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9篇 您的检索式:作者名="Meisong"
    题名 作者 年代 出处 被引量
1Basement of the South China Sea Area:Tracing the Tethyan Realm显示文摘华南海( SCS )和邻近的区域的地下室能被划分成六个部门(区域)在 Beibu 海湾的古生代的 Erathem 指责graben 的地下室分割,在 Yinggehai 的古生代的 Erathem 罢工滑倒拉开流水,在东方海南的古生代的 Erathem 差错消沉,在北 Xisha ( Paracel )的古生代的 Erathem rifted ,古生代的 Erathem 罢工滑倒在在 Nansha 岛延长的南部的 Xisha ,和古生代中生代的 Erathem 延长( Spratly )水。在 SCS 和 Yunkai 大陆人区域的新生代前地下室在在新生代前时期的 Tethyan 构造领域以内是同时代的。他们在 Paleo-Tethyan 构造领域的背景上被形成,并且是东方 Tethyan multi-island-ocean 系统的重要部件。东方 Paleo-Tethys 构造领域,北方 Yunkai,诺思海南,和南方海南海盆的三个分支,演变为北方 Yunkai,诺思海南,和南方海南缝术地区分别地。这为新生代前地下室显示出本地化的一个特殊特征。 Qiongnan (即南方海南)华南海的北边缘上的缝术地区能被认为 Paleo-Tethys 的主要海洋盆的痕迹,并且与 Longmucuo-Shuanghu beltBitu 带 Changning-Menglian-Bentong-Raub 带的缝术地区连接了,华南海的西方上的 Bitu-Changning-MenglianChing Mai beltChanthaburi-Raub-Bentong 带的南方延期,并且与 Lianhua-Taidong 缝术地区(沿着在台湾的纵的山谷的东方方面的一个差错) Hida Qiongbei (诺思海南) 缝术地区可以向东沿着 Wangwu-Wenjiao 差错地区延长了,并且深与 Lufeng-Dapu-Zhenghe-Shangyu (Lianhuashan ) 连接通过珍珠河嘴盆的差错地区。Meso-Tethys 在华南海的南方上发展了。Nansha 马槽可以被认为 Meso-Tethys 的北架的痕迹。 Meso-Tethys 的海洋的外壳向南沿着 subduction-collision-thrust 有 subducted 有华南海的西方上的 Yarlung Zangbo-Mytkyina-Bago 地区的到那些的subduction杆反面的 Nansha 马槽的南部的边缘,并且 Meso-Tethyan (例如 Meso-Tethys 的北 Chichibu 海洋)在在西南日本的侏罗记早的白垩纪地球组的外部带的缝术地区 Butsozo 构造的线,在华南海的东方上。LIU Hailing ZHENG Hongbo WANG Yanlin LIN Qiujin WU Chaohua ZHAO Meisong DU Yunkong 2011Acta Geologica Sinica(English Edition)2011,85,3:13
2Ultraflat, broadband, and highly coherent supercontinuum generation in all-solid microstructured optical fibers with all-normal dispersion显示文摘High flatness, wide bandwidth, and high-coherence properties of supercontinuum(SC) generation in fibers are crucial in many applications. It is challenging to achieve SC spectra in a combination of the properties, since special dispersion profiles are required, especially when pump pulses with duration over 100 fs are employed. We propose an all-solid microstructured fiber composed only of hexagonal glass elements. The optimized fiber possesses an ultraflat all-normal dispersion profile, covering a wide wavelength interval of approximately 1.55 μm. An SC spectrum spanning from approximately 1030 to 2030 nm(corresponding to nearly one octave) with flatness<3 dB is numerically generated in the fiber with 200 fs pump pulses at 1.55 μm. The results indicate that the broadband ultraflat SC sources can be all-fiber and miniaturized due to commercially achievable 200-fs fiber lasers. Moreover, the SC pulses feature high coherence and a single pulse in the time domain, which can be compressed to 13.9-fs pulses with high quality even for simple linear chirp compensation. The Fourier-limited pulse duration of the spectrum is 3.19 fs, corresponding to only 0.62 optical cycles.CHUNLEI HUANG MEISONG LIAO WANJUN BI XIA LI LILI HU LONG ZHANG LONGFEI WANG GUANSHI QIN TIANFENG XUE DANPING CHEN WEIQING GAO 2018Photonics Research2018,6,6:4
3The use of berberine for women with polycystic ovary syndrome undergoing IVF treatment显示文摘Yuan An Zhuangzhuang Sun Yajuan Zhang Bin Liu Yuanyuan Guan Meisong Lu 2014Clin Endocrinol2014,,3:1
4Host dependent frequency up-conversion of Er^3+-doped oxy?uoride germinate glasses 显示文摘SUN Hongtao ZHANG Liyan LIAO Meisong 2006J Lumin2006,117,:1
5Widely Tunable Ring-Cavity Tellurite Fiber Raman Laser显示文摘Qin Guanshi Liao Meisong Suzuki T 0,,17:1
6Proteome and transcriptome profile analysis reveals regulatory and stress-responsive networks in the russet fruit skin of sand pear显示文摘The epidermal tissues of the cuticular membrane(CM)and periderm membrane(PM)confer first-line protection from environmental stresses in terrestrial plants.Although PM protection is essentially ubiquitous in plants,the protective mechanism,the function of many transcription factors and enzymes,and the genetic control of metabolic signaling pathways are poorly understood.Different microphenotypes and cellular components in russet(PM-covered)and green(CM-covered)fruit skins of pear were revealed by scanning and transmission electron microscopy.The two types of fruit skins showed distinct phytohormone accumulation,and different transcriptomic and proteomic profiles.The enriched pathways were detected by differentially expressed genes and proteins from the two omics analyses.A detailed analysis of the suberin biosynthesis pathways identified the regulatory signaling network,highlighting the general mechanisms required for periderm formation in russet fruit skin.The regulation of aquaporins at the protein level should play an important role in the specialized functions of russet fruit skin and PM-covered plant tissues.Yuezhi Wang Meisong Dai Danying Cai Zebin Shi 2020Horticulture Research2020,7,1:1
7Analysis of Phase Coexistence in Fe2O3‐Doped 0.2PZN–0.8PZT Ferroelectric Ceramics by Raman Scattering Spectra显示文摘Man‐KangZhu Peng‐XianLu Yu‐DongHou Xue‐MeiSong HaoWang HuiYan 2006Journal of the American Ceramic Society2006,,12:1
8Fabrication and characterization of a chaleogenide-tel- lurite composite microstructure fiber with high nonlin- earity显示文摘Liao Meisong Chaudhari Chitrarekha Qin Guanshi 2009Opitcs Express2009,17,21:1
9Experimental research in rotating wedge-shaped cooling channel with multiple non-equant holes lateral inlet显示文摘The heat transfer in a novel smooth wedge-shaped cooling channel with lateral ejection of turbine blade trailing edge is experimentally investigated in both non-rotating and rotating cases.Beside the conventional inlet at the bottom of the channel, an extra coolant injection from 8 lateral non-equant holes is introduced to improve the overall heat transfer. The total mass flow rate ratio(lateral mass flow rate/total mass flow rate) varies from 0 to 1.0. The major inlet Reynolds number and rotation number respectively vary from 10000 to 20000 and from 0 to 1.16. Experimental results show that the lateral inlet decreases local bulk temperature and increases local heat transfer at the middle and the top of the static channel. In rotating cases, the lateral inlet notably improves the heat transfer at the high-radius half channel and compensates the negative effects induced by the rotation. Both intensity and uniformity of heat transfer inside the channel are enhanced while flow resistance decreases with proper mass flow rate ratio of coolant from two inlets. The most satisfactory total mass flow rate ratio is around 2/3. This new structural style of cooling channel has huge potential and provides new direction of heat transfer of turbine blade trailing edge.Huimin ZHOU Haiwang LI Zhi TAO Hongwu DENG Meisong YANG Shuqing TIAN 2018Chinese Journal of Aeronautics2018,31,3:0
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