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66篇 您的检索式:作者名="YANMING ZHU"
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1Comparison of pore characteristics in the coal and shale reservoirs of Taiyuan Formation, Qinshui Basin, China显示文摘Yu Liu Yanming Zhu 2016International Journal of Coal Science & Technology2016,3,3:30
2Influence of magma intrusion on gas outburst in a low rank coal mine显示文摘The effect of magma intrusion on gas outburst is illustrated by a case study of the exposed magma intrusion in the 313 mining area,upper coal seam Number 3,in the Qiwu Mine located in Shandong province.Vitrinite reflectance,mercury injection,and maceral statistical analysis are used to characterize the coal.The aspects of coal metamorphism include changes in micro-components as well as in coal structure,the formation of new substances,and changes in gas absorption and storage.The results show that vitrinite reflectance increases within the region influenced by magma intrusion.The metamorphosed region may be divided into a weakly affected belt,a medium affected belt,a strongly affected belt,and a completely affected belt.Compared to the unaffected coal the total pore volume,as well as the amount of big and middle sized holes,increases while the number of transition holes and micro-pores decreases.This diminishes the absorption capacity of the matrix but enlarges the total gas storage space.Vitrinite content initially decreases slightly but then increases rapidly while the inertinite content increases at first but then decreases.Exinite content decreases,then increases,and finally drops to zero.Higher vitrinite,and a lower inertinite,content increase gas absorption ability.This balances reduced adsorption caused by changes to pore structure.Consequently,gas adsorption capacity is not substantially reduced as the coal rank increases.Thermal metamorphism of the coal produces CH4 and other hydrocarbons that increase the total gas content in the coal seam.Asphaltene migrates into the medium and weakly affected regions filling in the pores and fractures there.This plugs the pathway for gas transport.A barrier is formed that hinders gas flow.CO2,H2S,N2,and other gases carried in by the magma react to produce CO2,which increases in relative concentration and enhances the risk of gas outburst.The two barriers,magma intrusion on one side and the medium and weakly affected belts on the other,as well as the unaffected coal seam itself,trap a large amount of gas during the thermal activity.This is the basic reason for gas outburst.These conclusions can enlighten activities related to gas prevention and control in a low rank coal mine affected by magma intrusion.Chen Shangbin Zhu Yanming Li Wu Wang Hui 2012International Journal of Mining Science and Technology2012,22,2:11
3Promoting effect of microwave irradiation on CeO2-TiO2 catalyst for selective catalytic reduction of NO by NH3显示文摘In this work we prepared several CeO2-TiO2 catalysts for the NH3-SCR reactionusing co-precipitation with assistance of microwave irradiation.The catalytic NH3-SCR activities over CeO2-TiO2 catalysts at low temperatures are largely enhanced by the treatment of microwave irradiation,the operation temperature window is also broadened.For better understanding the promotion mechanism,the catalyst prepared by conventional co-precipitation with and without microwave irradiation treatment was characterized with H2-TPR,NH3-TPD,XPS,XRD and BET.Microwave irradiation treatment accelerates the crystallite rate of CeO2-TiO2 catalysts,and greatly enlarges their surface area by adjusting their microstructures.The resistance to SO2 and H2O is also improved via regulating the hierarchical pore structure by the microwave irradiation.Microwave irradiation treatment can also improve the redox property and increase the acid sites over the catalyst surfaces.The result of in situ DRIFTS suggests that the microwave irradiation treatment generates more Br?nsted acid sites on CeO2-TiO2-2 h catalyst,helpful in SCR reactions.XPS results show that after microwave irradiation on the CeO2-TiO2 catalysts,the surface demonstrates an elevated concentration of chemisorbed oxygen,consequently leading to better oxidation of NO to NO2.Additionally,the molar ratio of Ce3+/Ce4+has been elevated after being treated by microwave irradiation,a vital factor in enhancing the NH3-SCR activities.Jie Cheng Liyun Song Rui Wu Shining Li Yanming Sun Hongtai Zhu Wenge Qiu Hong He 2020Journal of Rare Earths2020,38,1:11
4Precise base editing of non-allelic acetolactate synthase genes confers sulfonylurea herbicide resistance in maize显示文摘Single-nucleotide polymorphisms contribute to phenotypic diversity in maize. Creation and functional annotation of point mutations has been limited by the low efficiency of conventional methods based on random mutation. An efficient tool for generating targeted single-base mutations is desirable for both functional genomics and precise genetic improvement. The objective of this study was to test the efficiency of targeted C-to-T base editing of two non-allelic acetolactate synthase(ALS) in generating sulfonylurea herbicide-resistant mutants. A CRISPR/Cas9 nickase-cytidine deaminase fused with uracil DNA glycosylase inhibitor(UGI) was employed to achieve targeted conversion of cytosine to thymine in ZmALS1 and ZmALS2. Both protoplasts and recovered mutant plants showed the activity of the cytosine base editor, with an in vivo efficiency of up to 13.8%. Transgene-free edited plants harboring a homozygous ZmALS1 mutation or a ZmALS1 and ZmALS2 double mutation were tested for their resistance at a dose of up to 15-fold the recommended limit of chlorsulfuron, a sulfonylurea herbicide widely used in agriculture. Targeted base editing of C-to-T per se and a phenotype verified in the generated mutants demonstrates the power of base editing in precise maize breeding.Yanmin Li Jinjie Zhu Hao Wu Changlin Liu Changling Huang Jinhao Lan Yanming Zhao Chuanxiao Xie 2020The Crop Journal2020,8,3:9
5Cloning of Ln Gene Through Combined Approach of Map-based Cloning and Association Study in Soybean显示文摘Increasing yield is one of the most important goals in crop breeding.Soybean(Glycine max L.Merr.),one of the most economically important leguminous seed crops,provides the majority of plant proteins,and more than a quarter of the world's food and animal feed(Graham and Vance,2003). The yield of soybean is finally determined by the number of seeds per unit area,which affected by many characters,such as height,branching number,photosynthesis,seed size,seed number.The number of seeds per pod is taken for one of the critical components that related to yield(You et al.,1995),and it has long been considered in soybean production(Takahashi,Chao Fang Weiyu Li Guiquan Li Zheng Wang Zhengkui Zhou Yanming Ma Yanting Shen Congcong Li Yunshuai Wu Baoge Zhu Weicai Yang Zhixi Tian 2013Journal of Genetics and Genomics2013,40,2:7
6Nanoscale pore morphology and distribution of lacustrine shale reservoirs:Examples from the Upper Triassic Yanchang Formation,Ordos Basin显示文摘Pore structure plays an important role in the gas storage and flow capacity of shale gas reservoirs. Fieldemission environmental scanning electron microscopy(FE-SEM) in combination with low-pressure carbon dioxide gas adsorption(CO2GA),nitrogen gas adsorption(N2GA),and high-pressure mercury intrusion(HPMI) were used to study the nanostructure pore morphology and pore-size distributions(PSDs) of lacustrine shale from the Upper Triassic Yanchang Formation,Ordos Basin. Results show that the pores in the shale reservoirs are generally nanoscale and can be classified into four types: organic,interparticle,intraparticle,and microfracture. The interparticle pores between clay particles and organic-matter pores develop most often,l with pore sizes that vary from several to more than 100 nm. Mercury porosimetry analysis shows total porosities ranging between 1.93 and 7.68%,with a mean value of 5.27%. The BET surface areas as determined by N2 adsorption in the nine samples range from 10 to 20 m2/g and the CO2 equivalent surface areas(<2 nm)vary from 18 to 71 m2/g. Together,the HPMI,N2 GA,and CO2 GA curves indicate that the pore volumes are mainly due to pores <100 nm in size. In contrast,however,most of the specific surface areas are provided by the micropores. The total organic carbon(TOC) and clay minerals are the primary controls of the structures of nanoscale pores(especially micropores and mesopores). Micropores are predominantly determined by the content of the TOC,and mesopores are possibly related to the content of clay minerals,particularly the illite-montmorillonite mixed-layer content.Yang Wang Yanming Zhu Hongyan Wang Guangjun Feng 2015Journal of Energy Chemistry2015,24,4:6
7Pore Structure Heterogeneity of the Xiamaling Formation Shale Gas Reservoir in the Yanshan Area of China: Evaluation of Geological Controlling Factors显示文摘Micro-heterogeneity is an integral parameter of the pore structure of shale gas reservoir and it forms an essential basis for setting and adjusting development parameters.In this study,scanning electron microscopy,high-pressure mercury intrusion and low-temperature nitrogen adsorption experiments were used to qualitatively and quantitatively characterize the pore structure of black shale from the third member of the Xiamaling Formation in the Yanshan area.The pore heterogeneity was studied using fractal theory,and the controlling factors of pore development and heterogeneity were evaluated in combination with geochemical parameters,mineral composition,and geological evolution history.The results show that the pore structure of the reservoir was intricate and complicated.Moreover,various types of micro-nano scale pores such as dissolution pores,intergranular pores,interlayer pores,and micro-cracks are well developed in member 3 of the Xiamaling Formation.The average porosity was found to be 6.30%,and the mean value of the average pore size was 4.78 nm.Micropores and transition pores provided most of the storage space.Pore development was significantly affected by the region and was mainly related to the total organic carbon content,vitrinite reflectance and mineral composition.The fractal dimension,which characterizes the heterogeneity,is 2.66 on average,indicating that the pore structure is highly heterogeneous.Fractal dimension is positively correlated with maturity and clay mineral content,while it is negatively correlated with brittle mineral content and average pore size.These results indicate that pore heterogeneity is closely related to thermal history and material composition.Combined with the geological background of this area,it was found that the pore heterogeneity was mainly controlled by the Jurassic magmatism.The more intense the magma intrusion,the stronger the pore heterogeneity.The pore structure and its heterogeneity characteristics present today are a general reflection of the superimposed geological processes of sedimentary-diagenetic-late transformation.The influence of magmatic intrusion on the reservoir is the main geological factor that should be considered for detailed evaluation of the Xiamaling Formation shale gas reservoir in the Yanshan area.LI Xueyuan CHEN Shangbin WANG Xiaoqi ZHU Yanming CHANG Minghua Clementine UWAMAHORO 2019Acta Geologica Sinica(English Edition)2019,93,3:5
8Hydrocarbon Generation Evolution of Permo-Carboniferous Rocks of the Bohai Bay Basin in China显示文摘Bohai 海湾盆在北方中国 Craton 是中生代沉淀和新生代裂缝盆。自从 Permo 含碳的烃来源岩石的免职,盆经历了许多构造事件。来源岩石经历了不一致高举,扭动,深埋葬,并且 magmatism 和导致那一打断或在烃来源岩石的进化期间逐步。我们调查了埋葬的 Permo 含碳的烃来源岩石历史,加热,并且烃产生,不是仅仅根据构造骚乱并且深深地埋葬了而且与容易的 % Ro 的数字模拟的磷灰石分裂磁道分析,液体包括大小,和应用程序上的新研究。来源岩石的加热温度继续从 Indosinian 升起到喜玛拉雅的舞台并且到达了最大值在晚喜玛拉雅。这在器官的成熟和烃产生的多重阶段期间导致了逐步的增加。学习描出构造阶段,烃产生的紧张和烃代的空间、时间的分发。烃产生发生在 Indosinian 期间, Yanshanian,并且特别地迟了喜玛拉雅。烃产生在晚喜玛拉雅的阶段期间是为在中国的 Bohai 海湾盆的 Permo 含碳的来源岩石的最重要的。ZHU Yanming QIN Yong SANG Shuxun CHEN Shangbin LAN Xiaodong 2010Acta Geologica Sinica(English Edition)2010,84,2:5
9Influence of liquid water on coalbed methane adsorption:An experimental research on coal reservoirs in the south of Qinshui Basin显示文摘Using Isothermal Adsorption/Desorption System Model IS-100 and Electrohydraulic Servo Rock System Model MTS815 as the main apparatuses and collecting samples from the major coal reservoirs in the south of Qinshui Basin, a hot point region of coalbed methane exploration, the paper carries out systematical comparisons of the isothermal adsorption experimental data for injection water coal samples, equilibrium moisture samples and dry coal samples, probes and establishes an experimental method of injection water coal sample preparation and isothermal experiment to simulate real reservoir conditions, and then summaries the experimental regulations and discusses the mechanism of liquid water influencing coal methane adsorption. Results of the experiment indicate that: The Langmuir volume of injection water coal samples is notably larger than that of equilibrium moisture samples, as well as larger than or equivalent to that of dry coal samples; the Langmuir pressure of injection water coal samples is the highest, the next is equilibrium moisture samples, while the dry samples is the lowest, of which the experimental results of injection water samples to simulate real reservoir conditions are more close to the fact. Under the conditions of in-position reservoirs, liquid water in coals has evident influence on methane adsorption ability of coal matrix, which can increase the adsorbability of coal and make the adsorption regulation fit to Langmuir model better. Its major reason is the increase of wetting coal matrix adsorbability. The above experimental results overthrow the conventional cognition that liquid water has no influence on coalbed methane adsorption, which may lead to an improvement of the coalbed methane isothermal adsorption experimental method and of the reliability of coalbed methane resource evaluation and prediction.Shuxun Sang Yanming Zhu Jing Zhang Xiaodong Zhang Shiyin Zhang 2005Chinese Science Bulletin2005,50,S1:4
10Lock threshold deterioration induced by antenna vibration and signal coupling effects in hypersonic vehicle carrier tracking system of Ka band显示文摘The envelope of a hypersonic vehicle is affected by severe fluctuating pressure, which causes the airborne antenna to vibrate slightly. This vibration mixes with the transmitted signals and thus introduces additional multiplicative phase noise. Antenna vibration and signal coupling effects as well as their influence on the lock threshold of the hypersonic vehicle carrier tracking system of the Ka band are investigated in this study. A vibration model is initially established to obtain phase noise in consideration of the inherent relationship between vibration displacement and electromagnetic wavelength. An analytical model of the Phase-Locked Loop(PLL), which is widely used in carrier tracking systems, is established. The coupling effects on carrier tracking performance are investigated and quantitatively analyzed by imposing the multiplicative phase noise on the PLL model. Simulation results show that the phase noise presents a Gaussian distribution and is similar to vibration displacement variation. A large standard deviation in vibration displacement exerts a significant effect on the lock threshold. A critical standard deviation is observed in the PLL of Binary Phase Shift Keying(BPSK) and Quadrature Phase Shift Keying(QPSK) signals. The effect on QPSK signals is more severe than that on BPSK signals. The maximum tolerable standard deviations normalized by the wavelength of the carrier are 0.04 and 0.02 for BPSK and QPSK signals,respectively. With these critical standard deviations, lock thresholds are increased from à12 andà4 d B to 3 and à2 d B, respectively.Congying ZHU Lei SHI Xiaoping LI Yanming LIU Wei AI 2018Chinese Journal of Aeronautics2018,31,4:4
11Mercury pollution in Rana Chensinensis in Weisha River reach, in the upstream region of Songhua River显示文摘Twice a year continuous samples of Rana Chensinensis and sediments have been collected near gold mine in the upstream region of Songhua River from 2000 to 2002, for analyzing the total mercury (THg), methylmercury (MeHg) concentration and correlation in sediments, muscles, livers of the frog. The study indicates that THg and MeHgconcentrations in polluted samples near the gold mine are higher than those in unpolluted ones. THg and MeHg con-centrations are higher in autumn, in female, and in livers than those in spring, in male, in muscles respectively. The order of concentration degree in the frog organizations is as follows: liver>muscle>ovum>Fallopian tube. MeHg is themain form of mercury (Hg) existing in autumn, while inor-ganic Hg is in spring. There is no distinct difference ofCMeHg/CTHg between male and female, livers and muscles. The correlation between MeHg concentrations in the river sedi-ments and in the frog’s livers and muscles are significant, which is related to disorderly discharge of Hg.WANG Ning ZHU Yanming MENG Dan 2005Chinese Science Bulletin2005,50,19:4
12Targeting PFKL with penfluridol inhibits glycolysis and suppresses esophageal cancer tumorigenesis in an AMPK/FOXO3a/BIM-dependent manner显示文摘As one of the hallmarks of cancer,metabolic reprogramming leads to cancer progression,and targeting glycolytic enzymes could be useful strategies for cancer therapy.By screening a small molecule library consisting of 1320 FDA-approved drugs,we found that penfluridol,an antipsychotic drug used to treat schizophrenia,could inhibit glycolysis and induce apoptosis in esophageal squamous cell carcinoma(ESCC).Gene profiling and Ingenuity Pathway Analysis suggested the important role of AMPK in action mechanism of penfluridol.By using drug affinity responsive target stability(DARTS)technology and proteomics,we identified phosphofructokinase,liver type(PFKL),a key enzyme in glycolysis,as a direct target of penfluridol.Penfluridol could not exhibit its anticancer property in PFKL-deficient cancer cells,illustrating that PFKL is essential for the bioactivity of penfluridol.High PFKL expression is correlated with advanced stages and poor survival of ESCC patients,and silencing of PFKL significantly suppressed tumor growth.Mechanistically,direct binding of penfluridol and PFKL inhibits glucose consumption,lactate and ATP production,leads to nuclear translocation of FOXO3a and subsequent transcriptional activation of BIM in an AMPK-dependent manner.Taken together,PFKL is a potential prognostic biomarker and therapeutic target in ESCC,and penfluridol may be a new therapeutic option for management of this lethal disease.Cancan Zheng Xiaomei Yu Yiyao Liang Yidong Zhu Yan He Long Liao Dingkang Wang Yanming Yang Xingfeng Yin Ang Li Qingyu He Bin Li 2022Acta Pharmaceutica Sinica B2022,12,3:4
13Response of coal reservoir porosity to magma intrusion in the Shandong Qiwu Mine,China显示文摘Qiwu 矿位于山东省的十块 Xian 煤地。它经历了重复暴烈的活动,在形成的煤床以后,在岩浆侵入是重要的的地方。在岩浆侵入以后的煤水库孔的效果被分析学习地区性并且矿结构和 magmatic 活动。包括在显微镜和水银 porosimetry 下面的 maceral 测量的试验性的方法被用于测试毛孔结构。作者相信进低等级的沥青的煤的那岩浆侵入引起水库孔逐渐地增加:到 magmatic 岩石,一件样品越靠近,越不孔。毛孔尺寸分发也变化。在自然的煤床上,毛孔尺寸主要在及物、中间的毛孔范围。然而,煤改变到白煤,靠着 magmatic,岩石和更大的毛孔统治。热进化近引起了煤到要烤的 magmatic 岩石的地区性的岩浆,减少了不稳定的事,开发了更大的洞,并且破坏了植物织物洞。为在 magmatic 岩石的附近的孔减少的主要原因是源于烤的 Bituminite 充满开始是在场的洞。Li Wu Zhu Yanming Chen Shangbin Wang Hui 2011Mining Science and Technology2011,21,2:4
14Raman spectroscopy regulation in van der Waals crystals显示文摘Raman spectroscopy is a versatile tool widely used for comprehensive probing of crystal information. However,generally when applied in narrow-band-gap van der Waals crystals, it is liable to form a 'bug,' especially in transition-metal-dichalcogenides(TMDs). That is, several resonant Raman-scattering(RS) modes will inevitably appear in the Raman spectra with strong intensity, interfering with the desired signal of optical-phonon modes.Here, we propose cross-sectional polarized Raman scattering capable of regulating the intensity of RS modes in accordance with quasi-sinusoidal rules. Typically, for MoS_2 and WS_2, when the polarization vector of excited light is along the c axis of the crystal, all RS modes are nearly completely 'expunged' from the Raman spectra. The mechanism is that the absorption of most TMDs with a space group of R_(3m)for the light polarized along the c axis is infinitesimal, thus forming a small coupling intensity of electronic states excited optically and acoustic-phonon modes at point M, which in turn restrain the appearance of RS modes. The regulating strategy proposed can be applied to other van der Waals crystals so as to obtain a high signal-to-noise ratio Raman spectrum.WEI ZHENG YANMING ZHU FADI LI FENG HUANG 2018Photonics Research2018,,11:3
15Mapping Human Pluripotent Stem Cell-derived Erythroid Differentiation by Single-cell Transcriptome Analysis显示文摘There is an imbalance between the supply and demand of functional red blood cells(RBCs)in clinical applications.This imbalance can be addressed by regenerating RBCs using several in vitro methods.Induced pluripotent stem cells(iPSCs)can handle the low supply of cord blood and the ethical issues in embryonic stem cell research,and provide a promising strategy to eliminate immune rejection.However,no complete single-cell level differentiation pathway exists for the iPSC-derived erythroid differentiation system.In this study,we used iPSC line BC1 to establish a RBC regeneration system.The 10X Genomics single-cell transcriptome platform was used to map the cell lineage and differentiation trajectory on day 14 of the regeneration system.We observed that iPSC differentiation was not synchronized during embryoid body(EB)culture.The cells(on day 14)mainly consisted of mesodermal and various blood cells,similar to the yolk sac hematopoiesis.We identified six cell classifications and characterized the regulatory transcription factor(TF)networks and cell-cell contacts underlying the system.iPSCs undergo two transformations during the differentiation trajectory,accompanied by the dynamic expression of cell adhesion molecules and estrogen-responsive genes.We identified erythroid cells at different stages,such as burst-forming unit erythroid(BFU-E)and orthochromatic erythroblast(ortho-E)cells,and found that the regulation of TFs(e.g.,TFDP1 and FOXO3)is erythroid-stage specific.Immune erythroid cells were identified in our system.This study provides systematic theoretical guidance for optimizing the iPSC-derived erythroid differentiation system,and this system is a useful model for simulating in vivo hematopoietic development and differentiation.Zijuan Xin Wei Zhang Shangjin Gong Junwei Zhu Yanming Li Zhaojun Zhang Xiangdong Fang 2021Genomics, Proteomics & Bioinformatics2021,19,3:2
16Bacteroides ovatus-mediated CD27^(−)MAIT cell activation is associated with obesity-related T2D progression显示文摘Type 2 diabetes(T2D)is highly associated with obesity.However,the factors that drive the transition from excessive weight gain to glucose metabolism disruption are still uncertain and seem to revolve around systemic immune disorder.Mucosal-associated invariant T(MAIT)cells,which are innate-like T cells that recognize bacterial metabolites,have been reported to be altered in obese people and to lead to metabolic dysfunction during obesity.By studying the immunophenotypes of blood MAIT cells from a cross-sectional cohort of obese participants with/without T2D,we found an elevation in CD27^(-)negative(CD27−)MAIT cells producing a high level of IL-17 under T2D obese conditions,which could be positively correlated with impaired glucose metabolism in obese people.We further explored microbial translocation caused by gut barrier dysfunction in obese people as a triggering factor of MAIT cell abnormalities.Specifically,accumulation of the bacterial strain Bacteroides ovatus in the peripheral blood drove IL-17^(-)producing CD27−MAIT cell expansion and could be associated with T2D risk in obese individuals.Overall,these results suggest that an aberrant gut microbiota–immune axis in obese people may drive or exacerbate T2D.Importantly,CD27−MAIT cell subsets and Bacteroides ovatus could represent targets for novel interventional strategies.Our findings extend current knowledge regarding the clinical relevance of body mass index(BMI)-associated variation in circulating MAIT cells to reveal the role of these cells in obesity-related T2D progression and the underlying cellular mechanisms.Yue Li Yi Yang Jin Wang Peihong Cai Mei Li Xixiang Tang Ying Tan Yuchan Wang Fan Zhang Xiaofeng Wen Qiaoxing Liang Yuanpeng Nie Tufeng Chen Xiang Peng Xuemin He Yanhua Zhu Guojun Shi Wai WCheung Lai Wei Yanming Chen Yan Lu 2022Cellular & Molecular Immunology2022,19,7:2
17Roles of MicroRNAs in Plant Stress Tolerance显示文摘MicroRNAs (miRNAs) are one kind of small RNA in all eukaryote. MicroRNAs can regulate gene expression of eukaryote; they widely participate in every physiological process. They can block mRNA expression or cleave mRNA by complement to target mRNA. Scholars estimate miRNA genes occuping about 1% of genome, but they can regulate 10%-30% genes of whole genome. The genes are regulated by miRNA including signal proteins, enzymes, transcription factors, and so on. In the field of plant research, the start of miRNA research is later, but it is proved that plant miRNAs are important to every plant physiological process. Now miRNA has become the hotspot of plant molecular biology research. This paper introduced the biology function, action mechanism, researching method and recently development of microRNAs, also focused on advances in plant microRNAs. This paper has important reference value for plant stress tolerance miRNA research.GAO Peng YANG Liang BAI Xi ZHU Yanming 2008Journal of Northeast Agricultural University(English Edition)2008,15,3:2
18DEFORMATION MEASUREMENT USING DUAL-FREQUENCY PROJECTION GRATING PHASE-SHIFT PROFILOMETRY显示文摘当一个使变形的目标有时, 2 蟺阶段歧义问题在阶段测量是很重要的一从飞机大排水量。双频率的设计栅栏阶段 -- 变的 profilometry (PSP ) 能被用来解决如此的一个问题。在测量,二合适 -- 选择频率栅栏被利用综合在一个主要阶段范围保证计算阶段的一个相等的波长栅栏。因此,错误与常规阶段由阶段 unwrapping 过程引起了重建算法能被消除。最后,有大塑料变丑的一个标本的试验性的结果被给证明建议方法是有效的处理阶段断绝。Yanming Chen Yuming He Eryi Hu Hongmao Zhu 2008Acta Mechanica Solida Sinica2008,21,2:2
19Advances inorganic field-effect transistors显示文摘 Liu Yunqi Zhu Daoben 2005J Mater Chem2005,15,:1
20Shale gas reservoir characterization:A typical case in the southern Sichuan Basin of China显示文摘Chen Shangbin Zhu Yanming Wang Hongyan  2011Energy2011,36,11:1
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