Fail-slow at scale: Evidence of hardware performance degradation in prod systems
1–10 of 14 posts
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#2I've never heard of such thing, can vibrations from a fan really influence disk performance?
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#3> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#4> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#5To make matters worse the environmental sensors reported no issues, because they were all frozen at a single reading as well.
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#6Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#7> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
On the other hand, if you have a laptop with an SSD (which is non-mechanical) there shouldn't be too much sensitivity to vibrations, I think.
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#8> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
Yes. Loud noises and even yelling degrade disk performance as well. https://www.youtube.com/watch?v=tDacjrSCeq4
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#9> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
Yes. Loud noises and even yelling degrade disk performance as well. https://www.youtube.com/watch?v=tDacjrSCeq4
Re: Fail-slow at scale: Evidence of hardware performance degradation in prod systems
#10> There was a case where a fan in a compute node stopped working, and to compensate this failing fan, fans in other compute nodes started to operate at their maximal speed, which then generated heavy noise and vibration that degraded the disk performance. I've never heard of such thing, can vibrations from a fan really influence disk performance?
In the days of burning CD's I was always told that you should be quiet and not touch the PC when you were burning. In my experience there was indeed a correlation between noise and the success of burning. I'm not sure if this is a placebo effect or not, and if this also holds for reading CD's. On the other hand, if you have a laptop with an SSD (which is non-mechanical) there shouldn't be too much sensitivity to vibr…