Flames; Their Structure, Radiation and Temperature
Author | : Alfred Gordon Gaydon |
Publisher | : |
Total Pages | : 448 |
Release | : 1970 |
Genre | : Technology & Engineering |
ISBN | : |
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Author | : Alfred Gordon Gaydon |
Publisher | : |
Total Pages | : 448 |
Release | : 1970 |
Genre | : Technology & Engineering |
ISBN | : |
Author | : B. Smith |
Publisher | : Springer Science & Business Media |
Total Pages | : 490 |
Release | : 2013-11-11 |
Genre | : Science |
ISBN | : 1475708602 |
Analytical flame spectroscopy is a rich and growing disci pline, rooted in the broad fields of physics and chemistry. Its applications abound not only in these large areas, but also thrive in the geosciences, materials science, and clinical and biochemical analysis. As an inevitable corollary of the field's growth, the scientist seeking to develop a fluent expertise has been forced to assimilate and master a rapidly increasing quantity of information. Our guiding hope in creating the present work has therefore been to provide the investigator with a single reference source for nearly all the material ever likely to be required in the daily conduct of basic or applied research. Flame spectroscopy is not a new analytical field. It has seen at least three major eras, in each of which much new information was developed - the Bunsen-Kirchhoff years, the Beckman D. U. years, and finally the atomic absorption years. In the Bunsen-Kirchhoff era, several new elements were discovered. During the Beckman years - nearly all the early flame emission data were taken on modified Beckman D. U. spectrometers - trace metal analysis for the alkaline metals and for many alkaline earth elements reached a new high (low?) - the parts per million level. More recently, trace metal analysis has in general achieved a new maturity with the advent of atomic absorption analysis, which was co-discovered by C. Th. J. Alkemade and Alan Walsh in 1955.
Author | : United States. Wright Air Development Division |
Publisher | : |
Total Pages | : 1050 |
Release | : 1960 |
Genre | : Aeronautics |
ISBN | : |
Author | : J.F. Griffiths |
Publisher | : Routledge |
Total Pages | : 334 |
Release | : 2019-01-22 |
Genre | : Science |
ISBN | : 1351448420 |
An introduction for postgraduate and undergraduate students to the chemical and physical principles of flame and combustion phenomena. This book should be of interest to undergraduate/postgraduate chemists; chemical engineers; undergraduate/postgraduate mechanical engineers and environmental scientists; and industrial combustion technologists.
Author | : R.E. Hayes |
Publisher | : Routledge |
Total Pages | : 690 |
Release | : 2021-10-25 |
Genre | : Science |
ISBN | : 1351437216 |
In a clear and concise manner, this book explains how to apply concepts in chemical reaction engineering and transport phenomena to the design of catalytic combustion systems. Although there are many textbooks on the subject of chemical reaction engineering, catalytic combustion is mentioned either only briefly or not at all. The authors have chosen three examples where catalytic combustion is utilized as a primary combustion process and natural gas is used as a fuel - stationary gas turbines, process fluid heaters, and radiant heaters; these cover much of the area where research is currently most active. In each of these there are clear environmental benefits to be gained illustrating catalytic combustion as a "cleaner primary combustion process" . The dominant heat transfer processes in each of the applications are different, as are the support systems, flow geometrics and operating conditions.
Author | : Kozo Saito |
Publisher | : Springer Science & Business Media |
Total Pages | : 529 |
Release | : 2008-08-20 |
Genre | : Technology & Engineering |
ISBN | : 1402086822 |
Scale modeling can play an important role in R&D. When engineers receive some ideas in new product development, they can test how the new design looks by bui- ing scale models and they can get an actual feeling with the prototype through their imagination. Professor Emori often said: “When children play with a toy airplane, their mind is wondering about the prototype airplane which they haven’t ridden. ” Children can use the scale model airplane as a means to enter into an imagi- tive world of wonder by testing in their own way how the actual airplane might function, how the actual airplane can maneuver aerodynamically, what might be the actual sound of a jet engine, how to safely land the actual airplane, and so on. This imagination that scale models can provide for children will help them later develop professional intuition. Physical scale models can never be entirely succe- fully replaced by computer screens where virtual models are displayed and fancy functions are demonstrated. Not only children but also adults can learn things by actually touching things only offered by physical models, helping all of us develop imagination and feeling eventually leading toward Kufu. Einstein’s famous “thought experiments [11],” which helped him to restructure modern physics may possibly and effectively be taught by letting researchers play with scale models!? References 1. I. Emori, K. Saito, and K. Sekimoto, Mokei Jikken no Riron to Ouyou (Scale Models in Engineering: Its Theory and Application), Gihodo, Tokyo, Third Edition, 2000.