LEADER 03354nam 2200601 450 001 9910159445303321 005 20170121153327.0 010 $a9781683180074$belectronic 010 $z9781683180067$bprint 024 7 $a10.4018/978-1-68318-006-7 035 $a(CKB)3710000001018943 035 $a(MiAaPQ)EBC4786619 035 $a(CaBNVSL)gtp00566747 035 $a(OCoLC)968243607 035 $a(IGIG)00147388 035 $a(EXLCZ)993710000001018943 100 $a20170117d2017 fy 0 101 0 $aeng 135 $aurbn||||m|||a 181 $2rdacontent 182 $2rdamedia 183 $2rdacarrier 200 10$aNanofluid technologies and thermal convection techniques /$fby Ramesh Chand 210 1$aHershey, Pennsylvania :$cEngineering Science Reference,$d2017. 210 4$dİ2017 215 $aPDFs (229 pages) $cillustrations 225 1 $aAdvances in Mechatronics and Mechanical Engineering (AMME) Book Series,$x2328-823X 311 $a1-68318-006-2 320 $aIncludes bibliographical references and index. 327 $aThermal convection in a horizontal layer of Maxwellian visco-elastic nanofluid -- Effect of rotation on the onset of thermal convection in a layer of Maxwellian visco-elastic nanofluid -- Thermal convection in a layer of Maxwellian visco-elastic nanofluid in the presence of vertical magnetic field -- Combined effect of rotation and magnetic field on the thermal convection in a layer of Maxwellian visco-elastic nanofluid -- Thermal convection in a layer of Maxwellian visco-elastic nanofluid in a porous medium: Darcy model -- Thermal convection in a layer of Maxwellian visco-elastic nanofluid in a porous medium: Brinkman model -- Effect of variable gravity on the thermal convection in a layer of Maxwellian visco-elastic nanofluid -- Thermal convection in a layer of Maxwellian visco-elastic nanofluid with Hall current -- Effect of internal heat source on the onset of thermal convection in a layer of Maxwellian visco-elastic nanofluid -- Double diffusive convection in a layer of Maxwellian visco-elastic nanofluid -- Double diffusive convection in a layer of Maxwellian visco-elastic nanofluid in a porous medium. 330 3 $a"This book is a pivotal source of information for theoretical perspectives and investigations on the thermal instability of nanofluids and its various effects. Highlighting relevant studies relating to stationary, double diffusive, and oscillatory convection"--Provided by publisher. 410 0$aAdvances in mechatronics and mechanical engineering (AMME) book series. 606 $aNanofluids$xThermal properties 606 $aHeat$xConvection 610 $aDouble diffusive convection 610 $aInternal heat sources 610 $aMagnetic field influences 610 $aMaxwellian visco-elastic fluids 610 $aOscillatory convection 610 $aRotation effects 610 $aStationary convection 610 $aVariable gravity effects 615 0$aNanofluids$xThermal properties. 615 0$aHeat$xConvection. 676 $a620.1/06 700 $aChand$b Ramesh$f1973-$01247824 801 0$bCaBNVSL 801 1$bCaBNVSL 801 2$bCaBNVSL 906 $aBOOK 912 $a9910159445303321 996 $aNanofluid technologies and thermal convection techniques$92892453 997 $aUNINA