Performance Flashcards

1
Q

GRF*

A
  • 4th column NR -> Coverage <10%
    5th column NR -> water depth <= 3mm
    8th column Runway width report if <45m
  • If contaminant coverage for the third >25% , RWY -> Contaminated
  • must not use AIREP for upgrade Braking performance level
  • the Maximum upgrade RWYCC is 3 (Upgrade only when initial RWYCC 0,1)
  • depth >3mm -> Contaminated
  • Dry Snow -> can be blown if loose , compact by hand , fall apart up on release
  • SNOWTAM -> 8hr , issue whenever RCR receive
  • compact snow -> not increasing of friction (cant T/O in OM)
  • do not T/O when braking action poor , RWYCC1 , coefficient <= 0.25
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2
Q

Other Speed

A
  • Calibrated Air Speed (dynamic pressure) = total pressure - static pressure
  • Indicated Air Speed = วัดโดยเครื่องวัดซึ่งควรจะเท่ากับ CAS แต่จะคลาดเคลื่อนนิดนึง (Ki)
  • True Air Speed = CAS วัดเทียบอัตราการหมุนของโลก
  • Ground Speed = TAS + Wind component
  • Mach Number = TAS / Speed of sound -> higher slower
  • VMCG -> minimum control speed on ground
    CAS during T/O run which Engine fail to enable T/O with lateral deviate <= 30’
  • VMCA -> minimum control speed in the air (<1.2 Vstall)
    single engine , maintain path bank <5degree , heading change <20degree
  • VMCL -> minimum control speed during approach & landing
  • Vs -> CAS Stall Speed , minimum steady flight speed
  • VMU -> minimum unstick speed , pull control stick until tail strike & rotate
  • CI = cost of time / cost of fuel (ex CI30 mean 1min burn 30kg fuel)
  • Green dot Speed -> best lift drag ratio , Max Endurance , Best angle of climb
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3
Q

T/O Speed

A
  • Vef -> Engine Failure Speed , CAS at which engine assume to fail
  • V1 -> Decision Speed , Vef + recognition time 1sec
  • VR -> Rotation Speed , speed at which pilot initiate rotate 3degree/sec
  • Vlof -> Lift off Speed , CAS at which plane first airborne
  • V2 -> minimum speed that must be reach at height of 35’ above runway with 1 engine
  • Maximum Tire Speed 195kt (Ground Speed)
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4
Q

TOR TOD ASDA

A
  • TODwet = max of (TOD dry , TODn-1 wet)
  • Runway without clearway or Wet Runway TOD = TOR
  • ASDwet = max of (ASD dry , ASDn-1 wet , ASD wet)
  • ASD calculated plus a distance 2sec at V1 after Engine fail
  • TORA = runway length , distance from runway entry point to end of runway
  • TODA = TORA + length of clearway
  • ASDA = TORA + length of stopway
  • TODA calculated form main gear / ASDA
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5
Q

T/O Segment

A
  • First Segment 35’ or Vlof -> gear up
    Second Segment gear up -> ACC alt / Gradient 2.4%
    Third Segment ACC alt(min 400’) -> clean config
    Final Segment Gradient 1.2%
  • Gradient panelty 0.8%
  • minimum SID Gradient 3.3%
  • Runway Slope T/O Certificated +/- 2%
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6
Q

Cruise

A
  • LRC = 99% Max Range (ยอมเสีย 1% distance แลกกับ Speed ที่มากขึ้นเยอะ)
  • Kinetic Energy -> Speed / Acceleration
    Potential Energy -> Altitude / Climb
  • REC MAX
    Maximum Certificated = 398 (possible to maintain cabin pressure alt 8000’)
    Maximum Cruise Altitude
    0.3g buffet margin
    Climb ceiling 300’/min
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7
Q

Engine Fail at cruise

A
  • Critical point -> point which Engine Fail , drift down , net flight path clear terrain 2000’
  • no-return point -> point which not possible to turn back with net flight path clear terrain 2000’
  • continue point -> point which possible to continue with net flight path clear terrain 2000’
  • if no-return point is happen before continue point -> escape route
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8
Q

Landing

A
  • Stopway cant use for landing distance calculation
  • Displace Threshold -> slope 2% from obstacle + 60m to threshold
  • Vapp = Vls + Wind correction
  • Vapp target = GSmini + actual H-wind
  • Vref = Vls in CONF Full
  • ALD = Actual Landing Distance
    Distance between 50’ above runway threshold , the point where aircraft complete stop
  • Landing Climb Gradient 3.2% (All Engines , Gear Extend , landing config)
  • Approach Climb Gradient(CAT II/III) 2.5% (One Engines , TOGA , Gear Retract ,Go around config)
  • Approach Climb Gradient 2.1% (One Engines , TOGA , Gear Retract ,Go around config)
  • RLD = Required Landing Distance , minimum distance required at destination for dispatch
    RLDdry = ALD/0.6 <= LDA
    RLDwet = 1.15RLDdry <= LDA
  • Pressure altitude มากขึ้น -> LD มากขึ้น / Climb Gradient น้อยลง / Rate of Climb น้อยลง (แย่ลงหมด)
  • Flap สูงขึ้น -> LD น้อยลง / Climb Gradient ลดลง (มีข้อดีข้อเสีย)
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9
Q

Memory Item Speed

A

V1 > Vef , Vmcg
VR >= 1.05Vmca , V1
Vlof >= 1.05Vmu(n-1) , 1.08Vmu(n)
V2 >= 1.1Vmca , 1.13Vs1g
Approach climb gradient speed >= 1.23Vs1g , VMCL / <= 1.41Vs1g
Landing climb gradient speed >= 1.13Vs1g , VMCL / <= 1.23Vs1g
Vls , Vat -> IAS at threshold = 1.23Vs1g

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