In situ burning of oil spills
Сжигание разливов нефти на месте
2001-01-01
SCID: 54.1/bj64uqna
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ALOFT smoke plume modelin situ oil spill burningpolycyclic aromatic hydrocarbonspool fire burning ratessmoke particulate size distribution
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Abstract (AI)
For more than a decade NIST conducted research to understand, measure and predict the important features of burning oil on water. Results of that research have been included in nationally recognized guidelines for approval of intentional burning. NIST measurements and predictions have played a major role in establishing in situ burning as a primary oil spill response method. Data are given for pool fire burning rates, smoke yield, smoke particulate size distribution, smoke aging, and polycyclic aromatic hydrocarbon content of the smoke for crude and fuel oil fires with effective diameters up to 17.2 m. New user-friendly software, ALOFT, was developed to quantify the large-scale features and trajectory of wind blown smoke plumes in the atmosphere and estimate the ground level smoke particulate concentrations. Predictions using the model were tested successfully against data from large-scale tests. ALOFT software is being used by oil spill response teams to help assess the potential impact of intentional burning.
Key Findings
1
ALOFT predictions were successfully validated against large-scale test data and are used by oil spill response teams to assess potential impacts.
2
Experiments characterized pool-fire burning rates, smoke yield, particulate-size distributions, smoke aging, and polycyclic aromatic hydrocarbons for crude and fuel oils up to 17.2 m effective diameter.
3
NIST research established quantitative measurements and predictions supporting in situ burning as a primary oil spill response method.
4
The ALOFT software quantifies large-scale wind-driven smoke-plume behavior and estimates ground-level particulate concentrations from intentional oil burning.
Research Object
In situ burning of crude and fuel oil spills on water, including the resulting smoke plumes
Research Subject
Burning rates, smoke emissions and composition, particulate-size distribution and aging, and atmospheric dispersion and ground-level concentrations of smoke from intentional oil-spill fires
Publication Details
Publication Date
2001-01-01
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