Aerosol Measurement: Principles, Techniques, and by Pramod Kulkarni, Paul A. Baron, Klaus Willeke

By Pramod Kulkarni, Paul A. Baron, Klaus Willeke
Aerosol size: rules, recommendations, and purposes 3rd variation is the main specific therapy on hand of the most recent aerosol dimension equipment. Drawing at the knowledge of diverse specialist participants; it offers an excellent snatch of size basics and practices a wide selection of aerosol applications.
This re-creation is up to date to handle new and constructing functions of aerosol size, together with functions in environmental future health, atmospheric technological know-how, weather swap, pollution, public health and wellbeing, nanotechnology, particle and powder expertise, pharmaceutical examine and improvement, fresh room know-how (integrated circuit manufacture), and nuclear waste management.
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Additional info for Aerosol Measurement: Principles, Techniques, and Applications
Example text
Roy. Soc. A. 307: 37 –53. 30 FUNDAMENTALS OF SINGLE PARTICLE TRANSPORT Mercer, T. T. 1973. Aerosol Technology in Hazard Evaluation. New York: Academic. Rader, D. J. 1990. Momentum slip correction factor for small particles in nine common gases. J. Aerosol Sci. 21: 161– 168. Sartor, J. , and C. E. Abbott. 1975. Prediction and measurement of the accelerated motion of water drops in air. J. Appl. Meteor. 14(2): 232 –239. Schlichting, H. 1979. Boundary-Layer Theory. New York: McGraw Hill. Tsai, C. , and D.
And R. S. Srivastava. 1968. Motion of a fluid in a curved tube. Proc. Roy. Soc. A. 307: 37 –53. 30 FUNDAMENTALS OF SINGLE PARTICLE TRANSPORT Mercer, T. T. 1973. Aerosol Technology in Hazard Evaluation. New York: Academic. Rader, D. J. 1990. Momentum slip correction factor for small particles in nine common gases. J. Aerosol Sci. 21: 161– 168. Sartor, J. , and C. E. Abbott. 1975. Prediction and measurement of the accelerated motion of water drops in air. J. Appl. Meteor. 14(2): 232 –239. Schlichting, H.
8 Flow Through Bends, Constrictions, and Expansions There is a wide variety of flow situations for which empirical or experimentally verified theoretical solutions exist. For instance, when a gas passing through a cylindrical tube under laminar flow conditions negotiates a 908 bend, the cylindrical symmetry of the flow pattern in the tube is reduced to a plane of symmetry. Thus, the flow symmetry must also be reduced. Two circulation patterns, sometimes described as secondary flow to differentiate them from the primary flow along the tube axis, are set up on either side of the plane of the bend as shown in Figure 2-1.