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金属散射问题的积分方程区域分解法 被引量:1
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作者 刘倩 董炀 《电子科技》 2013年第10期22-24,共3页
研究了区域分解法在求解金属散射体的积分方程时的应用。积分算法可以精确地求解各种电磁场问题,但因为受限于格林函数,需要求解较为复杂的矩阵。区域分解法是一种迭代算法,把原来较大的求解区域划分成若干个相对独立的子区域,将原问题... 研究了区域分解法在求解金属散射体的积分方程时的应用。积分算法可以精确地求解各种电磁场问题,但因为受限于格林函数,需要求解较为复杂的矩阵。区域分解法是一种迭代算法,把原来较大的求解区域划分成若干个相对独立的子区域,将原问题的求解转化为在各子区域上分别进行求解,并利用某种数据交换条件在子区域之间传递信息,最后得到原电大区域上的解。由于每个子区域相互独立并且单独划分网格,区域分解法更加适合解决多尺度的电磁散射问题。最后通过与商业软件的对比验证了算法的正确性。 展开更多
关键词 积分方程法 区域分解法 多尺度平台
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Relationship of tropical cyclone size change rate with size and intensity over the western North Pacific
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作者 Kexin Chen Guanghua Chen +1 位作者 Chenhong Rao Ziqing Wang 《Atmospheric and Oceanic Science Letters》 CSCD 2021年第3期36-41,共6页
In this study,the relationship of tropical cyclone(TC)size change rate(SCR),within 24 hours,with size,intensity,and intensity change rate(ICR)are explored over the western North Pacific.TC size is defined as the azimu... In this study,the relationship of tropical cyclone(TC)size change rate(SCR),within 24 hours,with size,intensity,and intensity change rate(ICR)are explored over the western North Pacific.TC size is defined as the azimuthally averaged radius of gale-force wind of 17 m s−1(R17)based on the Multiplatform Tropical Cyclone Surface Winds Analysis data.The majority of SCRs are mainly distributed in the range from−20 to 80 km d−1.The correlation coefficients between SCR and size(SCR-R17),intensity,and ICR(SCR-ICR)are−0.43,−0.12,and 0.25,respectively.The sensitivity of the SCR-R17 and SCR-ICR relationships to size,intensity,and evolution stage are further examined.Results show that the SCR-R17 relationship is more sensitive to variations of size and evolution stage than that of intensity.The relationship of SCR-ICR is largely modulated by the evolution stage.The correlation coefficient of SCR-ICR can increase from 0.25 to 0.40 when only considering the lifetime stages concurrently before and after the lifetime maximum size(LMS)and lifetime maximum intensity.This demonstrates that ICR is a potential factor in predicting SCR during these evolution stages.Besides,the TC size expansion(shrinkage)is more likely to occur for TCs with smaller(larger)size and weaker(stronger)intensity.The complexity of size change during a TC's lifetime can be attributed to the fact that shrinkage or expansion could occur both before and after LMS. 展开更多
关键词 Tropical cyclone size change rate Multiplatform Tropical Cyclone Surface Wind Analysis data correlation analysis
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