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储存对罐装碳酸饮料中空气含量等质量特性的影响研究 被引量:1
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作者 李瑞 吴伟都 +2 位作者 王雅琼 沈珊珊 李言郡 《饮料工业》 2022年第6期15-19,共5页
对罐装碳酸饮料中空气含量的测定方法进行了研究,找出影响测定结果的各个因素;另外,考察了冷藏与25℃储存过程中罐装碳酸饮料的空气含量、顶隙压力、二氧化碳气容量、表面张力及氧化还原电位的变化情况。结果表明:空气含量测量时使用的... 对罐装碳酸饮料中空气含量的测定方法进行了研究,找出影响测定结果的各个因素;另外,考察了冷藏与25℃储存过程中罐装碳酸饮料的空气含量、顶隙压力、二氧化碳气容量、表面张力及氧化还原电位的变化情况。结果表明:空气含量测量时使用的碱液浓度、开关阀阀门的放气速度、振摇姿势及打开-关闭开关阀的循环次数等影响测定结果;不同储存温度及储存时间影响碳酸饮料的空气含量、二氧化碳气容量、顶隙压力、表面张力及氧化还原电位,另外,顶隙压力分别与二氧化碳气容量、表面张力存在显著负相关,与空气含量存在显著正相关;空气含量与表面张力存在显著负相关,而二氧化碳气容量与氧化还原电位之间存在显著正相关。 展开更多
关键词 空气含量 罐装碳酸饮料 储存 顶隙压力 二氧化碳气容量 表面张力 氧化还原电位
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Limit analysis of roof collapse in tunnels under seepage forces condition with three-dimensional failure mechanism 被引量:10
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作者 覃长兵 孙志彬 梁桥 《Journal of Central South University》 SCIE EI CAS 2013年第8期2314-2322,共9页
The state of roof collapse in tunnels is actually three-dimensional, so constructing a three-dimensional failure collapse mechanism is crucial so as to reflect the realistic collapsing scopes more reasonably. Accordin... The state of roof collapse in tunnels is actually three-dimensional, so constructing a three-dimensional failure collapse mechanism is crucial so as to reflect the realistic collapsing scopes more reasonably. According to Hoek-Brown failure criterion and the upper bound theorem of limit analysis, the solution for describing the shape of roof collapse in circular or rectangular tunnels subjected to seepage forces is derived by virtue of variational calculation. The seepage forces calculated from the gradient of excess pore pressure distribution are taken as external loading in the limit analysis, and it is of great convenience to compute the pore pressure with pore pressure coefficient. Consequently, the effect of seepage forces is taken as a work rate of external force and incorporated into the upper bound limit analysis. The numerical results of collapse dimensions with different rock parameters show great validity and agreement by comparing with the results of that with two-dimensional failure mechanism. 展开更多
关键词 TUNNEL Hoek-Brown criterion three-dimensional collapse mechanism seepage force
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