Forge Motorsport Intercooler for VW Golf MK8/Audi S3 – FMINT24
د.إ4,190.00
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Description
FMINT24 is a performance intercooler for the MQB platforms with the EA888 GEN4 Engine. Produced, designed, and tested, at our headquarters in Gloucester UK. Throughout the development process we have strived to improve the efficiency and performance of the EA888 GEN4 engine. Our project brief was to develop an intercooler that utilised all of the available space in the original position of the OEM intercooler, and to ensure the inlet air temperature is reduced, without any negative effects on the boost pressure or engine and transmission cooling.
In the MQB chassis the intercooler housing is particularly restricted and confined to a small amount of space, due to it not only housing the intercooler, but also the radiator and air conditioning condenser. The front panel in theory is a sandwich pack that houses the auxiliary cooling components. This means in order to increase the size of the intercooler without paying detriment to the performance of the surrounding items, and with also having very little extra space available, that it can be very difficult to execute the perfect blend of a high flow intercooler within such a close proximity.
Our research and development engineers started with a brief to fit our existing intercooler (FMMK7FMIC) that was for the MK7 platform, to our development VW MK8 Golf R. Upon installation, we then tried to establish if we could re-engineer the intercooler with an increased inlet and outlet size along with increasing the volumetric capacity to increase flow along with future proofing the design to work well with highly tuned stage 3 plus EA888 Gen 4 engines.
Using a combination of scanning software and traditional measuring methods, the design was created. This was then fine-tuned by our flow dynamics simulations programs (CFD), and the end tanks were initially created by 3D printers. This enabled us to ensure the fit was perfect on the vehicle before any prototype castings or machined billet end tanks were produced ready for dyno testing.
Several baffle configurations were designed, and flow simulated to ensure the maximum performance was obtained to keep the core working at its optimum, along with ensuring all its cooling capabilities had been upheld, and that the total volume of the core internal is utilised for optimum performance.
With an increase in inlet and outlet sizes, we then turned our attention to the design of our silicone hoses. With flow in mind, we have created a step within the hose so where the hose meets the hot and cold side of the inlet and outlet junctions the transition is seamless, this helps to lesson any disturbance to the airflow and prevent unwanted turbulence. To further aid with flow, the inlet and outlets have been increased to 76mm from the OEM size of 63mm which equates to a 45% increase in surface area.
The consideration of space and our clever design has led us to produce several intercooler cores with different fin configurations and internal capacities. Depending on the core design, testing results led us to choose a bar and plate design with over 83% more volume than the OEM intercooler, and with a frontal area increase of 10%.
Why do we test different cores?
Here at Forge Motorsport, when developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, a tube and fin style core along with different fin pitches and heights, as well as changing the internal fin pitches/shapes and density within the tube; thus enabling us to fine tune the amount of pressure drop the intercooler produces. Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core, that is open to the atmosphere.
Too much pressure drop can of course have a problem on the higher performance engines as the intercooler reaches its maximum efficiency the turbo has to work a lot harder to force the air through the core. This in turn creates higher inlet air temps (IAT’s) due to the turbo creating more heat as it is over stressed and worked harder. No pressure drop can also prove to be inefficient as the cooler will not lower the charge temperature again resulting in higher inlet air temperatures.
Dyno Results
Testing was completed using Performance Remap in Gloucester with their VTEC 4-wheel drive dynamometer. This was to ensure all our data has been achieved with results as accurately as possible by an independent tuner. As you can see from the dyno results below, peak power was increased from stock by 11bhp and 20nm of torque at 5500RPM with the Forge Motorsport performance intercooler installed.
The best news is that there are significant torque gains throughout the rev range, meaning that the car power will pick up quicker and pull the whole way through to redline, including an impressive gain in BHP from 5000 RPM TO 6500 RPM. Gains on vehicles with re calibrated software and further hardware performance parts can be expected to be a lot higher due to the substantial drop in IATS when FMINT24 is installed.
During our extensive testing, we let the car heat soak on the dyno until the radiator fans tripped on and off (which gives an inlet temperature of around 40°C). We then did a dyno pull from this point which gives a more consistent result and reflects real-world driving conditions more accurately. You can easily see the Forge intercooler cools much quicker and delivers a much greater drop in temperature compared to OEM.
After more than six pulls on the dyno we still had super safe IAT’s, and the Forge Motorsport intercooler gave results of 34°C at 6548 RPM giving a reduction of 58% over the factory’s intercooler intake temps from 58°C at 6508 RPM. These tests took place in relatively hot conditions with an ambient dyno cell temperature of 23°C proving how inefficient the stock intercooler is.
In the summer months, the stock intercooler along with higher inlet air temperatures will have a hugely negative impact on the engine’s performance. In these conditions, the engine management will retard the ignition, resulting in a lower powered engine as temperatures rise and the ECU then pulls out the timing to stop detonation. On a mapped vehicle, the results will be even more detrimental and can lead to possible premature engine wear. If you use your car for fast road or have a high-performance tune in a hot climate, this product is essential.
Why do we try to decrease IAT’s? (Inlet Air Temperature)
Temperature and volume of air supplied to your vehicles engine that is compressed by the turbo charger has a better effect on performance when cool as this is to provide the engine with more oxygen (denser air), thus improving the combustion in each cylinder. In addition, by regulating and reducing the air temperature, it also increases the reliability of an engine by keeping the AFRs (Air Fuel Ratios) in each cylinder at a safe level, which in turn, can increase an engines power due to the air being cooler. A bigger bang is then created within the cylinder, providing the correct amount of fuel is added. This can equate to an increase in BHP and torque.
The Forge Motorsport intercooler is a perfect performance enhancing product that fits directly to the OEM mounting points, making for an easy install, in a relatively short period of time. No cutting of any components is needed, making the installation reversible if the vehicle needs to be returned to stock at any time in the future. The core and end tanks are finished in our black textured anti corrosion coating that also aids with its thermal properties and keeps the product looking that bit stealthier or OEM+.
The Forge Motorsport lifetime warranty on all hardware products shows the trust we have in the quality of our products while they are being enjoyed on your pride and joy.
Compatible Vehicles :
Additional information
Brand | Forge Motorsport |
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Make | Audi, Golf GTI, Golf R, S3, Volkswagen |
Model Year | 2020, 2021, 2022, 2023 |
Quick Comparison
Settings | Forge Motorsport Intercooler for VW Golf MK8/Audi S3 - FMINT24 remove | Snow Performance - Boost Cooler Stage 2E Power-Max - SP10250 remove | VRSF HD Intercooler Upgrade Kit for 12-18 F20 & F30 228i, M235i, M2, 328i, 335i, 428i, 435i N20 N26 N47 N55 -103030 remove | CTS TURBO MK7/7.5 THROTTLE PIPE (GTI/GOLF R/GOLF GTI/A3/S3/TT) 2015+ MQB MODELS -CTS-IT-280 remove | CTS TURBO HIGH-PERFORMANCE HEAT EXCHANGER FOR B9 AUDI RS5 -CTS-HX-009 remove | Snow Performance – Boost Cooler Stage 2E Power-Max - ProLine - SP10250PRO remove | ||||||||||||||||||||||||||||||||||||||
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Name | Forge Motorsport Intercooler for VW Golf MK8/Audi S3 - FMINT24 remove | Snow Performance - Boost Cooler Stage 2E Power-Max - SP10250 remove | VRSF HD Intercooler Upgrade Kit for 12-18 F20 & F30 228i, M235i, M2, 328i, 335i, 428i, 435i N20 N26 N47 N55 -103030 remove | CTS TURBO MK7/7.5 THROTTLE PIPE (GTI/GOLF R/GOLF GTI/A3/S3/TT) 2015+ MQB MODELS -CTS-IT-280 remove | CTS TURBO HIGH-PERFORMANCE HEAT EXCHANGER FOR B9 AUDI RS5 -CTS-HX-009 remove | Snow Performance – Boost Cooler Stage 2E Power-Max - ProLine - SP10250PRO remove | ||||||||||||||||||||||||||||||||||||||
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SKU | FMINT24 | SP10250 | 103030 | CTS-IT-280 | CTS-HX-009 | SP10250PRO | ||||||||||||||||||||||||||||||||||||||
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Price | د.إ4,190.00 | د.إ2,200.00 | د.إ2,150.00 | د.إ950.00 | د.إ2,200.00 | د.إ2,600.00 – د.إ3,900.00 | ||||||||||||||||||||||||||||||||||||||
Stock | In Stock
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Availability | In Stock | In Stock | In Stock | In Stock | In Stock | In Stock | ||||||||||||||||||||||||||||||||||||||
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Description | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | Upon placing the order, we will get in touch with you to confirm the availability information. For Instant Enquiry and More Details, Please Click Here | ||||||||||||||||||||||||||||||||||||||
Content | FMINT24 is a performance intercooler for the MQB platforms with the EA888 GEN4 Engine. Produced, designed, and tested, at our headquarters in Gloucester UK. Throughout the development process we have strived to improve the efficiency and performance of the EA888 GEN4 engine. Our project brief was to develop an intercooler that utilised all of the available space in the original position of the OEM intercooler, and to ensure the inlet air temperature is reduced, without any negative effects on the boost pressure or engine and transmission cooling.
In the MQB chassis the intercooler housing is particularly restricted and confined to a small amount of space, due to it not only housing the intercooler, but also the radiator and air conditioning condenser. The front panel in theory is a sandwich pack that houses the auxiliary cooling components. This means in order to increase the size of the intercooler without paying detriment to the performance of the surrounding items, and with also having very little extra space available, that it can be very difficult to execute the perfect blend of a high flow intercooler within such a close proximity.
![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() ![]() Why do we test different cores? Here at Forge Motorsport, when developing an intercooler, we will test several different cores for each application. For example, a bar and plate style core, a tube and fin style core along with different fin pitches and heights, as well as changing the internal fin pitches/shapes and density within the tube; thus enabling us to fine tune the amount of pressure drop the intercooler produces. Pressure drop is not always a bad thing, as our testing and research has proven on various projects. This is because the pressurized air velocity is being stalled by the pressure drop within the cooler thus allowing more time to cool the air within the cooler itself, as air passes through the non-pressurized face of the core, that is open to the atmosphere.![]() ![]() ![]() ![]() ![]() ![]() Why do we try to decrease IAT's? (Inlet Air Temperature) Temperature and volume of air supplied to your vehicles engine that is compressed by the turbo charger has a better effect on performance when cool as this is to provide the engine with more oxygen (denser air), thus improving the combustion in each cylinder. In addition, by regulating and reducing the air temperature, it also increases the reliability of an engine by keeping the AFRs (Air Fuel Ratios) in each cylinder at a safe level, which in turn, can increase an engines power due to the air being cooler. A bigger bang is then created within the cylinder, providing the correct amount of fuel is added. This can equate to an increase in BHP and torque.![]() Compatible Vehicles : | Boost Cooler water injection can achieve a power increase of up to 10-25% in turbo and supercharged engines without thermally overloading the engine. The charge air temperature is lowered by up to 60°C, the combustion chamber is cooled and the thermal load on already tuned vehicles is effectively reduced.
Water or water/alcohol (methanol or ethanol) is injected at high pressure into the hot charge air in a finely atomised form as soon as the desired starting charge pressure is reached. The evaporating liquid achieves an extremely effective charge air and intercooling, which, among other things, prevents uncontrolled combustion ("knocking"). The effect is demonstrably comparable with 116 octane racing petrol.
The Boost Cooler is unsurpassed in atomisation! The liquid is swirled inside the Hyper-Sonic atomiser nozzle at supersonic speed before being forced through the Venturi orifice. With the included Dual Stage Upgrade, 2 atomiser nozzles are used to inject as early as possible with the primary nozzle and to achieve maximum cooling and performance in peak loads with the switched-on 2nd nozzle.
| VRSF F Chassis Performance Intercooler Upgrade Kitfor your 2012 – 2016 BMW 228i, M235i, 328i, 335i, 428i & 435i with the N20, N26 & N55 EngineReplace your inefficient factory intercooler with a VRSF upgraded intercooler kit to get the most out of your N20, N26 & N55 BMW. Our intercoolers are designed to be the best performing, direct bolt on intercoolers available for your BMW with special attention to quality and performance while maintaining a reasonable price. Each VRSF intercooler includes our proprietary High Density fin pack which results in higher HP gains compared to the other guys, mainly due to our incredibly dense internal and external fin pack. Our core was engineered to offer a greater overall surface area for increased heat absorption as well as dissipation.VRSF HD Intercooler CoreThe most important component of any intercooler is the core. The core cools the charged air from the turbo before it enters the engine and the OEM BMW tube and fin intercooler is designed to support low boost levels and air flow. When tuned, airflow and boost levels are increased significantly. This causes the OEM intercooler to heat soak and reduces HP and increases the chance of pre-detonation. We remedy this problem with our proprietary, high density bar and plate intercooler core which utilizes a staggered and offset internal and external fin pack. The VRSF HD core has been carefully balanced to provide the the best intake temperature reduction while maintaining minimal pressure drop. The VRSF HD core is also much more durable than the OEM tube and fin core, with a better ability to withstand rocks and other debris. The VRSF 5″ Performance HD & 6.5″ Competition HD Intercoolers are comprised of an incredibly dense fin pack both internally and externally. It’s not uncommon to see intake temperatures drop at the end of a 3rd gear pull due to the larger overall internal and external surface area. You can expect to see an intake temperature reduction on a stock turbo, full bolt on car during a 3rd gear pull which is why the VRSF HD is THE best option for your N55. Please note that the HD fin pack is now standard at no extra charge! The VRSF 5″ Performance HD is capable of supporting up to 600whp whereas the 6.5″ Competition HD is capable of supporting up to 800whp.Installation & ConstructionWe include everything required to replace the OEM intercooler. All VRSF intercoolers feature tabs that allow the retention of the factory fan shroud and our CFD optimized cast end tanks are designed to work with both the OEM intercooler piping as well as any aftermarket charge pipe that adapts to the OEM FMIC. After each intercooler is pressure tested, we then apply a thermal dispersant coating which ensure a leak free experience along with superior protection against the elements. Our intercoolers fit both Left Hand Drive (LHD) & Right Hand Drive (RHD) Models as well as all XI models.Features
| CTS Turbo is pleased to offer the ultimate high flow throttle pipe kit for the MQB model range vehicles. The OEM Charge pipping leaves something to be desired with inefficient bends, and blockages not optimized for performance. The CTS Turbo throttle pipe increases the entire diameter to 2.5″ allowing for increased flow and greater performance. The integrated water methanol bung (1/8″ NPT) allows for simple and straight forward installation of kits from Snow Performance. All of the components included in the CTS throttle pipe kit work flawlessly together to provide increased efficiency, horsepower, and torque throughout the entire power band and an aggressive race inspired sound.
Product Details:
| CTS Turbo is excited to introduce our upgraded Aluminum heat exchanger specifically designed for the B9 Audi RS5. We understand that the factory heat exchanger falls short in effectively cooling tuned engines, which is why we developed our own solution.
Our heat exchanger boasts a significantly larger volume than OEM, featuring a dual-pass core that seamlessly complements the factory heat exchanger with minimal modifications required for installation. Ensure optimal cooling and dependable performance for your 2.9T V6 twin-turbo engine with the CTS Turbo Aluminum heat exchanger.
Features:
| Boost Cooler water injection can achieve a power increase of up to 10-25% in turbo and supercharged engines without thermally overloading the engine. The charge air temperature is lowered by up to 60°C, the combustion chamber is cooled and the thermal load on already tuned vehicles is effectively reduced.
Water or water/alcohol (methanol or ethanol) is injected at high pressure into the hot charge air in a finely atomised form as soon as the desired starting charge pressure is reached. The evaporating liquid achieves an extremely effective charge air and intercooling, which, among other things, prevents uncontrolled combustion ("knocking"). The effect is demonstrably comparable with 116 octane racing petrol.
The Boost Cooler is unsurpassed in atomisation! The liquid is swirled inside the Hyper-Sonic atomiser nozzle at supersonic speed before being forced through the Venturi orifice. With the included Dual Stage Upgrade, 2 atomiser nozzles are used to inject as early as possible with the primary nozzle and to achieve maximum cooling and performance in peak loads with the switched-on 2nd nozzle.
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