你应该清洗太阳能电池板吗?
Should you wash your solar panels?

原始链接: https://incoherency.co.uk/blog/stories/should-you-wash-your-solar-panels.html

一位太阳能电池板所有者通过对比两组电池板的功率输出,测试了清洁其使用了15年且布满灰尘的系统是否值得。在清洁其中一组电池板后,他们观察到功率提升了2%至5%,预计每年可带来60至150英镑的收益。虽然这使得清洁工作勉强值得一做,但作者指出,随着灰尘再次积聚,这些收益会逐渐减少。 在清洁过程中,作者感受到轻微的电击感,这很可能是电容泄漏导致的,因此建议在清洁时保持谨慎。 关于系统升级,作者计算得出,更换为现代技术的电池板可提升60%的发电容量,且投资回收期为三年。然而,他们认为目前并不鼓励进行升级。由于该系统享有旧有的高额上网电价补贴(Feed-in Tariff),任何新增的发电容量都将适用较低的现代费率,从而使升级在经济上适得其反。这凸显了一个典型的矛盾:政府最初旨在促进采用技术的历史性激励措施,最终反而可能成为现有能源基础设施现代化升级的障碍。

这份 Hacker News 讨论探讨了维护家用太阳能电池板在实际操作和经济层面的细微之处。 主要观点包括: * **维护:** 虽然有些人建议使用自动喷淋系统或为了美观(特别是在出售房屋时)进行清洁,但大多数讨论者认为雨水通常足以完成清洁工作。专家警告称,爬上屋顶清洁电池板对房主造成的风险远高于其可能带来的效率提升。 * **性能:** 一些参与者指出,在炎热天气下向电池板喷水可以通过降温来略微提高效率,但增益微乎其微。 * **安全:** 一个重要的担忧是电气接地的重要性,讨论指出,缺乏基本安全措施的自行安装(DIY)远比清洁问题更关键。 * **经济:** 该讨论串强调了早期政府补贴所产生的“锁定效应”。房主往往不愿升级系统,因为这样做可能会失去利润丰厚的旧版上网电价补贴,转而采用收益较低的现代费率。这表明过去的激励措施可能在无意中成为未来技术改进的障碍。
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原文

I have a small solar farm and the panels have got visibly dusty. Is cleaning them worthwhile? How much difference does it make? Let's find out.

I know that my panels have not been cleaned in the last year. I expect they also weren't cleaned in the year prior to that (why would you clean them when you're about to sell the house?). But beyond that I don't know when they were last cleaned.

Summary

The short answer is that I think I got a 2%-5% increase in power output from my solar farm due to cleaning the panels, which will work out to about £60-£150/yr, decaying to 0 over the course of a few years. So, probably just about worthwhile.

Methodology

There are 16 panels in total, connected up to the inverter as 2 banks of 8 panels each. The inverter reports the power output from each bank individually, so the plan is to take a bunch of readings before starting, then wash all of the panels in one bank, taking readings in between and at the end.

Our hypothesis is that cleaning the panels will increase power output.

We can test whether washing the panels has made any difference by looking at the ratio of power output from the 2 banks. If we just looked at raw power output then it would be confounded by changing cloud cover, sun angle, etc.

There is still the fact that the 2 banks of panels are physically separate and plausibly one bank is better positioned for sun 45 minutes later than the other. Ideally I would have been measuring the ratio of power output for several days prior to see how it varies throughout the day.

This is how the first row of panels looks after I've washed 3 of them, you can see the furthest one is noticeably grubbier:

So they were "visibly dusty", but not massively dirty. If your panels are dirtier than mine were, then your benefit from cleaning them will be greater than mine was.

Results

My results for cleaning one bank of panels are shown in this chart:

We see that the initial power ratio is very stable before the panels are washed.

We then step up to having washed "half" a panel (I initially tried to wash them with window cleaner and a paper towel, but this was ineffective so I then walked away to get a bucket of soapy water and a cloth, and then took a reading which I labelled as 50% washed).

For some reason the power ratio drops significantly when the first panel is washed, I'm unsure why.

And then the power ratio increases as more panels are washed as we'd expect.

But once all the panels are washed, the power ratio drops off again while nothing changes. I am unsure whether this is because as the surface water evaporates off the panels get slightly opaque again? Like the "frosted glass effect", where you can see through frosted glass when it is wet but it gets opaque again when dry. Maybe beyond cleaning the panels I ought to be polishing them?

Anyway it looks like cleaning the panels was about a 2%-5% improvement, depending on what you think is going on at the end.

Tingle

I got a bit of a tingle when I was cleaning one of the panels. At first I thought I was getting an electric shock from the wet panel, but I inspected my finger and found a tiny thistle splinter in it. After I removed the splinter it seemed fine.

But a bit later I got another tingle from another panel! There definitely wasn't a splinter in my finger any more, but the tingle was in the same place. I think the tingle actually was coming from the electricity, but I was only able to feel it at the point where the thistle had already pierced the skin.

ChatGPT convinced me that there could just be a tiny "capacitive leakage" from an "inverter with no transformer", so I'm not going to worry about it. But if I clean the panels again I will wait until dark lol.

Upgrading

The next question is should I be upgrading the solar farm? I think mine was installed about 15 years ago, and generates (at peak output) 3.7 kW from 16 panels.

Correct me if I'm wrong on any of this:

Replacing the panels with more modern ones would increase the power output by about 60%, at a cost of about £5000, which would pay for itself in about 3 years, which seems like a no-brainer.

However, due to the fact that my solar farm was installed so long ago, it benefits from a feed-in tariff, which means that not only do I get paid an absurdly high rate, but it is paid also based on the electricity I generate rather than what I export.

If I increase the power output of the system then the additional capacity will not be eligible for the feed-in tariff and will revert to present-day prevailing tariff which is about 4x worse before you even consider that I currently get to use electricity and still get paid for generating it.

This is the yin and yang of market-distorting incentives. Today's incentive to install solar becomes tomorrow's disincentive to upgrading it.

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