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161.
新一代战斗机强调超机动能力和强隐身性,其中大攻角下的静态失速、动态失速及内埋弹仓绕流是与高机动和强隐身密切相关的、极具挑战的几类典型的非定常流动,它们对数值方法提出了极高的要求。为了高精度地仿真流场、清楚地揭示流动机理,有效地控制非定常流动,非常有必要发展高精度且高效率的RANS-LES混合方法体系,包含RANS-LES混合方法本身、与RANS-LES混合方法匹配的高精度自适应耗散格式、基准湍流模式、高质量计算网格、高精度时间推进方法、非定常量的统计方法等,具有极强的紧迫性。提出、发展、验证并应用该类方法数值仿真新一代战斗机(包括单独部件、组合体、甚至全机)的非定常流动,数值预测结果与风洞实验数据吻合良好;此类方法可为新型战斗机设计提供理论依据和分析手段。 相似文献
162.
农村建筑热工性能较差,采暖季能耗居高不下。本文通过Dest软件建立模型,对寒冷地区农村建筑不同围护结构下能耗情况进行模拟,并建立P1-P2经济分析模型,以全生命周期费用最小或者净现值最大确定合理的外墙保温层厚度及窗户类型。 相似文献
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Electromechanical actuators (EMAs) are becoming increasingly attractive in the field of more electric aircraft because of their outstanding benefits, which include reduced fuel burn and maintenance cost, enhanced system flexibility, and improved management of fault detection and isolation. However, electromechanical actuation raises specific issues when being used for safety-critical aerospace applications like flight controls: huge reflected inertia to load, jamming-type failure, and increase of backlash with service due to wear and local dissipation of heat losses for thermal balance. This study proposes an incremental approach for virtual prototyping of EMAs. It is driven by a model-based system engineering process in order to enable simulation-aided design. Best practices supported by Bond graph formalism are suggested to develop a model’s structure efficiently and to make the model ready for use (or extension) by addressing the above mentioned issues. Physical effects are progressively introduced, and the realism of lumped-parameter models is increased step-by-step. In particular, multi-level component models are architected to ensure continuity between engineering activities. The models are implemented in the AMESim simulation environment, and simulation responses are given to illustrate how they can be used for preliminary sizing, control design, thermal balance verification, and faults to failure analysis. The proposed best practices intend to provide engineers with fast, reusable, and efficient means to assess performance virtually and enhance maturity, performance, and robustness. 相似文献
165.
Qiang Guo Volodymyr G. Galushko Andriy V. Zalizovski Sergiy B. Kashcheyev Yu Zheng 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2018,61(9):2267-2274
A modification of the Doppler Interferometry Technique is suggested to enable estimating angles of arrival of comparatively broadband HF signals scattered by random irregularities of the ionospheric plasma with the use of small-size weakly directional antennas. The technique is based on the measurements of cross-spectra phases of the probe radiation recorded at least in three spatially separated points. The developed algorithm has been used to investigate the angular and frequency-time characteristics of HF signals propagating at frequencies above the maximum usable one (MUF) for the direct radio path Moscow-Kharkiv. The received signal spectra show presence of three families of spatial components attributed, respectively, to scattering by plasma irregularities near the middle point of the radio path, ground backscatter signals and scattering of the sounding signals by the intense plasma turbulence associated with auroral activations. It has been shown that the regions responsible for the formation of the third family components are located well inside the auroral oval. The drift velocity and direction of the auroral ionosphere plasma have been determined. The obtained estimates are consistent with the classical conception of the ionospheric plasma convection at high latitudes and do not contradict the results of investigations of the auroral ionosphere dynamics using the SuperDARN network. 相似文献
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为更好地理解热力学排气系统(TVS)的运行机理,优化其运行参数,针对节流装置,建立了热力学模型,讨论了节流过程中状态参数的变化规律,对比了单相气体、单相液体节流的性能特性,进一步揭示了焦汤节流效应的原理,分析了不同节流背压下节流前低温工质(液氢和液氧)压力和温度对节流性能的影响,并结合TVS实际应用,阐述了节流最大制冷量的利用效果,提出了优化的TVS工作区间。研究表明:在节流过程不发生相变情况下单相气体节流制冷效应要比单相液体节流制冷效应更加显著;而在节流过程发生相变情况下液体节流至两相后,由于空化吸热导致流体温度降低,对于液氢,0.5MPa的压降可产生接近3 K的温降。对于液体节流,节流前压力对节流过程影响可忽略,〖JP2〗而节流前温度和节流背压对节流过程起主导作用;对于液氢在在轨运行工况下,考虑到节流制冷量的充分利用,同时保证换热过程体积含气率不高于90%,推荐TVS系统中节流背压范围为75~143 kPa。 相似文献
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Cosmic Research - An Erratum to this paper has been published: https://doi.org/10.1134/S0010952521120017 相似文献
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