Connect with us

Defense & Military

Bangladesh Air Force Training Jet Crash in Dhaka Kills 19 Injures 160

Bangladesh Air Force F-7 BGI training jet crashes into Dhaka school, causing 19 deaths and over 160 injuries amid safety concerns over aging aircraft.

Published

on

Tragedy in Dhaka: Bangladesh Air Force Training Jet Crash Claims 19 Lives and Injures Over 160

On July 21, 2025, a Bangladesh Air Force (BAF) F-7 BGI training aircraft crashed into the Milestone School and College campus in Dhaka’s Uttara area, resulting in the deaths of at least 19 people and injuring more than 160 others. The incident occurred during school hours, amplifying the scale of the tragedy as students and faculty were present in large numbers. The pilot, Flight Lieutenant Towkir Islam Sagar, reportedly attempted to divert the aircraft away from densely populated areas before impact.

This accident marks the deadliest aviation disaster in Bangladesh in decades, raising serious concerns about the safety of aging Military-Aircraft and the risks posed by training flights over urban zones. The government declared a national day of mourning and launched an investigation into the cause of the crash, while emergency services and military personnel conducted extensive rescue operations.

Background: Bangladesh Air Force and the F-7 BGI Aircraft

The Bangladesh Air Force was established during the country’s 1971 Liberation War and has since evolved into a key component of the nation’s defense infrastructure. Initially equipped with Soviet and Chinese aircraft, the BAF has long relied on cost-effective fighter jets such as the Chengdu J-7, a Chinese variant of the Soviet MiG-21. The F-7 BGI, the aircraft involved in the crash, is the most advanced version of this series and was introduced to the BAF between 2011 and 2013.

The F-7 BGI features a single Liyang Wopen-13F turbojet engine, capable of reaching speeds of up to Mach 2.2. Despite its speed and agility, the aircraft lacks modern Avionics, electronic warfare systems, and terrain-avoidance technology. These limitations have made it increasingly unsuitable for modern air combat and training operations, particularly in urban environments.

Historically, the BAF has experienced several aviation incidents involving the F-7 and other aging aircraft. Since 2008, at least 12 major Accident have been recorded, including a Yak-130 crash in May 2024. Investigations into past incidents have often cited mechanical failure, inadequate maintenance, and limited pilot training as contributing factors. Despite these concerns, the BAF continues to operate an estimated 36 F-7s due to financial constraints.

Aircraft Design Limitations

The F-7 BGI’s design, based on the MiG-21, presents several operational challenges. Its single-engine configuration increases the risk of catastrophic failure in the event of engine malfunction. Furthermore, the aircraft’s high landing speeds and limited stall-recovery mechanisms make it difficult to control during low-altitude operations, such as those involved in training exercises.

Experts have also pointed out the absence of modern safety features, such as automated terrain-avoidance systems and advanced radar. These shortcomings were highlighted in the recent crash, where the pilot was unable to recover the aircraft after a mechanical failure during a routine training sortie.

Despite these known issues, the BAF has continued to use the F-7 BGI due to its affordability and ease of maintenance. However, the increasing number of accidents has led to calls for a comprehensive review of the fleet and consideration of newer, safer alternatives.

“These aircraft lack modern terrain-avoidance systems, making low-altitude failures catastrophic.” , Bidhan Sarker, Aviation Safety Analyst

Details of the July 21 Crash

The ill-fated aircraft took off from BAF Base Bir Uttam A.K. Khandker at 1:06 PM local time for a standard training mission. Within 12 minutes of takeoff, the pilot reported a mechanical failure. Eyewitnesses reported seeing the aircraft descending rapidly before crashing into the Haider Ali Building on the Milestone School and College campus.

The impact caused a massive explosion, igniting over 1,500 gallons of aviation fuel and resulting in a fire that engulfed large portions of the building. The structure sustained severe damage, with a 4-meter-wide breach reported at the point of impact. Emergency services, including nine fire units and multiple ambulances, responded quickly but faced difficulties due to thick smoke and debris.

The casualties included 16 students, two teachers, and the pilot. An additional 164 people were injured, many of whom suffered severe burns. Hospitals in Dhaka, including the National Institute of Burn and Plastic Surgery, were overwhelmed with patients, prompting emergency triage protocols and the use of military helicopters for medical evacuations.

Government and Public Response

In the immediate aftermath, the government declared a national day of mourning and lowered flags to half-mast. A high-level Investigation committee was formed, led by Air Vice Marshal Muhammad Mafidur Rahman, with a mandate to submit findings within 30 days.

Public reaction was one of shock and grief, with social media flooded with images and videos of the crash site. Authorities issued warnings against the spread of unverified information and urged citizens to rely on official updates. International condolences poured in, including offers of assistance from neighboring countries.

Financial support was also announced, with the government allocating $3 million for victim compensation and infrastructure repair. An additional $1.5 million was earmarked for an immediate audit of the remaining F-7 fleet to assess their airworthiness.

Expert Opinions and Broader Implications

Experts and former military officials have expressed concern over the continued use of outdated aircraft like the F-7 BGI. Retired Air Marshal Masuduzzaman criticized the lack of investment in fleet modernization, noting that many of the BAF’s aircraft had not received necessary avionics upgrades due to budget constraints.

Comparisons have been drawn to similar incidents in other countries, such as India’s decision to phase out its MiG-21 fleet by 2024 following a series of fatal crashes. The move was accompanied by the introduction of more advanced aircraft like the Tejas, which feature modern safety and navigation systems.

International aviation bodies, including the International Civil Aviation Organization (ICAO), have called for the adoption of updated safety protocols and the establishment of independent investigation boards. According to ICAO data, Bangladesh’s aviation accident rate is nearly double the global average, highlighting the need for systemic reform.

“The Dhaka crash exemplifies the human cost of deferred military modernization and inadequate safety governance.” , Janes Defence Weekly

Conclusion

The July 21 crash in Dhaka serves as a stark reminder of the risks associated with operating outdated military aircraft in densely populated areas. The loss of life, particularly among young students, has left a nation in mourning and raised urgent questions about the safety of the BAF’s training practices and equipment.

Moving forward, Bangladesh faces a critical decision: continue relying on aging aircraft or invest in modernizing its air force to meet contemporary safety Standards. The tragedy may serve as a catalyst for long-overdue reforms, including fleet upgrades, enhanced pilot training, and stricter maintenance protocols. Only through such measures can future disasters be prevented and public trust restored.

FAQ

What caused the crash of the F-7 BGI in Dhaka?
Preliminary reports suggest a mechanical failure shortly after takeoff, but a full investigation is underway.

Who were the victims of the crash?
The victims included 16 students, two teachers from Milestone School and College, and the pilot of the aircraft.

What actions has the government taken in response?
The government declared a national day of mourning, formed an investigation committee, and allocated funds for victim compensation and aircraft safety audits.

Sources:
Reuters,
Hindustan Times,
The Daily Star,
Wikipedia,
Economic Times,
DW

Photo Credit: Al Jazeera

Continue Reading
Click to comment

Leave a Reply

Defense & Military

US Air Force Awards CCA Production Contracts to GA-ASI and Anduril

The Air Force awarded CCA production contracts to GA-ASI and Anduril on June 17, 2026, targeting 150 uncrewed aircraft by 2030.

Published

on

The Department of the Air Force awarded engineering, manufacturing development, and production contracts to General Atomics Aeronautical Systems Inc. and Anduril Industries on June 17, 2026, for the first increment of its Collaborative Combat Aircraft program.

The awards mark a transition from design to production for the uncrewed platforms, which are intended to fly alongside crewed fifth- and sixth-generation fighters. Concurrently, the Air Force selected three companies from a pool of six to advance mission-autonomy Software for the fleet, establishing a competitive marketplace for the program’s digital architecture.

Transitioning to airframe production

The production contracts follow an initial design phase that began in April 2024. General Atomics Aeronautical Systems Inc. (GA-ASI) will produce the FQ-42A, while Anduril Industries will Manufacturing the FQ-44A. Both aircraft were developed under accelerated acquisition timelines.

According to a press release from GA-ASI, the company moved from contract award to the Maiden-Flight of its YFQ-42A prototype in 15 months, achieving first flight in August 2025. The company confirmed that manufacturing for the production FQ-42A is already underway at its facilities.

David R. Alexander, president of GA-ASI, stated in the release that moving to production on the FQ-42A is the result of an extraordinary Partnerships and years of investment between the manufacturer and the U.S. Air Force.

Advancing mission-autonomy software

In parallel with airframe production, the Air Force is advancing the software required to operate the uncrewed aircraft in highly contested environments. The service selected Anduril, Shield AI, and Collins Aerospace to continue developing mission-autonomy systems.

Reporting by DefenseScoop indicates the three vendors received six-month Contracts to mature their software toward initial operational capacity criteria. Col. Timothy Helfrich, the Air Force program acquisition executive for fighters and advanced aircraft, detailed the evaluation process to the outlet.

“At the end of that six months, we will do an assessment of how much capability they have towards what is necessary for IOC, and then do another down-select to either one or two vendors for another six-month option,” Helfrich told DefenseScoop.

The Air Force plans to conduct a large-scale fly-off in 2029 to evaluate mission-autonomy software from the broader marketplace. Helfrich noted that the government retains the ability to order software licenses from any of the original six vendors if it serves the program’s best interests.

Strategic integration and fleet goals

The Collaborative Combat Aircraft (CCA) program represents a foundational shift in Air Force combat strategy. The modular Drones are designed to be retrofitted with various payloads to conduct strikes, perform reconnaissance, and execute electronic warfare operations with minimal direction from human pilots.

The uncrewed aircraft will integrate with the Lockheed Martin F-35A Lightning II, the Lockheed Martin F-22A Raptor, and the future F-47 Next Generation Air Dominance platform. According to Air & Space Forces Magazine, Helfrich emphasized that pairing the drones with crewed fighters allows the service to “extend reach, increase survivability, and generate the mass that is necessary in combat.”

DefenseScoop reported that the Air Force aims to field a minimum of 150 CCA systems by 2030. Long-term projections cited by Air & Space Forces Magazine indicate the service eventually wants approximately 1,000 of the uncrewed aircraft in its fleet.

AirPro News analysis

The June 17 contract awards demonstrate the Air Force’s commitment to decoupling hardware and software acquisition. By selecting airframe manufacturers separately from mission-autonomy providers, the service is enforcing a modular, open-systems architecture. This approach prevents vendor lock-in and allows the military to upgrade software capabilities at the pace of commercial technology development, rather than tying digital upgrades to airframe maintenance cycles.

We also note the aggressive timeline of the CCA program. Moving a clean-sheet combat aircraft from a design contract in April 2024 to a production award in June 2026 is a significant departure from traditional defense procurement timelines. The 15-month span from contract to first flight for the GA-ASI prototype suggests the Air Force is successfully applying rapid prototyping methodologies to field combat mass before the end of the decade.

Sources: U.S. Air Force

Photo Credit: U.S. Air Force – Courtesy Picture

Continue Reading

Defense & Military

Senate Bill Authorizes $2.5B for NOAA Hurricane Hunter Fleet

U.S. senators introduced a $2.5B bill to replace NOAA’s aging Hurricane Hunter fleet and expand it to nine aircraft.

Published

on

A bipartisan coalition of U.S. senators introduced legislation on June 17, 2026, authorizing $2.5 billion to replace the aging National Oceanic and Atmospheric Administration (NOAA) fleet of Hurricane Hunter aircraft. The bill aims to expand the fleet to as many as nine aircraft, securing critical data collection capabilities that improve storm forecasting accuracy by up to 20 percent.

The Hurricane Hunter Aircraft Recapitalization Act, detailed in a press release by the U.S. Senate Committee on Commerce, Science, & Transportation, seeks to codify the NOAA Hurricane Hunter mission into federal law. With much of the current fleet exceeding 50 years of age, the legislation mandates multi-year contracting for new aircraft acquisition and requires the agency to maintain backup aircraft to prevent operational gaps during active storm seasons.

Fleet expansion and funding authorizations

The bill increases the statutory limit of authorized aircraft from a maximum of six to a required range of six to nine. To fund this expansion, the legislation authorizes $2.5 billion in federal appropriations specifically designated for purchasing new airframes capable of executing the agency’s demanding meteorological missions.

Alongside acquisition costs, the bill allocates $45 million annually for NOAA aircraft operations and maintenance. It also includes provisions requiring NOAA to maintain a sufficient roster of qualified NOAA Corps aviators and aircrews to operate the expanded fleet. This ensures that the physical aircraft are matched with the specialized personnel required to fly into severe weather systems.

Bipartisan support and operational impact

The legislation was introduced by Senators Ted Cruz (R-Texas), Maria Cantwell (D-Wash.), Roger Wicker (R-Miss.), Tedd Budd (R-NC), Lisa Blunt Rochester (D-Del.), and Alex Padilla (D-Calif.). Lawmakers emphasized the direct link between the aircraft data and public safety. Senator Cruz noted that the aircraft collect critical data that produces more accurate forecasts and earlier warnings, which safeguard critical infrastructure and reduce costly disruptions to supply chains.

Regional impacts were a focal point for the sponsoring senators. Senator Cantwell highlighted the fleet’s role in the Pacific Northwest, where atmospheric rivers are becoming more frequent and severe. Senator Wicker emphasized the protection of Gulf Coast communities, noting that the data is critical for first responders and local officials managing emergency responses.

The data collected by flying directly into developing storm systems provides the National Hurricane Center (NHC) with real-time meteorological information. According to the committee, this direct observation improves forecast models by up to 20 percent, giving communities more time to prepare for evacuations and secure property before disaster strikes.

AirPro News analysis

We note that recapitalizing a highly specialized fleet like the NOAA Hurricane Hunters presents unique procurement challenges. The current fleet includes heavily modified Lockheed WP-3D Orions and a Gulfstream IV-SP, platforms that require extensive custom instrumentation to survive and collect data within severe weather environments. A $2.5 billion authorization signals a serious commitment to replacing these legacy airframes, likely drawing interest from major aerospace Manufacturers capable of delivering robust, high-altitude, and long-endurance platforms. The mandate to maintain backup aircraft also reflects a growing recognition of the operational strain placed on the current 50-year-old fleet during increasingly active hurricane seasons.

Sources: U.S. Senate Committee on Commerce, Science, & Transportation

Photo Credit: NOAA

Continue Reading

Defense & Military

GALT Aerospace Acquires North Star Scientific Corporation

GALT Aerospace acquires Hawaii-based North Star Scientific, adding C3ISR hardware for key U.S. military aviation platforms.

Published

on

Defense technology provider GALT Aerospace announced the acquisitions of Hawaii-based North Star Scientific Corporation on June 15, 2026, expanding its portfolio of command and control hardware for military-aircraft platforms.

The transaction marks the first add-on acquisition for San Diego-based GALT Aerospace since private equity firm Godspeed Capital Management purchased the company in March 2026. According to the press release issued by GALT Aerospace, the integration of North Star Scientific Corporation (NSS) will diversify the company’s installed base across high-priority United States military programs.

Expanding C3ISR capabilities

Founded in 2001 in Kapolei, Hawaii, NSS specializes in Command, Control, Communications, Intelligence, Surveillance, and Reconnaissance (C3ISR) hardware. The acquisition brings high-power radio frequency (RF) amplifiers, transmitters, next-generation antennas, and electronically scanned arrays into the GALT Aerospace product line.

These components are currently integrated into several major military aviation platforms. Supported aircraft include the Northrop Grumman E-2D Advanced Hawkeye, the Boeing E-3 Sentry, and the Boeing EA-18G Growler. The hardware also supports the Multifunctional Information Distribution System Joint Tactical Radio System (MIDS JTRS).

Alongside its Hawaiian headquarters, NSS recently established a manufacturing center in Oklahoma City, Oklahoma, to support production demands.

Strategic integration and defense contracts

The acquisition aligns with Godspeed Capital’s stated goal of building GALT Aerospace into a foundational defense technology platform. NSS holds established relationships with key defense organizations, including the U.S. Air Force, Naval Air Systems Command (NAVAIR), Naval Sea Systems Command (NAVSEA), and the Office of Naval Research (ONR).

“This acquisition represents another meaningful step in building a market-leading defense technology platform and diversifying GALT’s program base within a highly strategic and complementary customer set,” said Mike Roualet, Principal at Godspeed Capital.

GALT Aerospace CEO John Kohut stated the company intends to leverage the NSS team to deliver high-reliability C3ISR solutions to the national security community.

AirPro News analysis

While the official announcement headline characterized the transaction as a “Strategic Partnerships,” the body of the release and statements from Godspeed Capital explicitly define the move as an acquisition. We view this as standard private equity terminology management, where buyouts are often framed as partnerships to maintain continuity at the acquired firm. The rapid execution of this purchase, coming just three months after Godspeed Capital acquired GALT Aerospace, indicates an aggressive roll-up strategy aimed at consolidating mid-tier C3ISR suppliers for the U.S. Department of Defense.

Sources: GALT Aerospace via Business Wire

Photo Credit: North Star Scientific

Continue Reading
Every coffee directly supports the work behind the headlines.

Support AirPro News!

Advertisement

Follow Us

newsletter

Latest

Categories

Tags

Every coffee directly supports the work behind the headlines.

Support AirPro News!

Popular News