Showing posts with label South Africa. Show all posts
Showing posts with label South Africa. Show all posts

Friday, September 27, 2013

Dassault Mirage III (Part 2) Progeny: The Cheetah and Kfir

Mirage III Progeny: The Cheetah program


During the early 1980's, the SAAF faced modern Soviet aircraft and weapons in Angola. Being handicapped by a UN arms embargo, the SAAF had to act urgently to improve its capabilities. 
The SAAF never had a large number of combat aircraft to spare. It only had about forty combat-ready 1970's-vintage Mirage F1's. If it was to take them out of service to upgrade them, it had no replacement other than the  even older, 1960's-vintage Mirage III's. These were shorter-ranged, had less powerful engines and obsolete combat systems, and could carry less ordnance. This meant any upgrade would have to be applied first to the older Mirage III's, as they were the only aircraft that could be spared from combat operations for that purpose.

Fortunately, this wasn't a bad choice in the end. Two major aircraft programs had demonstrated what could be done by building on the foundation of the Mirage III, probably one of the most successful proven combat aircraft of it's day. First, Dassault Aviation was by then producing the successor to the Mirage F1, the Mirage 2000, which returned to the delta-wing format of the Mirage III.


Mirage III D

Israel agreed to supply systems and components, and the green light for the Cheetah project was given in the early 1980's. In order to provide a measure of diplomatic and political 'cover' for Israel, it was decided (as with  many South African weapons projects) to claim that it was an purely indigenous development. Despite huge similarity between the Kfir and the Cheetah, officials in on both sides  steadfastly deny that the two aircraft had anything in common. 

The SAAF provided Israel a two-seat Mirage IIID as the prototype air frame for conversion. It was stripped down completely and all components subject to metal fatigue or stress were replaced, effectively returning the air frame new condition. An extended nose cone was fitted, derived from the Kfir TC.2 model, which housed advanced electronic systems, and small canard wings were fitted above the air intakes to improve low-speed handling and angle of attack. (The canards on the D and E model Cheetahs were smaller than those used on the later Cheetah C's, reportedly because it was too difficult to reinforce the fuselage frames in the engine intake area to accommodate the larger units. The Cheetah C's used the same full-size canards as the Kfir; but their air frames were supplied by Israel, as noted below. Presumably they weren't subject to the same limitations as the French-air frame-based Cheetah D's and E's.)

Israel Aircraft Industries (IAI), together with several other companies in that country's defense industry, had already produced a series of Mirage derivatives. Israel had purchased Mirage III aircraft from France prior to the Six-Day War of 1967, and had ordered a further 50 Mirage 5's (a simplified version of the Mirage III). However, these were embargoed by France after the conflict. Undaunted, Israel stole the plans to the Mirage III from Switzerland, which was license-manufacturing the aircraft (Swiss engineer, Alfred Frauenknecht, would later be sentenced to 4½ years imprisonment for his collaboration with Israel).

Israel used these plans to develop its own fighters. The first  was the Nesher, almost an exact copy of the Mirage 5 (indeed, it's so exact that some sources suggest IAI actually assembled Mirages, clandestinely supplied in kit form by France, rather than manufactured the Nesher itself). A total of 60 Neshers appear to have been manufactured, most sold to Argentina at the end of the 1970's under the name of Dagger 



These aircraft confronted British forces during the Falklands War. Israel went on to produce the Kfir, a considerably upgraded Mirage derivative with Israeli electronics with a US J79 turbojet engine (As on the F-4 Phantom II fighter-bomber, also operated by Israel at the time).



Argentine "Dagger"

The IAI Nammer ("Leopard",  frequently mistranslated as "Tiger") was a fighter aircraft developed in Israel in the late 1980s/1990s as a modernised version of the Kfir for the export market. Although a prototype was built and flown, buyers were not forthcoming and development was ceased. The avionics of the Nammer were those of the cancelled Lavi project.

The Nammer promised an upgrade package for existing Mirage III and Mirage 5 air frames. Two configurations were proposed, one based around re-engining with a General Electric F404, the other around retaining the Mirage's SNECMA Atar engine. Elta EL/M-2011 or EL/M-2032 fire-control radar was to be fitted. The first of these options maximised performance and range, the second maximised the aircraft's air-to-air targeting capability. As development progressed, the Nammer came to be advertised as a new-build aircraft with the EL/M-2032 an integral part of the package, and customers able to choose their preferred engine out of the F404 (or its Volvo derivative, the RM-12), the SNECMA M53, or the Pratt & Whitney PW1120. The design strongly resembled the Kfir C-7,but was easily distinguished by its longer nose and lack of a dorsal air scoop under the tail fin

Details of the weapon and control systems fitted to the Cheetah have never been publicly revealed by the SAAF, but it can probably assumed they were close to or identical to those found on various models of the Kfir. IAI lists them as including, in the latest Kfir version:

The radar used in the Cheetah D and E models (and in the Kfir C.7) was the simple Elta EL/M-2001Bunit. The Cheetah C, the last development of this project, possibly had the much more advanced Elta EL/M-2032 . The Cheetah C's electronic systems were probably on a par with those of the F-16C/D fighter-bombers of the USAF at the time.

The intermediate single-seat Cheetah E model:



Here's the final iteration of the Cheetah, the 'C' model:



The SAAF's two-seat Mirage IIID variants were the first to be converted. This was probably for two reasons. First, and most pragmatically, the two-seat air frames could be most easily spared from operational duties. Second, they were probably urgently needed to replace the worn-out two-seat Buccaneer aircraft in the nuclear strike role (South Africa had six nuclear weapons, developed at the height of its political isolation and military struggle, which were dismantled in the early 1990's). The Buccaneers had not been updated with modern strike systems, which limited their usefulness; so the upgraded Cheetah D's would have been welcome in this role.

Sixteen two-seat Cheetah D's were produced, as well as 16 single-seat Cheetah E's, the latter mostly converted from Mirage IIIEZ air frames (although some were reportedly converted from air frames supplied by Israel, due to a shortage of suitable South African Mirages). All had been delivered by 1991. Finally, 38 Cheetah C's were produced under the auspices of 'Project Tunny'. 
The Cheetah C's were reportedly based on stripped down Kfir air frames supplied by Israel, modified to accept the French Atar engine rather than the US J79.  Most of the SAAF's Mirage III's had been delivered during the 1960's. Some had reached the end of their fatigue lives, and were thus unsuitable for conversion. Others had been lost in accidents, and the Cheetah E conversions had absorbed many of the remainder.

Given these two facts, there would not have been enough usable single-seat Mirage III air frames left in the SAAF inventory to produce 38 Cheetah C's.  one can safely assume that the reports that say Israel supplied the fuselages for the latter is accurate. Apart from the prototype Cheetah D, most of the conversions were carried out in South Africa by Atlas Aircraft Corporation (today part of Denel Aviation), with Israeli technical assistance (which decreased as local industry gained experience and competence).

The C models were delivered from 1993-1995, replacing the Cheetah E's, which were retired. Some of the two-seat Cheetah D's were retained in service as lead-in trainers for the C versions, and to provide a specialist strike function if required. A single experimental Cheetah R version was produced, using a Mirage IIIR2Z airframe, but no other reconnaissance versions were converted, and the Cheetah R did not enter squadron service, being retired soon afterwards. The reconnaissance function was taken over by Cheetah C's fitted with pod-mounted cameras.

The first ACW prototype was tested on the only Cheetah R, and a more evolved model was tested on a two-seat Cheetah D. The latter improved the Cheetah's sustained turn rate by 14%, and permitted maximum takeoff weight to be increased by well over half a ton. It also permitted angles of attack up to 33 degrees at low speeds, with much greater stability, at the expense of a reduction of approximately 5% in the aircraft's maximum supersonic speed. However, for budgetary reasons the SAAF declined to upgrade their Cheetahs with the ACW, and it was never put into production.


If it lost aircraft due to combat or accident  it could not replace them, due the embargo; and it had to keep its combat planes as up-to-date as possible, to ensure they did not become so obsolete that they risked being shot down in large numbers by more advanced enemy aircraft. 


Mirage 2000-5F of the French Air Force

South Africa had friendly ties with Israel, particularly in the military field.  South African technological institutions such as the Council for Scientific and Industrial Research (CSIR), and local defense companies such as Kentron (today Denel Dynamics), Reutech and others, were developing advanced radar and electro-optical detection and guidance systems. The latter companies in particular often collaborated with their Israeli counterparts (up to and including producing Israeli components and systems under license in South Africa). It would therefore be entirely feasible for the advanced combat systems of the Kfir to be 'transplanted' into the Mirage III's of the SAAF, including local assembly and partial production if necessary.


AI Kfir, in US Navy colors under the designation F-21A,
where it served as an adversary aircraft for Dissimilar Air Combat Training

The Cheetah had a considerably more powerful and more economical engine, greatly improved avionics and weapons systems, and a fly-by-wire control system, which rendered it far superior to the Mirage III from which it stemmed. (It's generally accepted that the French Mirage 2000 is roughly comparable, in terms of its overall capability, to contemporary models of the US F-16 Fighting Falcon or the Soviet MiG-29.) The SAAF reasoned that if Dassault could develop the Mirage III into a fully modern warplane, they could do likewise. This was aided by the fact that in the 1970's, South Africa had purchased a license to manufacture the Mirage III and F1, as well as the latter's Atar 09K-50 turbojet engine. All the necessary plans were thus already on hand.



Given that the Cheetah prototype was converted in Israel, it's very interesting to note the proposed IAI Nammer aircraft of the late 1980's. Wikipedia info:




You can't help but notice that the line drawing above is virtually identical to the pictures of the Cheetah C and Kfir 2000 . Also note that the translation of 'Nammer' is the name of a big cat. A co-incidence? Did the prototype' of the Nammer become the prototype SAAF Cheetah C ?  It would certainly have been a good cover story to disguise IAI's involvement with the latter program. 



SAAF Cheetah C in Service Ysterplaat AFB

Pilot friendly advanced "Glass" Cockpit;Hands On Throttle And Stick (HOTAS) operation;
Advanced multi-mode Fire Control Radar (FCR) with SAR; State-of-the-art weapons delivery, including Beyond Visual Range missiles; Digital Moving Map (DMM); Electronic Warfare (EW) Suite.


The Israeli lineage of the Cheetah is clearly demonstrated by comparing the aircraft side-by-side. The SAAF Cheetah D, the initial two-seat version of the aircraft:




Kfir TC.2 of the Israeli Air Force:




Note identical extended and slightly downward-sloping nose cones, housing the electronics; the canard wings above the engine air intakes; and the strakes on the nose cone. Note the second curved strake running from the base of the nosecone down and back along the bottom of the fuselage. The Cheetah has an air refueling probe on the starboard side of the cockpit, which is absent from the Kfir TC.2, but an identical probe may be seen on other Kfir models, as shown below. The rear fuselage is different as the Cheetah uses a French Atar engine, while the Kfir uses the US turbojet; but from the engine forward, there's virtually no difference.


And the single-seat Kfir C.7:



Note that both have small strakes at the tip of the nose cone, identical instrument probes beneath it, and an in-flight refueling probe that goes to the starboard air intake, rather than behind the cockpit, as in the later Cheetah C. The Cheetah E also incorporates the Kfir C.7's additional two weapons stations beneath the air intakes. I therefore consider the Cheetah E and the Kfir C.7 to be essentially identical from the engine forward.



      IAI publicity photograph of their Kfir 2000 


The refueling probes are different, but the noses of the two aircraft are, again, almost identical. (Note, too, their similarity to the IAI Nammer mentioned above.) As far as its weapons and electronic systems are concerned, the Cheetah C is the functional equivalent of the Kfir 2000 (also known as the Kfir C.10.

The first sixteen Mirage III's supplied to the SAAF were 'C' model interceptors, with a shorter fuselage than subsequent models - too short to be converted into Cheetah C's, which have a longer fuselage. They could not have been lengthened without a reconstruction so extensive (and expensive) that it would have effectively meant producing a new air frame.


Vinten Vicon 18 Series 601 reconnaissance pod mounted beneath a Cheetah C

Some of the Cheetah D aircraft had been converted from Mirage IIID2Z airframes, which had been delivered with Atar 09K-50 engines in the 1970's. Naturally, they retained these more powerful engines in their Cheetah guise. The remainder of the D's, and the Cheetah E models converted from Mirage IIIE's, retained their 1960's-vintage Atar 09C turbojet engine, as local production of the more powerful Atar 09K-50 (used in the Mirage F1) had proved economically unfeasible - South Africa's technological base was insufficiently advanced to manufacture all of the required components. In any event, due to changing circumstances , the lower-powered Cheetah models would all be retired within a few years.

Efforts were mounted to obtain additional 9K-50 engines to equip the Cheetah C models. The Mirage F1 was operated by a number of other countries, including Jordan, Iraq, Morocco and Qatar, all of whom also purchased armaments from South Africa. It is possible that one or more of those nations made Atar 9K-50 engines available to South Africa in return for arms shipments. The most likely candidate would have been  Iraq.

They bought over 80 Mirage F-1's from France, and, as mentioned above, obtained 100 G5 howitzer cannon from South Africa. (Iraq was engaged in a war with Iran from 1980-1988). 

Since combat operations would naturally impose greatly increased wear on the engines of its aircraft, it could order large numbers of replacement engines without arousing suspicion. I have little doubt that some of these replacements were swapped for South African artillery and/or ammunition - probably at a very favorable 'rate of exchange', because South Africa needed the engines very badly.)



The retirement of the SAAF's Mirage F1 fleet in the 1990's was partly (although by no means exclusively) caused by the need to transplant at least some of their engines into the Cheetah fleet. The surviving F1CZ interceptors were retired in 1992. 

Some of their engines went into the Cheetah C program. The Cheetah D and E versions (which had all entered service by 1992) took over from them until the Cheetah C's were ready. The last of the Mirage F1AZ's were retired in 1997, after all the Cheetah C's had entered service.



Mirage F1

If the Cheetah aircraft had a major weakness, it was their engines. The Atar 9C engines used by Mirage III's were rated at a maximum of 13,240 pounds static thrust with afterburner. The Atar 9K-50 engine of the Mirage F1 was rated at 15,873 pounds static thrust with afterburner, an increase in power of almost 20%. 

The core technology of both these engines was based on the German BMW 003 axial-flow turbojet developed during World War II, and was becoming increasingly dated. Technology that old simply couldn't keep pace with more modern developments. The Atar 9-series turbo jetengines weren't nearly as powerful (or as economical) as the turbofan engines installed in more modern military aircraft such as the F-16 or the MiG-29 (using two Klimov RD-33 turbofans, each rated at 18,285 pounds static thrust with afterburner. Such engines weren't available to South Africa at the time the Cheetah program was developed, so the SAAF had to make do with what it could get.

The Cheetahs used an upgraded wing, offering improved aerodynamic qualities compared to that originally fitted to the Mirage III. The wing design from the Carver program was experimentally adapted to fit the Cheetahs as the Advanced Combat Wing, or ACW. The diagram below shows how more advanced Cheetah wings evolved, from the initial production variant to a final design with missile stations on the wingtips. The ACW was flight-tested, but never entered service. 



The ACW had a fixed, drooped leading edge. An early iteration (Version 2 as shown above) had a simple notch in the leading edge at mid-span, while a later model (Version 3 above) had a much wider slot. This permitted underwing mounting of the SAAF's standard 500-liter (about 132 US gallon) drop tanks, which would otherwise have struck the lowered leading edge. Additional fuel tanks were incorporated into the drooped leading edge, which were claimed to improve the Cheetah's radius of action by almost 100 kilometers (just over 60 miles).

Official and unofficial South African sources claim that the Cheetahs were very successful, and popular with their pilots. Compared to the earlier Mirage III's and F1's, this is probably true. 
The Cheetah C's were  more capable than anything preceding them in the SAAF inventory. In terms of their electronics and weapons systems, they could certainly have matched the 1980's-vintage MiG-23's and -27's, and Sukhoi Su-20/22's, that the SAAF encountered in Angola. 

Due to the lower power of their engines, I don't believe they could have matched the Soviet aircraft in acceleration or top speed. One cannot believe claims from some South African sources that the Cheetah C was comparable in performance to the US F-15 Eagle. 



SAAF Cheetah C over USS Forrest Sherman, Cape Town 2007

Despite its limitations, the Cheetah program was a success, albeit at a very high price. Including all research, development, tooling, purchase and production expenses, and averaging them across the 71 aircraft produced (16 D's, 16 E's, 38 C's and a single R - the latter not entering service), each Cheetah cost South Africa well over twice the price of a brand-new contemporary equivalent (e.g. the Mirage 2000) on the open market. Operating in a sanctions environment, there was no alternative. 

The program updated obsolete third-generation jet combat aircraft to fourth-generation standards as far as their weapons and electronic systems were concerned, and provided the SAAF with an aircraft capable of handling any regional threat at the time. Fortunately, with the end of the Angolan War in the late 1980's, the collapse of the Soviet Union in the early 1990's, and the end of apartheid in 1994, no more sophisticated threats arose that would have required a more technologically advanced response.

During the 1990's the SAAF found itself in a budgetary crisis. Not surprisingly, the first democratically-elected post-apartheid government prioritized restoring balance to political, economic and social structures Funding was directed largely to such efforts. Furthermore, the military threats facing the country had almost completely evaporated, compared to the days of the Border War and international sanctions, which had driven the Cheetah program from its inception. 

There was no longer a pressing need for combat aircraft, but a need to conserve the SAAF's much more restricted budget. The number of front-line aircraft was therefore slashed. Only one squadron was retained, operating 28 Cheetahs (a mixture of single-seat C's and two-seat D's, all powered by Atar 09K50 engines). The remainder of the Cheetah fleet was retired from SAAF service. A couple were used as development aircraft, but most were placed in storage. Some were later sold to other nations. The last Cheetahs were retired in 2008, and are presently being replaced by 26 Saab Gripen multi-role fighters.




SAAF Saab Gripen fighters

Sadly, these reductions in force and budgetary constraints caused major problems for the SAAF in retaining the services of its highly qualified and skilled pilots. Many of them saw no future for themselves in the new climate of politically correct restructuring, and resigned to pursue more lucrative opportunities elsewhere. Some became mercenary pilots of combat aircraft for other nations and/or organizations, where their superior flying skills and combat experience were greatly appreciated and well compensated. 

The SAAF's budgetary and personnel problems have not abated since. It has been rumoured that only 8 trained pilots for its Saab Gripen fighters remain , down from 30 pilots in 2005 and 20 in 2008. 

The SAAF is presently in the midst of a crisis as far as trained personnel are concerned . . . a very sad situation for a service that only two decades ago boasted pilots equal to, if not better than, those of most first-class air forces, including the USAF. The SAAF will probably never regain the very high standards it had attained by the end of the Border War in the 1980's.

And the sad end of the road for some Cheetahs:




More info on SAAF Mirages:

The Mirage F1 (click to follow links) 3 Parts, including the Border war:
Part 1 History of the F1
Part 2 The Border War: F1s in Combat
Part 3 Combat record and First Hand Account (Arthur Piercy)

(Source Wings and Wiki, other Internet sources. Not for gain, just a fan blog. No copyright infringement intended)

Thursday, March 21, 2013

Last Denel Rooivalk (Red Kestrel) rolls off assembly line - end of an era?


Last Denel AH2 (CS2) Rooivalk (Red Kestrel) 

rolls off assembly line



The South African Air Force (SAAF) has taken delivery of the final operation-ready Rooivalk helicopter from Denel Aviation.

Mike Kgobe, the chief executive of Denel Aviation says the acceptance of the locally developed combat support helicopter marks the culmination of a 26-year partnership between the SAAF and Denel. 

"We took this proudly South African aircraft through all its stages - from design to manufacturing, upgrading and retrofitting "

Denel will continue to be involved with the Rooivalk through on-going maintenance and repair services and providing the continued airworthiness engineering support to ensure the fleet of 11 helicopters remains mission ready.





Kgobe says the Rooivalk project is indicative of the symbiotic relationship between Denel Aviation and the SAAF. "We are always ready to provide technical and ground support to ensure the operational readiness of the Air Force's fleet," he said.

"This is a win-win situation for both Denel and the SAAF which results in the retention of high-level skills, a focused service delivery and cost effectiveness for the SAAF," says Kgobe.

The company recently received a "zero defect report" from the SAAF to confirm that all 11 Rooivalk helicopters have been upgraded to block 1F baseline standards.

Denel Aviation is receiving excellent feedback from the SAAF - and especially from 16 Squadron at Air Force Base Bloemspruit - where the first batch of helicopters has now been flying since April 2011

Dewald Steyn, the project manager of Rooivalk, at Denel Aviation says the performance of the aircraft is being closely monitored and evaluated from a design and development perspective. The helicopter has exceeded the expectations and no major maintenance or repair work required thus far.







The Rooivalk project started its design phase in 1984 and had its first flight in April 1990. It attracted world-wide attention for its design and capabilities and has been displayed at major international air shows in England, Dubai and Malaysia.

I worked in the UK in 1995-96, and had occasion to be seated on a train travelling to London from the South-East across from 2 suited gentlemen, whom I presume worked for the UK Government in one or another capacity. They had drawings and spec sheets of the Rooivalk on their laps, and were hotly discussing its merits/failings and comparing to 2 or 3 other attack helicopters. 

We had of course, already seen and heard about the Rooivalk in SA, and were aware that Denel was tendering for the new generation of attack helicopters in the EU and UK. From their discussion it was already apparent that Denel was losing the race to the US competitors.


Denel Aviation was responsible for the final modifications to the helicopter to improve its safety and reliability and the accuracy of its weapons systems.

Monday, March 18, 2013

SAAF Mirage F1 (Part 1)

Mirage F1 Development History and SAAF Early Days

Development: 

  The Mirage F1 came about as successor to the Mirage III for the French Air Force in the late 1960s.

A variety of new technologies were evaluated and tested including vertical take-off and swing-wing configurations. Dassault Industries developed the F1 as a private venture, providing a cheaper multi-purpose aircraft, designed to obtain the best operational radius and efficiency and offering the widest versatility possible at the time..

The idea was that even a small fleet of these aircraft should represent an important military threat, as later proved later in Angola! It was to be able to operate from remote and short rough air strips, with a  low landing speed (145 knots). It needed comparatively little ground equipment, and had a self starter. It offered a short turn-around time of about 15 minutes between two identical missions, and pressure refueling took only six minutes! An engine change involving four men took only about three hours.

The SDAP automatic testing unit enabled automatic trouble shooting in the field. The GAMO alert unit allowed the Mirage F1 to be scrambled in less than 2 minutes. Thus it was to prove an ideal 'Bush' warfare aircraft capable of operating for extended periods away from it’s home base, as was the case for the SAAF operating in Namibia.



Prototypes:
The French Mirage F1C prototype first flew on the 23rd of December 1966 at Melun-Villaroche, piloted by Dassault chief pilot, René Bigand, reaching Mach 2 on the 4th flight.




Flight trials continued until, during a low-altitude high-velocity pass, the horizontal stabilizers of Mirage F1-01 broke away due to a divergent vibration phenomenon called ‘flutter’ and the aircraft struck the ground near Fos-sur-Mer, killing René Bigand. Despite the accident, notification was given of an order for three pre-production aircraft: the Mirage F1-02, 03 and 04 with the Atar 9 K 50 jet engine.



During September 1967, the French Air Force expressed interest on the Mirage F1C as an all weather interceptor, carrying the Cyrano IV radar. The second prototype F1-02 first flew in March 1967 and the third in September 1969. On the 17th June 1970, the final prototype F1-04 flew. This became the production version.



Characteristics and performance
Wingspan8.40 m
Length15 m
Weight
Unladen 7 400 kg
Performance
Max. Speed> Mach 2Top mach level flight
Max. height18 500 m / 60 700 ftPractical ceiling
Engine
TypeSnecma Atar 9 K 50 70.6 kN


French Combat Experience:
The French Air Force Mirage F1C first saw combat during Operation Manta in August 1983, strafing an enemy column. The French intervened in the Chad, to counter growing Libyan encroachment. Four Mirage F1C-200s provided air cover for a force of four Jaguars, and took part in skirmishes against the pro-Libyan GUNT rebels.


In 1986, French Mirage F1s returned to Chad, as part of Operation Epervier, with four F1C-200s providing fighter cover for a strike package of eight Jaguars during the air raid against the Libyan airbase at Ouadi Doum, on February 16. Two F1CRs also flew pre and post-strike reconnaissance missions.


In October 2007, three Mirage 2000s and three Mirage F1s were deployed at Kandahar Air Force Base, where they flew close air support and tactical reconnaissance missions in support of international forces in Southern Afghanistan.

The Mirage F1 is coming to the end of its useful lifespan within the French Military and the type was retired from service following closures to the 2 main bases Reims-Champagne and Colmar-Meyenheim in 2009-2010.


In July 1973 Dassault tendered the Mirage F1E (Mirage M53) as contender for a new European fighter aircraft contract required by Belgium, Denmark, the Netherlands and Norway. To meet this tender specification the Mirage F1 was equipped with more sophisticated avionics, and the more powerful M53 engine. This engine is shorter than the standard Snecma ATAR 9K50 and required larger air intakes and a shorter rear fuselage. Unfortunately, the F1 was beaten in this potentially lucrative deal by the American General Dynamics F-16. Despite this, the Mirage F1 was an export success : 473 aircraft equipped the Air Forces of South Africa, Spain, Greece, Kuwait, Libya, Morocco, Ecuador, Iraq, Jordan and Qatar.

South African Connection: 
The F1-04 prototype was the first Mirage F1 ever flown by a South African.
Zach Repsold flew it on 6 October 1971. This model differed from the others by using slotted slats. On the 14th March 1974, the French Air Force received their first Mirage F1.

South Africa began looking to replace the Mirage III by the early 1970s . The Mirage F1 was an improvement on the Mirage III: It had an increased speed, increased pursuit flight time , speed (a tripled mach rating) with an increased  ground mission range (doubled) Take off runway use was 1/3 reduced, with 1/4 less approach speed plus increased maneuverability. On the 27th June 1971, Dassault and SNECMA announced a technical cooperation agreement with South Africa for the license manufacture of the Mirage F1 and engine. The intention was to produce up to 100 Mirage F1s.


The 1977 arms embargo against SA invalidated this production license; and the Atlas Mirage F1 Program never moved beyond the assembly stage. The South African Air Force acquired 16 Mirage F1-CZ’s (Serial 200-215) and 32 Mirage F1-AZ’s Serial 216-247).

Mirage F1-CZ '200' was the main project aircraft, whilst Mirage F1-AZ '216' was used as the project aircraft for the 'AZ' fit-out. Due to the approaching Arms Embargo, Dassault rushed the F1-AZ delivery through, leading to teething problems with this ground attack variant.

Delivery from France took place in great secrecy on 4 April 1975 with two Mirage F1-CZ’s transported to South Africa in a SAAF C-130 Hercules. South Africa maintained great secrecy over this aircraft and only revealed a new 'Mirage type' during a fly past at the Ysterplaat Air Show in October 1975. In April 1977 that the press was finally allowed to see the production line in Kempton Park. Even so the existence of the Mirage F1-AZ remained classified until 1980.

Thursday, February 21, 2013

More about the SAAF De Havilland Vampires


More About the SAAF De Havilland Vampires


Vampire variants (SAAF planes in bold)

Links to other sites and pages in blue



Production History:



DH 100: three prototypes.

Vampire Mk I: single-seat fighter version for the RAF; 244 production aircraft being built.



Mk II: three prototypes:  Rolls-Royce Nene turbojet engine. One built and two conversions.




F.3: single-seat fighter for the RAF. Two prototypes were converted from the Mk 1; 202 production aircraft were built, 20 were exported to Norway

Mk IV: Nene-engined project, not built.

FB.5: single-seat fighter-bomber version. Powered by the Goblin 2 turbojet; 930 built for the RAF and 88 for export. Used in SA





FB.6: single-seat fighter-bomber. Powered by a Goblin 3 turbojet; 178 built, 100 built in Switzerland for the Swiss Air Force. (link to Swiss AF Vampires)

Mk 8: Ghost-engined, one conversion from Mk 1.

FB.9: Tropicalised fighter-bomber through addition of air conditioning to Mark 5. Powered by Goblin 3 turbojet; 326 built, mostly by de Havilland, but also by Fairey Aviation.

Mk 10 or DH 113 Vampire: Goblin-powered two-seater prototype; two built.

NF.10: two-seat night fighter version for the RAF; 95 built including 29 as the NF.54.

Sea Vampire Mk 10: prototype for deck trials. One conversion.

Mk 11 or DH 115 Vampire Trainer: private venture, two-seat jet trainer prototype.

T.11: two-seat training version for the RAF and export. Powered by a Goblin 35 turbojet engine; 731 were built by DH and Fairey Aviation. Used in SA



Sea Vampire F 20:
 naval version of the FB.5; 18 built by English Electric.

Sea Vampire Mk 21: six aircraft converted from F.3s with strengthened belly and arrester hook for trials of undercarriage-less landings on flexible decks.

Sea Vampire T 22: two-seat training version for the Royal Navy; 73 built by De Havilland.

FB 25: FB.5 variants; 25 exported to New Zealand (link to NZ Vampires)

F.30: single-seat fighter-bomber version for the RAAF. Powered by Rolls-Royce Nene turbojet; 80 built in Australia.

FB.31: Nene-engined, 29 built in Australia.

F 32: one Australian conversion with air conditioning.

T.33: two-seat training version. Powered by the Goblin turbojet; 36 were built in Australia.

T.34: two-seat training version for the Royal Australian Navy; five were built in Australia.

T.34A: Vampire T.34s fitted with ejection seats.

T.35: modified two-seat training version; 68 built in Australia.

T.35A: T.33 conversions to T.35 configuration.

FB.50: exported to Sweden as the J 28B; 310 built, 12 of which were eventually rebuilt to T.55 standard.

FB.51: export prototype (one conversion) to France.

FB.52: export version of Mk 6, 101 built; 36 exported to Norway and in use from 1949 to 1957 and SA and NZ


FB.52A:
 single-seat fighter-bomber for the Italian Air Force; 80 built in Italy. .


FB.53: single-seat fighter-bomber for the French Armee de l'Air; 250 built in France, as the Sud-Est SE 535 Mistral.

NF.54: export version of Vampire NF.10 for the Italian Air Force; 29 being built.

T.55: export version of the DH 115 trainer; 216 built and six converted from the T.11.



Full record of Service w SAAF:


Type/model SAAF serial / 1 Squadron code History

Vampire FB5 201 AX-X

Vampire FB5 202

Vampire FB5 203

Vampire FB5 204

Vampire FB5 EP42784 205 SAAF Museum Port Elizabeth. Ex Fort Beaufort

Vampire FB5 206 AX-G

Vampire FB5 EP42916 207 AX-KSAAF Museum Swartkop. Ex SAAF Gymnasium Gate Guard

Vampire FB5 EP42917 208 AX-D SAAF Museum Ysterplaat. Ex Fort Klapperkop

Vampire FB5 209 Scrapped

 Vampire FB5 210 AX-A

Vampire FB6 V0489 211 To Rhodesia R8128 wfu 18/4/81, To Australia 1988 pole mounted, Braybrook, Victoria, painted as RAAF A79-321.

Vampire FB6 V0513 212 Crashed 04/02/53

Vampire FB6 V0533 213 AX-N To Rhodesia R1833 w/o 21/10/76. Flt.Lt. Roy Hulley -   Kutanga weapons range accident.

Vampire FB6 V0538 214 Crashed 04/04/53

Vampire FB6 V0582 215 AX-Z To Rhodesia R8134 wfu 7/12/78. Flt.Lt Dave Bourhill -                  
crashed on approach to Thornhill Airbase post air test. 

Vampire FB6 V0583 216 To Rhodesia R1829 Flying up till March 1981, to Australia1988,  currently in storage Old Aeroplane Company, Tyabb
.
Vampire FB6 V0584 217 AX-T

Vampire FB6 V0585 218 AX-V        SAAF Museum Ysterplaat. Ex AFS VTH  Gate Guard.

Vampire FB6 V0592 219 Preserved SAAF Museum Swartkop.

Vampire FB6 V0593 220

Vampire T11 15013 221 d/d 1952-3 To Rhodesia 13/12/72. In the UK. ALlen, Hemel Hempstead (Private, Cockpit Section)

Vampire T11 15025 222 d/d 1952/3 Derelict at SAAF Museum. (Wonderboom) Ex Denel TA

Vampire T11 15041 223 d/d 1952/3 To Rhodesia R4323? 13/12/72. Reportedly  never flown                                                
spares only. Believed to be one of the early 'top hatch' canopy type 

Vampire T11 15043 224 d/d 1952/3 To Rhodesia R4324? 13/12/72.


Vampire T51 15065 225 d/d 1952/3 Collision 27/03/1968

Vampire T51 15077 226      d/d 1952/3 To Rhodesia R4325? 13/12/72.

Vampire FB52 V0567 227       Believed preserved SAAF Museum

Vampire FB52 V0574 228

Vampire FB52 V0581 229 d/d January 1952. To Rhodesia. Preserved SAAF Museum            
Swartkop. Ex 15 AD, AFS Snake Valley. Restored to  static display as SAAF 229 by the Friends of the SAAF Museum Pretoria 

Vampire FB52 V0599 230 Scrapped

Vampire FB52 V0678 231 Preserved Stellenbosch University (Stellenbosch FC?)

Vampire FB52 V0600 232

Vampire FB52 V0605 233 Crashed 08/10/1954

Vampire FB52 V0679 234 To Rhodesia R1380. Preserved in Zimbabwe's Gweru 
                                                                      Military Museum - last flight late 1981 early 82.

Vampire FB52 V0615 235 Preserved AFB Langebaanweg, Cape Town. Gate guard

Vampire FB52 V0627 236 Crashed 23/09/1954

Vampire FB52 V0682 237 Force landed 16/03/1970

Vampire FB52 V0630 238

Vampire FB52 V0635 239 Crashed 18/06/1958

Vampire FB52 V0646 240

Vampire FB52 V0657 241 National Museum Bloemfontein. (Loan Stellenbosch FC)

Vampire FB52 V0636 242 Cape Town. Pole mounted. Ex-Military Academy Saldhana

Vampire FB52 V0641 243
Vampire FB52 V0647 244

Vampire FB52 V0659 245 To Rhodesia R1835. Flew up till May 1982. One of the last to be retired. Imported to Australia 1988. Fully restored in RhodAF colours to taxi condition. Based at The Old Aeroplane Company situated at Tyabb on the Mornington Peninsular about 45 minutes from Melbourne.

Vampire FB52 V0652 246 Crashed 24/11/1955

Vampire FB52 V0664 247

Vampire FB52 V0664 248 Preserved Museu do Ar in Portugal

Vampire FB52 V0668 249 To Rhodesia R1318. 18/01/1977 Engine failure near Gwelo, Air sub Lt N. Lamb force landed it in the bush. A/c scrapped.

Vampire FB52 V0673 250 To Rhodesia R1386 w/o 23/11/1977. Air Lt. Phil Haigh - hit by ground fire whilst on Op Dingo, Chimoio terrorist training camp, Mozambique. He force landed the a/c but unfortunately hit a deep trench resulting in the disintegration of the a/c and Phil losing his life.

Vampire FB52 V0674 251 To Rhodesia R1378 wfu 12/81. Imported to Australia 1988, currently in storage Old aeroplane Co. Tyabb.

Vampire FB52 V0683 252 To Rhodesia R1382. Date wfu unknown but probably 2nd half of 1981. It was still flying March 1981. Imported to Australia 1988. Currently (January 2012) at Moorabbin Aircraft Museum, Victoria finished as RAAF Red Devils display a/c A79-417.

Vampire FB52 V0689 253 Preserved NADS Devon. (Also reported as SAAF Museum, Swartkop, derelict store). Ex School For Technical Training Gate Guard

Vampire FB52 V0697 254 To Rhodesia R1388. Reported as never flown in Rhodesia, stored only, returned to RSA early 1980s. Cockpit section preserved SAAF Museum Swartkop.

Vampire FB52 V0699 255 To Rhodesia R1839. Reported as never flown in Rhodesia, stored only, returned to RSA early 1980s before being donated to Israeli a/f museum, Hatzerim but displaying Lebanese markings.

Vampire FB52 V0700 256 To Rhodesia R8140. Reported as never flown in Rhodesia, stored only, returned to RSA early 1980s.

Vampire T55-2 15431 257 7/54 to 5/56. Ex Test Flight & Development Centre (TFDC) from 1975 to early 1980s. Believe in storage SAAF Museum, Swartkop.

Vampire T55-2 15432 258 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15433 259 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15472 260 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15435 261 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15436 262 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15453 263 7/54 to 5/56. To Rhodesia 13/12/72
Vampire T55-2 15454 264 7/54 to 5/56. To Rhodesia 11/12/72

Vampire T55-2 15486 265 7/54 to 5/56. To Rhodesia R4221 17/12/70. Retired 1982. Imported to Australia 1988, restored to flying condition 2001 by Old Aeroplane Co. Tyabb, and is still airworthy. Finished in RRAF scheme, representing RRAF119 (R4032).

Vampire T55-1 15487 266 7/54 to 5/56. To Rhodesia R2424 14/7/71. Retired 1982, Imported to Australia 1988, currently in storage Tyabb.

Vampire T55-1 15488 267 7/54 to 5/56. To Rhodesia R4126? 17/12/70

Vampire T55-1 15489 268 7/54 to 5/56. To Rhodesia R4220 29/7/70. Retired in 1982. On display Gweru Military museum, Zimbabwe.

Vampire T55-1 15490 269 7/54 to 5/56. To Rhodesia R4217 29/7/70 SCR 24/3/80. ZU-VAM / ZU-MES / RR417 / RR2417. Final RhodAF sortie back to RSA in 1980. Transferred to Atlas Aircraft Corp. Apprentice Training School for many years. Relocated to Wonderboom airport near Pretoria and (January 2012) under restoration.

Vampire T55-1 15491 270 7/54 to 5/56. To Rhodesia R4219? 29/7/70

Vampire T55-1 15492 271 7/54 to 5/56. To Rhodesia R2418 14/7/71. SCR 14/8/79. Returned to RSA 1980, possibly by road from New Sarum. Derelict at SAAF Museum. (Cockpit Section).

Vampire T55-1 15493 272 7/54 to 5/56. To Rhodesia

Vampire T55-1 15494 273 7/54 to 5/56. w/o 3/8/1959

Vampire T55-1 15495 274 7/54 to 5/56. Hendrik Venter, Wonderboom, Pretoria (Rebuild). Ex Krugersdorp

Vampire T55-1 15496 275 7/54 to 5/56. To Rhodesia R4223?

Vampire T55-2 15497 276 7/54 to 5/56. SAAF Museum Swartkop

Vampire T55-2 15498 277 7/54 to 5/56. To Rhodesia R4152 13/12/72. Final RhodAF sortie back to RSA early 1979. To SAAF Museum Swartkop. Flying December 2011. Registered as ZU-DFH

 SA Vampire Survivors:

Vampire FB5 205 Static Port Elizabeth
Vampire FB5 207 Stored Swartkop
Vampire FB5 208 Static Ysterplaat

Vampire FB52 227 Stored Swartkop
Vampire FB52 229 Static Swartkop
Vampire FB52 253 Stored Swartkop
Vampire FB52 254 Static (Under restoration) Swartkop

Vampire T55 257 Stored Swartkop
Vampire T55 276 Airworthy Swartkop
Vampire T55 277 (ZU-DFH) Airworthy Swartkop

Vampire FB52 235 Static AFB Langebaanweg
Vampire FB52 241 Static Stellenbosch Airfield (near Cape Town)
Vampire T55 274 Static Vampire Nursery (Krugersdorp)