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鱼类通过混流式水轮机转轮时受压强及剪切损伤的概率分析 被引量:7
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作者 朱国俊 吉龙娟 +1 位作者 冯建军 罗兴锜 《农业工程学报》 EI CAS CSCD 北大核心 2019年第2期55-62,共8页
鱼类在通过混流式水轮机流道时会遭遇最低压强及压强梯度引发的压强损伤以及剪切应力引发的剪切损伤。为了辨识混流式转轮中压强损伤和剪切损伤的主次关系,进而有针对性的开展混流式转轮的鱼类生态友好性能优化,该文基于计算流体动力学... 鱼类在通过混流式水轮机流道时会遭遇最低压强及压强梯度引发的压强损伤以及剪切应力引发的剪切损伤。为了辨识混流式转轮中压强损伤和剪切损伤的主次关系,进而有针对性的开展混流式转轮的鱼类生态友好性能优化,该文基于计算流体动力学分析方法研究了不同水头条件下混流式转轮内超出压强以及剪切损伤阈值的体积分布规律,并获得了不同工况下混流式转轮内压强、压强梯度以及剪切应力引发鱼类受损的概率。结果表明:鱼类受压强及剪切损伤的概率与流量成正相关关系,对于该文分析的混流式转轮,鱼类受最低压强损伤的概率在最小水头的最大流量工况下达到最大值9.1%,剪切损伤及高压强梯度损伤的概率在额定工况下达到最大,分别为0.823%和8.31%。在相同工况下进行3种损伤概率的对比后发现,在大流量工况下,鱼类受最低压强和高压强梯度损伤的概率更大,在小流量工况下则是压强梯度损伤概率相对较高,所以综合分析结果可知最低压强和高压强梯度是开展亲鱼型混流式转轮优化时需要考虑的主要因素,而剪切应变率则是次要因素。 展开更多
关键词 流量 数值分析 水轮机 混流式转轮 鱼类损伤概率 压强损伤 剪切应力损伤
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Thermal damage constitutive model for rock considering damage threshold and residual strength 被引量:31
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作者 XU Xiao-li KARAKUS Murat +1 位作者 GAO Feng ZHANG Zhi-zhen 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2523-2536,共14页
With the gradual depletion of mineral resources in the shallow part of the earth,resource exploitation continues to move deeper into the earth,it becomes a hot topic to simulate the whole process of rock strain soften... With the gradual depletion of mineral resources in the shallow part of the earth,resource exploitation continues to move deeper into the earth,it becomes a hot topic to simulate the whole process of rock strain softening,deformation and failure in deep environment,especially under high temperature and high pressure.On the basis of Lemaitre’s strain-equivalent principle,combined with statistics and damage theory,a statistical constitutive model of rock thermal damage under triaxial compression condition is established.At the same time,taking into account the existing damage model is difficult to reflect residual strength after rock failure,the residual strength is considered in this paper by introducing correction factor of damage variable,the model rationality is also verified by experiments.Analysis of results indicates that the damage evolution curve reflects the whole process of rock micro-cracks enclosure,initiation,expansion,penetration,and the formation of macro-cracks under coupled effect of temperature and confining pressure.Rock thermal damage shows logistic growth function with the increase of temperature.Under the same strain condition,rock total damage decreases with the rise of confining pressure.By studying the electron microscope images(SEM)of rock fracture,it is inferred that 35.40 MPa is the critical confining pressure of brittle to plastic transition for this granite.The model parameter F reflects the average strength of rock,and M reflects the morphological characteristics of rock stress–strain curves.The physical meanings of model parameters are clear and the model is suitable for complex stress states,which provides valuable references for the study of rock deformation and stability in deep engineering. 展开更多
关键词 rock damage model temperature effect confining pressure damage threshold residual strength
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