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20篇 您的检索式:作者名="Kalaiselvam"
    题名 作者 年代 出处 被引量
1lpaon and thermal characteristics of CuO-oleic acid nanofluids as a phase change material显示文摘S Harikrishnan S Kalaiselvam 2012Ttmrmochimica Acta2012,533,4:1
2Preparation and thermal characteristics of CuO-oleic acid nanofluids as a phase change material显示文摘Harikrishnan S Kalaiselvam S 2012ThermochimicaActa2012,533,:1
3Preparation and thermal characteristics of CuO-oleic acid nanofluids as a phase change material显示文摘HARIKRISHNAN S KALAISELVAM S 2012Thermochimica Acta2012,533,:1
4Micro-tribo- mechanical properties of nanocrystalline TiN thin films for small scale device applications 显示文摘Dinesh Kumara D Kumarc N Kalaiselvam S 2015Tribology International2015,88,:1
5Production of chitosan from endolichenic fungi isolated from mangrove environment and its antagonistic activity显示文摘Objective:To screen the chitosan producing ability of endolichenic fungi and its antibacterial activity.Methods:Lichen collected from mangroves was screened for endophytes and the chitosan producing ability of endolichenic fungi by submerged fermentation was also determined.Antibacterial activity was carried out against different pathogens.Results:Totally4 different groups of fungi were isolated from the lichen Roccella montagnei.Among the four genera,Aspergillus niger(A.niger)is potential to produce chitosan(1.3 g/L)on the twelfth day of incubation.Glucose plays an important role in the pnjductivity of chitosan and the yield was maximum at 10%(1.93 g/L).Antibacterial activity revealed that Vibrio cholerae was sensitive to chitosan followed by Escherichia coli.Conclusions:In conclusion,our findings suggest that A.niger is a potential candidate to produce more chitosan than the other strains and glucose plays an important role in the production of chitosan which proves to have a good antibacterial activity.Logesh AR Thillaimaharani KA Sharmila K Kalaiselvam M Raffi SM 2012Asian Pacific Journal of Tropical Biomedicine2012,2,2:1
6Preparation and thermal characteristics of CuO-oleic acid nanofluids as a phase change material显示文摘Harik_rishnan S Kalaiselvam S 2012ThermochimicaActa2012,533,:1
7Numerical investigation of heat transfer and pressure drop charac- teristics of tube -fin heat exchangers in ice slurry HVAG, system 显示文摘Kalaiselvam S Karthik P Ranjit Prakash S 2009Applied Thermal Engineering2009,29,89:1
8Phase Change Characteristic Study of Spherical PCMS in Solar Energy Storage 显示文摘M Veerappan S Kalaiselvam S Iniyan 2009Solar Energy2009,83,8:1
9Taxol pro ducing mangrove endophytic fungi Fusarium oxyspo- rum from Rhizophora annamalayana显示文摘Elavarasi A Rathna G S Kalaiselvam M 2012Asian Pacific Journal of Tropical Biomedicine2012,2,2:1
10Numerical investigation of heat transfer and pressure drop charac- teristics of tube - fin heat exchangers in ice slurry HVAC system 显示文摘Kalaiselvam S Karthik P Ranjit Prakash S 2009Applied Thermal Engineering2009,29,:1
11Preparation and Characterization of Sub-micron Spherical Particles of A12 O3 , SiO2 and Mullite显示文摘Mumgavel P Kalaiselvam M Renganathan M K 1998Materials Chemistry and Physics1998,53,:1
12Sustainable thermal energy storage technologies for buildings:A review 显示文摘Parameshewaran R Kalaiselvam S Harikrishanan S 2012Renewable and Sustainable Energy Reviews2012,16,5:1
13Sustainable thermal energy storage technologies for buildings:A review显示文摘PARAMESHWARAN R KALAISELVAM S HARIKRISHNAN S 0,,05:1
14Energy efficient PCM-based variable air volume air conditioning system for modern buildings显示文摘Parameshwaran R Harikrishnan S Kalaiselvam S 2010Energy and Buildings2010,42,8:1
15Thermal energy storage behavior of composite using hybrid nanomaterials as PCM for solar heating systems显示文摘Harikrishnan S Deepak K Kalaiselvam S 2014Journal of Thermal Analysis & Calo- rimetry2014,115,2:1
16Taxol producing ma- grove endophytie fungi Fusarium oxysporum from Rhizophora an- namalayana显示文摘Elavarasi A Rathna G S Kalaiselvam M 2012Asian Pae Trop Biomed2012,2,2:1
17Sub-micrometre spherical particles of TiO2,ZrO2 and PZT by nebulized spray pyrolysis of metal-organic precursors显示文摘Murugavel P Kalaiselvam M Rao C N R 1997Journal of Materials Chemistry1997,7,:1
18Preparation and thermal characteristics of CuO-oleic acid nanofluids as a phase change material 显示文摘Harikrishnan S Kalaiselvam S 2012Thermochimica Acta2012,533,:1
19Anti-dermatophytic activity of marine sponge,Sigmadocia carnosa(Dendy)on clinically isolated fungi显示文摘Objective:To screen the anti-fungal effects and find out the active metabolites from sponge, Sigmadocia carnosa(S.carnosa) against four dermatophytic fungi.Methods:The methanol,ethyl acetate and acetone extract of marine sponge,S.carnosa was examined against Trichaphyton mentagrophytes(T.mentagrophytes),Trichophyton rubrum(T.rubrum),Epidermophyton floccosum(E.floccosum) and Microsporum gypseum(M.gypseum) and qualitative analysed to find out the active molecules.Results:The methanol extract of sponge was expressed significant activity than ethyl acetate and acetone.The minimum inhibitory concentration(MIC) of methanol extract of sponge that resulted in complete growth inhibition of T.mentagrophytes,T.rubrum, E.floccosum and M.gypseum were found to 125,250,250 and 250 μg/mL respectively.But, 100%inhibition of fungal spore germination was observed in T.mentagrophytes at 500 μg/mL concentration followed by T.rubrum,E.floccosum and At.gypseum at 1000 μg/mL concentration. Other two extracts showed weak anti spore germination activity against the tested dermatophyte fungi.Methanol extracts showed presence of terpenoids,steroids,alkaloids,saponins and glycosides.Conclusion:Based on the literature,this is the first study which has conducted to inhibit the growth and spore germination of dermatophytic fungi with S.carnosa.Further research also needs to purify and characterize the secondary metabolites from the sponge,5.carnosa for the valuable source of novel substances for future drug discovery.NB Dhayanithi TT Ajith Kumar M Kalaiselvam T Balasubramanian N Sivakumar 2012Asian Pacific Journal of Tropical Biomedicine2012,2,8:0
20Experimental investigation of anodized/spray pyrolysed nanoporous structure on heat transfer augmentation显示文摘This paper analyzes the effects of nanoporous surface on heat transfer temperaments of assorted thermal conductingmaterials. A phenomenal proposal of wielding the surface roughness to ameliorate the heat transfer ratehas been discovered. The maximum increase of heat transfer rate procured by nanoporous layers is 133.3% higherthan the polished bare metals of surface roughness 0.2μm. This plays an imperative role in designing compact refrigerationsystems, chemical and thermal power plants. Experimental results picture a formidable upswing of58.3% heat transfer in chemically etched metals of surface roughness 3 μm, 133.3% in nanoporous surface of porosity75-95 nm formed by electrochemical anodization, and porosity of 40-50 nm formed by spray pyrolysis increasesthe heat transfer by 130%. Effects of porosity, flow velocity and scaling on the energy transfer are alsoscrutinized. This paper also analyzes the multifarious modes of nanoporous fabrication, to contrive both prodigiousand provident system.Kalaiselvam S. Gugan M.S. Kuraloviyan E. Meganathan R. NiruthiyaPriyan A. Swaminathan M.R. 2009Journal of Thermal Science2009,18,4:0
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