多模态话语分析为法律话语研究提供了一个新视角。在庭审结辩中,控辩律师调用多模态资源呈现证据、论证观点、表达立场,以实现交际意图。本文聚焦于美国弗洛伊德案庭审结辩话语,以马丁等人提出的态度系统及副语言类别为分析框架,借助UAM...多模态话语分析为法律话语研究提供了一个新视角。在庭审结辩中,控辩律师调用多模态资源呈现证据、论证观点、表达立场,以实现交际意图。本文聚焦于美国弗洛伊德案庭审结辩话语,以马丁等人提出的态度系统及副语言类别为分析框架,借助UAM Corpus Tool和Praat软件对庭审中的语言及副语言信息进行质性标注和量化分析,探讨控辩律师结辩话语的多模态表征。研究结果表明,控辩律师使用不同的语言和副语言等多模态资源表达对不同评价对象的态度,由此建构不同的叙事版本,进而以看得见的方式彰显司法正义。展开更多
The complexity of geotechnical engineering and variability in construction circumstances of large extra caissons make the problem of maintaining appropriate sink attitude quite difficult, especially in keeping sink un...The complexity of geotechnical engineering and variability in construction circumstances of large extra caissons make the problem of maintaining appropriate sink attitude quite difficult, especially in keeping sink uniformity and achieving the expected final sink depth. A new construction control method is presented using ∞H theory, considering uncertainties in the mechanics model and external noise in the construction site parameters. The design method of an ∞H controller has consequently been obtained for large extra caissons. Control results using only constructor experiences are compared with simulation results using the ∞ H controller for a practical engineering situation, which indicates that the ∞H controller is successful in maintaining sink uniformity, avoiding sink as well as in achieving the expected final sink depth.展开更多
文摘多模态话语分析为法律话语研究提供了一个新视角。在庭审结辩中,控辩律师调用多模态资源呈现证据、论证观点、表达立场,以实现交际意图。本文聚焦于美国弗洛伊德案庭审结辩话语,以马丁等人提出的态度系统及副语言类别为分析框架,借助UAM Corpus Tool和Praat软件对庭审中的语言及副语言信息进行质性标注和量化分析,探讨控辩律师结辩话语的多模态表征。研究结果表明,控辩律师使用不同的语言和副语言等多模态资源表达对不同评价对象的态度,由此建构不同的叙事版本,进而以看得见的方式彰显司法正义。
文摘The complexity of geotechnical engineering and variability in construction circumstances of large extra caissons make the problem of maintaining appropriate sink attitude quite difficult, especially in keeping sink uniformity and achieving the expected final sink depth. A new construction control method is presented using ∞H theory, considering uncertainties in the mechanics model and external noise in the construction site parameters. The design method of an ∞H controller has consequently been obtained for large extra caissons. Control results using only constructor experiences are compared with simulation results using the ∞ H controller for a practical engineering situation, which indicates that the ∞H controller is successful in maintaining sink uniformity, avoiding sink as well as in achieving the expected final sink depth.