直升飛機自然積冰試驗方案設計與實例應用
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國家重點研發計劃項目(2018YFC1507901、2016YFA0601702);國家自然科學基金項目(41775131);科技成果轉化項目(1801XMB012,1801-XMB-013);中國氣象科學研究院基本科研業務費項目(2014Y008)共同資助


Design and Application of Helicopter Natural Icing Test
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    摘要:

    針對直升機自然積冰試飛,結合直升機飛行特性,分析了不同氣象條件下試驗飛行路線確定原則。利用模式預報和實況監測產品,設計了直升機積冰試驗飛行方案,并在2018年3月新疆烏魯木齊外場試驗中進行了應用和檢驗。結果表明,直升機自然積冰試驗飛行方案的確定原則需要充分考慮直升機的飛行特性。在層狀云中進行自然積冰試飛,根據積冰區相對云區位置,考慮從云底或云頂進入積冰區的原則。建立了飛機積冰飛行方案設計流程。利用積冰潛勢預報系統提前72 h開展概率預報,利用云降水顯式預報系統提前24 h開展云條件預報,利用衛星雷達探空等觀測資料提前3 h開展積冰條件監測預警。預報和監測結果顯示,計劃試驗當天云的宏微觀條件較為理想,符合飛機積冰形成的條件。針對此云層設計了采取云底進入探測區和云底退出的規避方式,在云中采用多次往返爬升和平飛尋找過冷水區以完成積冰探測。實際飛行也采用了云底入云并云中探測到了積冰和過冷水,是一次比較成功的飛機積冰航線設計和應用實例。

    Abstract:

    Aiming at the natural icing flight test of a helicopter, combined with the helicopter’s flight characteristics, the determining principle of the test flight route under different meteorological conditions is analyzed. The CMA Weather Modification Centre designed the helicopter icing test flight scheme based on the cloud structure conditions of the model forecast and real-time monitoring, applied, and verified it in the field test in Urumqi, Xinjiang, in March 2018. The results show that the determination principle of the natural helicopter icing test flight scheme mainly considers the meteorological conditions of cloud icing, cloud macro and micro characteristics, helicopter characteristics, etc. According to the position of the icing area relative to the cloud area, the principle of entering the icing area from the cloud bottom or cloud top is considered. The design process of the aircraft icing flight scheme is established. The ice potential prediction system is used to carry out probability prediction 72 hours in advance. The cloud precipitation explicit prediction system is used to carry out cloud condition prediction 24 hours in advance. The satellite inversion products carry out ice accretion condition monitoring and early warning 3 hours in advance. The forecast and monitoring results show that the macro and micro conditions of clouds in the planned test are ideal, in line with the conditions for the formation of aircraft icing. In view of this cloud, we design a way to avoid the cloud bottom entering into the detection area and exiting from the cloud bottom. To complete the ice detection, we use multiple climbing and flying to find the supercooled water area in the cloud. In the actual flight, ice accretion and supercooled water are also detected in the cloud, which is an ideal design and application example of aircraft icing.

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孫晶,蔡淼,周毓荃,歐建軍.直升飛機自然積冰試驗方案設計與實例應用[J].氣象科技,2022,50(3):403~411

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  • 收稿日期:2021-06-10
  • 定稿日期:2022-01-07
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  • 在線發布日期: 2022-06-30
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