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天然气水合物降压分解诱发储层变形破坏正交数值模拟实验研究 被引量:5
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作者 翟诚 孙可明 《特种油气藏》 CAS CSCD 北大核心 2022年第1期99-106,共8页
使用降压法进行天然气水合物开采时,天然气水合物沉积层的失稳破坏是制约其有效开发的关键因素。考虑水合物饱和度和有效应力同时变化对水合物沉积层主要力学参数的影响,建立天然气水合物降压分解诱发储层变形破坏的流固耦合弹塑性模型... 使用降压法进行天然气水合物开采时,天然气水合物沉积层的失稳破坏是制约其有效开发的关键因素。考虑水合物饱和度和有效应力同时变化对水合物沉积层主要力学参数的影响,建立天然气水合物降压分解诱发储层变形破坏的流固耦合弹塑性模型,编制USDFLD子程序,采用正交数值模拟实验方法,研究初始水合物饱和度、井底压力和有效主应力差对水合物沉积层近井储层变形破坏影响的敏感程度。结果表明:井底压力和有效主应力差是影响近井储层变形破坏的2个显著因素;对近井储层等效塑性应变最大值的影响程度由大到小依次为井底压力、有效主应力差、初始水合物饱和度;对塑性区范围的影响程度由大到小依次为有效主应力差、井底压力、初始水合物饱和度;建议根据水合物藏的地质条件,对井底压力进行优化设计。研究成果对采用降压法进行天然气水合物开采的安全性、可控性具有重要意义。 展开更多
关键词 天然气水合物 降压分解 水合物沉积层 正交数值模拟实验 等效塑性应变最大值 塑性区范围
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Numerical and Experimental Investigation on Aerodynamic Performance of Small Axial Flow Fan with Hollow Blade Root 被引量:4
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作者 Zhang Li Jin Yingzi1 +1 位作者 Dou Huashu Jin Yuzhen 《Journal of Thermal Science》 SCIE EI CAS CSCD 2013年第5期424-432,共9页
To reduce the influence of adverse flow conditions at the fan hub and improve fan aerodynamic performance, a modification of conventional axial fan blades with numerical and experimental investigation is presented. Ho... To reduce the influence of adverse flow conditions at the fan hub and improve fan aerodynamic performance, a modification of conventional axial fan blades with numerical and experimental investigation is presented. Hollow blade root is manufactured near the hub. The numerical and experimental results show that hollow blade root has some effect on the static performance. Static pressure of the modified fan is generally the same with that of the datum fan, while, the efficiency curve of the modified fan has a different trend with that of the datum fan. The highest efficiency of the modified fan is 10% greater than that of the datum fan. The orthogonal experimental re- suits of fan noise show that hollow blade root is a feasible method of reducing fan noise, and the maximum value of noise reduction is about 2 dB. The factors affecting the noise reduction of hollow blade root are in the order of importance as follows: hollow blade margin, hollow blade height and hollow blade width. The much smoother pressure distribution of the modified fan than that of the datum fan is the main mechanism of noise reduction of hollow blade root. The research results will provide the proof of the parameter optimization and the structure de- sign for high performance and low noise small axial fans. 展开更多
关键词 small axial flow fan hollow blade root performance noise reduction mechanism
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