SamDim Design

AN-24RV aircraft

 

Flight Instructions

Attention: metric system. 100 kts = 185 km/h. 1000 ft = 328 m. 10 miles = 18.5 km

Regimes for engine AI-24:

Regime (mode)

UPRT %

Take off

87-100

Nominal

65

0.85 nom.

52

0.7 nom.

41

0.6 nom.

34

0.4 nom.

22

0.2 nom.

12

 

Taxiing

Disengage the parking brake, the slowly advance the power levers until UPRT is around 30%. Once the plane starts moving cut back the power to around UPRT 20-25% for a taxi speed 30 km/h (16 kts).

Take-off and climbing

Flaps to 15° (third position).

Arm the brakes, turn propeller lock ON and raise the throttle briefly to 40%. Then raise to 100% and release the brakes (press ".").  Start to raise the plane at ~200 km/h, take off should be at ~220-250 km/h (depending on the weight). Keep the pitch approximately 8-9°. (max 10 deg.). After take off  retract the gear. Above 250 km/h and minimum 120m above ground altitude (AGL) raise the flaps. After raising the flaps, use trimm and throttle to keep the climbing rate constant and the speed at 300 km/h (162 kts). At about 400m AGL reduce UPRT 65% (nominal), and set pitch for a stable 300 km/h climbing. Climb rate will be as follows:

altitude (m)

climb rate (m/s)

0-2000

7.0

2000-3000

6.0

3000-4000

5.0

4000-5000

4.0

5000-6000

3.0

Cruising

Economic cruising mode is UPRT 52% (0.85 nominal). The best economical flight altitude is about 5000 m (16400 ft).

Altitude
(m)

Altitude (feet)

UPRT

IAS
(km/h)

IAS
(knt)

TAS
(km/h)

5 000

16 400

52%

330-340

172-178

440

6 000

19 700

52%

320-330

172-178

460

 

Descending

Descending mode is UPRT 20-30%. The alarm horn will be on below 38%. If bothers (I guess yes), turn ЗВУК - sound alarms switch OFF on the Engineer's panel. No speed brakes, so pay attention of speed.

Descend by approximately 350-360 km/h (180-185 kts) IAS and 5 to 10 m/s (900 to 1800 ft/min) of descend rate.  Keep 300 km/h (162 kts) on downwind and base legs.

The critical speed for descending is 540 km/h (290 kts) to avoid structure deformation.

Landing

Keep speed 300 km/h (162 kts) on pattern. On the downwind leg, extend the gear. On the base leg deploy the flaps to 15° and reduce speed to 250 km/h (130 kts). Before the final approach deploy the landing lights and the flaps to 38°. Keep speed approximately 200-210 km/h (108-110 kts) on the final approach. Before the touchdown reduce UPRT around 12-15%, and after touchdown UPRT 0%. Disengage (turn off) "propeller lock". Propeller blade angle will drop and that will create a rather strong back thrust (and noise). The brakes can be used below speed 150 km/h (81 kts) only.

Critical parameters

Maximal speed on descend: 540 km/h (290 kts)

Maximal speed to deploy the gear: 300 km/h (162 kts)

Maximal speed to deploy the flaps to 15°: 300 km/h (162 kts)

Maximal speed to deploy the flaps to 38°: 250 km/h (135 kts)

Maximal flight altitude:  8 400 m (26 800 ft)

Maximal side-speed of wind: 12 m/c (22 kts)

Take off distance: about 900 m (2950 ft)

Landing distance: about 600 m (2000 ft)

Fuel calculation

(unit: 1 lbs = 0.4536 kg)

Fuel consumption during cruising at altitude 6000 m (FL197): 705 kg/h (1550 lbs/h)

Fuel for taxi to line up and climbing to FL197 and descending from FL197, approach and taxi to full stop:  600 kg (1323 lbs)

Note that climb to FL197 and descend from FL197 takes approximately 200 km.

Example: calculate necessary fuel for distance 750 km at altitude 6000 m and cruising speed 460 km/h GS.

  1. Estimate distance for cruising flight: 750 km - 200 km = 550 km
  2. Estimate duration of cruising at final flight level: 550/460 = 1.2 h
  3. Fuel needed for cruising flight: 705 kg/h * 1.2 h = 846 kg
  4. Total fuel needed for flight: 600 kg + 846 kg = 1446 kg
  5. Take 500 kg of reserve fuel (depends on alternate airport distance)

Grand total: 1446 kg + 500 kg = 1946 kg