Books on the topic 'Stirred tanks'

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1

Özcan-Taşkin, N. Gül. On the effects of viscoelasticity in stirred tanks. Birmingham: University of Birmingham, 1993.

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2

Rainer, Schmitz. Circulation time studies in newtonian and non-newtonian fluids in stirred tanks. Birmingham: University of Birmingham, 1996.

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3

Cossor, Graham. Mixing of viscous and non-Newtonian fluids in stirred tanks: A study by laser-Doppler velocimetry. Birmingham: University of Birmingham, 1995.

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4

Drain, Simon Michael. The development of a competing reaction scheme and its application to the study of mixing in stirred tanks. Birmingham: University of Birmingham, 1987.

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5

Verschuren, Iris Lean Marieke. Feed stream mixing in stirred tank reactors. Eindhoven: Technische Universiteit Eindhoven, 2001.

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6

Rodrigues, P. A. L. Feasibility of using immobilised cells in stirred tank fermenters. Manchester: UMIST, 1995.

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7

Kennedy, Mark William. Chlorination of magnesium carbonate in a stirred tank reactor. [s.l: s.n.]., 1996.

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8

Tyagi, Rajesh. Control of pH in a continuous stirred tank reactor (CSTR). Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1993.

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9

Hu, Windy Chiung Wen. Anaerobic digestion of liquid wastewaters from food industry using continuously stirred tank reactors. Birmingham: University of Birmingham, 2001.

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10

Chamsāt, Sētthawat. Rāingān kānwičhai rư̄ang kānʻō̜kbǣp phatthanā læ kānkhayāi sūan patikō̜n chīwaphāp bǣp thangkūan samrap kānsalāi pǣng mansampalang =: Design, development, and scale-up of stirred tank lysis bioreactor for enzymatic hydrolysis of cassava starch. [Chonburi]: Khana Witthayāsāt, Mahāwitthayālai Būraphā, 2006.

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11

Pushpavanam, Subramaniam. Stability results of a continous stirred tank reactor. 1989.

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12

Qi, Hanshi. Cultivation of Laminaria saccharina gametophyte cell cultures in a stirred-tank photobioreactor. 1994.

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13

Mullikin, Ronald K. Cultivation of suspension cultures of Laminaria saccharina (Phaeophyceae) gametophytes in tubular, planar, and stirred tank photobioreactors. 1998.

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14

Ramanan, Sundar. Biomass productivity enhancement of Laminaria saccharina cultures in a stirred-tank bioreactor by batch and fed-batch nutrient delivery. 1996.

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15

Henderson, Kelley. Oxygen mass transfer and shear sensitivity studies during cultivation of Nicotiana tabacum var. Wisconsin 38 in a stirred-tank bioreactor. 1991.

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16

Ho, Chung-Han. Shear sensitivity and oxygen mass transfer studies during cultivation of tobacco cells in a stirred-tank bioreactor of impeller speeds of 100 to 325 rpm. 1994.

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17

Rajeev, S. G. Ideal Fluid Flows. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198805021.003.0004.

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Some solutions of Euler’s equations are found here. The simplest are the steady flows: water flowing out of a tank at a constant rate, the Venturi and Pitot tubes. Another is the static solution of a self-gravitating fluid of variable density (e.g., a star). If the total mass is too large, such a star can collapse (Chandrasekhar limit). If the flow is both irrotational and incompressible, it must satisfy Laplace’s equation. Complex analysismethods can be used to solve for the flow past a cylinder or inside a disk with a stirrer. Joukowski used conformal transformations on the cylinder to find the lift of the wing of an airplane, in the limit of zero viscosity. Waves on the surface of a fluid are studied as another example. The speed of these waves is derived as a function of their wavelength and the depth of the fluid.
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18

Rāingān kānwičhai rư̄ang kānʻō̜kbǣp phatthanā læ kānkhayāi sūan patikō̜n chīwaphāp bǣp thangkūan samrap kānsalāi pǣng mansampalang =: Design, development, and scale-up of stirred tank lysis bioreactor for enzymatic hydrolysis of cassava starch. [Chonburi]: Khana Witthayāsāt, Mahāwitthayālai Būraphā, 2006.

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