V0.1 Airpsaces finished basic inbound and outbound
This commit is contained in:
@@ -4,15 +4,16 @@ This is a file to add LSGG (Geneva Airport) to the [Endless ATC](https://steamco
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## Features
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### Implimented
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* Realistic Airspace
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* realistic airlines and aircraft at LSGG (as of covid)
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### Planned
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* realistic airlines and aircraft at LSGG
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* SIDs
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* STARs
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## Basic Operations
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### Departures
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All departures have an initial climb of FL90. Most departures are towards the north and the northeast.
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### Arrivals
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All arrivals come in at the limit of the TMA FL160. The majority of arrivals are vectored downwind for the active runway and take an extended downwind in cases of high traffic. Holdings are outside of the Arrivals TMA and operated by Swiss Radar. There is significant terrain on the north and south side of the airport.
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## Known Issues
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* Celing, climb and descend altitudes restricted by game mechanics
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* BENOT arrival restricted to GG514 only onto BENOT1N RWY04 due to IAF on AOR edge
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+241
-44
@@ -223,42 +223,239 @@ airlines =
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##############################################################
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[area1]
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#TMA4.1
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##############################################################
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shape = polygon ; circle or polygon
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altitude = 3500 ; minimum allowed altitude in feet
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#name = X ; <name, if omited then planes inbound the main airport may enter this area>
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draw = 1 ; <number of invisible lines at the end of the polygon, omit for a full polygon>
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labelpos = -3.1, 10.9 ; <position of label>
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altitude = 7500 ; minimum allowed altitude in feet
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name = LL ; <name, if omited then planes inbound the main airport may enter this area>
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labelpos = -18.4, 12.89 ; <position of label>
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points =
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-8.1, 13.3
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0, 13
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-1, -4
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-7.6, -4
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-9.0, 10
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N46.50031, E5.58632
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N46.50131, E5.89028
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N46.57467, E6.10541
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N46.54509, E6.15373
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N46.45375, E6.07519
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N46.37271, E5.96220
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N46.31339, E5.74242
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## positions
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# the last point will be automatically connected to the first point
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[area2]
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#TMA4
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shape = polygon
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altitude = 7500
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#name = lsas
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labelpos = 3.86, 21.19
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points =
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N46.57467, E6.10541
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N46.54509, E6.15373
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N46.45375, E6.07519
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N46.37271, E5.96220
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N46.31339, E5.74242
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N46.24426, E5.79840
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N46.37702, E6.03617
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N46.57390, E6.32656
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N46.73333, E6.55702
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N46.76794, E6.44169
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[area3]
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#TMA5
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shape = polygon
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altitude = 7500
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labelpos = 20.36, 22.77
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points =
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N46.73333, E6.55702
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N46.67621, E6.75053
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N46.65868, E6.75206
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N46.54613, E6.89952
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N46.46916, E6.80134
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N46.44576, E6.72483
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N46.45543, E6.62513
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N46.58220, E6.49796
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N46.57390, E6.32656
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[area4]
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#TMA6
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shape = polygon
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altitude = 8500
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labelpos = 23.07, 8.40
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points =
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N46.46916, E6.80134
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N46.43143, E6.80296
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N46.42703, E6.82070
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N46.39257, E6.80367
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N46.35965, E6.80458
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N46.17440, E6.41631
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N45.98776, E6.23719
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N46.04852, E6.15897
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N46.43740, E6.69801
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N46.44576, E6.72483
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[area5]
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#TMA7
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shape = polygon
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altitude = 10500
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labelpos = 19.84, -0.96
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points =
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N46.35965, E6.80458
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N46.32079, E6.80581
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N46.25736, E6.85272
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N46.07779, E6.47823
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N45.87433, E6.27316
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N45.91907, E6.20389
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N45.97379, E6.25607
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N45.98776, E6.23719
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N46.17440, E6.41631
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[area6]
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#TMA8
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shape = polygon
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altitude = 9500
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name = LB
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labelpos = 2.45, -15.06
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points =
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N45.91907, E6.20389
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N45.93139, E6.18299
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N45.87377, E6.12841
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N45.82914, E5.58071
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N45.92996, E5.66084
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N45.90520, E5.73253
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N45.90240, E5.81703
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N45.91731, E5.88490
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N46.04852, E6.15897
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N45.98776, E6.23719
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N45.97379, E6.25607
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[area7]
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#TMA9
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shape = polygon
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altitude = 11500
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name = LB
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labelpos = -5.58, -24.87
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points =
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N45.82914, E5.58071
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N45.87377, E6.12841
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N45.84271, E6.10006
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N45.80667, E6.09516
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N45.77539, E5.97706
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N45.74465, E5.70102
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N45.79646, E5.55506
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[area8]
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#TMA10
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shape = polygon
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altitude = 11500
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name = LB
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labelpos = -5.66, -31.54
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points =
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N45.80667, E6.09516
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N45.77539, E5.97706
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N45.74465, E5.70102
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N45.79646, E5.55506
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N45.71675, E5.48792
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N45.68588, E5.49736
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N45.62078, E6.08624
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[area9]
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#TMA2
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shape = polygon
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altitude = 5500
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labelpos = -20.21, -9.11
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points =
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N45.92996, E5.66084
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N45.90520, E5.73253
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N45.90240, E5.81703
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N45.91731, E5.88490
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N46.04852, E6.15897
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N46.43722, E6.69775
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N46.43740, E6.69801
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N46.44576, E6.72483
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N46.45543, E6.62513
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N46.58220, E6.49796
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N46.52819, E6.38759
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N46.36766, E6.55055
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N45.97351, E5.84085
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N45.99943, E5.80369
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N46.08570, E5.78429
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N46.11749, E5.81722
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N46.18289, E5.68107
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N46.17281, E5.65549
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N46.11139, E5.58505
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N46.04364, E5.56927
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N45.97664, E5.59866
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[area10]
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#TMA3
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shape = polygon
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altitude = 6500
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labelpos = -14.35, -3.48
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points =
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N46.18289, E5.68107
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N46.24426, E5.79840
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N46.37702, E6.03617
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N46.57390, E6.32656
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N46.58220, E6.49796
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N46.52819, E6.38759
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N46.39407, E6.11037
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N46.11749, E5.81722
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[area11]
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#TMA1
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shape = polygon
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altitude = 3500
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labelpos = 14.62, 8.93
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points =
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N46.52819, E6.38759
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N46.36766, E6.55055
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N45.97351, E5.84085
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N45.99943, E5.80369
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N46.08570, E5.78429
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N46.11749, E5.81722
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N46.39407, E6.11037
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[area12]
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#CTR
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shape = polygon
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points =
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N46.19114, E5.93784
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N46.37068, E6.20219
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N46.38076, E6.23576
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N46.38033, E6.26280
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N46.37444, E6.28581
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N46.36455, E6.30395
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N46.34795, E6.31755
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N46.33143, E6.32075
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N46.31521, E6.31797
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N46.30108, E6.30813
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N46.12010, E6.03839
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N46.11127, E6.00912
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N46.11127, E5.98092
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N46.11693, E5.95929
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N46.13029, E5.93590
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N46.14671, E5.92535
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N46.16232, E5.92232
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N46.18075, E5.92803
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##############################################################
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[departure1]
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#[departure1]
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##############################################################
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runway = rwy2 ; runway identifier, <reversed use>
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route1 =
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bco2, beacon two
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12, 0
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18.6, 0
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18.6, 6.8
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25, 16.5
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#runway = rwy2 ; runway identifier, <reversed use>
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#route1 =
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# bco2, beacon two
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# 12, 0
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# 18.6, 0
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# 18.6, 6.8
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# 25, 16.5
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# first line of the route is the sid name (up to 5 characters will be displayed), and optional <pronunciation> of the sid name
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# next lines are one or more waypoint positions
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route2 =
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south
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12, 0
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15.3, -4.7
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0, -16.6
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0, -25
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#route2 =
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# south
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# 12, 0
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# 15.3, -4.7
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# 0, -16.6
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# 0, -25
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# the optional [departure] section adds routes to a specific runway direction
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# this overrides the default (single waypoint) SIDs with more detailed routes, and applies the routes to the specified runway only
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@@ -270,34 +467,34 @@ route2 =
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##############################################################
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[approach1]
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#[approach1]
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##############################################################
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runway = rwy1, rev ; runway identifier, <reversed use>
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beacon = lima, 1, 18, 0, lima ; selectable beacon to enable APP mode; define a beacon, or choose a name from beacon list above
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route1 =
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060
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-3, 22, 5500, 210
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1, 22
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1, 18, 4000
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-3, 18, 0, 180
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10.5, 3000, 200
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#runway = rwy1, rev ; runway identifier, <reversed use>
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#beacon = lima, 1, 18, 0, lima ; selectable beacon to enable APP mode; define a beacon, or choose a name from beacon list above
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#route1 =
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# 060
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# -3, 22, 5500, 210
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# 1, 22
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# 1, 18, 4000
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# -3, 18, 0, 180
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# 10.5, 3000, 200
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# first item of the route is the bearing from the plane towards the beacon; if there are multiple routes defined for this beacon, the closest bearing defines which route is selected
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# next lines are optional waypoints: ## position, <maximum altitude>, <maximum speed>
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# last line is the interception point on the ILS: ## distance (NM) from the (displaced) threshold, <maximum altitude>, <maximum speed>
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route2 =
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310
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1, 18, 4000
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-3, 18, 0, 180
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10.5, 3000, 200
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#route2 =
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# 310
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# 1, 18, 4000
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# -3, 18, 0, 180
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# 10.5, 3000, 200
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route3 =
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010
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1, 10
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1, 18, 4000
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-3, 18, 0, 180
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10.5, 3000, 200
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#route3 =
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# 010
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# 1, 10
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# 1, 18, 4000
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# -3, 18, 0, 180
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# 10.5, 3000, 200
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# multiple [approach] sections can be used for the same runway, to allow for multiple beacons
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# for easier creation of routes, use left Ctrl key to display current mouse coordinates, and left click while holding down Ctrl places temporary visual markers
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