期刊文献+
共找到18篇文章
< 1 >
每页显示 20 50 100
弱电网下双馈风力发电系统的稳定性极限研究 被引量:16
1
作者 黄云辉 王凌云 +3 位作者 喻恒凝 王栋 朱国荣 黄云虹 《电力工程技术》 北大核心 2022年第4期9-17,共9页
针对大规模风电机组接入电力系统导致电网强度变弱,引起直流电压时间尺度的不稳定问题,文中研究了弱交流电网下双馈风机(DFIG)的稳定性极限。首先,研究DFIG注入电网的有功功率、端电压与转子dq轴电流间的关系以及稳定性极限的物理约束,... 针对大规模风电机组接入电力系统导致电网强度变弱,引起直流电压时间尺度的不稳定问题,文中研究了弱交流电网下双馈风机(DFIG)的稳定性极限。首先,研究DFIG注入电网的有功功率、端电压与转子dq轴电流间的关系以及稳定性极限的物理约束,并进行灵敏度分析,总结有功功率对转子d轴电流的灵敏度的变化规律;然后,建立连接弱电网的DFIG的小信号模型,通过特征根轨迹分析,研究DFIG控制环路的动态行为对其稳定性极限的影响。结果表明,在极弱电网情况下,等阻尼降低锁相环(PLL)带宽或提高端电压环带宽可提高稳定性极限;若不考虑动态无功支撑,DFIG的稳定运行功角限制在50°左右,若考虑所有控制环路的动态过程,DFIG的运行功角极限约为60°。 展开更多
关键词 弱电网 双馈风机(DFIG) 稳定性极限 端电压控制 锁相控制 特征值分析
在线阅读 下载PDF
再生型切削颤振稳定性极限的图解法 被引量:3
2
作者 张军 唐文彦 强锡富 《中国机械工程》 CAS CSCD 北大核心 2000年第5期496-498,共3页
分析了再生型切削颤振的稳定性极限 ,并提出一种简单的确定稳定性曲线的图解法 ,这种图解法对于分析系统的稳定性更具有直观性 。
关键词 再生型切削颤振 稳定性极限 重叠系数 图解法
在线阅读 下载PDF
低旋流配置下氨-甲烷-空气预混旋流火焰稳定性和排放特性
3
作者 杨浩杰 刘春雨 +2 位作者 李雪娇 于亮 吕兴才 《化工学报》 北大核心 2025年第6期3029-3040,共12页
通过实验与数值模拟相结合的方法,系统研究了低旋流配置对氨-甲烷-空气预混旋流火焰稳定性极限及污染物排放方面的影响。结果显示,高旋流配置下,各种工况均表现出较高的污染物排放,尤其是未燃氨、一氧化碳和氮氧化物。而低旋流配置显著... 通过实验与数值模拟相结合的方法,系统研究了低旋流配置对氨-甲烷-空气预混旋流火焰稳定性极限及污染物排放方面的影响。结果显示,高旋流配置下,各种工况均表现出较高的污染物排放,尤其是未燃氨、一氧化碳和氮氧化物。而低旋流配置显著降低了这些污染物的排放,仅略微缩小了火焰稳定性极限。然而,低旋流配置下的氨-甲烷-空气火焰产生了较高的氧化二氮,这归因于低旋流配置降低了火焰温度,抑制了氧化二氮的热裂解。此外,随着非旋流气流比例的增加,尽管污染物排放量进一步减少,但火焰稳定性极限显著收缩,这与低旋流下火焰结构和流场结构的变化密切相关。综合而言,低旋流配置在污染物排放与火焰稳定性之间可以达到较优的平衡,适用于需要降低污染物排放的燃烧应用场景。 展开更多
关键词 氨燃烧 低旋流配置 稳定性极限 火焰拓扑 流动结构 污染物排放
在线阅读 下载PDF
铣削稳定性预测的时间有限元法 被引量:5
4
作者 姜燕 郭强 赵波 《河南理工大学学报(自然科学版)》 CAS 北大核心 2016年第5期672-676,共5页
为减小切削颤振对加工的影响,提出一种时间有限元预测法来预测铣削稳定性。将动态切削颤振模型简化为一阶时滞微分方程组,基于时间有限元法及Floquet原理预测动态铣削过程的稳定性极限。对该方法的预测值与Insperger提出的时域半离散法... 为减小切削颤振对加工的影响,提出一种时间有限元预测法来预测铣削稳定性。将动态切削颤振模型简化为一阶时滞微分方程组,基于时间有限元法及Floquet原理预测动态铣削过程的稳定性极限。对该方法的预测值与Insperger提出的时域半离散法的预测值进行比较可知,该方法能有效地预测动态铣削稳定性,并利用一组实验证实了该方法的正确性。采用该方法选择铣削参数可以有效降低切削颤振对加工过程的影响,对提高铣削加工效率和加工质量有重要意义。 展开更多
关键词 切削颤振 稳定性极限 时间有限元法 铣削
在线阅读 下载PDF
Influence of joint spacing and rock characteristics on the toppling stability of cut rock slope through a simplified limit equilibrium method
5
作者 ZHANG Xue-peng JIANG Yu-jing +6 位作者 DU Yan WANG Ke-peng CAI Yue WANG Xing-da SU Hang GOLSANAMI Naser LIU Bao-guo 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第8期2694-2702,共9页
Toppling failure of rock mass/soil slope is an important geological and environmental problem.Clarifying its failure mechanism under different conditions has great significance in engineering.The toppling failure of a... Toppling failure of rock mass/soil slope is an important geological and environmental problem.Clarifying its failure mechanism under different conditions has great significance in engineering.The toppling failure of a cutting slope occurred in a hydropower station in Kyushu,Japan illustrates that the joint characteristic played a significant role in the occurrence of rock slope tipping failure.Thus,in order to consider the mechanical properties of jointed rock mass and the influence of geometric conditions,a simplified analytical approach based on the limit equilibrium method for modeling the flexural toppling of cut rock slopes is proposed to consider the influence of the mechanical properties and geometry condition of jointed rock mass.The theoretical solution is compared with the numerical solution taking Kyushu Hydropower Station in Japan as one case,and it is found that the theoretical solution obtained by the simplified analysis method is consistent with the numerical analytical solution,thus verifying the accuracy of the simplified method.Meanwhile,the Goodman-Bray approach conventionally used in engineering practice is improved according to the analytical results.The results show that the allowable slope angle may be obtained by the improved Goodman-Bray approach considering the joint spacing,the joint frictional angle and the tensile strength of rock mass together. 展开更多
关键词 slope stability flexural toppling rock slope simplified limit equilibrium method
在线阅读 下载PDF
切削加工过程中颤振预测的研究进展 被引量:2
6
作者 王亮 陈光军 孔令国 《机床与液压》 北大核心 2016年第3期179-182,187,共5页
切削颤振是切削加工过程中伴随的一种普遍现象,具有复杂的不确定性和不可预知性,切削颤振的预测将有助于提高切削加工表面质量。对切削颤振的产生机制和主要影响因素进行了介绍,以及对切削颤振的稳定性极限、判别方法、预测方面的研究... 切削颤振是切削加工过程中伴随的一种普遍现象,具有复杂的不确定性和不可预知性,切削颤振的预测将有助于提高切削加工表面质量。对切削颤振的产生机制和主要影响因素进行了介绍,以及对切削颤振的稳定性极限、判别方法、预测方面的研究成果进行了总结,并分析了其中的技术问题与未来的发展方向。 展开更多
关键词 切削颤振 稳定性极限 识别 预测
在线阅读 下载PDF
杏山铁矿北排土场减载优化设计 被引量:2
7
作者 宋志飞 辛晓平 +1 位作者 孙世国 徐秀鸣 《金属矿山》 CAS 北大核心 2013年第10期152-154,共3页
杏山矿北排土场下部有重要的工业广场,为了保证排土场的绝对安全,杏山矿北排土场需要进行减载,并确定最佳的减载方案。应用滑移场理论、数值模拟方法、极限平衡分析等方法进行了系统的研究和评价,并得到了相关的优化减载方案。最后得出... 杏山矿北排土场下部有重要的工业广场,为了保证排土场的绝对安全,杏山矿北排土场需要进行减载,并确定最佳的减载方案。应用滑移场理论、数值模拟方法、极限平衡分析等方法进行了系统的研究和评价,并得到了相关的优化减载方案。最后得出了排土场在常规条件和饱和条件2种工况时的稳定性结论。结果表明,减载后排土场稳定性显著提高。 展开更多
关键词 排土场 数值模拟极限平衡稳定性
在线阅读 下载PDF
A strength reduction method based on double reduction parameters and its application 被引量:44
8
作者 袁维 白冰 +1 位作者 李小春 汪海滨 《Journal of Central South University》 SCIE EI CAS 2013年第9期2555-2562,共8页
In the traditional strength reduction method,the cohesion and the friction angle adopt the same reduction parameter,resulting in equivalent proportional reduction.This method does not consider the different effects of... In the traditional strength reduction method,the cohesion and the friction angle adopt the same reduction parameter,resulting in equivalent proportional reduction.This method does not consider the different effects of the cohesion and friction angle on the stability of the same slope and is defective to some extent.Regarding this defect,a strength reduction method based on double reduction parameters,which adopts different reduction parameters,is proposed.The core of the double-parameter reduction method is the matching reduction principle of the slope with different angles.This principle is represented by the ratio of the reduction parameter of the cohesion to that of the friction angle,described as η.With the increase in the slopeangle,ηincreases; in particular,when the slope angle is 45°,tηis 1.0.Through the matching reduction principle,different safety margin factors can be calculated for the cohesion and friction angle.In combination with these two safety margin factors,a formula for calculating the overall safety factor of the slope is proposed,reflecting the different contributions of the cohesion and friction angle to the slope stability.Finally,it is shown that the strength reduction method based on double reduction parameters acquires a larger safety factor than the classic limit equilibrium method,but the calculation results are very close to those obtained by the limit equilibrium method. 展开更多
关键词 double reduction parameter strength reduction method matching reduction principle slope stability
在线阅读 下载PDF
Upper bound solution of surrounding rock pressure of shallow tunnel under nonlinear failure criterion 被引量:10
9
作者 ZHANG Dao-bing MA Zong-yu +1 位作者 YU Biao YIN Hua-dong 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第7期1696-1705,共10页
The nonlinear Baker failure criterion is introduced into the upper-bound limit analysis to examine the face stability of a shallow tunnel. The tunnel face under the ultimate limit state is analyzed from the perspectiv... The nonlinear Baker failure criterion is introduced into the upper-bound limit analysis to examine the face stability of a shallow tunnel. The tunnel face under the ultimate limit state is analyzed from the perspective of energy balance. The work rates of external forces and internal energy dissipation are calculated. An analytical solution of necessary face pressures is derived. The optimal upper-bound solution of the face pressures is obtained by optimization. The results show that the three dimensionless parameters A, T, n of nonlinear Baker failure criterion have different effects on the necessary face pressures and the pattern failure mechanisms ahead of tunnel face. A is the most important one;n takes the second place, and T is the least one. The computed necessary face pressures are nonlinearly increasing when A is reduced. Combined with the actual monitoring data of Taxia tunnel, the calculation results in this paper is verified. It is suggested that the tunnel face supports should be strengthened timely in soft rocks to prevent the occurrence of face collapse. 展开更多
关键词 nonlinear Baker failure criterion FACE stability limit analysis method pressure of surrounding rock
在线阅读 下载PDF
Three-dimensional stability analysis of anisotropic and non-homogeneous slopes using limit analysis 被引量:9
10
作者 韩长玉 陈锦剑 +1 位作者 夏小和 王建华 《Journal of Central South University》 SCIE EI CAS 2014年第3期1142-1147,共6页
A method of three-dimensional loaded slope stability for anisotropic and nonhomogeneous slopes was presented based on the upper-bound theorem of the limit analysis approach. The approach can be considered as a modific... A method of three-dimensional loaded slope stability for anisotropic and nonhomogeneous slopes was presented based on the upper-bound theorem of the limit analysis approach. The approach can be considered as a modification and extension of the solutions. The influences of friction angle, anisotropy factor, nonhomogeneous factor, slope angle, ratio of width to depth, and load on the slope crest were investigated. The results show that solutions are suitable to deal with the purely cohesive soils and frictional/cohesive soils, isotropic and anisotropic, homogeneous and nonhomogeneous, loaded and unloaded cases. 展开更多
关键词 stability ANISOTROPY limit analysis loaded slope nonhomogeneous slope
在线阅读 下载PDF
Limit equilibrium analysis for rock slope stability using basic Hoek–Brown strength criterion 被引量:7
11
作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第9期2154-2163,共10页
Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only sui... Hoek–Brown(HB)strength criterion can reflect rock’s inherent failure nature,so it is more suitable for analyzing the stability of rock slopes.However,the traditional limit equilibrium methods are at present only suitable for analyzing the rock slope stability using the linear equivalent Mohr–Coulomb(EMC)strength parameters instead of the nonlinear HB strength criterion.Therefore,a new method derived to analyze directly the rock slope stability using the nonlinear HB strength criterion for arbitrary curve slip surface was described in the limit equilibrium framework.The current method was established based on certain assumptions concerning the stresses on the slip surface through amending the initial normal stressσ0 obtained without considering the effect of inter-slice forces,and it can satisfy all static equilibrium conditions of the sliding body,so the current method can obtain the reasonable and strict factor of safety(FOS)solutions.Compared with the results of other methods in some examples,the feasibility of the current method was verified.Meanwhile,the parametric analysis shows that the slope angleβhas an important influence on the difference of the results obtained using the nonlinear HB strength criterion and its linear EMC strength parameters.Forβ≤45°,both of the results are similar,showing the traditional limit equilibrium methods using the linear EMC strength parameters and the current method are all suitable to analyze rock slope stability,but forβ>60°,the differences of both the results are obvious,showing the actual slope stability state can not be reflected in the traditional limit equilibrium methods,and then the current method should be used. 展开更多
关键词 Hoek-Brown strength criterion linear equivalent Mohr-Coulomb strength parameters slope stability limit equilibrium slip surface factor of safety
在线阅读 下载PDF
Limit equilibrium stability analysis of slopes under external loads 被引量:5
12
作者 DENG Dong-ping ZHAO Lian-heng LI Liang 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第9期2382-2396,共15页
Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip su... Two calculation modes for the effect of external load on slope stability, i.e., mode I in which the external load is thought to act on slope surface, and mode II in which the external load is thought to act on slip surface along the force action line, were considered. Meanwhile, four basic distribution patterns of external load were used, of which complex external loads could be composed. In analysis process, several limit equilibrium methods, such as Swedish method, simplified Bishop method, simplified Janbu method, Spencer method, Morgenstern-Price(M-P) method, Sarma method, and unbalanced thrust method, were also adopted to contrast their differences in slope stability under the external load. According to parametric analysis, some conclusions can be obtained as follows:(1) The external load, with the large magnitude, small inclination angle, and acting position close to the slope toe,has more positive effect on slope stability;(2) The results calculated using modes I and II of external load are similar, indicating that the calculation mode of external load has little influence on slope stability;(3) If different patterns of external loads are equivalent to each other, their slope stability under these external loads are the same, and if not, the external load leads to the better slope stability,as action position of the resultant force for external load is closer to the lower sliding point of slip surface. 展开更多
关键词 slope stability calculation mode of external load distribution pattern of external load limit equilibrium slip surface factor of safety (FOS)
在线阅读 下载PDF
Limit equilibrium method for slope stability based on assumed stress on slip surface 被引量:2
13
作者 邓东平 赵炼恒 李亮 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第11期2972-2983,共12页
In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-... In the limit equilibrium framework, two- and three-dimensional slope stabilities can be solved according to the overall force and moment equilibrium conditions of a sliding body. In this work, based on Mohr-Coulomb(M-C) strength criterion and the initial normal stress without considering the inter-slice(or inter-column) forces, the normal and shear stresses on the slip surface are assumed using some dimensionless variables, and these variables have the same numbers with the force and moment equilibrium equations of a sliding body to establish easily the linear equation groups for solving them. After these variables are determined, the normal stresses, shear stresses, and slope safety factor are also obtained using the stresses assumptions and M-C strength criterion. In the case of a three-dimensional slope stability analysis, three calculation methods, namely, a non-strict method, quasi-strict method, and strict method, can be obtained by satisfying different force and moment equilibrium conditions. Results of the comparison in the classic two- and three-dimensional slope examples show that the slope safety factors calculated using the current method and the other limit equilibrium methods are approximately equal to each other, indicating the feasibility of the current method; further, the following conclusions are obtained: 1) The current method better amends the initial normal and shear stresses acting on the slip surface, and has the identical results with using simplified Bishop method, Spencer method, and Morgenstern-Price(M-P) method; however, the stress curve of the current method is smoother than that obtained using the three abovementioned methods. 2) The current method is suitable for analyzing the two- and three-dimensional slope stability. 3) In the three-dimensional asymmetric sliding body, the non-strict method yields safer solutions, and the results of the quasi-strict method are relatively reasonable and close to those of the strict method, indicating that the quasi-strict method can be used to obtain a reliable slope safety factor. 展开更多
关键词 two-dimensional slope three-dimensional slope limit equilibrium analysis normal stress shear stress safety factor
在线阅读 下载PDF
Effects of wall thickness and material on flame stability in a planar micro-combustor 被引量:1
14
作者 LIU Lei ZHAO Liang FAN Ai-wu 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第8期2224-2233,共10页
Flame is prone to lose its stability in micro-combustors due to the large amount of heat loss from the external walls. On the other hand, heat recirculation through the upstream combustor walls can enhance flame stabi... Flame is prone to lose its stability in micro-combustors due to the large amount of heat loss from the external walls. On the other hand, heat recirculation through the upstream combustor walls can enhance flame stability. These two aspects depend on the structural heat transfer, which is associated with the thickness and thermal conductivity of the combustor walls. In the present study, the effects of wall thickness and material on flame stability were numerically investigated by selecting two thicknesses (δ=0.2 and 0.4 mm) and two materials (quartz and SiC). The results show that when δ=0.2 mm, flame inclination occurs at a certain inlet velocity in both combustors, but it happens later in SiC combustor. For δ=0.4 mm, flame inclination still occurs in quartz combustor from a larger inlet velocity compared to the case of δ=0.2 mm. However, flame inclination in SiC combustor with δ=0.4 mm does not happen and it has a much larger blowout limit. Analysis reveals that a thicker wall can enhance heat recirculation and reduce heat loss simultaneously. Moreover, SiC combustor has larger heat recirculation ratio and smaller heat loss ratio. In summary, the micro-combustor with thicker and more conductive walls can harvest large flame stability limit. 展开更多
关键词 MICRO-COMBUSTOR flame stability flame inclination blowout limit heat recirculation heat loss
在线阅读 下载PDF
Three-dimensional analysis of slopes reinforced with piles 被引量:10
15
作者 高玉峰 叶茂 张飞 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第6期2322-2327,共6页
Based on the upper bound of limit analysis, the plane-strain analysis of the slopes reinforced with a row of piles to the 3D case was extended. A 3D rotational failure mechanism was adopted to yield the upper bound of... Based on the upper bound of limit analysis, the plane-strain analysis of the slopes reinforced with a row of piles to the 3D case was extended. A 3D rotational failure mechanism was adopted to yield the upper bound of the factor of safety. Parametric studies were carried out to explore the end effects of the slope failures and the effects of the pile location and diameter on the safety of the reinforced slopes. The results demonstrate that the end effects nearly have no effects on the most suitable location of the installed piles but have significant influence on the safety of the slopes. For a slope constrained to a narrow width, the slope becomes more stable owing to the contribution of the end effects. When the slope is reinforced with a row of piles in small space between piles, the effects of group piles are significant for evaluating the safety of slopes. The presented method is more appropriate for assessing the stability of slopes reinforced with piles and can be also utilized in the design of plies stabilizing the unstable slopes. 展开更多
关键词 three-dimensional rotational failure mechanism stability of slopes limit analysis LANDSLIDES PILES
在线阅读 下载PDF
Stability analysis for natural slope by kinematical approach 被引量:2
16
作者 孙志彬 覃长兵 《Journal of Central South University》 SCIE EI CAS 2014年第4期1546-1553,共8页
The stability of natural slope was analyzed on the basis of limit analysis. The sliding model of a kind of natural slope was presented. A new kinematically admissible velocity field for the new sliding model was const... The stability of natural slope was analyzed on the basis of limit analysis. The sliding model of a kind of natural slope was presented. A new kinematically admissible velocity field for the new sliding model was constructed. The stability factor formulation by the upper bound theorem leads to a classical nonlinear programming problem, when the external work rate and internal energy dissipation were solved, and the constraint condition of the programming problem was given. The upper bound optimization problem can be solved efficiently by applying a nonlinear SQP algorithm, and stability factor was obtained, which agrees well with previous achievements. 展开更多
关键词 natural slope stability analysis limit analysis upper bound theorem
在线阅读 下载PDF
Slope stability analysis considering joined influences of nonlinearity and dilation 被引量:19
17
作者 杨小礼 黄阜 《Journal of Central South University》 SCIE EI CAS 2009年第2期292-296,共5页
The soil masses of slopes were assumed to follow a nonlinear failure criterion and a nonassociated flow rule.The stability factors of slopes were calculated using vertical slice method based on limit analysis.The pote... The soil masses of slopes were assumed to follow a nonlinear failure criterion and a nonassociated flow rule.The stability factors of slopes were calculated using vertical slice method based on limit analysis.The potential sliding mass was divided into a series of vertical slices as well as the traditional slice technique.Equating the external work rate to the internal energy dissipation,the optimum solutions to stability factors were determined by the nonlinear programming algorithm.From the numerical results,it is found that the present solutions agree well with previous results when the nonlinear criterion reduces to the linear criterion,and the nonassociated flow rule reduces to the associated flow rule.The stability factors decrease by 39.7%with nonlinear parameter varying from 1.0 to 3.0.Dilation and nonlinearity have significant effects on the slope stability factors. 展开更多
关键词 nonlinear failure criterion nonassociated flow rule soil slope
在线阅读 下载PDF
Stability and reinforcement analysis of rock slope based on elasto-plastic finite element method 被引量:2
18
作者 刘耀儒 武哲书 +2 位作者 常强 李波 杨强 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2739-2751,共13页
The rigid body limit equilibrium method(RBLEM) and finite element method(FEM) are two widely used approaches for rock slope's stability analysis currently. RBLEM introduced plethoric assumptions; while traditional... The rigid body limit equilibrium method(RBLEM) and finite element method(FEM) are two widely used approaches for rock slope's stability analysis currently. RBLEM introduced plethoric assumptions; while traditional FEM relied on artificial factors when determining factor of safety(FOS) and sliding surfaces. Based on the definition of structure instability that an elasto-plastic structure is not stable if it is unable to satisfy simultaneously equilibrium condition, kinematical admissibility and constitutive equations under given external loads, deformation reinforcement theory(DRT) is developed. With this theory, plastic complementary energy(PCE) can be used to evaluate the overall stability of rock slope, and the unbalanced force beyond the yield surface could be the identification of local failure. Compared with traditional slope stability analysis approaches, the PCE norm curve to strength reduced factor is introduced and the unbalanced force is applied to the determination of key sliding surfaces and required reinforcement. Typical and important issues in rock slope stability are tested in TFINE(a three-dimensional nonlinear finite element program), which is further applied to several representatives of high rock slope's stability evaluation and reinforcement engineering practice in southwest of China. 展开更多
关键词 stability analysis rock slope plastic complementary energy(PCE) unbalanced forces elasto-plasticity FEM
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部