Fluid Layer

A fluid layer is a region of liquid or gas treated as a distinct layer within or next to a larger flow, surface, or multiphase system. Its behavior depends on pressure, viscosity, density, and velocity gradients: interactions at boundaries create shear, while the transport of momentum, heat, or dissolved species produces changing layer thickness and flow profiles. In engineering, analyzing fluid layers supports the design of channels, coatings, heat exchangers, lubrication systems, and separation equipment by helping predict drag, pressure loss, mixing, and transfer rates. Layer-based models also simplify complex flows and guide numerical simulation and experimental measurement.

Fluid Layer - Related Videos

Research

JoVE Journal - Bioengineering

Layer-by-layer Collagen Deposition in Microfluidic Devices for Microtissue Stabilization

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Cited by 7 •

2015

The creation of functional microtissues within microfluidic devices requires the stabilization of cell phenotypes by adapting traditional cell culture techniques to the limited spatial dimensions in microdevices. Modification of collagen allows the layer-by-layer deposition of ultrathin collagen assemblies that can stabilize primary cells, such as hepatocytes, as microfluidic tissue models.

Education

JoVE Lab Manual - Chemistry

Thin-Layer Chromatography - Concepts

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2020

Chromatography Chromatography is a technique used in organic chemistry to separate compounds in a mixture based on their differences in solubility between two different phases. The concept is similar to liquid-liquid extraction, except in chromatography, the two phases consist of the stationary phase and the mobile phase. The stationary phase is a solid — typically a microscale hydrogel bead — while the mobile phase is a carrier solvent. In traditional chromatography, the stationary phase is...

Thin-Layer Chromatography - Student Protocol

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2020

Source: Lara Al Hariri and Ahmed Basabrain at the University of Massachusetts Amherst, MA, USA Effects of Mobile Phase Composition on Compound SeparationExpand In this section of the lab, you will use TLC to compare how well pure hexane and a mixture of 60% hexane and 40% ethyl acetate can separate phenol, benzoic acid, and butyl phenyl ether by measuring the distance the compound traveled in each solvent. Before starting the lab, put on a lab coat, safety glasses, and nitrile gloves.

Research

JoVE Journal - Engineering
Free Sample

Emission Spectroscopic Boundary Layer Investigation during Ablative Material Testing in Plasmatron

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Cited by 2 •

2016

Development of new ablative materials and their numerical modeling requires extensive experimental investigation. This protocol describes procedures for material response characterization in plasma flows with the core techniques being non-intrusive methods to track the material recession along with the chemistry in the reactive boundary layer by emission spectroscopy.

Layers of the Epidermis

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2025

The epidermis, the outermost layer of the skin, is composed of several distinct layers. From deep to superficial, the layers of the epidermis are as follows: Stratum Basale Stratum basale, also known as the stratum germinativum, is the deepest layer of the epidermis. It is composed of a single layer of actively dividing cells called basal cells or basal keratinocytes. These cells constantly undergo cell division to replenish the upper layers of the epidermis. Additionally, melanocytes, which...

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