This topic is very stimulating. But I'll try to focus again on the question that pushed me to start it.
To reorder my ideas I have partially modified the picture below.
View attachment 720471
1st problem : Plane in wind. In absence of wind the aircraft could theoretically fly with the nose pointing the target, but in presence of wind it had to contrast the drift which the wind would have impressed to it. So it had to fly with the nose upwind to keep its course straight to the target ( this was called "kill the drift" ).
2nd problem : Bombs in wind : at the moment of the release the bombs were taken by the wind and carried downwind ( to the right in the picture ). The Bombardier had to compensate this by flying a course
on the left of the target ( COURSE OF PLANE ) and not
over the target ( COLLISION COURSE ) to place the bombs on the ACTUAL TRAJECTORY which actually leaded them on the target. This compensation was called "sight for deflection".
So, while sight for "both range and deflection" meant fly on the pink course in the picture and hit the target, sight " only for range " meant fly on the blue course in the picture, avoiding to consider the influence of the wind on the bombs which would fall ( red trajectory in the picture ) right of the target.
Now, substitute the two planes in the picture with two boxes of 7 - 8 planes.
In the specific case that I consider, the Box further upwind in the picture sighted for range and deflection, so it had high chances to hit the target. The other sighted only for range. Apart every feature of the bombs that could interfere with their fall and which may have dispersed them, the bombs of the second Box, by effect of the wind,
had to impact on the right of the target.
My question is : what was the underlying logic in this ?