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Institution

China Three Gorges University

EducationYichang, China
About: China Three Gorges University is a education organization based out in Yichang, China. It is known for research contribution in the topics: Catalysis & Landslide. The organization has 11161 authors who have published 8011 publications receiving 82224 citations. The organization is also known as: Sanxia Daxue.


Papers
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Journal ArticleDOI
TL;DR: In this paper, a so-called "sin 1 − 2" inequality is proved for any elasto-plastic material satisfying Mohr-Coulomb's yield criterion, and a robust numerical solution for the initial value problem is given in conjunction with the necessary and sufficient condition ensuring the convergence of solution.
Abstract: SUMMARY The paper deals with two essential and related closely processes involved in the finite element slope stability analysis in two-dimensional problems, i.e. computation of the factors of safety (FOS) and location of the critical slide surfaces. A so-called – inequality, sin 1 − 2 is proved for any elasto-plastic material satisfying Mohr–Coulomb’s yield criterion. In order to obtain an FOS of high precision with less calculation and a proper distribution of plastic zones in the critical equilibrium state, it is stated that the Poisson’s ratio should be adjusted according to the principle that the – inequality always holds as reducing the strength parameters c and . While locating the critical slide surface represented by the critical slide line (CSL) under the plane strain condition, an initial value problem of a system of ordinary differential equations defining the CSL is formulated. A robust numerical solution for the initial value problem based on the predictor–corrector method is given in conjunction with the necessary and sufficient condition ensuring the convergence of solution. A simple example, the kinematic solution of which is available, and a challenging example from a hydraulic project in construction are analysed to demonstrate the effectiveness of the proposed procedures. Copyright 2005 John Wiley & Sons, Ltd.

205 citations

Journal ArticleDOI
TL;DR: In this paper, a class of high-performance composites in which auxetic lattice structures are used as reinforcements and the nearly incompressible soft material is employed as the matrix are reported.

204 citations

Journal ArticleDOI
TL;DR: A conceptual model is proposed for a management strategy to control phytoplankton blooms in tributary bays via controlled releases from Three Gorges Reservoir.

203 citations

Journal ArticleDOI
TL;DR: This review covers the source, chemistry and bioactivities of natural lignans, and highlights the total syntheses of some lignan motifs and asymmetric synthese of their motifs.

201 citations

Journal ArticleDOI
TL;DR: This review focuses on how ROS/RNS are produced and mediate signaling in CNS and how Trx and GSH systems regulate redox signaling by catalyzing reversible thiol modifications, and the effects of certain small molecules that target thiol-based signaling pathways in the CNS.
Abstract: Significance: The thioredoxin (Trx) and glutathione (GSH) systems play important roles in maintaining the redox balance in the brain, a tissue that is prone to oxidative stress due to its high-energy demand. These two disulfide reductase systems are active in various areas of the brain and are considered to be critical antioxidant systems in the central nervous system (CNS). Various neuronal disorders have been characterized to have imbalanced redox homeostasis. Recent Advances: In addition to their detrimental effects, recent studies have highlighted that reactive oxygen species/reactive nitrogen species (ROS/RNS) act as critical signaling molecules by modifying thiols in proteins. The Trx and GSH systems, which reversibly regulate thiol modifications, regulate redox signaling involved in various biological events in the CNS. Critical Issues: In this review, we focus on the following: (i) how ROS/RNS are produced and mediate signaling in CNS; (ii) how Trx and GSH systems regulate redox signaling...

201 citations


Authors

Showing all 11222 results

NameH-indexPapersCitations
Shu Li136100178390
Yu Huang136149289209
Jian Zhang107306469715
Tao Li102248360947
Jian Chen96171852917
Jing Zhang95127142163
Qichun Zhang9454028367
Bin Li92175542835
Xianhui Bu8729020927
Dawei Wang8593441226
Guangshan Zhu7736921281
Fei Xu7174324009
Jian Zhang7031714802
Ying Wu7048922952
Chao Zhang6933123555
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202333
202285
2021997
2020900
2019754
2018571