过滤器内部的流场不均导致使用时容易产生局部堵塞,堵塞分布受入口流速、颗粒粒径、流线轨迹等因素的共同影响。该文以计算流体力学-离散元法(computational fluid dynamics-discrete element method,CFD-DEM)耦合模拟不同流量下Y型网...过滤器内部的流场不均导致使用时容易产生局部堵塞,堵塞分布受入口流速、颗粒粒径、流线轨迹等因素的共同影响。该文以计算流体力学-离散元法(computational fluid dynamics-discrete element method,CFD-DEM)耦合模拟不同流量下Y型网式过滤器内部不同粒径的沙粒运动及分布,分析过滤器内部流态对沙粒运动分布的影响并通过试验加以证明。结果表明,滤网两侧的压差占总压差的77%。网面流量呈阶梯分布,最大流量位于出口侧滤网上端,最低流量位于进口侧滤网中心,前者是后者的5.9倍;对于通过滤网的颗粒,入口流速越高,颗粒通过点越集中;对于拦截颗粒,当粒径接近孔径时,颗粒稳定附着在滤网,增加入口流速使颗粒向侧面滤网聚积并产生局部堵塞,粒径远大于孔径时,颗粒在内腔中不停运动,难以稳定附着在滤网;降低入口流速将提高颗粒分布的均匀程度,延长过滤器高效段时间,减少冲洗难度。展开更多
Suppressing jitter noises in a phase locked loop( PLL) is of great importance in order to keep precise and continuous track of global positioning system (GPS)signals characterized by low carrier-to-noise ratio( C...Suppressing jitter noises in a phase locked loop( PLL) is of great importance in order to keep precise and continuous track of global positioning system (GPS)signals characterized by low carrier-to-noise ratio( C/No ). This article proposes and analyzes an improved Kalman-filter-based PLL to process weak carrier signals in GPS software receivers. After reviewing the optimal-bandwidth-based traditional second-order PLL, a Kalman-filter-based estimation algorithm is implemented for the new PLL by decorrelating the model error noises and the measurement noises. Finally,the efficiency of this new Kalman-filter-based PLL is verified by experimental data. Compared to the traditional second-order PLL, this new PLL is in position to make correct estimation of the carrier phase differences and Doppler shifts with less overshoots and noise disturbances and keeps an effective check on the disturbances out of jitter noises in PLL. The results show that during processing normal signals,this improved PLL reduces the standard deviation from 0. 010 69 cycle to 0. 007 63 cycle, and for weak signal processing,the phase jitter range and the Doppler shifts can be controlled within ± 17° and ±5 Hz as against ±25° and + 15 Hz by the traditional PLL.展开更多
文摘过滤器内部的流场不均导致使用时容易产生局部堵塞,堵塞分布受入口流速、颗粒粒径、流线轨迹等因素的共同影响。该文以计算流体力学-离散元法(computational fluid dynamics-discrete element method,CFD-DEM)耦合模拟不同流量下Y型网式过滤器内部不同粒径的沙粒运动及分布,分析过滤器内部流态对沙粒运动分布的影响并通过试验加以证明。结果表明,滤网两侧的压差占总压差的77%。网面流量呈阶梯分布,最大流量位于出口侧滤网上端,最低流量位于进口侧滤网中心,前者是后者的5.9倍;对于通过滤网的颗粒,入口流速越高,颗粒通过点越集中;对于拦截颗粒,当粒径接近孔径时,颗粒稳定附着在滤网,增加入口流速使颗粒向侧面滤网聚积并产生局部堵塞,粒径远大于孔径时,颗粒在内腔中不停运动,难以稳定附着在滤网;降低入口流速将提高颗粒分布的均匀程度,延长过滤器高效段时间,减少冲洗难度。
基金National Natural Science Foundation of China(40671155)National High-tech Research and Development Programof China(2006AA12A108)Research Program of Hong Kong Polytech-nic University(G-U203)
文摘Suppressing jitter noises in a phase locked loop( PLL) is of great importance in order to keep precise and continuous track of global positioning system (GPS)signals characterized by low carrier-to-noise ratio( C/No ). This article proposes and analyzes an improved Kalman-filter-based PLL to process weak carrier signals in GPS software receivers. After reviewing the optimal-bandwidth-based traditional second-order PLL, a Kalman-filter-based estimation algorithm is implemented for the new PLL by decorrelating the model error noises and the measurement noises. Finally,the efficiency of this new Kalman-filter-based PLL is verified by experimental data. Compared to the traditional second-order PLL, this new PLL is in position to make correct estimation of the carrier phase differences and Doppler shifts with less overshoots and noise disturbances and keeps an effective check on the disturbances out of jitter noises in PLL. The results show that during processing normal signals,this improved PLL reduces the standard deviation from 0. 010 69 cycle to 0. 007 63 cycle, and for weak signal processing,the phase jitter range and the Doppler shifts can be controlled within ± 17° and ±5 Hz as against ±25° and + 15 Hz by the traditional PLL.