期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
晋语河北阳原县三马坊乡方言的子尾与子变音
1
作者 王馨璐 赵彤 《语文研究》 CSSCI 北大核心 2023年第3期7-14,共8页
晋语河北省阳原县三马坊乡方言存在子尾和子变音。该地老、中、青三代均使用子尾[u■],中年人还同时使用子变音。中年人的子变音属于单纯长音型,可以与子尾自由变读,应该是子尾的音段部分消失、超音段部分保留直接形成的,并未经历拼合... 晋语河北省阳原县三马坊乡方言存在子尾和子变音。该地老、中、青三代均使用子尾[u■],中年人还同时使用子变音。中年人的子变音属于单纯长音型,可以与子尾自由变读,应该是子尾的音段部分消失、超音段部分保留直接形成的,并未经历拼合型子变音的阶段。老年、青年两代人并未接受中年人的变音形式,均仅使用子尾。子尾[u■]应该来自u类后缀,这为判断u类、■类两类子尾同源提供了新的证据。子尾与子变音形式除了用作名词标记外,最显著的语法功能是与儿化形式或“重叠+儿化”形式构成一定的语义对立。 展开更多
关键词 晋语 阳原方言 子变音
原文传递
浦城县观前、临江方言的子尾、子变音和小称变调 被引量:4
2
作者 秋谷裕幸 《语言研究集刊》 CSSCI 2015年第1期254-268 359,共16页
福建省浦城县观前方言和临江方言都属于闽语闽北区方言。和别的闽北区方言一样,这两个方言也常用名词后缀"子"。而在这两个方言中,"词干+子"结构开始进一步发展,正在形成"子变音"和"小称变调"... 福建省浦城县观前方言和临江方言都属于闽语闽北区方言。和别的闽北区方言一样,这两个方言也常用名词后缀"子"。而在这两个方言中,"词干+子"结构开始进一步发展,正在形成"子变音"和"小称变调"。文章描写并分析这种"子变音"和"小称变调"。 展开更多
关键词 闽北区方言 观前方言 临江方言 子变音 小称
原文传递
汉语开口一等字中的j介音考察——以孟州方言为例 被引量:4
3
作者 史艳锋 《中南大学学报(社会科学版)》 CSSCI 2013年第3期228-232,共5页
孟州(南庄)方言中咸山摄开口一等见系舒声字单字音产生j介音,咸山摄开口一等舒声字子变音产生i介音。二者相比,子变音产生i介音的时间较早。研究显示:(一)子变合音过程中,韵尾""对介音""的异化作用,加速了">... 孟州(南庄)方言中咸山摄开口一等见系舒声字单字音产生j介音,咸山摄开口一等舒声字子变音产生i介音。二者相比,子变音产生i介音的时间较早。研究显示:(一)子变合音过程中,韵尾""对介音""的异化作用,加速了">i"的转变;(二)咸山摄开口一等韵混入开口二等韵中,承继了二等韵前的介音"",后来开口一等韵中出现新一轮介音"C->Cj->Ci-"的演变链条。 展开更多
关键词 南庄方言 咸山摄开口一等韵 单字 子变音 j介 i介
下载PDF
Analytical Study of Nonlinear Dust Acoustic Waves in Two-Dimensional Dust Plasma with Dust Charge Variation
4
作者 LIN Chang ZHANG Xiu-Lian 《Communications in Theoretical Physics》 SCIE CAS CSCD 2005年第2X期247-251,共5页
The nonlinear dust acoustic waves in two-dimensional dust plasma with dust charge variation is analytically investigated by using the formally variable separation approach. New analytical solutions for the governing e... The nonlinear dust acoustic waves in two-dimensional dust plasma with dust charge variation is analytically investigated by using the formally variable separation approach. New analytical solutions for the governing equation of this system have been obtained for dust acoustic waves in a dust plasma for the first time. We derive exact analytical expressions for the general case of the nonlinear dust acoustic waves in two-dimensional dust plasma with dust charge variation. 展开更多
关键词 nonlinear dust acoustic waves plasma formally variable separation approach exact analytical solution
下载PDF
Numerical Study on the Influence Mechanism of Inlet Distortion on the Stall Margin in a Transonic Axial Rotor 被引量:3
5
作者 Scott C.Morris 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第3期209-214,共6页
A numerical study is conducted to investigate the influence of inlet flow condition on tip leakage flow (TLF) and stall margin in a transonic axial rotor.A commercial software package FLUENT,is used in the simulation.... A numerical study is conducted to investigate the influence of inlet flow condition on tip leakage flow (TLF) and stall margin in a transonic axial rotor.A commercial software package FLUENT,is used in the simulation.The rotor investigated in this paper is ND_TAC rotor,which is the rotor of one-stage transonic compressor in the University of Notre Dame.Three varied inlet flow conditions are simulated.The inlet boundary condition with hub distortion provides higher axial velocity for the incoming flow near tip region than that for the clean inflow,while the incoming main flow possesses lower axial velocity near the tip region at tip distortion inlet boundary condition.Among the total pressure ratio curves for the three inlet flow conditions,it is found that the hub dis-torted inlet boundary condition improves the stall margin,while the tip distorted inlet boundary condition dete-riorates compressor stability.The axial location of interface between tip leakage flow (TLF) and incoming main flow (MF) in the tip gap and the axial momentum ratio of TLF to MF are further examined.It is demonstrated that the axial momentum balance is the mechanism for interface movement.The hub distorted inflow could de-crease the axial momentum ratio,suppress the movement of the interface between TLF and MF towards blade leading edge plane and thus enhance compressor stability. 展开更多
关键词 Inlet distortion tip leakage flow stall margin axial momentum balance
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部