The System
Friday, February 26, 2016
Constructing the Pipes in an Aquaponics System
Today I finished drilling holes into the pipes. There process of drilling the holes was unexpectedly easy. Also, it was rather quick. To clarify, we are using 4 inch triple wall drain pipes, each ten feet long. In the end, we will have 11 plants growing in each tube for a total of 33 plants. Eventually, I hope to expand the system to have two pipes running side by side for a total of 66 plants.

Looking towards the future, there is still a lot that needs to be done until I can begin to grow something in the system. First, I will need to buy tubing to connect the pipes for the water to drain through. Then, I will need to attach the end caps to the tubing.
Thursday, February 11, 2016
An Update After Some Work Today
Just an update with a few pictures of the most recent work on the aquaponics system.
Here is one of the stands the pipes will be resting on. To completely finish them, we will have to add the support boards to the bottom, as pictured above.
Here are the pipes we will be using.
Sunday, January 31, 2016
Beginning to Build an Aquaponic System
After a few weeks of careful planning, I have finally managed to pool together the resources needed to build my aquaponics system. Some changes were made to the design in order to maximize the amount of space I have available. The major change will be extending the length of the tubing so the system is an entire ten feet long.
Another change being made will be the use of free standing support structures to hold up the tubing. This decision was made to be able to hold the 10 foot pipes up in a sturdy fashion. Another adjustment I made was using caps at the end of the tubing, sealed with a hose clamp. This will allow me to more easily adjust the height of the water inside the tube, which will be very important because I do not intend to flood the plants.
One note about the supports holding the tubes: These were a little tricky because we want the tubes to be slanted slightly downwards so the water moves down the system like a stepping down a stair. So on the right hand side, the highest tube will be 6 ft in the air, the middle 4.5 ft, and the lowest, 3 ft. This must be taken into account by making the support at the opposite end of the tubing hold the pipe at 5'11", the middle tube at 4'7", and the bottom tube at 2'11".
One note about the supports holding the tubes: These were a little tricky because we want the tubes to be slanted slightly downwards so the water moves down the system like a stepping down a stair. So on the right hand side, the highest tube will be 6 ft in the air, the middle 4.5 ft, and the lowest, 3 ft. This must be taken into account by making the support at the opposite end of the tubing hold the pipe at 5'11", the middle tube at 4'7", and the bottom tube at 2'11".
Now that I have explained some changes in the system design, here are some photos of the building process:
Saturday, November 28, 2015
Aquaponics System Blueprints!
Hi and welcome to my blog. Since this is my third post, I will fill you in on some information about this project. I am designing and building a hydroponic system for my school. The food grown cannot be used in the school cafeteria. I have decided to donate the majority of the produce grown.
I have developed a design for the system, and need some feedback. I am looking for ways which I can improve the way the system works, if the design is feasible, and if it is not, what can I change to make it work. 3 inch pvc piping would be used (the sheet says 4 in.) and I would cut 2 inch holes into the pipe to place the netted cups into. The water would be pumped from the reservoir to the upmost pipe on the right hand side. The water would be pulled down the pipes by gravity and empty into the reservoir on the left hand side of the system.
I would appreciate any feedback. Thanks!
I have developed a design for the system, and need some feedback. I am looking for ways which I can improve the way the system works, if the design is feasible, and if it is not, what can I change to make it work. 3 inch pvc piping would be used (the sheet says 4 in.) and I would cut 2 inch holes into the pipe to place the netted cups into. The water would be pumped from the reservoir to the upmost pipe on the right hand side. The water would be pulled down the pipes by gravity and empty into the reservoir on the left hand side of the system.
I would appreciate any feedback. Thanks!
Sunday, October 11, 2015
Ideas for the Growing System
Hi there! Today I would like to share some of the ideas involving the growing system I am going to set up in my school. First, the produce grown would be sold to the cafeteria. The money would be put back into the system to make improvements. Second, I plan on the system to be Aquaponic based, using fish waste as the source nutrients. The only problem is that I am not sure what to do with the fish once they die. Can they be harvested before they die, depending on the fish used? If you have any experience with this in a school or non-school environment, I would appreciate your ideas.
Modern Agriculture: An Introduction
Hello, my name is Matt and on this blog, I am going to share with you my experience starting an indoor growing system at my school. To provide some context, I am a junior in high school and have been interested in hydroponics for several years now. My passion started during the summer going into seventh grade. I wanted to have the best science fair project that year. I did a ten week experiment testing the growth of peppers being grown in a hydroponic system as opposed to being grown in soil. I did well in the science fair, however, my eighth grade project titled "Parabolic Reflection" won multiple awards. Since then, I have monitored my own hydroponic system in my basement. Now, I have the opportunity to start a hydroponic system in my school. I feel the need to share my experience with others who might want to do something very similar in their school.
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