شماره ركورد
427928
عنوان مقاله
گرم كردن پلاسما با امواج برنشتاين الكتروني از طريق واگرداني امواج عادي و فراعادي در لايه UHR
عنوان به زبان ديگر
Plasma heating via electron Bernstein wave heating using ordinary and extraodinary mode conversion in UHR layer
پديد آورندگان
پروازيان، اكبر نويسنده دانشگاه صنعتي اصفهان,دانشكده فيزيك; Parvazian, A , حسين پور، مرتضي نويسنده دانشگاه قم,دانشكده علوم; Hosseinpour, M
اطلاعات موجودي
فصلنامه سال 1387
رتبه نشريه
علمي پژوهشي
تعداد صفحه
14
از صفحه
9
تا صفحه
22
چكيده لاتين
Magnetically confined plasma can be heated with high power microwave sources. In spherical torus the electron plasma frequency exeeds the electron cyclotron frequency (EC) and, as a consequence, electromagnetic waves at fundamental and low harmonic EC cannot propagate within the plasma. In contrast, electron Bernstein waves (EBWs) readily propagate in spherical torus plasma and are absorbed strongly at the electron cyclotron resonances. In order to proagate EBWs beyond the upper hybrid resonance (UHR), that surrounds the plasma, the EBWs must convert via one of two processes to either ordinary (O-mode) or extraordinary (X-mode) electromagnetic waves. O-mode and X-mode electromagnetic waves lunched at the plasma edge can convert to the electron Bernstein waves (EBWs) which can propagate without and cut-off into the core of the plasma and damp on electrons. Since the electron Bernstein wave (EBW) has no cut-off limits, it is well suited to heat an over-dense plasma by resonant absorption. An important problem is to calculate mode conversion coefficient that is very sensitive to density. Mode conversion coefficient depends on Budden parameter (rj) and density scale length (Ln ) in upper hybrid resonance (UHR). In Mega Ampere Spherical Tokamak (MAST), the optimized conversion efficiency approached 72.5% when Ln was 4.94 cm and the magnetic field was 0.475 Tesla in the core of the plasma.
سال انتشار
1387
عنوان نشريه
پژوهش فيزيك ايران
عنوان نشريه
پژوهش فيزيك ايران
اطلاعات موجودي
فصلنامه با شماره پیاپی سال 1387
كلمات كليدي
#تست#آزمون###امتحان
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