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  2. Capillary length - Wikipedia

    en.wikipedia.org/wiki/Capillary_length

    The capillary length will vary for different liquids and different conditions. Here is a picture of a water droplet on a lotus leaf. If the temperature is 20 o then = 2.71mm . The capillary length or capillary constant is a length scaling factor that relates gravity and surface tension.

  3. Drop (liquid) - Wikipedia

    en.wikipedia.org/wiki/Drop_(liquid)

    The capillary length is a length scaling factor that relates gravity, density, and surface tension, and is directly responsible for the shape a droplet for a specific fluid will take. The capillary length stems from the Laplace pressure, using the radius of the droplet. Using the capillary length we can define microdrops and macrodrops.

  4. Eötvös number - Wikipedia

    en.wikipedia.org/wiki/Eötvös_number

    Alongside the capillary number, commonly denoted , which represents the contribution of viscous drag, is useful for studying the movement of fluid in porous or granular media, such as soil. [1] The Bond number (or Eötvös number) is also used (together with Morton number ) to characterize the shape of bubbles or drops moving in a surrounding ...

  5. Washburn's equation - Wikipedia

    en.wikipedia.org/wiki/Washburn's_equation

    The equation is derived for capillary flow in a cylindrical tube in the absence of a gravitational field, but is sufficiently accurate in many cases when the capillary force is still significantly greater than the gravitational force. In his paper from 1921 Washburn applies Poiseuille's Law for fluid motion in a circular tube.

  6. Krogh model - Wikipedia

    en.wikipedia.org/wiki/Krogh_model

    Krogh model is a scientific model of mass transfer explaining the concentration of molecular oxygen through a cylindrical capillary tube as a function of a changing position over the capillary tube's length.

  7. Capillary number - Wikipedia

    en.wikipedia.org/wiki/Capillary_number

    Flow through the pores in an oil reservoir has capillary number values in the order of 10 −6, whereas flow of oil through an oil well drill pipe has a capillary number in the order of unity. [ 4 ] The capillary number plays a role in the dynamics of capillary flow ; in particular, it governs the dynamic contact angle of a flowing droplet at ...

  8. Droplet-based microfluidics - Wikipedia

    en.wikipedia.org/wiki/Droplet-based_Microfluidics

    [13] [14] In a T-junction, droplet size and formation rate are determined by the flow rate ratio and capillary number. [15] The capillary number relates the viscosity of the continuous phase, the superficial velocity of the continuous phase, and the interfacial tension. [7] Typically, the dispersed phase flow rate is slower than the continuous ...

  9. Surface chemistry of microvasculature - Wikipedia

    en.wikipedia.org/wiki/Surface_chemistry_of...

    The decrease in surface tension increases the wettability of the capillary walls, making it easier for the fluid to flow through the capillary. Heat also effects the viscosity of a fluid inside a capillary. An increase in heat decreases the viscosity of the lumenal fluid. A good example of this action can be observed in the human body during ...