The risks in an undamaged system without adding somebody poking their fingers where they do not belong are vanishingly small for both AC and DC.
The question is how the two can be faulted and what the consequences are.
For fires, the most probable fault is damage to insulation causing either an arc or a glowing connection (local hot spot, not the result of arcing.)
I suspect the chances of both are similar for AC and DC of the same voltage.
But what happens after an arc starts is very different.
An AC arc will cause some damage when the arc strikes and will likely remove material to the point that eventually the arc will stop at the current zero crossing and will not restart.
A DC arc has no zero crossing, so the arc will not extinguish until so much material has been removed that the arc stops even though the voltage remains the same. By then you have a fire for sure.
The same difference applies to accidental shorts across the wires involving a person, except the human heart rhythm is an order of magnitude more sensitive to 50/60Hz AC than to DC.
Try our solar cost and savings calculator
Most Popular Topics
Collapse
Solar panel fires!
Collapse
X
-
Ok, as a newbie following this thread, I got lost somewhere on the middle. I never thought about the fire aspect.
I am having a very reputable company in my area install 81 LG280 panels with 81 M250 Enphase Microinverters in a desert inviroment with the racks on the desert floor as opposed to on the roof. It is my understanding that the Enphase Microinverters no longer require a ground wire.
So, with this thread about magnetic fields, arcing, grounding issues, installation issues, maintenance issues....do I need to rethink about even installing solar? I know that may sound silly to many, but to a newbie that has tried to read up on many items, this is the first I ever heard of the fire dangers. Are there regular routine maintenance items other than inspecting wires and the Microinverters? Are there electrical issues that could harm someone by the mere presence of standing next to the panels and perhaps building up static electricity that somehow could start a change reaction of some type? Please forgive me for my ignorance.
As always, I appreciate any and all comments!
Thanks!Leave a comment:
-
Which is what I have also been saying.OK, let's slow down. The equation I provided is not that of the magnetic field, it is the electric field. Large electric fields can be hazardous (corona discharge in extreme cases), but the electric field generated here is insignificant.
The hazards described in the article, or in the example of a battery terminal that arcs, are not due to the attraction of charged particles. They are due either to a termination failure or an insulation failure. In the case of insulation damage, dielectric breakdown can occur under the right conditions, and an arc can occur between + and -, or possibly to ground if it is not a floating system. However, just so it is clear, this has nothing to do with the accumulation of charged particles. Although grounded metal conduit serves many purposes, neutralization of ions is not one of them.
With undamaged insulation and proper terminations, I don't see how the risks of DC in PV systems are any greater than the risks of AC.
Electricity in any version is dangerous to those that take it for granted.
Two rules to stay alive.
1. It ain't "de-energized" unless it is grounded.
2. Never become complacent while you are around it or we will be reading your epitaph.Leave a comment:
-
OK, let's slow down. The equation I provided is not that of the magnetic field, it is the electric field. Large electric fields can be hazardous (corona discharge in extreme cases), but the electric field generated here is insignificant.Google is your friend. http://www.renewableenergyworld.com/...em-safety.html
It specifically talks about arcs caused by high voltage DC with more causes than what I thought of.
As I said before, the arc is not caused by magnetic field which's induced by electricity flowing in the wire (what you illustrated). I'm talking about static voltages. Think of it as a high voltage battery with +/- terminals that're pretty close. The + side attracts - particles, and - side, + particles. With enough build up and the right humidity, the two sides of particles (or ions) will some times touch and release the energy, in extreme case, produces an arc. If you enclose it in a metal conduit, the metal is a conductor that constantly neutralizes ions, so no charge build-up no arc. With AC, the polarity of the battery changes at 60Hz, so there's no time for charge to build-up.
The hazards described in the article, or in the example of a battery terminal that arcs, are not due to the attraction of charged particles. They are due either to a termination failure or an insulation failure. In the case of insulation damage, dielectric breakdown can occur under the right conditions, and an arc can occur between + and -, or possibly to ground if it is not a floating system. However, just so it is clear, this has nothing to do with the accumulation of charged particles. Although grounded metal conduit serves many purposes, neutralization of ions is not one of them.
With undamaged insulation and proper terminations, I don't see how the risks of DC in PV systems are any greater than the risks of AC.Leave a comment:
-
An arc fault detection circuit (very different from a ground fault detection circuit) will detect arcs. That means a radio frequency current and voltage signal which results from the arc repeatedly making and breaking or fluctuating in voltage.
It is possible to build an arc detector which is sensitive to both AC and DC arcs, but it is also much easier to build a circuit which detects one or the other best.
None of them detect constant electric fields unless those fields cause current to flow.
Be careful of the difference in implication between static electric fields (anytime the field values stay constant) and static electricity which commonly refers to fields generated by a mechanism that cannot sustain much current at all.
The current and duration profile of an arc produced by static electricity will have so little current associated with it that it will not trip most AFCIs.
In most if not all of the reported fires a ground fault detector would have alerted to the problem just as efficiently as an arc fault detector.
The only thing that a ground fault device will not detect is an arc or solid connection between + and - wires that does not involve any current flowing to the grounded panel/rack/conduit system.Last edited by inetdog; 06-03-2015, 08:42 PM.Leave a comment:
-
Google is your friend. http://www.renewableenergyworld.com/...em-safety.htmlCan you find a single citation that supports the idea that <500 V DC lines are hazardous in the way you are suggesting?
Electric field = [(Resistivity) * (Current)] / [(pi/4) * (D^2)] (note that voltage doesn't matter, just current)
For 10 AWG copper carrying 20 A
E = [(1.68×10−8) * (20)] / [(pi/4) * (.00259^2)] = 0.064 V/m
It specifically talks about arcs caused by high voltage DC with more causes than what I thought of.
As I said before, the arc is not caused by magnetic field which's induced by electricity flowing in the wire (what you illustrated). I'm talking about static voltages. Think of it as a high voltage battery with +/- terminals that're pretty close. The + side attracts - particles, and - side, + particles. With enough build up and the right humidity, the two sides of particles (or ions) will some times touch and release the energy, in extreme case, produces an arc. If you enclose it in a metal conduit, the metal is a conductor that constantly neutralizes ions, so no charge build-up no arc. With AC, the polarity of the battery changes at 60Hz, so there's no time for charge to build-up.Leave a comment:
-
And you would know about bad connections done by the original installer. You found them and fixed them but I have no doubt that you would have had an issue if one of those wires you fixed had come loose and arced to the frame.
Maintenance may be nothing more then checking the integrity of an electrical system every so often to make sure nothing has changed or has been disturbed by outside sources like the weather and critters.
We called those walking PM plans where an electrician just did a walk around one of our machines to make sure there wasn't any broken connections or loose wires. Easy and cheap to do but priceless if a problem is found before it results in down time.Leave a comment:
-
I've got hundreds of installs under my belt as well and laughed at the salesman trying to sell us squirrel guard in the warehouse one morning. That's just how it was reported, personally I think it was a failed connection in a bp panel which has happened a lot lately.Leave a comment:
-
Hadn't even heard of this one thought it was going to be the one in Latham last month. That one was an old BP solar account that was taken on by solar city and was chewed on by squirrels apparently.
Edit: never mind your pictures deceived me it was that one. Squirrels did it. Was installing on a fire department that responded to it at the time.
So I guess it was a good idea that I had bird and squirrel guard installed around my solar array. My installer was telling me they never had an issue with squirrels and birds but I insisted on having it installed.Leave a comment:
-
Last one who touches it, owns it and is responsible. If their pockets are not deep enough, the person before that. Someone has to be pay and it is not going to be the insurance company that holds the policy on the burnt building. They may pay initially, but they are going to go after whoever they can to get their money back if they can. Who ever has the deepest pockets looses. Unless of course it is a Jack Legged DIY install. Then the owner owns it.Leave a comment:
-
Hadn't even heard of this one thought it was going to be the one in Latham last month. That one was an old BP solar account that was taken on by solar city and was chewed on by squirrels apparently.
Edit: never mind your pictures deceived me it was that one. Squirrels did it. Was installing on a fire department that responded to it at the time.Leave a comment:
-
Anybody actually read the article?
A spokesman for Brighton and Hove City Council said the Town Hall is currently undergoing renovations, and that consequently only a few staff and building contractors were inside at the time. They added that everyone was evacuated immediately with no casualties.So right now it is speculation that it was a solar panel. Maybe it was that plumber soldering the pipes together with a torch.George Dalmon, who was in Hove Town Hall at the time of the fire told the Brighton Argus: “There was big black smoke billowing out, it looks quite major. Everyone has been evacuated out of the building. Somebody said something about it being a solar panel.”Leave a comment:
-
Tree Rats. Bird's Nest, Sun Light UV and undocumented Roofer Installers that No ComprendeLeave a comment:
-
They are pretty much maintenance free and I don't think these fire are so much a maintenance problem but a problem of incorrect installation in the first place...most probably having to do with bad connections I would guess.Leave a comment:
-
What kind of maintenance is there to do with the wires under the panels and in conduit all the way to the inverters? I thought solar panels and inverters were pretty much maintenance free.Leave a comment:
Copyright © 2014 SolarReviews All rights reserved.
Powered by vBulletin® Version 6.1.3
Copyright © 2026 MH Sub I, LLC dba vBulletin. All rights reserved.
Copyright © 2026 MH Sub I, LLC dba vBulletin. All rights reserved.
All times are GMT-5. This page was generated at 08:16 AM.
Leave a comment: