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{{Project data
| completed = 2006
| cost = USD 700
| instance-of = Shelter
}}
Substitute for national grid or heavyweight solar with:
Substitute for national grid or heavyweight solar with:


* 1 80 watt panel per 40 adults,
* One 80 watt panel connected to a 15 minute AA battery charger (e.g. the new generation Rayovacs)
* connected to a 15 minute AA battery charger (i.e. the new gen rayovacs)
 
These items will be connected into a "power pillar" - a walk-up charging station where people come with their empty NIMH batteries, drop them into the charger, wait 15 minutes, then take them home. Assuming a 10 hour charging day, that services 40 sets of batteries.
 
Each [[Wikipedia:AA battery|AA NiMH battery]] has a capacity of approx 2000 mAh at 1.25V, equivalent to 2.5 VAh. If charger efficiencies are 25% (my guess) then we need about 10 Wh to charge each battery.


These items connected into a "power pillar" - a walk-up charging station where people come with their empty NIMH batteries, drop them into the charger, wait 15 minutes, then take them home. Assuming a 10 hour charging day, that services 40 sets of batteries.
80 W for 10 hours is 800 Wh per day or enough to charge 80 batteries a day.


Appliances for this system include:
Applications for this system include:


* lighting: cold cathode fluroescent lights (see: http://ledmuseum.candlepower.us/dbright.htm ), LED headlamps, etc.
* [[Lighting]]: [[Cold Cathode Fluorescent Lamps|cold cathode fluorescent lights]] (see: http://ledmuseum.candlepower.us/dbright.htm ), LED headlamps, etc.
* communication: cell phone chargers, FRS-type radios, other battery powered radios etc.
* Communication: cell phone chargers, FRS-type radios, other battery powered radios etc.
* entertainment: pretty much any general purpose device can be found in a AA configuration, like televisions (http://www.amazon.com/Casio-TV-980-2-3-Portable-Color/dp/B0000CGCCM)
* Entertainment: pretty much any general purpose device can be found in a AA configuration, like televisions ([https://www.amazon.com/Casio-TV-980-2-3-Portable-Color/dp/B0000CGCCM http://www.amazon.com/Casio-TV-980-2-3-Portable-Color/dp/B0000CGCCM])
* wood gassification stove (see below)
* Wood [[gasification]] stove (see below)


What won't work:
What won't work:


Heavy-draw mains appliances (toasters, video projectors)
* Heavy-draw mains appliances (toasters, video projectors)


Financial model:
Financial model:


* $400 for the panel, $100 for the charger and pillar. ($12.50 per adult)
* $400 for the panel, $100 for the charger and pillar. ($12.50 per household)
* $10 for 8 fast charge AA batteries for each adult.
* $200 for 80 fast charge AA batteries say 4 each for 20 households.
* $10 or less for each lighting unit. ($32.50 total)
* $100 or 20 lighting units.
 
* $700 total or $35 each for 20 households.
$50 per adult should comfortably buy everything required for basic electrical services. A bare bones system (lighting and stoves only) would be less than $20 per household.


$50 per household should comfortably buy everything required for basic electrical services. A bare bones system (lighting and stoves only) would be about $12.50 per household because the cost of the panel, charger and pillar could be split between 80 households.


{{Page data
| keywords = battery, efficiency, electricity, energy, hexayurt, household, load, module, Solar, renewable energy, solar panel, battery charger, power pillar
| sdg = SDG07 Affordable and clean energy, SDG09 Industry innovation and infrastructure, SDG15 Life on land
| published = 2006
| organizations = Hexayurt project
| license = CC-BY-SA-3.0
| language = en
}}


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Latest revision as of 19:19, 29 January 2024

FA info icon.svg Angle down icon.svg Project data
Completed 2006
Cost USD 700
Instance of Shelter
OKH Manifest Download

Substitute for national grid or heavyweight solar with:

  • One 80 watt panel connected to a 15 minute AA battery charger (e.g. the new generation Rayovacs)

These items will be connected into a "power pillar" - a walk-up charging station where people come with their empty NIMH batteries, drop them into the charger, wait 15 minutes, then take them home. Assuming a 10 hour charging day, that services 40 sets of batteries.

Each AA NiMH battery has a capacity of approx 2000 mAh at 1.25V, equivalent to 2.5 VAh. If charger efficiencies are 25% (my guess) then we need about 10 Wh to charge each battery.

80 W for 10 hours is 800 Wh per day or enough to charge 80 batteries a day.

Applications for this system include:

What won't work:

  • Heavy-draw mains appliances (toasters, video projectors)

Financial model:

  • $400 for the panel, $100 for the charger and pillar. ($12.50 per household)
  • $200 for 80 fast charge AA batteries say 4 each for 20 households.
  • $100 or 20 lighting units.
  • $700 total or $35 each for 20 households.

$50 per household should comfortably buy everything required for basic electrical services. A bare bones system (lighting and stoves only) would be about $12.50 per household because the cost of the panel, charger and pillar could be split between 80 households.

FA info icon.svg Angle down icon.svg Page data
Keywords battery, efficiency, electricity, energy, hexayurt, household, load, module, solar, renewable energy, solar panel, battery charger, power pillar
SDG SDG07 Affordable and clean energy, SDG09 Industry innovation and infrastructure, SDG15 Life on land
Authors Megan Moore
License CC-BY-SA-3.0
Organizations Hexayurt project
Language English (en)
Related 0 subpages, 38 pages link here
Aliases Hexayurt solar
Impact 528 page views
Created October 10, 2006 by Anonymous1
Modified January 29, 2024 by Felipe Schenone
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