|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Constructal design progress for eight types of heat sinks显示文摘This review paper summarizes constructal design progress performed by the authors for eight types of heat sinks with ten performance indexes being taken as the optimization objectives,respectively,by combining the methods of theoretical analysis and numerical calculation.The eight types of heat sinks are uniform height rectangular fin heat sink,non-uniform height rectangular fin heat sink,inline cylindrical pin-fin heat sink(ICPHS),plate single-row pin fin heat sink(PSRPHS),plate inline pin fin heat sink(PIPHS),plate staggered pin fin heat sink(PSPHS),single-layered microchannel heat sink(SLMCHS)with rectangular cross sections and double-layered microchannel heat sink(DLMCHS)with rectangular cross sections,respectively.And the ten performance indexes are heat transfer rate maximization,maximum thermal resistance minimization,minimization of equivalent thermal resistance which is defined based on the entransy dissipation rate(equivalent thermal resistance for short),field synergy number maximization,entropy generation rate minimization,operation cost minimization,thermo-economic function value minimization,pressure drop minimization,enhanced heat transfer factor maximization and efficiency evaluation criterion number maximization,respectively.The optimal constructs of the eight types of heat sinks with different constraints and based on the different optimization objectives are compared with each other.The results indicated that the optimal constructs mostly are different based on different optimization objectives under the same boundary condition.The optimization objective should be suitable chosen based on the focus when the constructal design for one heat sink is performed.The results obtained herein have some important theoretical significances and application values,and can provide scientific bases and theoretical guidelines for the thermal design of real heat sinks and their applications. | CHEN LinGen YANG AiBo FENG HuiJun GE YanLin XIA ShaoJun | 2020 | Science China(Technological Sciences)2020,63,6: | 25 |
| 2 | The optimal configuration of reciprocating engine based on maximum entransy loss显示文摘A class of two-heat-reservoir heat engine model with heat leakage,finite heat capacity high-temperature source and infinite heat capacity low-temperature heat sink,is researched with the finite-time thermodynamic theory and the entransy theory.The optimal configuration based on the minimum entropy generation and the maximum entransy loss under the given cycle is searched,which are compared with the optimal configuration based on the maximum output work,and all the heat transfer in the model is assumed to obey the Newton’s law.The results show that,for the infinite heat capacity high-temperature source,the optimal configuration does not change whether heat leakage exists or not;however,for the finite hightemperature reservoir,the optimal configuration is different among which based on the minimum entropy generation,the maximum entransy loss,and the maximum output work when the heat leakage exists. | Aibo Yang Lingen Chen Shaojun Xia Fengrui Sun | 2014 | Chinese Science Bulletin2014,59,17: | 14 |
| 3 | Determination of trichothecenes A (T-2 toxin, HT-2 toxin, and diacetoxyscirpenol) in the tissues of broilers using liquid chromatography coupled to tandem mass spectrometry显示文摘 | Lingchen Yang Zhiyong Zhao Aibo Wu Yifeng Deng Zhenlei Zhou Jianpeng Zhang Jiafa Hou | 2013 | Journal of Chromatography B2013,,: | 1 |
| 4 | Quantitative assessment of risk associated with dietary intake of mycotoxin ochratoxin A on the adult inhabitants in Shanghai city of P.R. China显示文摘 | Zheng Han Dongxia Nie Xianli Yang Jianhua Wang Shaojie Peng Aibo Wu | 2013 | Food Control2013,,2: | 1 |
| 5 | The Defense Effect of ABA against Turnip crinkle virus (TCV)显示文摘[Objective] The paper was to understand whether abscisic acid (ABA) participates the defense effect of hosts against Turnip crinkle virus (TCV). [Method] By external application of ABA and using the corresponding mutants, TCV coat protein levels of various plants were detected by western-blot, and the expression of defense-related genes was analyzed by RT-PCR. [Result] After external application of SA, JA, ET and ABA, only SA and ABA could significantly inhibit TCV accumulation. In arabidopsis-TCV interaction system, SA and ABA had antagonistic effect with each other, the defense effect against TCV induced by ABA was independent on SA pathway. [Conclusion] The plants could activate distinct signal pathways to adjust the defense of hosts against virus. | Hui YANG Ji HUANG Dongbo MIN Aibo YANG | 2012 | Plant Diseases and Pests2012,3,2: | 0 |
| 6 | MicroRNA regulates the toxicological mechanism of four mycotoxins in vivo and in vitro显示文摘Mycotoxins can cause body poisoning and induce carcinogenesis,often with a high mortality rate.Therefore,it is of great significance to seek new targets that indicate mycotoxin activity and to diagnose and intervene in mycotoxin-induced diseases in their early stages.MicroRNAs(miRNAs)are physiological regulators whose dysregulation is closely related to the development of diseases.They are thus important markers for the occurrence and development of diseases.In this review,consideration is given to the toxicological mechanisms associated with four major mycotoxins(ochratoxin A,aflatoxin B1,deoxynivalenol,and zearalenone).The roles that miRNAs play in these mechanisms and the interactions between them and their target genes are explained,and summarize the important role of histone modifications in their toxicity.As a result,the ways that miRNAs are regulated in the pathogenicity signaling pathways are revealed which highlights the roles played by miRNAs in preventing and controlling the harmful effects of the mycotoxins.It is hoped that this review will provide a theoretical basis for the prevention and control of the damage caused by these mycotoxins. | Jia Chen Shuhua Yang Peng Li Aibo Wu Eugenie Nepovimova Miao Long Wenda Wu Kamil Kuca | 2022 | Journal of Animal Science and Biotechnology2022,13,4: | 0 |