Yeah, that seems very odd. It sounds like the breakers on the transformer tripping is an uncommon failure mode, but they had a second redundant transformer available. Like you say, why would there not be a mechanism to automatically connect it in time to keep the engine going or at least quickly restarted?AWvsCBsteeeerike3 wrote: ↑May 24 24, 11:23 amEchoing what you said, it seems very odd that there is a single point of failure (in this case electrical breakers HR1 and LR1 opening/tripping) which caused loss of power to the cooling pumps which caused the main engine to shut down. You'd think everything critical to the engine (eg, the pumps) would have an emergency backup, like less than 10 seconds. And, that would either prevent the engine from shutting down completely or would allow it to be functional within a very short time, again, thinking less than 10 seconds.
Seems like there's a lot we don't know. Why did the transformer breakers trip? Why didn't they automatically switch to the backup transformer? Report says they restored power the first time by manually resetting the transformer breakers that tripped, but, naively, with a full backup transformer available, it seems like it would make more sense to try that one before retrying the one that just failed. Then why did the big generators fail together but in a way that another parallel standby generator could still start? They say the main engine relied on various fuel pumps, etc running off the LV bus. Is the same true for the generators? Maybe the loss of LV bus power caused some issues with them that only manifest after a delay? The report says the crew switched in the second transformer after the second blackout but never mentions if the breakers on the first transformer opened again. A footnote says that after the accident, they set the switches to continue powering the ship via the standby generator 2 that came on automatically after the second blackout and only the second transformer, so it could be that the breakers on the first transformer were opened manually after the accident, but if they had to manually connect the second transformer to restore power after the second blackout, the first transformer must not have been working if it was still connected.
The story about the day before blackout is also interesting in that it seems like it is another instance where fuel pressure to the generators fails immediately after a blackout. The mechanism of switching in a backup generator does not seem to go smooth in general.
I guess my reading is that the initial cause of of failure is some kind of fault in the transformer and then the rest played out because the mechanisms to respond to such a failure were either no good or not properly implemented, but it's all pretty vague.
According to this video, it's basically hopeless if you have a blackout in a situation where you need to maneuver. Even in training simulations, a blackout almost almost always leads to a crash.AWvsCBsteeeerike3 wrote: ↑May 24 24, 11:23 amKind of the worst case scenario unfolded. The bridge wasn't protected, the ship lost power at exactly the wrong time, and the conditions dictated the course from there which unfortunately was right into the unprotected pier.
https://youtu.be/jxeKXjDVqMA?si=b_qWw8Rk5yOEgX6w
Which seems kinda of crazy. If a blackout is so devastating, you'd think you want to try and create some kind of emergency system to give minimal emergency maneuvering. Or, at least, more should be done to reduce single points of failure and/or give greater odds of rapid power restoration. Is that totally cost prohibitive, or has it just not been taken seriously?
Anyway, I enjoy thinking about these things and having someone to discuss it with and did not mean to come off like I was blasting your ideas. If I did that, I'm sorry.
Hopefully, I will not forget about it all while we wait the year it seems like it's going to take to get the full story.