Are they 2 stroke Diesels? That would make sense for the even number of banks.
A bit off-topic, but there is an interesting, modern twist to radials. A civil company, Zoche Aero Diesels from Germany, has developed diesel radials with an even number of cylinders. At present, their offerings ranges from 70 to 150 to 300 HP.
The thing that is interesting to me is the 8-cylinder, 300 HP Zoche Aero Diesel is 271 pounds or 123 kg for 220 kW power. That seem impressive to me considering the weight includes the starter/generator, the hydraulic [prop governor, the turbo and supercharger, and oil & fuel filters.
Not WWII, but impressive for the weight and an even-cylinder radial with advertised perfect rotational balance.
Two Stroke Diesels were of course used by the Germans from about 1933 mainly on flying boats but also the Ju 86: the supercharged Junkers Jumo 205 and the turbo-supercharged variant of it the Jumo 207 (which retained the mechanical supercharger). They had extremely good fuel economy, as good as the post war Napier Nomad, which was also a two stroke diesel using sleeve valves though the Nomad was lighter. The Jumo's had two crankshafts and punched inwards. A 10:1 stroke can produce 20:1 compression.
The interesting thing about this is that the American Company Archates power has begun to develop these engines for Truck use. Brake thermal efficiencies of 55% seem possible.
This is a video of Archates power founder, Dr James Lemke, talking about how the Jumo 205 in part inspired his endeavour. What's interesting is that he mentions why the modern engines are more efficient. Lemke specifically refers to CFD "Computational Fluid Dynamics"
Lemke
Engineering Explained has nice animations:
Modern engine designers have the following advantages
1 3D CAD systems
2 The 3D CAD can input directly into simulations using CFD Computaion Fluid Dynamics to model inlet and exhaust airflow and combustion as well as thermal load as well as bearing lubrication.
3 The above also allow Finite Element Analysis allows the vibration and stress to be analysed.
The above really speeds development.
In addition modern alloys are much better allowing smaller engines.
Spark Ignition Engines seem to have a upper bound is cylinder displacement, not quite sure why, something to do with flamefront propagation whereas Diesels are independent of this and I think this would have kept cylinder count down.
Sandia National Laboratories has developed a very simple modification to injector nozzles that completely eliminates particulates, by a Bunsen like shroud which now allows an uncompromising focus on NOX:
Sandia National Laboratories: Diesel engine revolution
If it had not have been for the Jet engines I think we would be winging our way around the world on turbo compounded diesels.
Interestingly the Fischer-Tropsch fuels the Germans (and Japanese) used in their diesels eliminated most particulates anyway on both jets and diesels (86% in a CFM56 and 10% NOX). Then there is the synthetic fuel OME which produces essentially zero pollution in a diesel.