Examples of 'reynolds number' in a sentence
Meaning of "reynolds number"
reynolds number: a dimensionless quantity used in fluid mechanics to predict the flow pattern of fluids. This phrase is frequently used in the field of engineering and physics
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- A dimensionless parameter that determines the behavior of viscous flow patterns. In pipe flow a value less than about 2,000 (known as the critical Reynolds number) produces laminar flow, one above about 3,000 produces turbulent flow (intermediate values produce unpredictable behavior).
How to use "reynolds number" in a sentence
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reynolds number
Reynolds number for flow of liquid.
Which results in a high reynolds number.
Reynolds number was then obtained.
Relationship between heat transfer and reynolds number.
Reynolds number is the ratio of inertial forces to viscous forces.
A correlation function and the dispersion relation were analyzed as functions of the reynolds number.
Reynolds number based on diameter.
A weak negative Reynolds number effect is likely.
Reynolds number is described in more detail later in the description.
As soon as the Reynolds number is high enough.
Reynolds number is defined by the ratio of inertial forces to that of viscous forces.
A flow at low Reynolds number with smooth.
We need to account for the Reynolds number.
Both low and high reynolds number flow conditions are addressed in the present investigation.
This is characterised by the dimensionless Reynolds number.
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But Reynolds number effect can be neglected.
The flow in pipe is laminar if Reynolds number is.
The Reynolds number is a dimensionless fi gure.
It is assumed that the magnetic Reynolds number.
A function of the Reynolds number of the equivalent.
Reynolds Number was determined by the formula.
It is a function of Reynolds number of the flow.
The Reynolds number determines the flow regime.
In this case the Reynolds number is.
The Reynolds number is a dimensionless constant that characterizes.
This is equivalent to a very large magnetic Reynolds number.
Influence of the Reynolds number on the flow coefficient.
Corrected errors in the calculation of the Reynolds number.
They have Reynolds number very near to one.
Were essentially independent of the Reynolds number.
The Reynolds number provides a measure of.
No additional information from the Reynolds number is used.
The reduced Reynolds number may also be neglected.
A central concept in fluid flow is the Reynolds number.
An increasing Reynolds number indicates an increasing turbulence of flow.
Nondimensional quantities as the Reynolds number remain the same.
The Reynolds number is also influenced by these disturbances.
Inducing turbulence at a lower Reynolds number enhances heat transfer.
The Reynolds number depends on scale and speed.
The main parameter characterizing transition is the Reynolds number.
The Reynolds number in the t e s t section is.
Laminar flow around the particles occurs Reynolds number.
Beyond a certain Reynolds number there is the onset of turbulence.
This regime is characterized in that it has a low Reynolds number.
The Reynolds number can be used to predict a flow pattern.
It is a limiting solution when the Reynolds number tends to zero.
A large Reynolds number entails a less laminar operating regime.
The ratio of the two is called the Reynolds number.
The equivalent Reynolds number is given by the following equation.
It gives a sensitivity map on a vehicle in a high Reynolds number flow.
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