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Modeling Tracer Flow Characteristics in Different Types of Pores: Visualization and Mathematical Modeling 被引量:1
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作者 Tongjing liu weixia liu +6 位作者 Pengxiang Diwu Gaixing Hu TingXu Yuqi Li Zhenjiang You Runwei Qiao Jia Wang 《Computer Modeling in Engineering & Sciences》 SCIE EI 2020年第6期1205-1222,共18页
Structure of porous media and fluid distribution in rocks can significantly affect the transport characteristics during the process of microscale tracer flow.To clarify the effect of micro heterogeneity on aqueous tra... Structure of porous media and fluid distribution in rocks can significantly affect the transport characteristics during the process of microscale tracer flow.To clarify the effect of micro heterogeneity on aqueous tracer transport,this paper demonstrates microscopic experiments at pore level and proposes an improved mathematical model for tracer transport.The visualization results show a faster tracer movement into movable water than it into bound water,and quicker occupancy in flowing pores than in storage pores caused by the difference of tracer velocity.Moreover,the proposed mathematical model includes the effects of bound water and flowing porosity by applying interstitial flow velocity expression.The new model also distinguishes flowing and storage pores,accounting for different tracer transport mechanisms(dispersion,diffusion and adsorption)in different types of pores.The resulting analytical solution better matches with tracer production data than the standard model.The residual sum of squares(RSS)from the new model is 0.0005,which is 100 times smaller than the RSS from the standard model.The sensitivity analysis indicates that the dispersion coefficient and flowing porosity shows a negative correlation with the tracer breakthrough time and the increasing slope,whereas the superficial velocity and bound water saturation show a positive correlation. 展开更多
关键词 Tracer flow characteristics different types of pores interstitial flow velocity visualization and mathematical modeling tracer concentration prediction model
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Genetic Diversity Analysis of Cherry Tomato Core Collection Based on Genotypic Values
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作者 Ziji liu weixia liu +1 位作者 Yu NIU Yan YANG 《Agricultural Biotechnology》 CAS 2019年第4期35-38,95,共5页
Taking 65 cherry tomato core germplasms as experimental materials,the genetic diversity of seven agronomic traits were analyzed.The correlation between any two of the seven agronomic traits and the genetic relationshi... Taking 65 cherry tomato core germplasms as experimental materials,the genetic diversity of seven agronomic traits were analyzed.The correlation between any two of the seven agronomic traits and the genetic relationships of these germplasms were analyzed based on genotypic values.The genetic diversity indices of the seven agronomic traits were 4.15,4.13,4.16,4.13,4.13,4.13 and 4.01,respectively,showing that the cherry tomato core collection had abundant genetic diversity.The correlation analysis between traits based on genotype effect values showed that leaf length was significantly correlated with leaf width with the correlation coefficient of 0.56.The fruit width was significantly correlated with fruit length with the correlation coefficient of 0.52.The flesh thickness was significantly correlated with fruit length and fruit width with the correlation coefficients of 0.49 and 0.39,respectively.The single fruit weight was significantly correlated with fruit length,fruit width and flesh thickness with the correlation coefficients of 0.44,0.61 and 0.62,respectively.When the genetic distances between core germplasms of cherry tomato were calculated based on the phenotypic values,65 core germplasms of cherry tomato were divided into three groups with the rescaled distance of 10.When the genetic distances between core germplasms of cherry tomato were calculated based on the genotypic values,the 65 core germplasms of cherry tomato were divided into four groups with the rescaled distance of 10.Comparing the 2 clustering results,it could find that genotypic value-based clustering analysis could better clarify the genetic relationship between core germplasms.This study could provide a theoretical basis for the effective utilization of cherry tomato core germplasms. 展开更多
关键词 CHERRY TOMATO Genetic diversity PHENOTYPIC VALUE GENOTYPIC VALUE Correlation Clustering analysis
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Grafting and Seedling Cultivation Technology of Cherry Tomato for Disease Prevention in Hainan
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作者 Ziji liu weixia liu +1 位作者 Yuling QIN Yan YANG 《Plant Diseases and Pests》 CAS 2022年第3期29-30,共2页
In order to reduce the occurrence of soil-borne diseases,such as tomato bacterial wilt and Fusarium wilt,and to improve the yield of cherry tomato in Hainan,the paper had summarized grafting and seedling technology of... In order to reduce the occurrence of soil-borne diseases,such as tomato bacterial wilt and Fusarium wilt,and to improve the yield of cherry tomato in Hainan,the paper had summarized grafting and seedling technology of cherry tomato from the aspects of rootstock selection,rootstock seedling cultivation,scion seedling cultivation,preparation before grafting,grafting method and seedling management after grafting.It was found that the technique could significantly improve the yield and disease resistance of cherry tomato. 展开更多
关键词 Cherry tomato Casing grafting Grafting and seedling cultivation
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PI4Kb, PIPs and BK_(Ca) channel function
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作者 Xiuli Cheng Xiaoqiu Tan +5 位作者 weixia liu Hui Li Li Yan Yan Yang Xiaorong Zeng Jimin Cao 《Science Bulletin》 SCIE EI CAS CSCD 2016年第23期1779-1782,共4页
Large conductance calcium-activated potassium(BKCa)channels are broadly expressed in vascular smooth muscle cells(VSMCs)and play a crucial role in the regulation of vascular tone[1].Activation of BKCachannel by elevat... Large conductance calcium-activated potassium(BKCa)channels are broadly expressed in vascular smooth muscle cells(VSMCs)and play a crucial role in the regulation of vascular tone[1].Activation of BKCachannel by elevation of the[Ca^(2+)]idue to membrane depolarization increases the K^+ conductance of the membrane,and drives the VSMC membrane potential to hyperpolarization,which 展开更多
关键词 钙激活钾通道 血管平滑肌细胞 VSMC
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