Diesel Engine Compression

Diesel engine compression is the process of reducing the volume of air inside a cylinder before fuel injection, raising its pressure and temperature to support ignition. As the piston moves upward during the compression stroke, it rapidly compresses the trapped air, and the work done on the gas increases its internal energy through near-adiabatic compression; injected diesel fuel then ignites when it contacts the heated air. Compression ratio, cylinder pressure, temperature, and injection timing strongly influence combustion efficiency, power output, emissions, and engine performance. Studying this process applies thermodynamic principles to explain how diesel engines convert fuel energy into mechanical work.

Diesel Engine Compression - Related Videos

Education

JoVE Core - Physics

Otto and Diesel Cycle

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2023

An Otto engine is a four-stroke engine that uses a mixture of gasoline and air as the working fuel. The fuel is injected into the cylinder, and the piston is moved completely down so that the cylinder is at maximum volume. By moving the piston up, adiabatic compression takes place. The spark plug ignites the gasoline-air mixture, and the burning fuel adds heat to the system at a constant volume. The heated mixture expands adiabatically and gets further cooled by exhausting heat, and this cyclic...

Compression Tests on Hardened Concrete

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2023

Source: Roberto Leon, Department of Civil and Environmental Engineering, Virginia Tech, Blacksburg, VA There are two distinct stages in a construction project involving concrete. The first stage involves batching, transporting, and casting fresh concrete. At this stage, the material is viscous, and the workability and finishability are the key performance criteria. The second stage occurs when the hydration process begins shortly after the concrete is placed in the form, and the concrete will...

Research

JoVE Journal - Engineering

Measurement of Compressive Stress-Strain Response at Small-Strains

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2025

This protocol presents the configuration of a compression test device capable of precisely measuring the mechanical properties of microstructures in the small-strain region, along with a systematic method for compression testing using this device. The proposed device can be used to analyze various microstructures and the mechanical behavior of polymer-based materials.

Tissue Engineering by Intrinsic Vascularization in an In Vivo Tissue Engineering Chamber

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Cited by 17 •

2016

This is a guideline for constructing in vivo vascularized tissue using a microsurgical arteriovenous loop or a flow-through pedicle configuration inside a tissue engineering chamber. The vascularized tissues generated can be employed for organ regeneration and replacement of tissue defects, as well as for drug testing and disease modeling.

Assessing Spinal Cord Compression Using Diffusion Tensor Imaging

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2025

Source: Zheng, W. et. al., Diffusion Tensor Magnetic Resonance Imaging in Chronic Spinal Cord Compression. J. Vis. Exp. (2019)This video demonstrates diffusion tensor imaging in assessing chronic spinal cord compression. By analyzing water diffusion patterns, fractional anisotropy, and apparent diffusion coefficient values, the findings reveal axonal damage in compressed regions. The findings provide critical insights into spinal cord pathology and structural integrity.

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