Rabbit hutch tiny house: Difference between revisions

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** one temperature sensor in an unmodified foam box
** one temperature sensor in an unmodified foam box
** one temperature sensor measuring atmospheric temperature changes
** one temperature sensor measuring atmospheric temperature changes
* Because we can't control experimental conditions we will just need to monitor the performance of our experiment over several weeks.


=== Experiment 1 - air tightness ===
=== Experiment 1 - air tightness ===
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* Once dry, the PVA coating should help create a box that is more air tight.
* Once dry, the PVA coating should help create a box that is more air tight.
* This should improve thermal performance in comparison to the two controls.
* This should improve thermal performance in comparison to the two controls.
=== Experiment 2 - insulation ===
* The foam box already has walls of foam which functions as insulation.
* Foam acts as an insulator because air is trapped within the foam, and also because foam itself is a poor conducted on heat.
* The thicker the walls the better the insulation properties.
* Another way to improve insulation is to add some more insulation to the outside of the box.
* Some experimental suggestions include:
** Adding foam or other insulation materials to the outside of the box.
** Placing the original foam box inside a bigger foam box.
** Replacing the original foam box with a foam box with thicker walls.
** Wrapping the foam box in insulation material




=== Experiment 2 - insulation ===
=== Experiment 3 - ===

Revision as of 09:15, 19 December 2021

Overview

  • Rabbits cannot tolerate temperatures greater than 30 degC, this is why they live underground.
  • In this project we experiment with the six Passive House principles to keep internal temperatures as constant as possible.
  • The six Passive House principles are:
    • air tightness - air leaks result in excessive temperature gains or losses
    • insulation - stops thermal leakage through roofs, walls and floors
    • thermal mass - slows heat gain or heat loss
    • double glazed windows - is the equivalent of insulation for windows
    • north facing windows for heat gain
    • eliminating thermal bridges

Discovery learning experiments

  • In this project we will experiment with a foam box that we can modify using the six Passive House principles.
  • To monitor the effects of the six Principles we will use a temperature sensor
  • We will also include two controls:
    • one temperature sensor in an unmodified foam box
    • one temperature sensor measuring atmospheric temperature changes
  • Because we can't control experimental conditions we will just need to monitor the performance of our experiment over several weeks.

Experiment 1 - air tightness

  • Using PVA glue, paint the inside and outside surfaces of the foam box with two coats of PVA glue
  • Foam often has small micropores that allows air to pass through
  • We call this an open foam structure
  • Once dry, the PVA coating should help create a box that is more air tight.
  • This should improve thermal performance in comparison to the two controls.

Experiment 2 - insulation

  • The foam box already has walls of foam which functions as insulation.
  • Foam acts as an insulator because air is trapped within the foam, and also because foam itself is a poor conducted on heat.
  • The thicker the walls the better the insulation properties.
  • Another way to improve insulation is to add some more insulation to the outside of the box.
  • Some experimental suggestions include:
    • Adding foam or other insulation materials to the outside of the box.
    • Placing the original foam box inside a bigger foam box.
    • Replacing the original foam box with a foam box with thicker walls.
    • Wrapping the foam box in insulation material


Experiment 3 -