期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
高考复读行为的经济学分析——来自宁夏的证据 被引量:2
1
作者 康乐 王世岳 马玉洁 《教育与经济》 CSSCI 北大核心 2019年第2期67-77,共11页
无论是在每年报名的考生中间,还是在被录取的考生中间,复读生一直都稳定地占据相当大的比例。本文在理性人假设的基础上,利用经济学的分析框架,首先建立了两个理论模型以刻画复读生们的微观选择,之后利用宁夏自治区2001-2010年的高考数... 无论是在每年报名的考生中间,还是在被录取的考生中间,复读生一直都稳定地占据相当大的比例。本文在理性人假设的基础上,利用经济学的分析框架,首先建立了两个理论模型以刻画复读生们的微观选择,之后利用宁夏自治区2001-2010年的高考数据,从实证的角度证明了文章的假说——第一,复读生会根据以往考生的经验判断自己的复读前景,而相对第1次高考而言,复读生在第2次考试中也的确获得了更高的成绩;第二,在复读生风险偏好程度更低的假设下,他们在填报志愿时会更加保守,因此被同一所院校录取时,复读生的成绩平均来看相应地高于应届生。 展开更多
关键词 复读 经济学分析 宁夏
下载PDF
随钻四极子声波技术在南海西部深水区钻探中的应用分析 被引量:1
2
作者 王世越 陈鸣 +2 位作者 孙本强 杜超 孙殿强 《地球科学前沿(汉斯)》 2018年第2期351-360,共10页
在南海西部深水区的钻探阶段,钻井工程与地层评价主要面临着如何在强噪音、深水疏松地层中实时获得高品质的全波列信息,以及应用实时随钻声波数据提高层位与压力预测精度这两个挑战。利用最新一代的随钻四极子声波技术能够获取高质量的... 在南海西部深水区的钻探阶段,钻井工程与地层评价主要面临着如何在强噪音、深水疏松地层中实时获得高品质的全波列信息,以及应用实时随钻声波数据提高层位与压力预测精度这两个挑战。利用最新一代的随钻四极子声波技术能够获取高质量的实时全波列数据,对初始的岩石力学模型进行刻度从而进行实时压力监测与井眼稳定性分析。本文对在南海西部陵水区块服务的新一代随钻四极子声波数据质量、影响实时数据质量的钻井环境及计算方法进行了分析,结果表明,随钻四极子声波技术的应用提高了钻井作业的安全系数,优化了经济效益,在油田勘探中具有较强的应用价值。 展开更多
关键词 随钻声波 实时数据 钻井风险 中国南海
下载PDF
Q Versatile Seismic Imager (QVSI) Successfully Predicts Target Depth and Pore-Pressure in HPHT Environment
3
作者 Ming Chen Guimei Pan +2 位作者 shiyue wang Dianqiang Sun Chao Du 《Engineering(科研)》 2017年第2期241-250,共10页
Drilling in any environment is challenging as it poses a challenge to drill reservoir targets without losses and minimum casing strings and is even challenging in HPHT (high pressure high temperature) environment. Sei... Drilling in any environment is challenging as it poses a challenge to drill reservoir targets without losses and minimum casing strings and is even challenging in HPHT (high pressure high temperature) environment. Seismic is the fundamental for pre-drill prognosis and completion design. The target depth prognosis is achieved through depth transformation by using seismic velocities or available velocity logs in the nearby field or block and often has varying degree of uncertainty in target depths depending upon the suitable of the velocity function used. The velocity function used could be affected due to available seismic bandwidth or structure. These uncertainties in target depths often lead to increased well costs as a result of wellbore stability issues & undesired casing strings. Most common issue faced by drillers is the target confirmation & distance to these targets ahead of bit. Vertical seismic profile (VSP) look-ahead at intermediate depths is one of the approaches to mitigate these uncertainties and drill wells safely. VSP help confirm the presence of drilling targets & also predict the depth to top of these targets. Additionally, the predicted interval velocity is used to predict the pre-pressure for next section drilling. In South China Sea, oil & gas operators face a significant risk while drilling over-pressured formations. It is therefore imperative to know the depth to top of these high pressured formations to avoid drilling directly into it and risking the well. It is also important to know the pore-pressure and mud weight for the next section to be drilled for safe drilling & with minimum casing strings [1] [2] [3]. It is more difficult to get this information in the HPHT environment due to the lack of high temperature tools [4]. Schlumberger’s proprietary QVSI*—High pressure, high temperature VSI* (Versatile Seismic Imager) has been successfully used to predict the target depth for casing landing and pore-pressure prediction in HPHT environment. QVSI is the latest generation of VSI* Versatile Seismic Imager tools developed by Schlumberger to acquire high quality tri-axial borehole seismic data in extreme environment wells. The QVSI* tool uses the Q-Technology* singlesensor hardware and software and advanced wireline telemetry for fast digital seismic data transmission from borehole to surface. QVSI is a high-temperature, high-pressure array tool design that focuses on tri-axial vector fidelity and efficient data acquisition, extending the limits in a 4-tool configuration to 500&deg;F (260℃) and 30 kpsi (207 MPa). In this paper, a case study is presented for Well-XX for CNOOC from South China Sea. The well-xx is located in Yanyan Sag, Qiongdongnan Basin and the downhole temperature was 204℃. The main target layer is Lingshui III sandstone, which is controlled by Northwest fault. It is a gas well and critical for the client to land the casing at right depth and know the drilling parameters for the next section ahead. QVSI* predicted the target depth within ±2 m for decision on casing point. The predicted pore pressure was within ±0.1 ppg. 展开更多
关键词 Pore-Pressure PREDICTION HPHT QVSI
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部