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Applications of Capstone depleted uranium aerosol risk data to military combat risk management.

机译:Cap石耗尽的铀气溶胶风险数据在军事作战风险管理中的应用。

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摘要

Risks to personnel engaged in military operations include not only the threat of enemy firepower but also risks from exposure to other hazards such as radiation. Combatant commanders of the U.S. Army carefully weigh risks of casualties before implementing battlefield actions using an established paradigm that takes these risks into consideration. As a result of the inclusion of depleted uranium (DU) anti-armor ammunition in the conventional (non-nuclear) weapons arsenal, the potential for exposure to DU aerosols and its associated chemical and radiological effects becomes an element of the commanders' risk assessment. The Capstone DU Aerosol Study measured the range of likely DU oxide aerosol concentrations created inside a combat vehicle perforated with a DU munition, and the Capstone Human Health Risk Assessment (HHRA) estimated the associated doses and calculated risks. This paper focuses on the development of a scientific approach to adapt the risks from DU's non-uniform dose distribution within the body using the current U.S. Department of Defense radiation risk management approach. The approach developed equates the Radiation Exposure Status categories to the estimated radiological risks of DU and makes use of the Capstone-developed Renal Effects Group as a measure of chemical risk from DU intake. Recommendations are provided for modifying Army guidance and policy in order to better encompass the potential risks from DU aerosol inhalation during military operations.
机译:从事军事行动的人员所面临的风险不仅包括敌对火力的威胁,还包括暴露于其他危害(如辐射)的风险。美国陆军作战司令官在使用确定的范式来执行战场行动之前,仔细考虑了人员伤亡的风险,并考虑了这些风险。由于常规(非核)武器库中已包含贫铀反装甲弹药,暴露于DU气溶胶及其相关化学和放射学影响的可能性成为指挥官风险评估的要素。 Capstone DU气溶胶研究测量了带有DU弹药的战斗车辆内部可能产生的DU氧化物气溶胶浓度范围,而Capstone人体健康风险评估(HHRA)估算了相关剂量并计算了风险。本文着重于开发一种科学方法,以使用当前的美国国防部辐射风险管理方法来适应DU在人体中剂量分布不均匀的风险。所开发的方法将“辐射暴露状态”类别等同于DU的估计放射风险,并利用Capstone开发的“肾脏效应小组”作为DU摄入化学风险的量度。提供了有关修改陆军指导和政策的建议,以便更好地涵盖军事行动期间DU气雾吸入的潜在风险。

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