{"id":143095,"key":"Air_Bottle_Conditioner","title":"Air Bottle Conditioner","latest":{"id":1265357,"timestamp":"2026-09-07T06:38:01Z"},"content_model":"wikitext","license":{"url":"https://www.appropedia.org/Appropedia:Copyrights","title":"CC-BY-SA-4.0"},"source":"[[File:GN002 Image Use2.jpg|thumb|Air Bottle Conditioner being used]]\n\n{{Project data\n| type = Shelter\n| authors = Georg Hoehne\n| location = Jordan\n| environment = Desert\n| status = Deployed\n| verified-by = Field Ready\n| years = 2017\n| made = Yes\n| tools = Knife\n}}The Air Bottle Conditioner is a \"zero electricity\" cooling device that uses a grid of cut PET bottles mounted in a window to reduce indoor temperatures without any power source. It provides a passive cooling method for dwellings using discarded plastic bottles as the core material.\n\nThe device is made by cutting a sturdy board to the size of the window it will be installed in, then cutting holes in the board sized to match the rim of a PET bottle, spaced far enough apart to accommodate each bottle's body. Using a knife, PET bottles are cut in half crosswise, and the tops of the bottle caps are carefully cut away to create an open channel. The cut bottles are then mounted into the board's holes and secured by screwing the bottle caps onto the exposed threads from the opposite side. The completed panel is fixed into the window with the bottlenecks facing inward, toward the interior of the room.\n\nThe cooling effect relies on the Venturi effect: as hot air enters the wide end of each bottle, the gas contracts as it approaches the narrower rim, causing a drop in pressure. This pressure drop increases the air's velocity as it exits through the narrow bottleneck, producing a cooling effect as the air enters the room.\n\n[[File:GN002 Image CAD.jpg|thumb|CAD Image of the Air Bottle Conditioner]]\n\n{{Device data|making-instructions=https://www.appropedia.org/File:GN002_Manual.pdf}}\n\n{| class=\"wikitable\"\n! colspan=\"2\" |More Product Information\n|-\n| Author Code\n| GN002\n|-\n| Documentation License\n| CC-BY-4.0\n|-\n| Open Hardware License\n| CERN\n|-\n| Start Date (Development)\n| Dec 10, 2017\n|-\n| End Date (Development)\n| Dec 10, 2017\n|-\n| Designer\n| Georg Hoehne\n|-\n| Maker\n| Georg Hoehne\n|-\n| Main Materials\n| PET Bottles\n|}\n\n== Readiness Levels ==\n\n''Levels are identified based on this reference:'' [[Field Ready Readiness Levels]]\n\n[[File:GN002 Image Use.jpg|thumb|Indoor view of the Air Bottle Conditioner]]\n\n{| class=\"wikitable\"\n! Readiness Criteria\n! Level\n|-\n| Field Readiness\n| 3\n|-\n| Maker Readiness\n| 1\n|-\n| User Readiness\n| 1\n|-\n| Tech Readiness\n| 4\n|-\n| Risk Readiness\n| 1\n|}\n\n== Manuals ==\n\n{{Attention\n| title = About the manuals\n| text = Field Ready develops manuals to support both the fabrication and safe use of its products. A maker manual provides step-by-step instructions for replicating the design, including materials, tools, and assembly guidance, so that makers in different locations can build the product accurately and consistently. A user manual, where applicable, explains how to properly set up, use, and maintain the product once it is built, helping ensure it performs safely and as intended for the end user. Together, these manuals make the design accessible to both fabricators and the people who ultimately rely on the product.\n}}{{Page data\n| part-of = Global Field Ready Portfolio\n| keywords = Shelter\n| sdg = SDG03 Good health and well-being\n| authors = Charles Vincent Barrete\n| organizations = Field Ready\n| license = CC-BY-SA-4.0\n}}"}