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Theoretical calculation of high-pressure CO_(2)jet in cases of composite rock-breaking based on span-wagner equation of state 被引量:1
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作者 Xian-peng Yang Can Cai +4 位作者 Xiao-hua Chen Pei Zhang Xin Zeng Chi Peng Yingfang Zhou 《Journal of Hydrodynamics》 SCIE EI CSCD 2022年第5期948-964,共17页
Although several theoretical calculation methods for high-pressure jet are available,there is currently no theoretical model for the high-pressure CO_(2)jet based on the high-precision equation of state(EOS).To invest... Although several theoretical calculation methods for high-pressure jet are available,there is currently no theoretical model for the high-pressure CO_(2)jet based on the high-precision equation of state(EOS).To investigate the flow field of the high-pressure CO_(2)jet in cases of the composite rock-breaking under the high-pressure CO_(2)Jet and PDC cutter,a semi-analytical approach of the high-pressure CO_(2)jet is developed based on the Span-Wagner EOS and CO_(2)jet theory.The semi-analytical calculations and the physical property calculations under the action of the high-pressure CO_(2)jet are conducted with consideration of the jet pressure,the jet distance,the nozzle diameter and the jet angle.The results indicate that the distribution of the physical properties calculated by the semi-analytical approaches is similar to that obtained by experimental monitoring and numerical simulation,which indicates that the calculation method of the high-pressure CO_(2)jet presented in this paper is effective and reliable.The properties of the CO_(2)jet obtained by the theoretical calculation see a significant difference between the initial region and the jet impact region.At the temperature of 300 K,the increase of the initial pressure can effectively increase the impact force and the cooling ability of the jet.The proportion of the jet core lengths in the jet on the axis increases with the increase of the ratio of the nozzle diameter to the jet length,accompanied with the increase of the impact force of the jet.The increase of the jet angle can effectively increase the impacting force of the jet,but hampers the fluid diffusion.The study combines the theoretical calculation of the jet with the calculation of the physical properties of the high-pressure CO_(2),for comprehensively understanding the CO_(2)jet field in the composite rock-breaking under the action of the high-pressure CO_(2)jet and PDC cutter.This theoretical calculation of the CO_(2)jet based on the high-precision EOS provides an option for the convenient calculation of the CO_(2)drilling in practical engineering. 展开更多
关键词 CO_(2)jet hydraulic jet drill theoretical calculation equation of state(EOS) physical property
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二氧化碳捕集的理论极限能耗分析 被引量:2
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作者 许朋江 陈锋 +3 位作者 薛朝囡 邓佳 郑卫东 居文平 《中国电机工程学报》 EI CSCD 北大核心 2023年第6期2162-2167,共6页
随着“双碳”目标的提出,CO_(2)捕集、封存与利用技术发展迅速,但与之相关的能耗理论研究相对匮乏。该文对煤电机组烟气CO_(2)分离的理论能耗进行定量分析,以混合物的一阶截断virial方程为基础,通过分析CO_(2)分离前后混合物系物性的变... 随着“双碳”目标的提出,CO_(2)捕集、封存与利用技术发展迅速,但与之相关的能耗理论研究相对匮乏。该文对煤电机组烟气CO_(2)分离的理论能耗进行定量分析,以混合物的一阶截断virial方程为基础,通过分析CO_(2)分离前后混合物系物性的变化,得到CO_(2)捕集理论极限能耗的测算方法,并对碳捕集和节能减排技术进行对比研究,得到单位发电量碳捕集的极限能耗((火用))为151.95kJ/(kW·h)。实现煤电烟气CO_(2)全部分离最少会使得厂用电率增加4.22个百分点。结果可为企业制定减碳技术规划和技术路线遴选提供一定参考。 展开更多
关键词 CO_(2)捕集 状态方程 混合物 理论能耗
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CO_2泡沫状态方程的理论模型研究 被引量:3
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作者 王冠华 李兆敏 +1 位作者 李宾飞 李松岩 《石油化工高等学校学报》 CAS 2010年第4期68-72,共5页
通过理论推导,考虑CO2在水中的溶解性,修正了非溶解性气体泡沫理论状态方程,得到CO2泡沫的理论状态方程。计算结果表明,CO2泡沫理论状态方程的计算结果符合客观规律,能够较准确模拟实际CO2泡沫状态。通过对比实验数据结果表明,该方程具... 通过理论推导,考虑CO2在水中的溶解性,修正了非溶解性气体泡沫理论状态方程,得到CO2泡沫的理论状态方程。计算结果表明,CO2泡沫理论状态方程的计算结果符合客观规律,能够较准确模拟实际CO2泡沫状态。通过对比实验数据结果表明,该方程具有一定的精度,满足理论分析和工程应用需要。 展开更多
关键词 溶解性气体泡沫 co2泡沫理论状态方程 溶解性
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