Paper |
Title |
Page |
MOPWA069 |
Upgrades on a Scalable Software Package for Large Scale Beam Dynamic Simulations |
282 |
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- X.T. Dong, K. Du, J. Xu, R. Zhao
IS, Beijing, People's Republic of China
- Y. He, Z.J. Wang
IMP/CAS, Lanzhou, People's Republic of China
- C. Li, Q. Qin, Y.L. Zhao
IHEP, Beijing, People's Republic of China
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Large-scale particle tracking is important for precise design and optimization of the linear accelerator. In this paper a parallel software recently developed for beam dynamics simulation has been benchmarked. The software is based on Particle-In-Cell method, and calculates space charge field by an efficient three-dimension parallel fast Fourier transform method. It uses domain decomposition and MPI library for parallelization. The characteristics of this software are optimized software structure and suitable for modern supercomputers. Several standard accelerating devices have been used to compare the simulation results with other beam dynamics software. They have been run on several different platforms, such as INSPUR cluster at RDCPS, and SHENGTENG7000 at IMPCAS. At first, some simulation results for RFQ with large number of particles will be shown.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-IPAC2015-MOPWA069
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THPF062 |
CADS 650 MHz β=0.63 Elliptical Cavity Study |
3836 |
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- L.J. Wen, Y. He, Y.M. Li, S.H. Zhang
IMP/CAS, Lanzhou, People's Republic of China
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The China Accelerator Driven Sub-critical System (CADS) is a high intensity proton facility to dispose of nuclear waste and generate electric power. CADS is based on 1.5 GeV, 10mA CW superconducting (SC) linac as a driver. The high-energy section of the linac is composed of two families of SC elliptical cavities which are designed for the geometrical beta 0.63 and 0.82. In this paper, the 650 MHz β=0.63 SC elliptical cavity was studied, including cavity optimization, multipacting, high order modes (HOM) and generator RF power calculation.
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DOI • |
reference for this paper
※ https://doi.org/10.18429/JACoW-IPAC2015-THPF062
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※ Text/Word,
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