HIGH ALTITUDE BALOONS
The balloon consists of 3 parts:
Systems in the Project
Materials Used In The Balloon
Polietilen film: It is used to make the baloon part. It is filled with helium.
Helium: This gas is used for filling the baloon because its density is less than air.
Action Camera: This camera is used for following the actions of HAB.
GPS: Gps is used for following the location of the baloon.
These materials can be found online. (Links are given at referances) And also some companies hire them.
A system for carrying equipments
We know that HAB is used for multiple tasks such es experiments or observations. So that a rope-kind material needed to carry these equipments. This rope is also too light, it just connects baloon and the equipments.
STEP 1: BRING THE MATERIALS TO THE APPROPRIATE SIZE.�STEP 2: PUT THE PIECES TOGETHER ON A SURFACE SO THAT EACH MATERIAL IS VISIBLE.�STEP 3: IDENTIFY AND MARK THE ATTACHMENT POINTS OF THE PARTS.�STEP 4: PRIORITIZE THE SIGNS. THAT MEANS YOU HAVE TO GIVE NUMBERS TO THE ATTACHMENT POINTS IN ORDER TO BE NOT CONFUSED.�STEP 5: START PUTTING THE PIECES TOGETHER ACCORDING TO THE NUMBERING YOU HAVE GIVEN.�STEP 6: AFTER THE LAST PIECE IS ASSEMBLED, CHECK THE CONNECTION POINTS, TIGHTEN THEM IF NECESSARY, AS A PRECAUTION. �
How to make HAB in 6 steps?
What can we do to improve the balloon?
Stronger and lighter materials can be used in order to make the balloon closer to space.
How does physics determine the representation/weight/design of a high-altitude balloon?
As the balloon rises, the gas inside the balloon expands because the atmospheric pressure surrounding the balloon drops. The atmosphere is 100 to 200 times less dense at the float altitudes than on the ground. This means the gas quantity inside the baloon is one of the most important factors.
What are the different types of technology/techniques used to monitor HAB?
1-)Different cameras
2-)Action cameras
3-)Images from satellite
4-)Gps
5-) Experiment equipments