder (FDR): 20.0 [kg]

weight oxygen masks & oxygen generators : 114.4 [kg]

weight emergency flare installation : 10 [kg]

weight 6 emergency evacuation slides : 150.4 [kg]

weight safety equipment & facilities : 408 [kg]

fuselage construction:

fuselage aluminium frame : 11599 [kg]

floor loading (payload/m2): 199 [kg/m2]

weight rear pressure bulkhead : 144.9 [kg]

fuselage covering ( 398.3 [m2] duraluminium 2.49 [mm]) : 2609.0 [kg]

weight floor beams : 679.1 [kg]

weight cabin furbishing : 1015.1 [kg]

weight cabin floor : 1616.5 [kg]

fuselage (sound proof) isolation : 288.2 [kg]

weight 8703 [litre] main central fuel tanks empty : 487.4 [kg]

weight empty waste tank : 18 [kg]

weight fuselage structure : 18457.2 [kg]

Avionics:

weight HF and UHF radio : 7.0 [kg]

weight dual cloud-collision radar : 25.0 [kg]

weight VOR/ILS,RMI,Doppler,radio altimeter : 12.0 [kg]

weight Integrated Flight System / auto-pilot : 23.0 [kg]

weight artificial horizons, compass, alti-meters : 7 [kg]

weight engine monitoring gauges & control switches : 6 [kg]

weight avionics : 80.0 [kg]

Boeing 737-900ER | aircraft classification number - rigid pavement

Systems:

Air-conditioning and pressurisation system maintains sea level conditions up to 6275 [m]

and gives equivalent of 2000 [m] at 10700 [m]. pressure differential : 0.57 [bars] (kg/cm2)

pressurized fuselage volume : 358 [m3]

weight air-conditioning and pressurisation system : 215 [kg]

weight APU / engine starter: 53.4 [kg]

weight lighting : 58.1 [kg]

weight engine-driven 40kVA electricity generators : 44.0 [kg]

weight controls : 17.6 [kg]

weight systems : 387.8 [kg]

total weight fuselage : 21040 [kg](24.7 [%])

***************************************************************

total weight aluminium ribs (1194 ribs) : 3036 [kg]

weight engine mounts : 107 [kg]

weight 6 fuel tanks empty for total 20968 [litre] fuel : 1174 [kg]

weight wing covering (painted aluminium 4.11 [mm]) : 2775 [kg]

total weight aluminium spars (multi-cellular wing structure) : 2356 [kg]

weight wings : 8167 [kg]

weight wing/square meter : 65.34 [kg]

weight thermal leading-edge anti-icing : 37.7 [kg]

weight fin & rudder (13.7 [m2]) : 894.8 [kg]

weight stabilizer & elevator (14.1 [m2]): 919.7 [kg]

weight flight control hydraulic servo actuators: 59.7 [kg]

weight double slotted flaps (21.1 [m2]) : 591.7 [kg]

weight leading edge slats (6.8 [m2]) : 125.3 [kg]

weight spoilers (4.6 [m2]) : 27.1 [kg]

total weight wing surfaces & bracing : 12104 [kg] (14.2 [%])

UR-PSL Ukraine International Airlines Boeing 737-94XER(WL) photographed at Almaty International (ALA / UAAA) by Damir Kagarmanov - Kazakhstan Spotting Club

Ukraine International Boeing 737-94XER(WL) UR-PSL c/n 36087 taking off

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tyre pressure main wheels : 15.47 [Bar] (nitrogen), ply rating : 30 PR

Can only operate from paved runways

wheel pressure : 18730.6 [kg]

weight 4 Dunlop main wheels (1130 [mm] by 420 [mm]) : 1254.8 [kg]

weight 2 nose wheels : 313.7 [kg]

weight multi-disc wheel-brakes : 67.7 [kg]

weight flywheel detector type anti-skid units : 5.4 [kg]

weight oleo-pneumatic shock absorbers : 90.3 [kg]

weight wheel hydraulic operated retraction system : 831.6 [kg]

weight undercarriage struts with axle 1553.0 [kg]

total weight landing gear : 4116.5 [kg] (4.8 [%]

*******************************************************************

********************************************************************

calculated empty weight : 42721 [kg](50.2 [%])

weight oil for 7.4 hours flying : 53.8 [kg]

weight lifejackets : 79.2 [kg]

weight 3 life rafts : 110.0 [kg]

weight catering : 381.9 [kg]

weight water : 611.0 [kg]

weight crew : 648 [kg]

weight crew lugage,nav.chards,flight doc.,miscell.items : 71 [kg]

operational weight empty : 44676 [kg] (52.5 [%])

********************************************************************

weight 176 passengers : 13552 [kg]

weight luggage : 2816 [kg]

weight cargo : 6677 [kg] (cargo+luggage/m3 belly : 156 [kg/m3])

zero fuel weight (ZFW): 67721 [kg](79.5 [%])

weight fuel for landing (1.1 hours flying) : 3629 [kg]

max. landing weight (MLW): 71350 [kg](83.8 [%])

max. fuel weight : 68413 [kg] (80.4 [%])

payload with max fuel : 180 passengers+luggage 16726 [kg]

published maximum take-off weight : 85139 [kg] (100.0 [%])

Alaska Airlines Boeing 737 900ER N248AK | thrust reversers deployed

Alaska airlines 737-900ER N248AK rolling out after landing

calculation : * 4 * (engine power)

power loading (Take-off) : 399 [kg/KN]

power loading (Take-off) 1 PUF: 798 [kg/KN]

max. total take-off power : 213.5 [KN]

calculation : *5* (loads)

manoeuvre load : 4.4 [g] at 1000 [m]

limit load : 3.0 [g] ultimate load : 4.5 [g] load factor : 1.1 [g]

design flight time : 4.34 [hours]

design cycles : 21614 sorties, design hours : 93787 [hours]

max. wing loading (MTOW & flaps retracted) : 681 [kg/m2]

wing stress (2 g) during operation : 187 [N/kg] at 2g emergency manoeuvre

calculation : *6* (angles of attack)

angle of attack zero lift : -1.69 ["]

max. angle of attack (stalling angle, clean) : 11.07 ["]

max. angle of attack (full flaps) : 10.27 ["]

angle of attack at max. speed : 2.02 ["]

calculation : *7* (lift & drag ratios

lift coefficient at angle of attack 0° : 0.15 [ ]

lift coefficient at max. speed : 0.33 [ ]

lift coefficient at max. angle of attack : 1.13 [ ]

max. lift coefficient full flaps : 1.63 [ ]

drag coefficient at max. speed : 0.0408 [ ]

drag coefficient at econ. cruise speed : 0.0542 [ ]

induced drag coefficient at econ. cruise speed : 0.0182 [ ]

drag coefficient (zero lift) : 0.0360 [ ]

lift/drag ratio at max. speed : 8.06 [ ]

calculation : *8* (speeds

stalling speed clean at sea-level (OW loaded : 81747 [kg]): 346 [km/u]

stalling speed at sea-level with full flaps (normal landing weight): 243 [km/u]

landing speed at sea-level (normal landing weight : 70854 [kg]): 279 [km/hr]

approach speed at sea-level with full flaps (normal landing weight): 316 [km/u]

max. rate of climb speed : 555 [km/hr] at sea-level

max. endurance speed : 398 [km/u] min. fuel/hr : 3205 [kg/hr] at height : 1524 [m]

max. range speed : 925 [km/u] min. fuel consumption : 4.000 [kg/km] at cruise height : 11582 [m]

cruising speed : 880 [km/hr] at 11582 [m] (power:30 [%])

max. operational speed (Mmo) : 938.00 [km/hr] (Mach 0.84 ) at 7620 [m] (power:43.9 [%])

airflow at cruise speed per engine : 155.7 [kg/s]

speed of thrust jet : 1617 [km/hr]

climbing speed at sea-level (loaded) : 1223 [m/min]

climbing speed at 1000 [m] with 1 engine out (PUF / MTOW) : 289 [m/min]

calculation : *9* (regarding various performances)

take-off speed : 358.8 [km/u]

high wheel pressure, can only take off from paved runways

take-off distance at sea-level concrete runway : 3043 [m]

take-off distance at sea-level over 15 [m] height : 3156 [m]

Boeing 737-900ER | takeoff runway length requirements

Runway length : sea level, mtow, 3000m

landing run : 1293 [m]

landing run (C.A.R.) from 15 [m] at SL, dry runway : 1715 [m]

landing run (C.A.R.) from 15 [m] at SL, wet runway : 2015 [m]

lift/drag ratio : 12.42 [ ]

climb to 5000 [m] with max payload : 3.90 [min]

climb to 10000 [m] with max payload : 6.54 [min]

theoretical ceiling fully loaded (mtow- 60 min. fuel:81747 [kg] ) : 14000 [m]

calculation *10* (action radius & endurance)

possible additional cargo : 358 [kg]

range with max. payload: 4155 [km] with 23045.0 [kg] max. useful load (73.4 [%] fuel)

range with high density pax: 4952 [km] with 215 passengers (86.2 [%] fuel)

range with typical two-class pax: 5849 [km] with 176 passengers (100.0 [%] fuel)

range with max.fuel : 5830 [km] with 8 crew and 180 passengers and 100.0 [%] fuel

ferry range : 6830 [km] with 2 crew and zero payload (100.0 [%] fuel)

max range theoretically with additional fuel tanks total 52427.3 [litre] fuel : 11178 [km]

Available Seat Kilometres (ASK) : 1029458 [paskm]

useful load with range 1000km : 23045 [kg]

useful load with range 1000km : 215 passengers

EL AL Boeing 737 900ER Seating Layout Configuration | Seating plan, Boeing, Boeing  737 | top view drawing

production (theor.max load): 20280 [tonkm/hour]

production (useful load): 20280 [tonkm/hour]

production (passengers): 154880 [paskm/hour]

oil and fuel consumption per tonkm : 0.168 [kg]

fuel cost per paskm : 0.022 [eur]

crew cost per paskm : 0.007 [eur]

economic hours : 55750 [hours] is less then design hours

time between engine failure : 865 [hr]

can continue fly on 1 engine, low risk for emergency landing for PUF

writing off per paskm : 0.004 [eur]

insurance per paskm : 0.0006 [eur]

maintenance cost per paskm : 0.018 [eur]

direct operating cost per paskm : 0.051 [eur]

direct operating cost per tonkm (max. load): 0.393 [eur]

direct operating cost per tonkm (normal useful load): 0.393 [eur]

September 2010 there have been no serious accidents with a

737-900ER.

Boeing 737-900 | Ukraine international cabin crew posing at the entrance door of UR-PSL

cabin Crew of Ukraine International 737-94XER(WL) UR-PSL

Literature :

Boeing 737 Next Generation - Wikipedia

www.boeing.com

https://contentzone.eurocontrol.int/aircraftperformance/default.aspx?

https://www.boeing.com/search/results.html?q=airplane+characteristics

Boeing 737-900ER - Price, Specs, Photo Gallery, History - Aero Corner

DISCLAIMER Above calculations are based on published data, they must be

regarded as indication not as facts.

Calculated performance and weight may not correspond with actual weights

and performances and are assumptions for which no responsibility can be taken.

Calculations are as accurate as possible, they can be fine-tuned when more data

is available, you are welcome to give suggestions and additional information

so we can improve our program. For copyright on drawings/photographs/

content please mail to below mail address

(c) B van der Zalm 22 October 2022 contact : info.aircraftinvestigation@gmail.com python 3.7.4