A UV-transparent well system enables real-time fluorescence detection of petroleum saturations in soil columns.
An edge-enhancing filter processes hologram data to detect microscopic objects in fluids.
Adjusting infrared beam power dynamically resolves false alarms caused by droplet residue, enabling single-motor fluid delivery without hardware complexity.
A measurement system uses selectable beam paths to determine absorption coefficients across a wide range.
Separating hydrocarbon and acid phases enables accurate weight fraction calculation through density and spectral data, resolving variable composition effects.
Optical camera system measures grain particle geometry in forage harvester corn cracker crop flow.
A compact optical particle identification system uses fiber-coupled sensors to detect composition and size in real time.
A linear actuator translates a removable vessel along a reference surface while a preload maintains contact with the detector.
A circularized semiconductor laser diode probe enables precise in situ optical absorbance and fluorescence measurements.
A light detector array captures scattered light intensity to generate a scattering profile for calculating fluid substance concentration.
A fluoroscopy system inputs excitation radiation into fuel lines to collect fluorescent signals from the flowing fluid.
An integrated NIRS sampling device performs immediate blend uniformity analysis, eliminating external lab delays and preventing particle segregation.
An inline optical detection system analyzes spectral signatures of water to identify chemical constituents and hazards without complex mechanical testing.
A UV sensor structure monitors transformer oil furan levels via optical absorption through a transparent window.