As I understand it, the Fukushima plant was never designed or rated to sustain such a large earthquake or tsunami. If this understanding is correct, we should not have expected it to survive the damage, and the problems were not with the design, but perhaps with the specification (depending on whether you think this should have been foreseen). It seems to be a common thread with all tragedies and disasters that peopl…
If you read closely you see that the accident was so bad because of one simple problem. If a nuclear reactor has a cooling failure, the fuel will eventually heat up and then melt down. To prevent this you have to keep water circulating around the reactor core. It doesn't take a huge amount of energy to do this, but it does take some. If the power goes out at the station and they can't get emergency power, the outcome…
A study which I would find more important and useful than the one here would be a cost/benefit analysis of increasing all specifications relating to all (similar) low probability events. In other words, if you had been a designer of the plant looking to spend an extra $500000 to make the plant safer, would you have spent it on moving the generators? How many other contingencies would have been higher priorities than this one (if any)? What would be the total cost/benefit of applying this heightened standard to all new facilities? Would this be statistical murder?