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THE HALO™ SYSTEM- APPLYING THE 'SAFE WING' CONCEPT TO AIRLINE OPERATIONS IN GROUND ICING CONDITIONS

机译:HALO™系统-将“安全翼”概念应用于地面结冰条件下的航空公司运营

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Through the use of an ARPA Technology Reinvestment Project Agreement, a team representing different facets of the commercial airline industry has developed a process to improve upon the existing "Clean Aircraft" concept as currently defined by FAA guidelines for airline operations.rnThe new "Safe Wing" concept works with existing airline programs for operations in icing conditions. It adds a contamination detection and classification system to the current procedural system. This addition improves overall system safety while eliminating burdensome checks, reducing delays and saving deicing/anti-icing fluid costs. By eliminating unnecessary deicings, it also reduces the environmental impact of using excessive deicing fluid.rnThe HALO contamination detection system is comprised of ultrasonic sensors, processing electronics and a cockpit display. This multi-sensor system automatically and continuously monitors critical wing areas. The ultrasonic sensors, developed by Rosemount Aerospace Inc., provide area coverage and sensitivity to a variety of contaminants. These sensors are integrated into a HALO system design based on correlating contamination roughness, location and extent with aerodynamic performance.rnThe HALO system development passed a major milestone with an in-service evaluation on a Northwest MD-80 during the 1994-95 winter season. This evaluation was designed to show technology viability in the demanding environment of airline winter operations. The single-sensor evaluation system showed a correct classification rate of greater than 95 percent and sensitivity to a variety of contaminants A multi-sensor, broad coverage prototype system will be tested in the 1995-96 winter season.
机译:通过使用ARPA技术再投资项目协议,代表商业航空业各个方面的团队开发了一种流程,以改进目前由FAA航空运营指南定义的现有“清洁飞机”概念。rn新的“安全翼” ”概念可与现有的航空公司计划在结冰条件下运作。它将污染检测和分类系统添加到当前的程序系统中。这种增加提高了整体系统的安全性,同时消除了繁重的检查,减少了延迟并节省了除冰/除冰液的成本。通过消除不必要的除冰,它还减少了使用过量除冰液对环境的影响。晕轮污染检测系统由超声波传感器,处理电子设备和座舱显示器组成。该多传感器系统自动连续地监视关键机翼区域。由罗斯蒙特航空航天公司开发的超声波传感器可提供区域覆盖范围,并对各种污染物具有敏感性。这些传感器基于污染物的粗糙度,位置和程度与空气动力学性能的关联而被集成到HALO系统设计中。在1994-95冬季期间,HALO系统的开发通过了对西北MD-80的在役评估,这是一个重要的里程碑。此评估旨在显示在航空公司冬季运营的苛刻环境中的技术可行性。单传感器评估系统显示出正确的分类率大于95%,并且对各种污染物具有敏感性。多传感器,覆盖面广的原型系统将在1995-96冬季进行测试。

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