Difference between revisions of "ASAC/AP"

From air
Jump to navigation Jump to search
 
(56 intermediate revisions by 4 users not shown)
Line 1: Line 1:
=Brainstorming=
 
But du projet: Automatisation d'une serre pour la cellule humanitaire; association à but non lucratif
 
*Objectif principale
 
**Distributeur de nourriture
 
Pb: Dimensionnement, tube ou camembert
 
**Capteur Température
 
Air
 
Eau
 
**Communication LORA
 
**Niveau d'eauCapteur prêt
 
Reste: cache, code
 
*Objectif secondaire
 
**Capteur Nitrate
 
**Capteur phosphate
 
**Régulation ouverture automatique
 
   
  +
This project is part of the [[ASAC]] project.
*Carte electronique
 
Boitier protection
 
   
  +
= Introduction =
=Présentation=
 
   
  +
An aquaponic greenhouse is available for projects made by engineering students from Polytech Grenoble [https://www.polytech-grenoble.fr/].
Aquaponie: an agricultural practice combining plant cultivation and fish farming in a same place, creating a symbiotic relationship between them.
 
  +
The greenhouse is also managed by the humanitarian club of the university.
  +
[[File:serre aquaponie.jpg|250px|thumb|Greenhouse exemple]]
   
  +
The projects involve students from the RICM/INFO (Computer Network and Multimedia Communication) department, the IESE (Computer Science and Electronics for Embedded Systems) department, and the MAT (Materials) department. The overall goal is also to deploy and configure various sensors, which will verify some intern parameters in the greenhouse, like air temperature and water temperature, humidity rate, or the pH of the water tank in a user friendly environment. To use the exploitation of the greenhouse, some student projects are dedicated to enhance the surrounding environment of the greenhouse with an automatic food distributor, some water tank for rain water, embellish/secure the floor or build some wicking beds.
   
  +
{|style="margin: 0 auto;"
==Project==
 
  +
| [[File:Greenhouse-Polytech-outside.jpg|x250px|thumb|Greenhouse@Polytech viewed from outside]]
  +
| [[File:Greenhouse-polytech-inside.jpg|x250px|thumb|Greenhouse@Polytech viewed from inside]]
  +
| [[File:Plantes-polytech-2019-03.jpg|x250px|thumb|Greenhouse@Polytech with plants (March 2019)]]
  +
|}
   
  +
= What is aquaponics ? =
The engineering school of Polytech Grenoble plans to install an autonomous greenhouse within its building during the academic year 2017-2018. The selected greenhouse uses the principle of aquaponie (defined above). On the long term, it will be managed by the humanitarian club of the school.
 
This year, the school has decided to involve the 4th and 3rd year students of IESE (Computing and Electronics Embedded Systems) and Materials sciences in this collective project.They continue the work started by the RICM (Computer Network and Multimedia Communication) in the previous year. The students have to design and perform a set of sensors in order to control parameters within the greenhouse such as the air and water temperatures, the humidity, the pH of the basins and the level of water. Another goal is to design and build an automatic food dispenser system for fish that will be growing within the greenhouse.
 
   
  +
The term “aquaponics” comes from the link between the words aquaculture, fish or other aquatic organism farming, and hydroponic, culture of plants by the use of water rich in minerals. Therefore, aquaponics is plants and fish farming in symbioses. This type of culture was firstly used by Aztecs and Chinese.
[[File:serre aquaponie.jpg]]
 
  +
Thus, we can assimilate aquaponics to an ecosystem where 3 types of organisms live in an ecologic cycle:
  +
  +
[[File:Schematics of the ecosystem and the organisms involved.jpg]]
   
  +
* The fishes produce waste that will be used as nutriments for the plants. This waste is rich in nitrogen (ammonium and urea), in phosphor and in potassium. Elements that are essential for the plants.
==Teachers==
 
  +
* Bacterias transform the organic material, like ammonium and urea, in nitrites and then nitrates. The nitrates are in mineral form and the plants are able to use them as food.
  +
* The plants filter the aquarium water by assimilating the minerals with their roots. In this way, the nutriments in mineral form can feed the vegetal.
  +
In this system that we are going to set up, a water pump, powered by solar panels, will be used to transport the water with fish waste to the plants.
   
The teacher leading the project is Nicolas PALIX.(http://lig-membres.imag.fr/palix/)
 
He can be helped by Benoit MARCHANT and Vincent HIBON.
 
   
  +
= What is the objective of aquaponics ? =
==Team==
 
   
  +
Aquaponics can have different objectives depending on the desire. It can be alimentary, like vegetables and fish farming, but also for hobby or even educational.
{|class="wikitable"
 
  +
The main issue is to find the balance between the fish population, the food to feed them, the bacterial population and the plants farmed: an anomaly in any of these parameters can destroy the ecosystem.
!scope="col"| Name
 
  +
In long term, this type of culture can be conceivable in large scale to overcome the problems of future food production and soil impoverishment.
!scope="col"| study class
 
  +
|-
 
  +
!scope="row"| Faustine MICHEL
 
  +
= Dashboard =
| IESE-3
 
  +
|-
 
  +
[[Image:polytech.iot.imag.fr.png|thumb|https://polytech.iot.imag.fr/]]
!scope="row"| Bastien BONTE
 
  +
| IESE-3
 
  +
|-
 
  +
[[Image:Grafana-polytech.png|x500px|Grafana]]
!scope="row"| Paulo NAVES
 
  +
| IESE-4
 
  +
= The Teams =
|-
 
  +
* [[ASAC/AP/AP-2017]]
!scope="row"| Erik NAYAN
 
  +
* [[ASAC/AP/AP-2018]]
| IESE-4
 
  +
* [[ASAC/AP/AP-2019]] [https://gricad-gitlab.univ-grenoble-alpes.fr/Projets-INFO4/19-20/3/docs/-/blob/master/README.md ASAC/AP/AP-2019-INFO]
|-
 
  +
* [[ASAC/AP/AP-2020-CO]] [[ASAC/AP/AP-2020-INFO]]
!scope="row"| Antoine RONCO
 
  +
| MAT-3
 
  +
= Source code repository =
|-
 
  +
!scope="row"| Dorian REBOULLET
 
  +
https://gricad-gitlab.univ-grenoble-alpes.fr/ASAC/serre-polytech
| MAT-3
 
  +
* https://gricad-gitlab.univ-grenoble-alpes.fr/Projets-INFO4/19-20/3
|-
 
  +
* https://gricad-gitlab.univ-grenoble-alpes.fr/Projets-INFO4/18-19/4
!scope="row"| Eglantine LEJEUNE
 
  +
| MAT-4
 
  +
= Internet Links =
|-
 
  +
!scope="row"| Apolline LIMOUSIN
 
  +
https://www.polytech-grenoble.fr/
| MAT-4
 
  +
|-
 
  +
https://myfood.eu/
|}
 

Latest revision as of 17:47, 18 January 2021

This project is part of the ASAC project.

Introduction

An aquaponic greenhouse is available for projects made by engineering students from Polytech Grenoble [1]. The greenhouse is also managed by the humanitarian club of the university.

Greenhouse exemple

The projects involve students from the RICM/INFO (Computer Network and Multimedia Communication) department, the IESE (Computer Science and Electronics for Embedded Systems) department, and the MAT (Materials) department. The overall goal is also to deploy and configure various sensors, which will verify some intern parameters in the greenhouse, like air temperature and water temperature, humidity rate, or the pH of the water tank in a user friendly environment. To use the exploitation of the greenhouse, some student projects are dedicated to enhance the surrounding environment of the greenhouse with an automatic food distributor, some water tank for rain water, embellish/secure the floor or build some wicking beds.

Greenhouse@Polytech viewed from outside
Greenhouse@Polytech viewed from inside
Greenhouse@Polytech with plants (March 2019)

What is aquaponics ?

The term “aquaponics” comes from the link between the words aquaculture, fish or other aquatic organism farming, and hydroponic, culture of plants by the use of water rich in minerals. Therefore, aquaponics is plants and fish farming in symbioses. This type of culture was firstly used by Aztecs and Chinese. Thus, we can assimilate aquaponics to an ecosystem where 3 types of organisms live in an ecologic cycle:

                                             Schematics of the ecosystem and the organisms involved.jpg
  • The fishes produce waste that will be used as nutriments for the plants. This waste is rich in nitrogen (ammonium and urea), in phosphor and in potassium. Elements that are essential for the plants.
  • Bacterias transform the organic material, like ammonium and urea, in nitrites and then nitrates. The nitrates are in mineral form and the plants are able to use them as food.
  • The plants filter the aquarium water by assimilating the minerals with their roots. In this way, the nutriments in mineral form can feed the vegetal.

In this system that we are going to set up, a water pump, powered by solar panels, will be used to transport the water with fish waste to the plants.


What is the objective of aquaponics ?

Aquaponics can have different objectives depending on the desire. It can be alimentary, like vegetables and fish farming, but also for hobby or even educational. The main issue is to find the balance between the fish population, the food to feed them, the bacterial population and the plants farmed: an anomaly in any of these parameters can destroy the ecosystem. In long term, this type of culture can be conceivable in large scale to overcome the problems of future food production and soil impoverishment.


Dashboard


Grafana

The Teams

Source code repository

https://gricad-gitlab.univ-grenoble-alpes.fr/ASAC/serre-polytech

Internet Links

https://www.polytech-grenoble.fr/

https://myfood.eu/