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921.
胚胎电子细胞中基因备份数目优选方法 总被引:3,自引:2,他引:1
分析现有胚胎电子细胞基因存储结构的基础上,考虑基因备份数目对自修复过程的影响,建立了可靠性模型;并根据存储结构的具体实现方式,建立了硬件消耗模型。以可靠性模型和硬件消耗模型为基础,通过分析可靠性、硬件消耗与基因备份数目间的关系,提出了一种基因备份数目优选方法。该方法根据目标电路的可靠性、硬件消耗设计要求,选择兼顾系统可靠性、硬件消耗的基因存储方式、基因备份数目及胚胎电子阵列规模,具有工程应用价值。通过某电路的基因备份数目的选择,对该方法进行了验证。 相似文献
922.
孟昭川 《航空标准化与质量》2000,(4):3-5
扼要说明了国防科工委推进编制"三大规范"工作的重要意义;阐述了"三大规范"在国防工业新产品开发和生产过程中的重要作用,并就航空工业系统如何推进"三大规范"编制工作提出了意见. 相似文献
923.
大子午扩张涡轮由于子午型线扩张度较大,因而易导致端区边界层分离及热集中,针对这个现象,采用数值模拟方法,并采用正弦曲线对某型1.5级大子午扩张涡轮子午型线采取了8种修型方案,研究子午修型对于端区流动传热性能的影响。计算结果表明,子午修型可以有效地控制端区的分离流动,从而影响着通道涡与脱落涡强度及位置,也影响着端壁及叶片上热负荷分布。在本文研究条件下,振幅为三分之一叶片最大厚度的前凹后凸子午型线有效地减弱了脱落涡引起的损失,进而使整体总压损失减小6.06%,并可以减弱端壁及叶片传热集中,使叶片最大热负荷减轻21%。 相似文献
924.
为研究正攻角状态下尾迹对低压涡轮附面层的渗透以及转捩过程的影响,分别在设计攻角和+10°攻角下,对高负荷低压涡轮叶型的吸力面附面层流动进行了数值模拟与实验。数值模拟使用CFX软件,采用大涡模拟模型。结果表明+10°攻角下,尾迹对附面层转捩过程的促进作用比设计攻角下更为显著,这是由于正攻角下的尾迹中心射流与吸力面切向的夹角更大,使得尾迹扰动渗透入附面层的深度更深,尾迹放大Klebanoff条纹强度更强,尾迹诱导转捩起始位置更靠上游。 相似文献
925.
应用轻量化材料如高强度钢和铝、镁合金等来替代普通钢制造汽车承载构件已成为发展趋势。本文以工业铝合金为材料设计了一种新型的轻型城郊客车车架,并建立有限元模型进行了多种典型工况的仿真分析。首先,基于CATIA进行了客车车架各零部件的设计,整体装配与校核;然后,通过简化模型、模拟连接等,在ANSYS Workbench中建立了合理的车架-悬架有限元模型;最后,模拟客车满载弯曲、制动等5种典型工况施加载荷与边界条件,进行有限元仿真,仿真结果表明该铝合金车架能够满足各典型工况的强度和刚度性能要求。 相似文献
926.
In order to address the current aircraft noise problem, the knowledge of impedance of acoustic liners subjected to high-intensity sound and grazing flow is of crucial importance to the design of high-efficiency acoustic nacelles. To this end, the present study is twofold. Firstly, the StraightForward impedance eduction Method (SFM) is evaluated by the strategy that the impedance of a liner specimen is firstly experimentally educed on a flow duct using the SFM, and then its accuracy is checked by comparing the numerical prediction with the measured wall sound pressure of the flow duct. Secondly, the effects of grazing flow and high-intensity sound on the impedance behavior of two single-layer liners are investigated based on comparisons between educed impedance and predictions by three impedance models. The performance of the SFM is validated by showing that the educed impedance leads to excellent agreement between the simulation and the measured wall sound pressure for different grazing flow Mach numbers and Sound Pressure Levels (SPLs) and over a frequency range from 3000?Hz down to 500?Hz. The grazing flow effect generally has the tendency that the acoustic resistance exhibits a slight decrease before it increases linearly with an increase in Mach, predicted successfully by the sound-vortex interaction theoretical model and the Kooi semi-empirical impedance model. However, the Goodrich semi-empirical impedance model gives only a simple linear relation of acoustic resistance starting from Mach zero. Additionally, when the SPL increases from 110 to 140?dB in the present investigation, the acoustic resistance exhibits a significant increase at all frequencies in the absence of flow; however, the resistance decreases slightly under a grazing flow of Mach 0.117. It indicates that the SPL effect can be greatly inhibited when flow is present, and the grazing flow effect can be reduced partly as well at a relatively high SPL. 相似文献
927.
LI Xiangyang LU Ye MENG Xiangjian WANG Jianlu WANG Reng CHEN Lidong HUA Zile LI Xiaoya SHI Jianlin LIU Jinfeng XU Guisheng WEI Bingbo XIE Wenjun YIN Zhigang ZHANG Xingwang JIANG Hongxiang LI Hong LUO Xinghong ZHANG Haifeng ZHAO Jiuzhou WANG Binbin PAN Mingxiang 《空间科学学报》2018,38(5):829-835
During the China's Tiangong-2 (TG-2) flight mission, the experiments of 18 kinds of material samples were conducted in space by using a Multiple Materials Processing Furnace (MMPF) mounted in the orbital module of the TG-2 space laboratory. After the experiments of 12 kinds of samples of the first and second batches were completed successfully, astronauts packed and brought them back to the ground by ShenzhouⅡ spacecraft. By studying processing and formation on semiconductor and optoelectronics materials, metal alloys and metastable materials, functional single-crystal, micro-and nano-composite materials encapsulated in sample ampoules both in space and on Earth, we expect to explore some physical and chemical processes and mechanism of the materials formation that are normally obscured and therefore are difficult to study quantitatively on the ground due to the gravity-induced convection, to obtain the processing and synthesis technology for preparing high quality materials, and lead to the improvement and development of materials processing techniques on Earth, and also develop the experiment device and comprehensive ability for materials experiment in microgravity environment. This report briefly introduces the main points of each research work and preliminary comparative analysis results of 12 samples carried out by scientists undertaking research task. 相似文献
928.
为了研究变循环压缩系统中各部件之间的匹配关系以及在整机调节时的表现,采用3维数值仿真软件对变循环发动机
的风扇、核心机驱动风扇级(CDFS)、高压压气机和外涵道开展联合数值仿真,并对比数值计算与试验结果的差异。针对单、双涵
工作模式,开展内、外涵出口节流特性计算,分析了内、外涵出口压力调节导致的各部件匹配关系的变化,获得了涵道比的变化范
围以及极限调节状态下的各部件表现出的流动特征,确定了制约整个压缩系统喘振裕度的关键部件。结果表明:在双涵模式下,
外涵节流导致风扇匹配点明显提高,首先到达喘振边界;在单涵模式下,外涵节流导致风扇和CDFS匹配点同时提高,几乎同时到
达喘振边界;在单、双涵模式下,内涵节流均使高压压气机首先到达喘振边界。仿真得到的外涵道损失与试验偏差在4%以内。 相似文献
929.
930.