基于电加热膜防冰设计方案的分流环表面换热特性试验研究
作者:
作者单位:

1.中国航发商用航空发动机有限责任公司,上海 200241;2.中国航空工业空气动力研究院,沈阳 110034

作者简介:

通讯作者:

闫怀喜,男,高级工程师, E-mail: nhyhx6660@163.com。

中图分类号:

V321.229

基金项目:


Experimental Study on Surface Heat Transfer Characteristics of Split Ring Based on Anti-icing Design Scheme of Electric Heating Film
Author:
Affiliation:

1.AECC Commercial Aircraft Engine Co., Ltd., Shanghai 200241, China;2.AVIC Aerodynamics Research Institute, Shenyang 110034,China

Fund Project:

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    摘要:

    分流环表面换热特性对提升防冰设计效能至关重要。针对传统热气防冰方案中试验件与试验方案系统复杂、成本高昂等问题,本文提出了一种新型电加热膜防冰设计方案的分流环表面换热系数的试验方法。根据能量守恒定律,推导出分流环表面换热系数理论公式。试验研究了不同俯仰角、速度、液态水含量(Liqid water content,LWC)以及水滴中位体积直径(Median volumetric diameter, MVD)等对分流环表面换热特性的影响。试验结果表明:前缘区域换热系数随俯仰角先增大后降低,25°俯仰角是明显的转折点;相同喷雾条件下的前缘区域、下表面区域的平均换热系数约是干空气条件下的3倍;分流环前缘的换热系数明显大于上、下表面的换热系数。

    Abstract:

    The surface heat transfer characteristics of the split ring is very important to improve the efficiency of anti-icing design. In view of the complexity and high cost of the test rig in the traditional hot gas anti-icing scheme, this paper puts forward a new type of electric heating film anti-icing design scheme. According to the law of energy conservation, the theoretical formula of surface heat transfer coefficient of split ring is deduced. The influences of different pitch angle, velocity, liquid water content(LWC) and median volumetric diameter(MVD) on the surface heat transfer characteristics of the split ring are experimentally researched. The experimental results show that the heat transfer coefficient in the leading edge region first increases and then decreases with the pitch angle, and the 25° pitch angle is an obvious turning point. Under the same conditions, the average heat transfer coefficient of the leading edge and the lower surface under the spray condition is about 3 times that under the dry air condition. The heat transfer coefficient of the leading edge of the split ring is significantly greater than those of the upper and lower surfaces.

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引用本文

闫怀喜,李斯,杨军,张洁珊,朱东宇,张付昆.基于电加热膜防冰设计方案的分流环表面换热特性试验研究[J].南京航空航天大学学报,2023,55(2):249-257

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  • 收稿日期:2022-04-13
  • 最后修改日期:2022-07-29
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  • 在线发布日期: 2023-04-28
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