Been doing a bit of research on this topic, remote turbo has a
lot of advantages in a van like mine
Not too confident with the ceramic's duty cycle since it is not stated on the CTT website, although it is implied that racers would
use this concept (Rebuild after
every race???) They warranty their ceramic rebuilds for 30,000 miles...
For a long-haul, dependable turbo, I have to sit back and stay on the fence.
In their verbage they show a calc that their bearings can withstand six times the single-angle (annular) load the bearing will ever
see. I beg to differ, this may be true "in the lab," but off-road, with washboard vibe loads, I bet I can shake the **** out of their
ceramic oilless turbo fairly quickly. (In a previous life, I did lots of dynamic load analysis, and vibrations can be equivalent to up
to 80G's; significantly more than six times the lab loads. This is especially true for the added gyroscopic impingement of something
spinning at 100,000 rpm.) The oilless loose ball concepts tend to fracture catastrophically, regular turbos usually put up a fuss first.
Could not find any testimonial regarding the idi's situation (6.9-7.3L, 8 cylinders) of a (relatively) low-performance turbo
charger requirement. We actually require a pretty crappy turbo in the modern sense, unless you're doing a competition
sled pull, mostly we need boost right off idle, it would be nice to generate 2,300 rwhp, but really I want off-idle boost and
a steady climb matching demand for pulling, which implies a low compressor chamber volume, trouble is at high rpm I'm
overstepping required boost so a blow-off or variable-geometry system may be needed. The oilless could possibly be
adapted to one of these. I found some compressor maps on their Tech Bulletin #4, but again too hard to reference to our
situation, with our desire for low-rpm grunt and our low-rpm diesel redline.
This begs the question about remote turbos, as I mentioned, I am considering locating just after where the present y-pipe merges (are trucks
the same as my van?) with a return to a forward-mounted intercooler. The problem I am having is water submersion like crossing
a stream, not sure how oilless would handle thermal shock, since contraction rates of non-metallic vs. metallic can be a sticky point,
esp with tight tolerance bearings that have no slop (normally bushing/bearing voids are filled with oil, like standard turbos have,) to give
them some "cushion."
I'd like to find some testimonial/reviews on the oilless used in our config.
Don't get me wrong, I REALLY want this to work, maybe it does, but the tried and true existing oil-fed bushing is still a good option...
...except for the below-oil pan dilemma. I got a lot of time in this, (that's why my long-winded response

) but right now I am
entertaining the use of two small oil sumps in which the first one also acts as an oil cooler just under the turbo, some sort of check
valve inline, and the second sump above oil pan's altitude, staged for return into the crankcase. Some sort of activated remote lift
pump would live between the two little tanks.
There is also the issue of back flow/escape of turbine oil which could induce a run-away, another reason to seek out something like oilless
turbo chargers.
Great thread!
Best regards,
George