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Greenhouse, esdi rio de janeiro 2010

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Page 1: Greenhouse, esdi rio de janeiro 2010
Page 2: Greenhouse, esdi rio de janeiro 2010

Index

1

Page 3: Greenhouse, esdi rio de janeiro 2010

Concept 1

The idea for this concept is to establish a tent from a compact modus to a big open space. Existed out of an aluminium construction with a central unit that you can slide up to do the set up.

when the construction stands straight, it forms the shape of a spyder. This is a good opportunity to collect the rainwater in the centerunit.

2

Page 4: Greenhouse, esdi rio de janeiro 2010

Concept 2

The dome is made from plastic tubes which gives me a lot of advantages (look next pg.). To do the set up, we just need to pump up our construction.

To make the dome com-plete I will fill up the open surfaces between the tubes. This with a plastic sheet with a thickness from 1mm.

The second idea is based on a very simple concept. An aircon-struction which you can compa-re with an aircastle for children.

3

Page 5: Greenhouse, esdi rio de janeiro 2010

Trade off

Usability• transport• set-up time• clearly• collect water• center space

Technical difficulty• construction• number of parts• number of materials• assembly level• build costs

Shape• possibilities• atractive• organic design

Redevelopment

++

+/-+-

+/-+/-+-+

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+/-

++++++

++++++

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+

Concept

Pro

du

ct A

spe

cts

My trade off makes it clear why I choose to go on with the second concept. The simplicity and the possibility to create new shapes are the most important aspects in my concept.

4

Page 6: Greenhouse, esdi rio de janeiro 2010

After some sketches I started to work on my 3D modeling. The curves are based on the legs from a spyder which gives me an organic look. It’s also giving me a good air con-duction

One of the most important things in a greenhouse is the ventilation. So your plants get a continuous supply of oxygen. To keep the system green I used a traditional passive ventila-tion system. which is no-wadays still a very effective one.

Because I was free to choose what my design was going to be, I choosed a greenhouse. An easy set up for your garden and with the help from somechanges even usual for indus-trial growing.

Quickdesign

5

MaterialThe structure needs to be transparant and it needs a necessary substantia-lity. So I use fiber-PVC for the structure and for the sheets between the struc-ture PVC. The PVC con-tains also a UV-protector to pretect the plants.

Page 7: Greenhouse, esdi rio de janeiro 2010

Ergonomics

On the section view, on your right you can see that I made the workspot right in the middle. This because you can reach all the plants and in the same time you’ve got a perfect height to work.

The next point is about the ergonomics from my green-house. I based myself on a per-son with a height from 1,80m. Which is needed to work in a healthy and enjoyable environ-ment.

Section view

6

Page 8: Greenhouse, esdi rio de janeiro 2010

Plant-table

I searched for a growway somewhere between home and industrial use. I prefere still to use soil to grow, so you don’t loose any tast like you have with hydrophonic vegetables.

The planttable has two le-vels, a lower inside and a higher outside level. I did this because the sun could reach all the plants. In the holes in the plantplates, you can put pots with standard measurements.

This is an example of your workplace. All the parts are very modular. What gives you a lot of possibi-lities. For example: deside how many tables, release plantplates from the table, select your plants, ...

7

Page 9: Greenhouse, esdi rio de janeiro 2010

Planttable expl.

This is the filter and float to get the water out of the bottom of the reservoir.

Here you have the exploded view from my plant-table. Inclu-ded rainwater-reservoir, plant-plates, filter, float and plantpots.

8

processingThe plantplates are made with pressforming. The Al sheet has a thickness from 2mm.

The table first with hydro-forming and later with a bending process.

The reservoir is made with turning molding. So the price of the mold stays still acceptable.

Page 10: Greenhouse, esdi rio de janeiro 2010

Plantpot-table

To make the greenhouse a bit more modular, I had the idea to add a plantpot-table. This makes it easy to take a plantplate and take it to your pottable.

There are no technical drawings from this part.

9

Page 11: Greenhouse, esdi rio de janeiro 2010

Beside oxygen and light the plants also need fresh water to grow. And the cleanest way to become this, is to collect therainwater.

Watercollector

The drainpipes from the tent are integrated in the same material and they exist also out of plastic tubes.

10

Page 12: Greenhouse, esdi rio de janeiro 2010

Watercollector

The reservoirs exist out of two peaces. which are connected to the table. Each helft has a capacity from 100 liter. So if you place 5 reservoirs you can collect 1000 liter of rain-water.

The reservoirs are connec-ted so they can flow over in each other. This helps me to give my tent some stability.

11

Page 13: Greenhouse, esdi rio de janeiro 2010

Pump

For watering the plants I’m using a handpump which can be connected to the reservoir.

This is a fast model from the inside of the pump.

12

Page 14: Greenhouse, esdi rio de janeiro 2010

Presentation

13

Page 15: Greenhouse, esdi rio de janeiro 2010

Presentation

14

Page 16: Greenhouse, esdi rio de janeiro 2010

Mock-up

15

scale 1/600

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