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Boeing 737-800 Flight Simulator Flights

Flights recorded 4,166
Average flight score 97%
Total distance flown 3,466,256 nm
Departure
98%
vs 95% ▲ 3
Enroute
98%
vs 96% ▲ 2
Arrival
95%
vs 93% ▲ 3
Landing
88%
vs 86% ▲ 2
Boeing 737-800 flights at RKSS Gimpo International Airport
RKSS → RJTT
Gimpo International Airport to Tokyo Haneda International Airport
Boeing 737-800
22 Mar 2026 · 741 nm 98.36%
RKSS → RJTT
Gimpo International Airport to Tokyo Haneda International Airport
Boeing 737-800
18 Mar 2026 · 720 nm 92.16%
ZBAA → RKSS
Beijing Capital to Gimpo Intl
Boeing 737-800
22 Oct 2022 · 550 nm 82.21%
Boeing 737-800 aircraft photograph
Photo: 4300streetcar / CC BY 4.0 · Wikimedia Commons

The Boeing 737-800 is a narrowbody, twin-engine jet airliner built by Boeing, forming part of the 737 Next Generation (NG) family alongside the shorter -700 and the longer -900. It is flown as a core short- to medium-haul type by major carriers including WestJet, Delta Air Lines, Alaska Airlines and KLM, and is of interest to anyone tracking the type for its aerodynamic refinements, cabin evolution and role as a mainstay of narrowbody fleets.

Overview

The Boeing 737-800 is a narrowbody, twin-engine jet airliner built by Boeing, forming part of the 737 Next Generation (NG) family that also includes the shorter -700 and the longer -900. It is flown by airlines such as WestJet, Delta Air Lines, Alaska Airlines and KLM, for whom it is one of three Boeing 737 types in the fleet alongside the -700 and -900. Configured for short- to medium-haul service, it is used on domestic and regional international routes, with KLM's 737-800s flying mostly to destinations within Europe.

History & Development

Documented detail on the type's origins is limited, but its place within the wider 737 Next Generation family is clear: it sits between the -700 and -900 in Boeing's line-up, and operators such as KLM fly all three side by side within a single fleet. Across the NG family, aircraft already in service have subsequently received aerodynamic refinements, including the retrofit of Split Scimitar Winglets in place of the earlier Blended Winglet design, aimed at sharpening efficiency on longer-range missions.

Design & Specifications

The aircraft's aerodynamic efficiency is enhanced by Split Scimitar Winglet technology, an advance on the Blended Winglets fitted to earlier 737 NG aircraft. The retrofit package combines ventral strakes, scimitar-shaped wingtips and trailing-edge wedges, together reducing drag by 2 percent or more on longer-range missions. Paired with modernised engines, these aerodynamic improvements cut fuel consumption per seat by an average of 9 to 14 percent compared with earlier-generation 737s, while also reducing engine noise for improved cabin comfort. Later-build aircraft feature Boeing's Sky Interior, with sculpted sidewalls, larger window reveals and LED mood lighting. Cabin fit-out varies by operator: Alaska Airlines configures its 737-800s with 159 or 161 leather Recaro seats offering additional personal space and seatback power outlets, while WestJet's aircraft range from all-economy layouts of around 32 rows in a 3-3 configuration to premium cabins with adjustable headrests, personal device holders, and a mix of USB-C, USB-A and 120V AC power depending on cabin class. Accessibility provisions commonly include braille and raised row markers, wheelchair-accessible lavatories, onboard wheelchairs, assist handles, seat-belt extenders, baby-change tables and baby bassinets.

Performance & Handling

Detailed speed, range and ceiling figures are not covered in operator material reviewed, but the aerodynamic package fitted to later 737-800s is credited with a drag reduction of at least 2 percent on long-range sectors and an average cut in fuel burn per seat of 9 to 14 percent relative to earlier 737 variants. The modernised engines fitted alongside these aerodynamic changes also reduce noise, contributing to a quieter cabin environment.

Variants

The -800 sits within the 737 Next Generation family between the shorter -700 and the longer -900; KLM, for example, operates all three types within the same fleet, differentiated by size and range rather than by role. Some operators have progressively retrofitted their -800 aircraft with Split Scimitar Winglets in place of the original Blended Winglets to improve efficiency.

Operational Use

The 737-800 is flown as a core short- and medium-haul type by numerous airlines, including WestJet, Delta Air Lines, Alaska Airlines and KLM. At KLM the -800s fly mostly to destinations within Europe, operating as part of a mixed 737 fleet alongside the -700 and -900. Cabin configuration reflects each operator's market positioning: Alaska Airlines fits leather seating with inflight internet access, WestJet offers tiered cabin options with Wi-Fi and power provisions that vary by aircraft, and Delta markets the type as carrying its own signature onboard products and experiences.

Recent Boeing 737-800 flights at any airport
LIMP → LIEE
Parma Airport to Cagliari Elmas Airport
Boeing 737-800
31 Aug 2026 · 387 nm 98.41%
EETN → LEBL
Lennart Meri Tallinn Airport to Josep Tarradellas Barcelona-El Prat Airport
Boeing 737-800
30 Aug 2026 · 1,398 nm 99.91%
KDAL → KRNO
Dallas Love Field to Reno Tahoe International Airport
Boeing 737-800
30 Aug 2026 · 1,312 nm 99.51%
LEBL → EETN
Josep Tarradellas Barcelona-El Prat Airport to Lennart Meri Tallinn Airport
Boeing 737-800
30 Aug 2026 · 1,492 nm 96.59%
KPNS → KORD
Pensacola International Airport to Chicago O'Hare International Airport
Boeing 737-800
30 Aug 2026 · 839 nm 99.64%
EYVI → LEBL
Vilnius International Airport to Josep Tarradellas Barcelona-El Prat Airport
Boeing 737-800
30 Aug 2026 · 1,253 nm 99.88%
KDSM → KMDW
Des Moines International Airport to Chicago Midway International Airport
Boeing 737-800
29 Aug 2026 · 309 nm 97.23%
LSZH → EDDS
Zürich Airport to Stuttgart Airport
Boeing 737-800
29 Aug 2026 · 148 nm 95.38%
KBOS → KPHL
Logan International Airport to Philadelphia International Airport
Boeing 737-800
29 Aug 2026 · 344 nm 99.04%
LICJ → LIMP
Falcone–Borsellino Airport to Parma Airport
Boeing 737-800
29 Aug 2026 · 444 nm 98.55%
LPPR → LIME
Francisco de Sá Carneiro Airport to Milan Bergamo Airport / Antonio Locatelli Air Base
Boeing 737-800
29 Aug 2026 · 938 nm 98.47%
LEBL → LKPR
Josep Tarradellas Barcelona-El Prat Airport to Václav Havel Airport Prague
Boeing 737-800
28 Aug 2026 · 846 nm 99.72%
EYVI → LEBL
Vilnius International Airport to Josep Tarradellas Barcelona-El Prat Airport
Boeing 737-800
28 Aug 2026 · 1,231 nm 99.96%
EIDW → EBBR
Dublin Airport to Brussels Airport
Boeing 737-800
28 Aug 2026 · 494 nm 99.52%
LIBD → LICJ
Bari Karol Wojtyła Airport to Falcone–Borsellino Airport
Boeing 737-800
28 Aug 2026 · 258 nm 99.05%
LEBL → LZIB
Josep Tarradellas Barcelona-El Prat Airport to M. R. Štefánik Airport
Boeing 737-800
27 Aug 2026 · 857 nm 99.93%
EHAM → EGAE
Amsterdam Airport Schiphol to City of Derry Airport
Boeing 737-800
27 Aug 2026 · 514 nm 99.21%
LICT → LIBD
Vincenzo Florio Airport Trapani-Birgi to Bari Karol Wojtyła Airport
Boeing 737-800
27 Aug 2026 · 367 nm 98.26%
LIMF → LICT
Turin Airport to Vincenzo Florio Airport Trapani-Birgi
Boeing 737-800
26 Aug 2026 · 513 nm 98.44%
LIBC → LIMF
Crotone Airport to Turin Airport
Boeing 737-800
25 Aug 2026 · 606 nm 96.64%
KPNS → KSTL
Pensacola International Airport to St. Louis Lambert International Airport
Boeing 737-800
24 Aug 2026 · 563 nm 99.84%
EIDW → EBBR
Dublin Airport to Brussels Airport
Boeing 737-800
24 Aug 2026 · 469 nm 95.71%
LIPE → LIBC
Bologna Guglielmo Marconi Airport to Crotone Airport
Boeing 737-800
24 Aug 2026 · 493 nm 95.56%
SBPA → SBPA
Salgado Filho International Airport to Salgado Filho International Airport
Boeing 737-800
23 Aug 2026 · 90 nm 76.40%
SBPA → SBPA
Salgado Filho International Airport to Salgado Filho International Airport
Boeing 737-800
23 Aug 2026 · 36 nm 92.80%