Predicting the Aerial Application of Dispersant Onto an Oil Spill

M. Teske, G. Whitehouse
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Abstract

The release of dispersant from an aircraft onto an oil spill is simulated using the AGDISPpro computer model, to develop a better understanding of how aircraft type, spray systems, and meteorological conditions affect the prediction of surface deposition. This model, originally developed for predicting the aerial release of pesticides for agricultural spray applications, is ideally suited to simulate the effects of aircraft type and flight condition/configuration, spray system arrangement, wind speed and direction, temperature and relative humidity (evaporation), release height, and spray application rate when spraying an oil spill. Predictions of droplet trajectories from the aircraft to the surface, drop size distributions at the release height, and deposition profiles are compared to two historical datasets for the Lockheed C-130, from field studies conducted in 1982 and 1993. This article shows that model accuracy improves from R2 = 0.411 to 0.827 with the earlier data, to R2 = 0.885 to 0.968 with the later data, most probably because of a better understanding of nozzle locations in the 1993 data. Model accuracy also appears improved when the aircraft flies in an in-wind direction, a configuration strongly recommended in the available literature.
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预测空中分散剂在溢油上的应用
使用agdispro计算机模型模拟飞机上的分散剂对溢油的释放,以更好地了解飞机类型,喷雾系统和气象条件如何影响表面沉积的预测。该模型最初是为预测农业喷雾应用中农药的空中释放而开发的,非常适合模拟喷洒溢油时飞机类型和飞行条件/配置、喷雾系统布置、风速和风向、温度和相对湿度(蒸发)、释放高度和喷雾量的影响。从飞机到地面的液滴轨迹、释放高度的液滴尺寸分布和沉积剖面的预测与洛克希德C-130的两个历史数据集进行了比较,这些数据集来自1982年和1993年进行的实地研究。本文表明,模型精度从早期数据的R2 = 0.411 ~ 0.827提高到后期数据的R2 = 0.885 ~ 0.968,很可能是因为对1993年数据中的喷嘴位置有了更好的理解。当飞机在逆风方向飞行时,模型精度也会得到提高,这是现有文献中强烈推荐的配置。
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