The bursting pressure of a high-pressure gas cylinder is typically calculated based on the material strength, thickness, and geometry of the cylinder, as well as the pressure rating it is designed for. Engineering calculations, such as the Barlow's formula or finite element analysis, are used to determine the maximum pressure the cylinder can withstand before failure. It is important to follow regulatory standards and guidelines when designing and testing high-pressure gas cylinders.
When a bottle is under high pressure, the molecules inside the bottle are closer together and have increased kinetic energy. This can result in the bottle feeling hard or rigid to the touch. As a safety precaution, bottles designed to hold high-pressure substances are usually made of thicker materials to prevent bursting.
Soda cans can explode at high altitudes due to the change in air pressure. As altitude increases, the air pressure decreases, causing the pressure inside the can to be greater than the pressure outside. This pressure difference can lead to the can bursting or exploding.
At high pressure the gas become a liquid.
Toothpaste can explode in high elevations because the reduced air pressure can cause the air inside the toothpaste tube to expand, leading to a buildup of pressure. If the tube is already close to its bursting point, this increase in pressure can cause the toothpaste to burst out of the tube.
High pressure gas cylinders are generally built with domed ends to allow for expansion of the gas inside the cylinder. The domed ends provide greater strength and stability to withstand the high internal pressures. Additionally, the curved shape reduces stress concentrations at the ends of the cylinder.
It's called subconjunctival haemorrhage, and it's mainly due to high blood pressure which causes bursting of veins.
low fuel pressure
When a bottle is under high pressure, the molecules inside the bottle are closer together and have increased kinetic energy. This can result in the bottle feeling hard or rigid to the touch. As a safety precaution, bottles designed to hold high-pressure substances are usually made of thicker materials to prevent bursting.
Soda cans can explode at high altitudes due to the change in air pressure. As altitude increases, the air pressure decreases, causing the pressure inside the can to be greater than the pressure outside. This pressure difference can lead to the can bursting or exploding.
Add refrigerant vapor on the low side of the system ,the compressor raises the pressure of the refrigerant on the high side of the system and lowers the pressure on the low side
Add refrigerant vapor on the low side of the system ,the compressor raises the pressure of the refrigerant on the high side of the system and lowers the pressure on the low side
the deep-sea water fishes are in equilibrium with the high pressure of the sea water outside i-e. blood in their bodies flows at very high pressure. when they are brought out the equilibrium is disturbed and the pressure outside becomes low which results in bursting of their bodies.
The refrigerant cylinder pressure is kept above the system pressure by regulating the flow of refrigerant from the cylinder into the system. This is typically achieved using a charging hose with a metering device or valve that controls the rate of flow. By adjusting the flow rate, the pressure in the cylinder can be maintained higher than the system pressure during charging.
When water freezes in an enclosed vessel, it expands and exerts pressure on the vessel walls. This pressure depends on factors such as the volume of water, rate of freezing, and strength of the vessel. Generally, this can lead to the vessel cracking or bursting if the pressure becomes too high.
At high pressure the gas become a liquid.
When a gas cylinder is taken from sea level to a high hill, the pressure inside the cylinder decreases due to the lower atmospheric pressure at higher altitudes. This can cause the gas to expand, potentially leading to the gas leaking out of the cylinder or affecting its performance. It is important to handle and transport gas cylinders carefully to avoid any safety risks.
Going higher in altitude has less air pressure at high altitude. Less pressure = bigger bubbles. Bigger bubbles = the bends and can lead to bursting alveoli in the lungs which leads to a visit to a recompression chamber.