By H. C. Reader (auth.), Professor Dr. Monika Willert-Porada (eds.)
Advances in Microwave and Radio Frequency Processing offers leading edge studies in addition to technical papers in accordance with contributions provided on the eighth foreign convention on Microwave and excessive Frequency Heating, September 3-7, 2001 on the college of Bayreuth, Germany.
Recent functions of microwave and high-frequency radiation within the box of fabrics processing, chemical synthesis, foodstuff processing and within the biomedical region are offered. The booklet additionally covers basics of subject radiation interplay, modeling of techniques, improvement, dimension options in addition to present rules for commercial functions of microwave and radio frequency heating. it's a beneficial instrument not just for experts during this quarter but additionally for researchers from universities and industries, who're drawn to getting into this interdisciplinary box of study and improvement.
Read or Download Advances in Microwave and Radio Frequency Processing: Report from the 8th International Conference on Microwave and High Frequency Heating held in Bayreuth, Germany, September 3–7, 2001 PDF
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Additional resources for Advances in Microwave and Radio Frequency Processing: Report from the 8th International Conference on Microwave and High Frequency Heating held in Bayreuth, Germany, September 3–7, 2001
Design Guideliness for Applicators Used in The Microwave Heating 37 For a small sample in the cross-applicator feed from four ports the electromagnetic power that will be transformed into thermal energy will be small, although the loss factor is high. Therefore, a major portion of the energy will be transmitted to the generators, causing a serious problem with respect to the lifetime of the hardware besides the poor energy efficiency of such a process. Fig. 7. Electric field amplitude inside the sample for a cross applicator with 120º and 135° phase shift between its arms.
Gimeno, “Efficient modal analysis of corrugated chokes for microwave heating systems”, 7th International Conference on Microwave and High Frequency Heating, Valencia (Spain), pp. 27-30, September 1999.  P. E. M. Catalá-Civera, N. Chouaib, M. Guglielmi, and B. Gimeno, “Analysis, design and experimental verification of microwave filters for safety issues in open-ended waveguide systems“, IEEE Transactions on Microwave Theory and Techniques, Vol. 48, No. 11, pp. 2133-2140, November 2000. Microwave High-Power Four Post Auto-Matching System Pedro Plaza, Antoni J.
The amplitude of the electric field ranges between the values given in the figure. Fig. 8. Electric field amplitude inside the sample for a cross applicator with 180º phase shift between its arms. 51 V/m. Therefore, a single fed applicator should be favored, with some additional measures to improve the homogeneity of the electric field distribution, as shown in Figure 9. 58 V/m Fig. 9. Optimised single fed applicator for high loss materials. 58 V/m. Conclusions Microwave heating of high loss materials is a quite complex task, because of the limited electrical field uniformity within the material to be heated.