DESCRIPTION

We propose an atmospheric moisture trap to be placed in plantations such as vineyards where it takes advantage of the air streams flowing between the vines while the shadow of the plants allow to reduce the temperature of the collector to allow adequate water condensation on the "artificial leaf" that carry water to the base of each vine.

It consists of an injection molded plastic base (high strength polypropylene completely recyclable), in which are placed "leaves" made with recycled PET sheet with microchannels containing hydrophilic and hydrophobic nanoparticles, the process of manufacturing is simply cut and roll up the "leaves ".

-The materials can be recycled and used recycled material.-Manufacturing processes allow for high volume production.-It requires minimal maintenance, reducing labor cost and energy consumption, as well as installation.-For use in vineyards, avoiding the cost of installing drip irrigation systems.His size will not interfere in the process of growing and harvesting.-The design offers an effective area of 0.4 meters square for each module, which would generate 1.2 liters per hour.Her carriage or storage is reduced.

REVIEWS & COMMENTS

See what other buyers think about this model - real feedback on quality,
accuracy, and usability.
There are no reviews or comments yet. Please be the first one to write it.

AquaColector plant in pot Free 3D model

Editorial License (no AI)
Hire
Like this model to show appreciation to the designer.
See how many times this model was viewed.
Share this model to support the designer and boost their visibility.
File format
IGE
IGES<br />File Size: 3.93 MB
Provided by designer
Information and details shared directly by the model's designer.
3D printing
Indicates whether the designer marked this model as suitable for 3D printing.
Model is not 3D printable
The designer indicates this model is intended for digital use only (rendering, animation, or AR/VR) and not for 3D printing.
Geometry
Polygon mesh
A model built from polygons (triangles or quads) connected in a mesh.
Unwrapped UVs
Publish date
Model ID
Chat