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鄂尔多斯盆地非常规油气开发技术与管理模式 被引量:6
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作者 胡文瑞 魏漪 鲍敬伟 《工程管理科技前沿》 CSSCI 北大核心 2023年第3期1-10,共10页
作为我国第二大含油气盆地,鄂尔多斯盆地近年来油气产量快速增长,油气当量规模已超8000万吨,目前已成为我国最大油气生产盆地和第一大天然气产区。其中盆地内最大油气生产单位一长庆油田,依靠科技创新,让“三低”油气田实现可持续效益开... 作为我国第二大含油气盆地,鄂尔多斯盆地近年来油气产量快速增长,油气当量规模已超8000万吨,目前已成为我国最大油气生产盆地和第一大天然气产区。其中盆地内最大油气生产单位一长庆油田,依靠科技创新,让“三低”油气田实现可持续效益开发,油气当量突破6500万吨,创造了国内油气田年产油气最高纪录。在油气增储上产的需求下,新能源快速接替,页岩油和致密气已逐步实现规模效益建产。本文依托地质理论创新和关键技术攻关,优化了非常规油气开发的主体和配套技术,多措并举,改革了管理模式,油气勘探开发不断取得突破性进展,加快资源向储量、储量向产量转化,实现地质储量和产量快速增长。盆地内丰富的非常规油气资源,将成为下一步油气接替开发的重要领域,接下来仍需持续加强勘探开发技术攻关,不断提高单井产量及采收率,为保障国家能源安全、实现油田持续稳产上产提供资源和技术保障。 展开更多
关键词 鄂尔多斯盆地 页岩油 致密气 开发技术 管理模式
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Experimental study on convective boiling heat transfer in narrow-gap annulus tubes
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作者 LIBin ZHAOJian-Fu +2 位作者 ZHOUFang-De FANGZe-Mei huwen-rui 《Nuclear Science and Techniques》 SCIE CAS CSCD 2004年第2期123-128,共6页
Since convective boiling or highly subcooled single-phase forced convection in micro-channels is an effective cooling mechanism with a wide range of applications, more experimental and theoretical studies are re- quir... Since convective boiling or highly subcooled single-phase forced convection in micro-channels is an effective cooling mechanism with a wide range of applications, more experimental and theoretical studies are re- quired to explain and verify the forced convection heat transfer phenomenon in narrow channels. In this experimental study, we model the convective boiling behavior of water with low latent heat substance Freon 113 (R-113), with the purpose of saving power consumption and visualizing experiments. Both heat transfer and pressure drop characteris- tics were measured in subcooled and saturated concentric narrow gap forced convection boiling. Data were obtained to qualitatively identify the effects of gap size, pressure, flow rate and wall superheat on boiling regimes and the tran- sition between various regimes. Some significant differences from unconfined forced convection boiling were found, and also, the flow patterns in narrow vertical annulus tubes have been studied quantitatively. 展开更多
关键词 对流 沸腾热传导 窄带环面管 两相流 冷却机制
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