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Mesoscopic analysis of the utilization of hardening model for a description of softening behavior based on disturbed state concept theory 被引量:3
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作者 Jian-ye ZHENG an-li wu 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2008年第9期1167-1175,共9页
Mesoscopic characteristics of a clayey soil specimen subjected to macroscopic loading are examined using a medi- cal-use computerized tomography (CT) instrument. Disturbed state concept (DSC) theory is based on the ut... Mesoscopic characteristics of a clayey soil specimen subjected to macroscopic loading are examined using a medi- cal-use computerized tomography (CT) instrument. Disturbed state concept (DSC) theory is based on the utilization of the hard- ening model. DSC indirectly describes material behavior by claiming that the actual response of the material is expressed in terms of the relative intact (RI) response and the fully adjusted (FA) response. The occurrence of mesoscopic structural changes of material has similarities with the occurrence of a macroscopic response of the material under loadings. In general, the relative changing value of a softening material is three to five times more than that of a hardening material. Whether special zones exist or not in a specimen cross section does not affect the following conclusion: hardening material and softening material show me- chanical differences with CT statistical indices values prominently changing, and the change is related to the superposing of a disturbance factor. A new disturbance factor evolution function is proposed. Thus, mesoscopic statistical indices are introduced to describe macroscopic behavior through the new evolution function. An application of the new evolution function proves the effectiveness of the amalgamation of a macroscopic and a mesoscopic experimental phenomenon measurement methods. 展开更多
关键词 组织模型 岩体力学 干扰状态 计算机模型
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Construction of a chromosome-level genome assembly for genome-wide identification of growth-related quantitative trait loci in Sinocyclocheilus grahami(Cypriniformes,Cyprinidae)
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作者 Yan-Hui Yin Xin-Hui Zhang +12 位作者 Xiao-Ai Wang Rui-Han Li Yuan-Wei Zhang Xin-Xin Shan Xin-Xin You Xin-Di Huang an-li wu Mo Wang Xiao-Fu Pan Chao Bian Wan-Sheng Jiang Qiong Shi Jun-Xing Yang 《Zoological Research》 SCIE CAS CSCD 2021年第3期262-266,共5页
The Dianchi golden-line barbel,Sinocyclocheilus grahami(Regan,1904),is one of the“Four Famous Fishes”of Yunnan Province,China.Given its economic value,this species has been artificially bred successfully since 2007,... The Dianchi golden-line barbel,Sinocyclocheilus grahami(Regan,1904),is one of the“Four Famous Fishes”of Yunnan Province,China.Given its economic value,this species has been artificially bred successfully since 2007,with a nationally selected breed(“S.grahami,Bayou No.1”)certified in 2018.For the future utilization of this species,its growth rate,disease resistance,and wild adaptability need to be improved,which could be achieved with the help of molecular markerassisted selection(MAS).In the current study,we constructed the first chromosome-level genome of S.grahami,assembled 48 pseudo-chromosomes,and obtained a genome size of 1.49 Gb.We also performed QTL-seq analysis of S.grahami using the highest and lowest bulks(i.e.,largest and smallest size)in both a sibling and random population.We screened two quantitative trait loci(QTLs)(Chr3,14.9-39.1 Mb and Chr17,4.1-27.4 Mb)as major growth-related locations.Several candidate genes(e.g.,map2k5,stat1,phf21a,sox6,and smad6)were also identified,with functions related to growth,such as cell differentiation,neuronal development,skeletal muscle development,chondrogenesis,and immunity.These results built a solid foundation for in-depth MAS studies on the growth traits of S.grahami. 展开更多
关键词 smallest TRAIT Sino
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