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  1. Power Through Deletion. 2015 WRX TGV Delete Kit, Part 1: Design and 3D Prototypes

    Power Through Deletion. 2015 WRX TGV Delete Kit, Part 1: Design and 3D Prototypes

    It's been nearly two years since our first 2015 WRX development vehicle rolled into the shop. We've had a lot of fun with the car, and our team has developed a multitude of awesome components to aid in cooling, elevate power, and improve styling. Our product line is essentially complete, meaning we are done wrenching on our WRX. This is bitter sweet, as we will be picking up another vehicle to start the process once again. Before shipping out the WRX, we had one more project up our sleeves to extract a touch more power.

    With our existing modifications, including our downpipe, intake, and cat-back exhaust system, most customers are making in the neighborhood of 290 whp and 310 wtq. Not bad for some simple bolt-on modifications and ECU tuning. We've been eyeing TGV modifications and have seen the impressive effects on Subarus from previous model years. We decided to open up the intake system on our 2015 to see if we could design a delete system that would deliver a few extra ponies.

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  2. Dyno Testing and Results - WRX Race Intake, Part 2

    Dyno Testing and Results - WRX Race Intake, Part 2

    It has been a while since we have updated this project, but we now have something for our WRX community!

    The brief data report below shows our gains with this race intake project and our baseline was a fully stock 2015 WRX with no upgrade or aftermarket tune. The numbers are quite high due to the upgrades already installed on the WRX during testing. These upgrades included our Mishimoto:

    • Downpipe
    • Cat-Back Exhaust
    • Front-Mount Intercooler
    • Custom Engine tune

    IMG_6451r
    WRX intake dyno testing

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  3. Dropping Intake Temps. 2015 STI FMIC R&D, Part 1: Core Fitment and Piping Plans

    Dropping Intake Temps. 2015 STI FMIC R&D, Part 1: Core Fitment and Piping Plans

    We've given the 2015 WRX quite a bit of love, mostly due to the introduction of the FA20DIT within the new chassis. Our team developed a ton of awesome components: a downpipe, an intake system, a couple different intercooler options, and various other neat parts. With our WRX projects mostly wrapped up, it's time to turn our attention towards the STi. It still has an EJ engine under the hood, but it is mated to a new chassis that many are taking advantage of in various forms of competitive racing.

    So far we have developed an intake and a cat-back exhaust for the STI. Our next target is a bolt-on front-mount intercooler (FMIC) kit for the 2015 STI. The EJ25 is a well-respected engine that can make great power from basic bolt-ons and tuning. In addition, the sky is the limit in terms of power output once engine internals are upgraded and a large snail is bolted up. Greater power means more heat, resulting in the need for a more efficient heat exchanger for the charge-air system. Thus,

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  4. R&D Beginnings - WRX Race Intake, Part 1

    R&D Beginnings - WRX Race Intake, Part 1

    Team Mishi likes to look out for our Subaru community. If you have been following our engineering blog, then you'll notice that we have been rolling out a slew of high quality 2015+ parts WRX. One of the biggest products we launched was our bolt-on intake system. Not only did we provide easy power gains, but our system greatly improved sound, and created a large group of very pleased customers. The gains we produced were a result of reduced restrictions compared to the factory system. A great product that supports stock and mildly modified examples. We are now turning our attention to an even less restrictive iteration that will be designed to support vehicles necessitating maximum airflow.

    Our race-inspired design for this WRX intake will take the more aggressive route of obtaining the maximum power potential an intake can deliver to this FA series motor. Keep in mind, this secondary "Race" design will require tuning for safe operation.

    It is important to understand that this

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  5. Does The WRX Need An Upgraded Intercooler? Part 6: Air Shroud Design and Testing

    Does The WRX Need An Upgraded Intercooler? Part 6: Air Shroud Design and Testing

    Interested in purchasing our 2015 WRX top-mount intercooler kit? Check out more details on our product page linked below!

    Mishimoto Subaru WRX Performance Top-Mount Intercooler and Charge-Pipe System

    As noted in our previous post, we decided to design a shroud that would channel airflow more efficiently through the core of our intercooler. Because our cooler features a larger footprint, the stock air shroud directs flow to only a portion of the core. Opening up this airflow to the entire core should result in even greater temperature reductions than we saw during our first round of testing.

    Stock Intercooler Shroud

    First, let's take a look at the stock shroud as Steve removes it from our test vehicle. Here is what you will see under the hood of your WRX.

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  6. Cool Your Charge! The 2015 WRX Front-Mount Intercooler Build, Part 4: Dyno Testing

    Cool Your Charge! The 2015 WRX Front-Mount Intercooler Build, Part 4: Dyno Testing

    Interested in picking up our 2015 WRX FMIC kit? Check out more details on our product page linked below!

    Mishimoto Subaru WRX Front-Mount Intercooler Kit

    Time for the fun part of development, product testing! Since this is an intercooler, we would certainly need to put the WRX on the dyno for some pulls and data collection. It would be interesting to see how the installation of a front-mount system has an impact on turbo spool, intake temperatures, and perhaps even power output.

    Testing Preparation

    The first step toward data collection is to prepare our sensor bungs and install our pressure and temperature sensors. We installed our bungs within the inlet and outlet intercooler couplers.

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  7. Cool Your Charge! The 2015 WRX Front-Mount Intercooler Build, Part 3: Pipe Routing and Fabrication

    Cool Your Charge! The 2015 WRX Front-Mount Intercooler Build, Part 3: Pipe Routing and Fabrication

    Interested in picking up our 2015 WRX FMIC kit? Check out more details on our product page linked below!

    Mishimoto Subaru WRX Front-Mount Intercooler Kit

    Front-mount intercooler installed
    Front-mount intercooler installed

    In the last portion of this series we completed the fabrication of our prototype intercooler core and tanks, as well as our new bumper beam. We now had everything in place to construct a piping kit that would route air from the turbocharger to the intercooler and back to the engine.

    Hot-Side Piping

    We started our piping with the hot-side of the intercooler system. The stock compressor

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  8. Does the 2015 WRX Need an Upgraded Intercooler? Part 5: Testing and Results

    Does the 2015 WRX Need an Upgraded Intercooler? Part 5: Testing and Results

    Interested in purchasing our 2015 WRX top-mount intercooler kit? Check out more details on our product page linked below!

    Mishimoto Subaru WRX Performance Top-Mount Intercooler and Charge-Pipe System

    Dyno Preparation

    Time to finally answer the question we have been discussing for months. Would the 2015 WRX benefit from an upgraded intercooler?

    To test both the stock unit and the Mishimoto prototype unit, we would need to drill and tap the coolers to accept our temperature and pressure sensors.

    First, we installed a sensor bung in our silicone throttle-body hose. This would capture post intercooler data for all three coolers.

    Mishimoto throttle-body hose with sensor</body> " width="300" height="261">
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  9. Mishimoto 2015+ Subaru STi Performance Cold-Air Intake System, Part 4: Race Intake System

    Mishimoto 2015+ Subaru STi Performance Cold-Air Intake System, Part 4: Race Intake System

    Interested in purchasing our 2015 STi intake system? Check out more details on our product page linked below!

    Mishimoto Subaru STI Performance Air Intake

    As noted earlier in this article series, we would be tackling a race intake system to go along with our bolt-on unit. So what makes the race system different? For this particular system we are using a larger-diameter intake pipe with a larger MAF housing. This means greater intake flow, but it also means it will no longer function with the factory tune. This system is meant specifically for drivers who want aggressive professional tunes so they can take advantage of airflow modifications such as larger turbochargers and high boost pressures.

    Because the 15' model shares the EJ from the previous generation, we would be using the same intake pipe and filter as we did with our 2008-2014 kit. This unit is shown below.

    So, all we truly needed

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  10. Cool Your Charge!  The 15' WRX Front-Mount Intercooler Build, Part 2: Core and Support Fabrication

    Cool Your Charge! The 15' WRX Front-Mount Intercooler Build, Part 2: Core and Support Fabrication

    Interested in picking up our 2015 WRX FMIC kit? Check out more details on our product page linked below!

    Mishimoto Subaru WRX Front-Mount Intercooler Kit

    Crash Beam Fabrication

    After an unsuccessful test fit of our existing bumper beam on the 15', we started from scratch to create a beam specific for the 15' chassis. First we hacked off the end tanks of our cooler so we were left with a bare core. This would provide some freedom to design our crash beam and later work on the end tank direction. Next we cut out some new mounting plates and fit them into position.

    Intercooler crash beam mounting plates
    Intercooler
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