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排序方式: 共有309条查询结果,搜索用时 240 毫秒
1.
X.B. Zhao W.Z. Shao L.B. Zhao Y. Gao Y.Y. Hu X.Z. Yuan 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(10):3072-3086
The main objective of our work was to investigate the impact of rain on wave observations from C-band (~5.3 GHz) synthetic aperture radar (SAR) in tropical cyclones. In this study, 10 Sentinel-1 SAR images were available from the Satellite Hurricane Observation Campaign, which were taken under cyclonic conditions during the 2016 hurricane season. The third-generation wave model, known as Simulating WAves Nearshore (SWAN) (version 41.31), was used to simulate the wave fields corresponding to these Sentinel-1 SAR images. In addition, rainfall data from the Tropical Rainfall Measuring Mission satellite passing over the spatial coverage of the Sentinel-1 SAR images were collected. The simulated results were validated against significant wave heights (SWHs) from the Jason-2 altimeter and European Centre for Medium-Range Weather Forecasts data, revealing a root mean square error (RMSE) of ~0.5 m with a 0.25 scatter index. Winds retrieved from the VH-polarized Sentinel-1 SAR images using the Sentinel-1 Extra Wide-swath Mode Wind Speed Retrieval Model after Noise Removal were taken as prior information for wave retrieval. It was discovered that rain did indeed affect the SAR wave retrieval, as evidenced by the 3.21-m RMSE of SWHs between the SAR images and the SWAN model, which was obtained for the ~1000 match-ups with raindrops. The raindrops dampened the wave retrieval when the rain rate was < ~5 mm/hr; however, they enhanced wave retrieval for higher rain rates. It was also found that the portion of the rain-induced ring wave with a wave number > 0.05 rad/m (~125 m wavelength) was clearly observed in the SAR-derived wave spectra. 相似文献
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邵玉龙 《南京航空航天大学学报》1992,(3)
准确地度量电路的可测试性是数字系统测试的重要问题之一。本文提出了一种基于信息流度量电路可测试性的方法,它表明可以将一个数字电路看成是一个信息处理系统。因此,电路的可测试性的度量值定义为电路输出的平均信息量与输入的平均信息量的最大值之比。文中给出了如何应用逻辑模拟软件来计算电路可测试性的度量值。对于由模块组成的电路,可以通过模块之间的一些特殊操作求得整个电路可测试性的度量值,本文也给出了方法及实例。文中还给出了应用本文提出的方法进行电路可测试性度量的实例,并与文[1,5]的方法得到的结果进行了比较,从而说明了本文方法的特点。 相似文献
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论述纵向耦合振动(POGO)蓄压器的变频降幅特性,指出其主要影响因素是蓄压器容积及连接管路的液阻,根据输送管路的特定频率,选择适当的蓄压器容积,使其固有频率与特定管路的压力脉动频率相一致,可以获得预期的变频降幅效果。给出了蓄压器的变频降幅试验研究结果,可为POGO蓄压器的设计,研制,使得提供参考。 相似文献
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Heilbronn L Frankel K Holabird K Zeitlin C McMahan MA Rathbun W Cronqvist M Gong W Madey R Htun M Elaasar M Anderson BD Baldwin AR Jiang J Keane D Scott A Shao Y Watson JW Zhang WM Galonsky A Ronningen R Zecher P Kruse J Wang J Cary R 《Acta Astronautica》1998,42(1-8):363-373
In order to help assess the risk to astronauts due to the long-term exposure to the natural radiation environment in space, an understanding of how the primary radiation field is changed when passing through shielding and tissue materials must be obtained. One important aspect of the change in the primary radiation field after passing through shielding materials is the production of secondary particles from the breakup of the primary. Neutrons are an important component of the secondary particle field due to their relatively high biological weighting factors, and due to their relative abundance, especially behind thick shielding scenarios. Because of the complexity of the problem, the estimation of the risk from exposure to the secondary neutron field must be handled using calculational techniques. However, those calculations will need an extensive set of neutron cross section and thicktarget neutron yield data in order to make an accurate assessment of the risk. In this paper we briefly survey the existing neutron-production data sets that are applicable to the space radiation transport problem, and we point out how neutron production from protons is different than neutron production from heavy ions. We also make comparisons of one the heavy-ion data sets with Boltzmann-Uehling-Uhlenbeck (BUU) calculations. 相似文献
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低温推进剂火箭喷泉效应及其抑制 总被引:3,自引:1,他引:3
针对低温推进剂火箭应用过程中出现的喷泉效应,在深入分析其产生机理的基础上,介绍了氦气注入、补充加注和循环回流三种相应的抑制方法。试验和应用结果表明,这三种方法可有效地实现系统平衡,抑制喷泉效应。 相似文献
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以作者所开发的计算机考试系统为例,阐述了大二进制对象数据类型(BLOB)使用方法,包括将一个大对象(文本、图像、声音等)存入一个BLOB变量中、通过BLOB变量读写数据库中的大对象等内容。 相似文献