It's a dome - domes are in compression - in compression you don't need rebar
I was planning to mention arch/keystone before, but decided against it. One of the neat things about a DOME is, you can get the keystone effect without, y'know, a keystone. That ring of stone(s?) around the oculus fills the same compressive role, and lights the place up a bit in the bargain! There is one issue that's NOT clearly answered just looking at the building or its design (not to me, anyway): an arch/dome pus…
How the pantheon has lasted 2000 years without steel in its concrete
21–30 of 37 posts
Re: How the pantheon has lasted 2000 years without steel in its concrete
#22Earlier quoted context omitted.
I'm always amazed by the Egyptians. They cut enormous obelisques(sp?) out of solid rock, rolled them onto enormous barges, floated them down the Nile, then erected them (pun intended) with nothing more than rope, sweat, logs and dirt. Pretty awesome stuff really. Also, a three mile long ramp.
A three mile long ramp made of dirt. I said they used dirt. Dirt. I like to ask my students how they think the Egyptians did stuff like this. They usually guess something like "a wooden thing with rope and they pulled it up." It's hard to comprehend how much effort Egyptians put into their projects. Building an enormous ramp and then tearing down an enormous ramp? That's a lot of shoveling.
Re: How the pantheon has lasted 2000 years without steel in its concrete
#23Earlier quoted context omitted.
A three mile long ramp made of dirt. I said they used dirt. Dirt. I like to ask my students how they think the Egyptians did stuff like this. They usually guess something like "a wooden thing with rope and they pulled it up." It's hard to comprehend how much effort Egyptians put into their projects. Building an enormous ramp and then tearing down an enormous ramp? That's a lot of shoveling.
When you have a large number of slaves lots of things that would normally be impossible suddenly becomes easy.
http://en.wikipedia.org/wiki/Egyptian_pyramid_construction_t...
Re: How the pantheon has lasted 2000 years without steel in its concrete
#24Re: How the pantheon has lasted 2000 years without steel in its concrete
#25It's a dome - domes are in compression - in compression you don't need rebar
Re: How the pantheon has lasted 2000 years without steel in its concrete
#26The Pantheon is awesome, but one shouldn't think, "They don't make 'em like they used to." Almost all structures built 2,000 years ago do not exist today. The ones that do exist are all marvelous feats of engineering because if they weren't, they wouldn't have stuck around for 2,000 years. I guess it's an example of http://en.wikipedia.org/wiki/Survivorship_bias OK, back to gawking at the Pantheon. It's absolutely st…
If they would have had powertools, construction would have progressed a lot faster, the concrete would not have hardened as well as it should and the building would have cracked and collapsed a lot more easily.
Re: How the pantheon has lasted 2000 years without steel in its concrete
#27Earlier quoted context omitted.
For this to be the case you would have to assume that the main reason that a 2,000 year old building is not around is because it fell down due to structural flaws. I think in Rome and Athens there is a lot of evidence that people knocked their houses down to build something fancier, or they were destroyed during war or civil unrest. So it's not a simple case of survivorship bias, though undoubtedly that is one factor…
No, you wouldn't have to assume that. All the alternative factors you mention can tear down a sound building, but none of them can help an unsound one survive 2000 years. A building that lasts that long is robust almost by definition. So, as long as any buildings do survive, we have fertile soil for survivorship bias.
The original comment questioned the accuracy of the statement "they don't build them like they used to", which I took to refer to building standards 2000 years ago.
Consider the following two scenarios:
A. 2000 years ago, all buildings were shoddily engineered except the Pantheon.
B. 2000 years ago, 90% of buildings were well engineered, of which the Pantheon is one example. The rest were deliberately torn down for one reason or other.
Survivorship bias does not allow you in itself to distinguish between A and B, which is the interesting question. It just allows you to disprove C:
C. Since the Patheon still stands, all buildings 2000 years ago must have been brilliantly engineered.
Which nobody is arguing for, I don't think.
Re: How the pantheon has lasted 2000 years without steel in its concrete
#28Earlier quoted context omitted.
When you have a large number of slaves lots of things that would normally be impossible suddenly becomes easy.
However egyptologists today believe that slaves weren't the force behind building pyramids etc. http://en.wikipedia.org/wiki/Egyptian_pyramid_construction_t...
And from your wiki page: Most Egyptologists acknowledge that ramps are the most tenable of the methods to raise the blocks...
1. http://www.bbc.co.uk/history/ancient/egyptians/great_pyramid...
Re: How the pantheon has lasted 2000 years without steel in its concrete
#29I'm going to spend some hard-earned karma by saying this, but here goes: Welcome to Digg/Reddit
Re: How the pantheon has lasted 2000 years without steel in its concrete
#30The Pantheon is awesome, but one shouldn't think, "They don't make 'em like they used to." Almost all structures built 2,000 years ago do not exist today. The ones that do exist are all marvelous feats of engineering because if they weren't, they wouldn't have stuck around for 2,000 years. I guess it's an example of http://en.wikipedia.org/wiki/Survivorship_bias OK, back to gawking at the Pantheon. It's absolutely st…
It might just be that the architect accidentally designed something strong enough. For example, many Gothic cathedrals collapsed during construction, and the ones still standing often are way stronger than needed.