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To calculate a 45-degree elbow takeoff, you need to consider the diameter of the pipe and the flow rate. Typically, you can use the formula for an elbow fitting's pressure loss, which is based on the flow velocity and the elbow's characteristics. Additionally, you may need to refer to manufacturer data or standards that provide specific loss coefficients for a 45-degree elbow to ensure accurate pressure drop calculations in your system.

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2mo ago

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Related Questions

What is the take off formula off 45 degree elbow pipe?

The take off formula of a 45 degree elbow pipe, will depend on what the pipe is on. Sometimes a 45 degree pipe will need a 90 degree right angle turn to come off.


What is the take off for a 26 inch 90 degree elbow?

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To calculate elbow take off in aerodynamics, you typically measure the angle of the elbow from the airfoil and its distance from the leading edge of the wing. This information is used to determine the change in lift and drag forces at different angles of attack. Elbow take off is important for understanding the aerodynamic performance of aircraft components.


Can you use 0.625 multipide by pipe size to calculate take off for 45 degree elbow?

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What is the take off of a 90 degree elbow with 1 inch diameter?

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What is the formula of takes off for 30 degree pipe elbow?

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How do you get the take off 90 degree elbow pipe?

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What is the formula to find take off for 30degree elbow?

The take-off for a 30-degree elbow can be calculated using the formula: Take-off = Pipe Diameter × 0.577. For example, if the pipe diameter is 4 inches, the take-off would be 4 × 0.577 = 2.308 inches. This formula helps determine the horizontal run of the pipe after the elbow joint.


What is the take off measurement of 45 degree elbow 18 inches pipe?

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What is the take off of 45 degree elbow?

The take-off of a 45-degree elbow refers to the angle at which the elbow connects to a pipe, allowing fluid to change direction. It typically allows for smoother flow compared to sharper bends, reducing turbulence and pressure loss. This design is commonly used in plumbing and HVAC systems to maintain efficient fluid transport. The take-off measurement is crucial for ensuring compatibility with other piping components.