首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Modelling, simulation, and experimental evaluation of a crossflow heat exchanger for an aircraft environmental control systemModelling, simulation, and experimental evaluation of a crossflow heat exchanger for an aircraft environmental control system
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Modelling, simulation, and experimental evaluation of a crossflow heat exchanger for an aircraft environmental control systemModelling, simulation, and experimental evaluation of a crossflow heat exchanger for an aircraft environmental control system

机译:飞机环境控制系统横流热交换器的建模,仿真和实验评估飞机环境控制系统横流热交换器的建模,仿真和实验评估

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Crossflow heat exchangers play a significant role in the operation of an aircraft's environmental control system (ECS). The bleed air supplied by an aircraft engine, at high pressure and high temperature, requires regulation and control in order to be used for various pneumatic services. In the present investigation, the transient temperature response of crossflow plate-and-fin ECS heat exchangers, having a large core capacity with both fluids unmixed, is investigated numerically and experimentally for perturbations experienced in temperature. A non-linear lumped model of crossflow heat exchangers with a state-space solution valid for equal fluid velocities is derived and evaluated, in terms of fluid placement and number of lumps (sections) required. Dependency of the heat transfer coefficient on flowrates is incorporated in the dynamic modelling of the heat exchanger. Two models are derived, and the variation of the mean exit temperatures of both fluids with time is compared for the two alternative models, with consideration of the number of transfer units and heat capacitance rate ratios. One model requires axial lumping of the primary surface alone, as done in most of the existing models, and the second involves incorporating the effect of secondary surfaces (fins) on the heat exchanger transient performance. To quantify the importance of modelling the fins, a comparison of both simulation models with experimentally obtained data from a physical model is presented. By including fins and complex non-linearities in modelling of the ECS heat exchangers, a precise representation of the heat exchanger dynamics and accurate temperature responses are predicted. The model developments reported in this article can lead to improved aircraft ECS design and optimization.
机译:横流热交换器在飞机的环境控制系统(ECS)的运行中起着重要作用。飞机发动机在高压和高温下提供的引气需要进行调节和控制,以便用于各种气动服务。在本研究中,通过数值和实验研究了横流板翅式ECS换热器的瞬态温度响应,该换热器具有较大的核心容量,两种流体在未混合的情况下均受到温度扰动。根据流体位置和所需的块(截面)数量,推导并评估了具有有效状态速度的状态空间解的错流热交换器的非线性集总模型。传热系数对流量的依赖性被纳入热交换器的动态模型中。推导了两个模型,并考虑了转移单元的数量和热容比,比较了两种替代模型的两种流体的平均出口温度随时间的变化。一个模型需要像大多数现有模型中那样仅对主表面进行轴向集总,而第二个模型则需要考虑次表面(散热片)对热交换器瞬态性能的影响。为了量化鳍片建模的重要性,我们将两种仿真模型与从物理模型中获得的实验数据进行了比较。通过在ECS换热器的建模中包括鳍片和复杂的非线性,可以预测换热器动力学的精确表示和准确的温度响应。本文报道的模型开发可以改善飞机的ECS设计和优化。

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