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The internal diameter of the pipe times pi times its length will yield the volume it can contain. The outer diameter of the pipe times pi times its length will yield the volume that the pipe will displace when it is submerged or buried. The volume the pipe will displace minus the volume it will contain will yield the volume of material that makes up the pipe.
1 '' gi b class pipe weight of per mtr
This pipe has a volume of 24.5 cubic feet.
Volume in cubic units = pi*radius2*height
Eureka!There really isn't a "formula" for discovering the volume of an irregularly shaped solid. Instead, submerge the irregular solid in water and measure the volume of water it displaces to discover its volume. The ExperimentFor finding the volume of an irregular solid we just fully dip (submerge) it in a water tank which is fully filled with water and is attached to an another tank (a cylindrical overflow tank) through a pipe. With the setup in place, we put the solid into the full tank. The solid will displace water, which will flow through the pipe into the overflow tank. Further, the volume of the water the solid displaces will be equal to the volume of that irregular solid. Now we calculate the volume of water in the overflow tank using the depth of that water and the diameter of the tank. The volume of the displaced water will equal the volume of the irregularly shaped solid.There will generally not be a formula and the volume will have to be measured in some other way.
Use the formula for a cylinder.
You calculate its volume, look up the density of bronze, then multiply volume x density to get mass. Probably that's what you want; if you really want weight, you multiply mass x gravity to get the weight.
measure the radius of the pipe. (half the diameter - the width of the pipe) then measure the length of the pipe. then use the formula pi (3.14) x radius2 x length. the answer is the volume in the pipe
This cannot be done without knowing both the width and length of pipe.
To calculate the volume of a pipe, you can use the formula for the volume of a cylinder: Volume = πr^2h where r is the radius of the pipe and h is the height (length) of the pipe. Measure the radius and length of the pipe, plug them into the formula, and solve for the volume in cubic units.
Go to: http://www.techcalcs.com/calculators/pipeprop.php and use the calculator Otherwise calculate the volume displaced by the pipe and multiply by the density of the displaced water. This gives the bouyancy of the pipe
To calculate the weight of an HDPE pipe, you can use the formula: Weight = Volume × Density. First, calculate the volume of the pipe using the formula for the volume of a cylinder (πr²h, where r is the radius and h is the height), and then multiply it by the density of HDPE to get the weight. Density of HDPE can range from 0.93 to 0.97 g/cm³ depending on the grade.
To calculate pipe takeoff, first measure the total length of the pipe needed, considering all fittings and bends. Then, determine the pipe's diameter and material, as these factors influence the amount of material required. Use the formula for the volume of a cylinder (V = πr²h) to calculate the volume of the pipe, adjusting for any fittings. Finally, convert the volume to weight using the material's density if necessary, ensuring to account for any waste or scrap in your calculations.
When you calculate the volume of pipe(or cylinder, as I prefer calling it), you need to know 2 things; the height of the cylinder and the radius of the circle(base of the cylinder). Then you use this formula; hpr^2 (height * pi * radius)
half tee is c
Find the volume in cubic feet and multiply by 7.48
You need to know the radius (1/2 the inside diameter) and the length of the pipe. Then, you use this formula to calculate the volume:Pi (3.1416) x r2 x length