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Fully developed flow conduction in a tube occurs when the velocity profile remains constant along the length of the tube. This means that the temperature distribution and heat transfer are also uniform. It usually happens at a certain distance downstream from the entrance of the tube, depending on the flow conditions and geometry of the tube.

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What effect do you think increasing the flow tube length will have on the fluid flow rate?

Increasing the flow tube length will typically result in a decrease in the fluid flow rate. This is because the longer flow tube increases the resistance to flow, causing a reduction in the flow rate of the fluid passing through it.


Is the relationship between the fluid flow rate and the flow tube radius linear or exponential?

The relationship between fluid flow rate and flow tube radius is typically nonlinear and follows a power law relationship. As the flow tube radius increases, the flow rate also increases, but not in a linear fashion. Instead, the relationship is often modeled using equations involving powers or roots of the tube radius.


What happened to the fluid flow rate as the radius of the flow tube increased?

As the radius of the flow tube increases, the fluid flow rate increases proportionally. This is described by the Hagen–Poiseuille equation, which states that flow rate is directly proportional to the fourth power of the tube radius. Increasing the radius reduces the resistance to flow, allowing more fluid to pass through per unit of time.


What is the Venturi tube problem and how can it be solved effectively?

The Venturi tube problem refers to the challenge of accurately measuring fluid flow in a Venturi tube due to pressure losses and inaccuracies. This can be solved effectively by calibrating the tube, ensuring proper installation, and using advanced flow measurement techniques such as ultrasonic or electromagnetic flow meters.


What is a diverging tube?

A diverging tube is a tube or pipe that widens progressively along its length, causing fluid flow to slow down and pressure to decrease. This type of tube is often used in fluid dynamics to control and manipulate the flow of fluids in various engineering applications.

Related Questions

Would conduction work well in a gas?

Conduction works quite well in the gas inside a fluorescent light tube.


How is flow rate affected when the right flow tube radius is kept constant 3.0mm and the left flow tube radius is modified either up or down?

If the flow tube radius on the left is increased, the flow rate will increase because a larger cross-sectional area allows for more fluid to pass through. Conversely, if the flow tube radius on the left is decreased, the flow rate will decrease as the smaller cross-sectional area restricts the flow of fluid. The flow rate is directly proportional to the radius of the flow tube.


Which tube was developed to compensate for the effects of interelectrode capacitance?

whict tube was developed to compensate for the effects of interelectrode capacitance


Why is there a need to maintain vacuum in a vacuum tube?

It is necessary to maintain vacuum in a vacuum tube to provide the electrons a free path from cathode to anode without triggering ionization. If there was air or some other gas in the tube, the electron flow would cause it to ionize and the control grid would have reduced or even no control of the conduction of the tube. There are gas filled tubes that depend on this ionization: for example in thyratrons, once the control grid starts conduction ionization takes over and the grid has no more control, you have to turn off the B+ supply in some way to reset it.


What effect do you think increasing the flow tube length will have on the fluid flow rate?

Increasing the flow tube length will typically result in a decrease in the fluid flow rate. This is because the longer flow tube increases the resistance to flow, causing a reduction in the flow rate of the fluid passing through it.


What is a core flow feeding tube a nasogactric feeding tube which is similar to a dobhoff feeding tube.?

fredrick-miller tube


What is a core flow feeding tube a nasogactric feeding tube which is similar to a dobhoff feeding tube?

fredrick-miller tube


Is the relationship between the fluid flow rate and the flow tube radius linear or exponential?

The relationship between fluid flow rate and flow tube radius is typically nonlinear and follows a power law relationship. As the flow tube radius increases, the flow rate also increases, but not in a linear fashion. Instead, the relationship is often modeled using equations involving powers or roots of the tube radius.


Is it true that arteries must be patent for blood to flow through?

An artery that is patent is an open tube. Blood will not flow through a closed tube.


Desribe the relationship between flow tube length and fluid flow rate?

The flow rate of fluid in a flow tube is directly related to the length of the tube. Longer flow tubes typically experience higher pressure drops and slower flow rates, while shorter tubes generally result in faster flow rates due to lower pressure drops. Additionally, longer tubes can lead to increased frictional losses and turbulence, affecting the overall flow behavior.


What is flow tube?

A flow tube is a component used in fluid flow measurement devices such as flow meters. It is a hollow conduit through which the fluid flows, and its design can affect the accuracy and reliability of the flow measurement. Flow tubes come in various shapes and sizes depending on the application and flow conditions.


Fuel filler tube?

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