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Interaction effects on heat conduction and thermal stress in an infinite elastic plane with two circular holes
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作者 Kun SONG Deshun YIN +1 位作者 haibing yang P.SCHIAVONE 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2021年第2期223-234,共12页
Numerous researches have focused on the physical behavior of an elastic material in the vicinity of a single hole under the assumption that the interaction effects arising from the introduction of multiple holes remai... Numerous researches have focused on the physical behavior of an elastic material in the vicinity of a single hole under the assumption that the interaction effects arising from the introduction of multiple holes remain negligible if the holes are placed sufficiently far from each other.In an effort to understand hole interaction effects on heat conduction and thermal stress,we consider the case when two circular holes are embedded in an infinite elastic material and use complex variable methods together with numerical analysis to obtain solutions describing temperature and elastic fields in the vicinity of the two circular holes.The results indicate that the interaction effects on temperature distribution and stress strongly depend on the relative size of the two holes and the distance placed between them but not on the actual size of the holes. 展开更多
关键词 heat conduction temperature field thermal stress interaction effect two circular holes
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“水稻制种宝”在C两优华占制种上的应用效果研究
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作者 许少华 鲁孟海 +2 位作者 杨海兵 饶华照 别文力 《农业科学》 2018年第8期843-847,共5页
杂交水稻的制种是一个受多方面因素影响的过程,环境因素直接影响着水稻生产的芽率、结实率、产量等。本文探讨了“水稻制种宝”不同的施用量对C两优华占有效穗、结实率、产量以及相对经济产出的影响,结果表明:1)基施“水稻制种宝”能有... 杂交水稻的制种是一个受多方面因素影响的过程,环境因素直接影响着水稻生产的芽率、结实率、产量等。本文探讨了“水稻制种宝”不同的施用量对C两优华占有效穗、结实率、产量以及相对经济产出的影响,结果表明:1)基施“水稻制种宝”能有效的增加单位面积有效穗,在试验浓度范围内,随着施用量的增加而增加;2)基施“水稻制种宝”在一定程度上能提高制种结实率与产量,达到增产增收的目的,其中A4处理结实率最高,A3处理产量最高;3)基施“水稻制种宝”能提高相对经济产出,以A3处理的相对经济产出最高,增幅达5.28%。 展开更多
关键词 “水稻制种宝” C两优华占 制种 效果
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Closed-Form Solution for a Circular Nanohole with Surface Effects Under Uniform Heat Flux
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作者 Jieyao Tang Jieyan Zhao +1 位作者 haibing yang Cunfa Gao 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2024年第1期43-52,共10页
This paper investigates the steady-state thermoelastic problem of a circular nanohole embedded in an infinitely large elastic plane subjected to a uniform far-field heat flux.A lowly conductive surface model is used t... This paper investigates the steady-state thermoelastic problem of a circular nanohole embedded in an infinitely large elastic plane subjected to a uniform far-field heat flux.A lowly conductive surface model is used to account for the effects of surface phonon scattering,while the complete Gurtin–Murdoch model is utilized to characterize the effects of surface tension and surface elasticity.The closed-form solution to the temperature and stress field surrounding the hole is derived in the context of complex variable methods.Several numerical examples are presented to analyze the influence of surface effects on thermal stress fields.It is shown that surface effects induce notable increases in normal and shear stresses around the hole.Specifically,all three stress components(hoop,normal,and shear)in the vicinity of the hole exhibit substantial augmentation with increasing surface tension and surface modulus.In particular,it is found that the presence of surface effects amplifies the variation in stress gradients and intensifies stress concentration around the hole. 展开更多
关键词 Circular nanohole Surface effect Thermal stress Heat flux
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Seven Things We Think We Know about Auxin Transport 被引量:29
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作者 Wendy Ann Peer Joshua J. Blakeslee +1 位作者 haibing yang Angus S. Murphy 《Molecular Plant》 SCIE CAS CSCD 2011年第3期487-504,共18页
Polar transport of the phytohormone auxin and the establishment of localized auxin maxima regulate em- bryonic development, stem cell maintenance, root and shoot architecture, and tropic growth responses. The past dec... Polar transport of the phytohormone auxin and the establishment of localized auxin maxima regulate em- bryonic development, stem cell maintenance, root and shoot architecture, and tropic growth responses. The past decade has been marked by dramatic progress in efforts to elucidate the complex mechanisms by which auxin transport regulates plant growth. As the understanding of auxin transport regulation has been increasingly elaborated, it has become clear that this process is involved in almost all plant growth and environmental responses in some way. However, we still lack information about some basic aspects of this fundamental regulatory mechanism. In this review, we present what we know (or what we think we know) and what we do not know about seven auxin-regulated processes. We discuss the role of auxin transport in gravitropism in primary and lateral roots, phototropism, shoot branching, leaf expansion, and venation. We also discuss the auxin reflux/fountain model at the root tip, flavonoid modulation of auxin transport processes, and outstanding aspects of post-translational regulation of auxin transporters. This discussion is not meant to be exhaustive, but highlights areas in which generally held assumptions require more substantive validation. 展开更多
关键词 Auxin transport ABCB AUX1 PIN PHOTOTROPISM GRAVITROPISM fountain model shoot branching leaf expansion VENATION flavonoids.
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An Arabidopsis ABC Transporter Mediates Phosphate Deficiency-Induced Remodeling of Root Architecture by Modulating Iron Homeostasis in Roots 被引量:13
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作者 Jinsong Dong Miguel A. PiSeros +5 位作者 Xiaoxuan Li haibing yang Yu Liu Angus S. Murphy Leon V. Kochian Dong Liu 《Molecular Plant》 SCIE CAS CSCD 2017年第2期244-259,共16页
The remodeling of root architecture is a major developmental response of plants to phosphate (Pi) deficiency and is thought to enhance a plant's ability to forage for the available Pi in topsoil. The underlying mec... The remodeling of root architecture is a major developmental response of plants to phosphate (Pi) deficiency and is thought to enhance a plant's ability to forage for the available Pi in topsoil. The underlying mechanism controlling this response, however, is poorly understood. In this study, we identified an Arabidopsis mutant, hps 10 (hypersensitive to Pi starvation 10), which is morphologically normal under Pi sufficient condition but shows increased inhibition of primary root growth and enhanced production of lateral roots under Pi defi- ciency, hpslO is a previously identified allele (als3-3) of the ALUMINUM SENSITIVE3 (ALS3) gene, which is involved in plant tolerance to aluminum toxicity. Our results show that ALS3 and its interacting protein AtSTAR1 form an ABC transporter complex in the tonoplast. This protein complex mediates a highly electro- genic transport in Xenopus oocytes. Under Pi deficiency, als3 accumulates higher levels of Fe3+ in its roots than the wild type does. In Arabidopsis, LPR1 (LOW PHOSPHATE ROOT1) and LPR2 encode ferroxidases, which when mutated, reduce Fe3+ accumulation in roots and cause root growth to be insensitive to Pi defi- ciency. Here, we provide compelling evidence showing that ALS3 cooperates with LPR1/2 to regulate Pi deficiency-induced remodeling of root architecture by modulating Fe homeostasis in roots. 展开更多
关键词 phosphate deficiency root architecture iron homeostasis ABC transporter ALUMINUM SENSI-TIVE3 AtS TAR1
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