Identifying the different N-1 variants.

Identifying N-1 variants. I mentioned this briefly in an earlier post, which featured some images I stitched together from video, but here it is in a bit more depth.

You are generally trying to distinguish between 5 different N-1 variants in photographs, the four that flew, and the weight model.  This is most easily done via the colours, though there are several other differences.

This post is not about ALL the differences between the variants, just about how to tell which rocket is which.

N1-3L, the first flight.

This is easy to identify, as it is the only one with entirely grey first and second stages. The third stage is half white, with the white part facing upwards on the transporter, which is the side away from the gantry once the rocket has been erected. It was transported to the pad in winter, and there are photos of it with snow on.

N1-3L being erected at the pad
N1-3L being erected at the pad

Note that there was no green on any of the N-1 variants! This is a widely held misconception, as many museums show it as green, (including the London science museum, and many Russian museums too). Olive green was only used to camouflage missiles, (and green would make lousy camouflage in Baikonur at the best of times). This error has spread to the point where photographs have been tinted to make them look green). And sometimes it was just poor quality film stock.

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NK-33 Rocket Engines

The NK-33 engines were originally built for the Soviet Moon Rocket, the N-1. (Under the designation of NK-15, and NK-15V for the high altitude version). This design was a direct result of a blazing row between the Chief Designer, (Sergey Korolev), and the best rocket engine designer, Valentin Glushko. Glushko wanted to use propellants which Korolov considered far too dangerous. So Korolev turned to Nikolai Kuznetsov, who up until that point had only designed engines for jet aircraft. Large rocket engines are notoriously difficult to design, due to combustion instability, so they were pretty much forced into a large number of smaller engines.

Nikolai Kuznetsov with NK-33 rocket engine
Nikolai Kuznetsov with NK-33 rocket engine

Many consider this a key reason for the failure of the N-1 program.

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Unseen N-1 reference photos. Part 1.

I was dithering over what to title this N-1 post. New photos? Not exactly new, as they are based on old video, and (in most cases) stitched together from video that panned around.

Anyway, here are some photos I put together from video. If you are interested in the Manned Soviet Lunar program, it’s worth following Roscosmos on YouTube – they seem to be slowly restoring and releasing the various bits of N-1 footage at higher quality, and releasing it piecemeal in the items on the history of space exploration.

The quality of these photos is highly variable, (by which I mean that some are awful!), but given the shortage of N-1 references, I hope they will prove useful.

Let’s start with the banner image, showing the L3 (upper) section, of the N1-5L This is a pretty good shot of the farings that cover the parts that would reach the moon.

Stitched image of the L3 section of the N1-5L moon rocket
Stitched image of the L3 section of the N1-5L moon rocket

It’s worth noticing the crew escape system on the left:

escapeholesNote how the exhaust holes near the tip are two different sizes. This is so that, if it is used, it will carry the crew to one side, and away from the main rocket.

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HOPE-VASIMIR Finished Renders

OK! The modelling is done of HOPE-VASIMR, (at least unless I spot anything that neeeds fixing), so it’s time for some shots of the final version.

As always, click on an image to see a larger version.

distant-01xThe above image is a distant view of the whole thing.

To give you an idea of the scale, it’s very nearly 200 metres from one end to the other.

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Wernher von Braun’s RM-1 spaceship design

As you may have noticed, I love the designs from the dawn of the space age, particularly the fifties designs of Wernher von Braun.

This one is the RM-1, which includes the ‘bottle suit’, something halfway between as spacesuit and a spaceship, with a ring of articulated arms, complete with a selection of tools.  Seriously Cool!

The ship as a whole though is not as credible as most of the other designs, for a couple of reasons.

rm1-en-routeThe red cone at the nose is meant to be a radiation shield for an unfeasibly tiny atomic reactor in front of it.

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HOPE-VASIMR Modelling done?

Right, I think the modelling part is pretty much done here on the HOPE VASIMR. I’ve been busy adding nurnies and greebles, and tweaking surfaces, and it’s looking good to me.

As usual, click on the images for a larger version.

hope-vasimr000For those who missed the earlier instalments, HOPE stands for Human Outer Planet Exploration, and is a serious design for a manned expedition to Callisto, the outermost of the large moons of Jupiter. (Far enough away from Jupiter that the radiation won’t fry the astronauts!)

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CGI Planet Mercury, done in Lightwave 3D

Here’s an old CGI model of the planet Mercury I did, based on some maps NASA released using information from the MESSENGER probe to the planet.

mercury-n-2

The model is in Lightwave 3d format, and available fr free to members of the Foundation 3D forums, in the file area.

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The Lovell Radio Telescope at Jodrell Bank, Part 2

The first part covered the background and references.

This part will cover the actual CGI model building.

As is clear from even a casual glance, the main challenge was going to be making sense of all those struts. Doing them indiviually would not be practical so I had to understand the various repeating patterns and symmetrys in them. If you look through the structure at an angle, it can seem very complex:

Lovell radio telescope
Complicated stuff!

But from other angles the patterns are a lot clearer

Lovell radio telescope
Distant view from the side

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Lovell Radio Telescope at Jodrell Bank, Part 1.

Despite the difficulties of my N-1 models, I consider the most challenging mesh I ever built in terms of level of detail to be the model of the Lovell Radio Telescope at Jodrell Bank.

One major advantage compared to most of my projects is that I was able to visit the real thing, and get a large number of reference photos. Plus I had some useful help from the staff, who were kind enough to provide accurate overall dimensions of the major elements.

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