High homogeneity of the CR (collector ring) dipole magnet for FAIR (Facility for Antiproton and Ion Research) project at GSI is essential.The two optimized and analysis methods are introduced in detail,In order to obt...High homogeneity of the CR (collector ring) dipole magnet for FAIR (Facility for Antiproton and Ion Research) project at GSI is essential.The two optimized and analysis methods are introduced in detail,In order to obtain an ideal integral magnetic field distribution,the complicated end chamfer has been designed.By chamfering the removable pole,the distribution tolerance of high magnetic field is optimized to±2×10^(-4).The method of adding a mirror plane is suitable for the high magnetic field and it doesn't fit the low one.The OPERA is used to optimize the dipole magnetic field.展开更多
放电室磁场的优化设计是离子推力器结构改进设计的关键技术之一,直接影响到推进剂电离效率和整机工作稳定性。针对深空探测等空间轨道任务对20 cm氙离子推力器应用需求,利用电磁体磁感应强度实时可调的优势,获得了给定工作模式下20 cm...放电室磁场的优化设计是离子推力器结构改进设计的关键技术之一,直接影响到推进剂电离效率和整机工作稳定性。针对深空探测等空间轨道任务对20 cm氙离子推力器应用需求,利用电磁体磁感应强度实时可调的优势,获得了给定工作模式下20 cm氙离子推力器放电室磁场最优构型及其磁感应强度的最佳分布。在此基础上,运用等效磁通理论,明确了产生相同磁场构型及其磁感应强度分布的永磁体结构尺寸。将20 cm氙离子推力器放电室磁场优化前后的性能进行对比,结果表明:在不改变整机结构的情况下,放电室磁场优化后推力可提升50%,由40 m N提高到60 m N,比冲提高到3 500 s,效率提高到65%。通过磁场优化,使得20 cm氙离子推力器具备了在40 m N和60 m N双模式工作的能力。研究为高效、稳定工作的离子推力器磁场优化提供方法。展开更多
为了提升兰州空间技术物理研究所研制的一种5 k W霍尔推力器LHT—140的性能,采用ANSOFT软件进行了磁场优化设计,将磁场径向分量的轴向梯度提高了47%,相同励磁激励下放电通道中的磁场强度提高了38%。建立了一个R-Z平面内的二维particle-i...为了提升兰州空间技术物理研究所研制的一种5 k W霍尔推力器LHT—140的性能,采用ANSOFT软件进行了磁场优化设计,将磁场径向分量的轴向梯度提高了47%,相同励磁激励下放电通道中的磁场强度提高了38%。建立了一个R-Z平面内的二维particle-in-cell(PIC)等离子体模型,对磁场优化后推力器的性能进行了仿真分析,预估其在300~800 V放电电压、10~15 mg/s流率范围内,推力提升了9.6%~22.1%,效率提升了8.7%~19.3%。性能验证试验表明磁场优化后在相同放电电压与流率下,性能提升的测试值高于仿真值。展开更多
The optimized design of magnetic field for a cold yoke superconducting solenoid is introduced in this paper. Using some kinds of optimization designs and OPERA,we optimize the main solenoid,cold yoke and compensated w...The optimized design of magnetic field for a cold yoke superconducting solenoid is introduced in this paper. Using some kinds of optimization designs and OPERA,we optimize the main solenoid,cold yoke and compensated winding.Through this design,the requests of the superconducting solenoid are realized.展开更多
文摘High homogeneity of the CR (collector ring) dipole magnet for FAIR (Facility for Antiproton and Ion Research) project at GSI is essential.The two optimized and analysis methods are introduced in detail,In order to obtain an ideal integral magnetic field distribution,the complicated end chamfer has been designed.By chamfering the removable pole,the distribution tolerance of high magnetic field is optimized to±2×10^(-4).The method of adding a mirror plane is suitable for the high magnetic field and it doesn't fit the low one.The OPERA is used to optimize the dipole magnetic field.
文摘放电室磁场的优化设计是离子推力器结构改进设计的关键技术之一,直接影响到推进剂电离效率和整机工作稳定性。针对深空探测等空间轨道任务对20 cm氙离子推力器应用需求,利用电磁体磁感应强度实时可调的优势,获得了给定工作模式下20 cm氙离子推力器放电室磁场最优构型及其磁感应强度的最佳分布。在此基础上,运用等效磁通理论,明确了产生相同磁场构型及其磁感应强度分布的永磁体结构尺寸。将20 cm氙离子推力器放电室磁场优化前后的性能进行对比,结果表明:在不改变整机结构的情况下,放电室磁场优化后推力可提升50%,由40 m N提高到60 m N,比冲提高到3 500 s,效率提高到65%。通过磁场优化,使得20 cm氙离子推力器具备了在40 m N和60 m N双模式工作的能力。研究为高效、稳定工作的离子推力器磁场优化提供方法。
文摘为了提升兰州空间技术物理研究所研制的一种5 k W霍尔推力器LHT—140的性能,采用ANSOFT软件进行了磁场优化设计,将磁场径向分量的轴向梯度提高了47%,相同励磁激励下放电通道中的磁场强度提高了38%。建立了一个R-Z平面内的二维particle-in-cell(PIC)等离子体模型,对磁场优化后推力器的性能进行了仿真分析,预估其在300~800 V放电电压、10~15 mg/s流率范围内,推力提升了9.6%~22.1%,效率提升了8.7%~19.3%。性能验证试验表明磁场优化后在相同放电电压与流率下,性能提升的测试值高于仿真值。
文摘The optimized design of magnetic field for a cold yoke superconducting solenoid is introduced in this paper. Using some kinds of optimization designs and OPERA,we optimize the main solenoid,cold yoke and compensated winding.Through this design,the requests of the superconducting solenoid are realized.