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pumping well
相关语句
  抽油井
     Producing Profile Testing Technology for the Pumping Well with φ178 Casing.
     φ178mm套管抽油井产出剖面测试技术
短句来源
     An Intelligent Pumping Well Dynamometer
     智能抽油井示功仪
短句来源
     The Analysis of Working Condition of Screw Pumping Well
     螺杆泵抽油井工况分析
短句来源
     An Approach to Extract Liquid Level Values from Echo Signal of Liquid Levels in Rod Pumping Well
     提取抽油井回音信号中液位值的方法
短句来源
     GAS ANCHOR PERFORMANCE ANALYSIS FOR SUCKER ROD PUMPING WELL
     有杆泵抽油井气锚动态分析
短句来源
更多       
  抽油机井
     Development of KZW type sucker rod increment pump for <font color=red >pumping well</font> and its application </td></tr> <tr><td class="text11Green">     KZW型<font color=red >抽油机井</font>有杆增输泵的研制及应用 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-SKJX200204009.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-SKJX200204009.html')">短句来源</a></td></tr> <tr><td>     Research on Relation Between <font color=red >Pumping Well</font> Pump System Efficiency and Discharge Coefficient </td></tr> <tr><td class="text11Green">     <font color=red >抽油机井</font>泵系统效率与排量系数的关系研究 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-DQSK200603029.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-DQSK200603029.html')">短句来源</a></td></tr> <tr><td>     Optimization Design of <font color=red >Pumping Well</font> Production System and its Application </td></tr> <tr><td class="text11Green">     <font color=red >抽油机井</font>生产系统的优化设计及其应用 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-DQSY703.005.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-DQSY703.005.html')">短句来源</a></td></tr> <tr><td>     Inspection on Regression Result of <font color=red >Pumping Well</font> System Efficiency with Fuzzy Believing Degree </td></tr> <tr><td class="text11Green">     <font color=red >抽油机井</font>系统效率回归结果的模糊置信度检验法 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-DQSY802.018.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-DQSY802.018.html')">短句来源</a></td></tr> <tr><td>     Analysis on the sensitivity of the system efficiency of <font color=red >pumping well</font> and its application </td></tr> <tr><td class="text11Green">     <font color=red >抽油机井</font>系统效率敏感性分析及其应用 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-SYZC200702011.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-SYZC200702011.html')">短句来源</a></td></tr> <tr><td align="right"><a href="dict_more_sen.aspx?scw=pumping+well&c=49&z=&tran=%e6%8a%bd%e6%b2%b9%e6%9c%ba%e4%ba%95" target="_blank">更多</a>       </td></tr></TABLE> <TABLE width="100%"><tr><td><IMG id="j_2" style="cursor:pointer" onclick="showjds('showjd_2',this)" src="images/jian.gif" border="0">  <font size="3"><b><a href="javascript:showjdsw('showjd_2','j_2')" >抽水井</a></b></font></td></tr></TABLE> <TABLE width="100%" id="showjd_2"> <tr><td>     According to the situation about the hydrogeology and engineering geology of reservoir in the west suburb of SanYuan,the water-pumped measuring equipment of the field test for single well,arrangement of the <font color=red >pumping well</font> and observation well,well structures and well drilling technology was designed,and decided the requirement of the test and established the dewatering mathematic models and hydrogeological parameters. </td></tr> <tr><td class="text11Green">     根据三原西郊水库水文地质和工程地质情况,设计了现场单井抽水试验的抽水量测设备、<font color=red >抽水井</font>与观测井的布置、井的结构和成井工艺,确定了抽水试验要求,建立了降水数学模型并确定了水文地质参数。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-DXSU200506013.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-DXSU200506013.html')">短句来源</a></td></tr> <tr><td>     For the same natural groundwater flow velocity, the temperature changes at the <font color=red >pumping well</font> are smaller if the regional groundwater flows parallel to the well pair rather than perpendicular to the well pair. </td></tr> <tr><td class="text11Green">     对于相同地下水天然流速,地下水流向沿<font color=red >抽水井</font>指向回灌井比垂直于抽灌井对之间连线方向的情况,<font color=red >抽水井</font>温度变化幅度要小。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-QHXB200609008.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-QHXB200609008.html')">短句来源</a></td></tr> <tr><td>     Firstly, it uses numerical simulation technology to analyze the underground hydraulic condition and heat condition which influence energy stored effect and get the proper layout of <font color=red >pumping well</font> and injecting well. </td></tr> <tr><td class="text11Green">     首先利用数值模拟技术,对影响储能效果的地下水力状况、热力状况进行了分析,得出了<font color=red >抽水井</font>、回灌井系统的合理布局。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CMFD-2006194824.nh.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CMFD-2006194824.nh.html')">短句来源</a></td></tr> <tr><td>     The stresses in salt rock surrounding a cavern are lower than those in the virgin ground and with distribution as hydrostatical pressure surrounding a <font color=red >pumping well</font>. </td></tr> <tr><td class="text11Green">     盐岩洞室周边附近区域内围岩的应力较低,其分布呈现出<font color=red >抽水井</font>附近的水压力特征。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-YTGC200401011.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-YTGC200401011.html')">短句来源</a></td></tr> <tr><td>     The paper analyzed on the absorption quantity of the reach <font color=red >pumping well</font> to the water river and made a quantitative analysis the absorption rate of the water source projects around river at the downstream of Baishi Reservoir to the water source in the basis of drought condition. Based on the theories formula and the test data of cross-section wading stream method,the results provided a scientific basis for assessing cost of water project by the reservoir. </td></tr> <tr><td class="text11Green">     通过理论公式、历史实测资料和断面测流法实验资料,分析计算了大凌河白石水库下游各河段<font color=red >抽水井</font>对河水的吸夺量,进而定量地分析了白石水库下游沿河水源工程在河道干枯条件下对白石水库水源的吸夺率,为水库合理征收用水工程费提供了科学依据。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-SWZZ200305007.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-SWZZ200305007.html')">短句来源</a></td></tr> <tr><td align="right"><a href="dict_more_sen.aspx?scw=pumping+well&c=6&z=&tran=%e6%8a%bd%e6%b0%b4%e4%ba%95" target="_blank">更多</a>       </td></tr></TABLE> <TABLE width="100%"><tr><td><IMG id="j_3" style="cursor:pointer" onclick="showjds('showjd_3',this)" src="images/jian.gif" border="0">  <font size="3"><b><a href="javascript:showjdsw('showjd_3','j_3')" >“pumping well”译为未确定词的双语例句</a></b></font></td></tr></TABLE> <TABLE width="100%" id="showjd_3"> <tr><td>     The B/S remote failure diagnosis of the rod <font color=red >pumping well</font> </td></tr> <tr><td class="text11Green">     基于B/S模式的有杆泵井故障远程诊断技术 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-SKJX200106002.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-SKJX200106002.html')">短句来源</a></td></tr> <tr><td>     Experiments and Calculations for Winter Operation with <font color=red >Pumping Well</font> Water into Power Canal </td></tr> <tr><td class="text11Green">     抽井水入发电渠道冬季运行试验及其计算 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-ZNSD199112014.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-ZNSD199112014.html')">短句来源</a></td></tr> <tr><td>     Study and Application of Working Status Macroscopic Control Chart of Screw <font color=red >Pumping Well</font> </td></tr> <tr><td class="text11Green">     螺杆泵油井工况宏观控制图研制与应用 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-JHSX200203029.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-JHSX200203029.html')">短句来源</a></td></tr> <tr><td>     Comprehensive Judgement of The Pumping Circumstances of A <font color=red >Pumping Well</font> by Its ΔP-M Value </td></tr> <tr><td class="text11Green">     用△P—M值综合判断抽油机井的泵况 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-YQTD198606007.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-YQTD198606007.html')">短句来源</a></td></tr> <tr><td>     Based on this, the principle, analytical model and main functions of the screw <font color=red >pumping well</font> working status macroscopic control chart are described in detail. </td></tr> <tr><td class="text11Green">     为此 ,详细介绍了螺杆泵油井工况宏观控制图的原理、分析模型和主要功能。 </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-JHSX200203029.html" target="_blank" onclick="record('pumping well', '双语例句', 'http://xuewen.cnki.net/CJFD-JHSX200203029.html')">短句来源</a></td></tr> <tr><td align="right"><a href="dict_more_sen.aspx?scw=pumping+well&c=74&z=&unvsm=1" target="_blank">更多</a>       </td></tr></TABLE> </td></tr><tr><td> <IMG src="images/userdefine.png" border="0"> <font color="blue" size="3"><b>查询“pumping well”译词为用户自定义的双语例句<br><br></b></font>    我想查看译文中含有:<input type="text" id="custom" name="custom" onkeydown="if(event.keyCode=='13'){tjCustom('pumping+well');return false;}">的双语例句 <input style="cursor:pointer;" type="button" name="Submit" value="提交" onclick="tjCustom('pumping+well');"></td></tr></TABLE></TD></TR> </TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><TR><TD><IMG src="images/dian_ywlj.gif" alt="例句" name=word></TD></TR><TR><TD><table width="100%"><tr><td><font class="text6">为了更好的帮助您理解掌握查询词或其译词在地道英语中的实际用法,我们为您准备了出自英文原文的大量英语例句,供您参考。</font></td></tr><tr><td><table width="100%"><tr><td><IMG id="lj_0" style="cursor:pointer" onclick="showjds('showlj_0',this)" src="images/jian.gif" border="0">  <font color="blue" size="3"><b><a href="javascript:showjdsw('showlj_0','lj_0')" >pumping well</b></font></td></tr></table><table width="100%" id="showlj_0"><tr><td> The residual wavelet varies versus offset from the <font color=red >pumping well</font> for a given residual image. </td></tr> <tr><td align="right">      </td></tr><tr><td> These may be either time-related capture zones or catchments related to the activity of a <font color=red >pumping well</font> or spring. </td></tr> <tr><td align="right">      </td></tr><tr><td> For an ideal tracer, all iso-salinity surfaces rise toward the <font color=red >pumping well</font>, whereas for brine only iso-salinity surfaces of very low salinity upcone towards the <font color=red >pumping well</font>. </td></tr> <tr><td align="right">      </td></tr><tr><td> This indicates that once a <font color=red >pumping well</font> is abandoned because of high salinity, it can be reused for groundwater utilization only after a long time. </td></tr> <tr><td align="right">      </td></tr><tr><td> A recirculating flow cell may occur in the saltwater layer beneath the <font color=red >pumping well</font>, widening the saltwater mound. </td></tr> <tr><td align="right">      </td></tr><tr><td align="right"><a target="_blank" href="dict_more_exm.aspx?&c=50&scw=pumping+well"><font color="red">更多</font></a>          </td></tr></table></td></tr></table></TD></TR></TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><TBODY><TR><TD><IMG src="images/04.gif"><BR><BR></TD></TR><TR><TD class="text6"><p class="wz wz-en"> In this paper, according to variational principle, eqs.(19)and (20) are proposed to compute head distribution and seepage discharge by the finite element method, which satisfy the general definite solution problem eq. (1) for unconfined three-dimensional unsteady seepage of Darcy's law. It is verified that they are an available numerical approach for analyzing three-dimensional unsteady seepage flow problem with free surface through the computation of a <font color=red >pumping well</font> of unconfined unsteady seepage. </p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">本文根据变分原理,对适合达西定律的无压地下水三向非稳定渗流的一般定解问题式(1)提出了用有限元法计算水头分布和渗流量的公式,即式(19)和式(20)。并通过抽水井算例,证明它们对求解有自由面的三向非稳定渗流问题,是一种可行的数值方法。</p></TD></TR><TR><TD class="text6"><p class="wz wz-en"> The Pumping Well Diagnostic Technique is a mathematical method based on wave equation to analyse the problem of <font color=red >pumping well</font>. First of all, the load and displacement at the top of each tapered rod string and at the pump plunger are calculated from the measured load and displacement of the polished rod, and the corresponding subsurface dynagraphs are plotted, then the operation conditions of the <font color=red >pumping</font> system are analysed from the surface and subsurface dynagraphs. All the calculations and analyses... </p><p class="wz wz-en-all">The Pumping Well Diagnostic Technique is a mathematical method based on wave equation to analyse the problem of <font color=red >pumping well</font>. First of all, the load and displacement at the top of each tapered rod string and at the pump plunger are calculated from the measured load and displacement of the polished rod, and the corresponding subsurface dynagraphs are plotted, then the operation conditions of the <font color=red >pumping</font> system are analysed from the surface and subsurface dynagraphs. All the calculations and analyses are completed by a computer. Besides the basic principle proposed first by S. G. Gibbs et al. and practical application of this diagnostic techique, a new method for calculating viscous damping coefficient from liquid viscosity, the size of tubing and sucker rod, and <font color=red >pumping</font> parameters is also presented in this paper.</p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">抽油井计算机诊断技术是以波动方程为基础,分析抽油井问题的数学方法。首先根据测得的光杆载荷及位移,计算出每级抽油杆柱顶部及抽油泵柱塞上的载荷和位移,并绘出相应的井下示功图,然后,根据地面及井下示功图分析抽油系统的工况。全部计算和分析工作都由计算机完成。本文介绍了诊断技术的基本原理及其应用,并提出了根据液体粘度、抽油杆和油管直径以及抽汲参数计算粘滞阻尼系数的新方法。</p></TD></TR><TR><TD class="text6"><p class="wz wz-en"> In this paper,a method of measuring the pressure gradient at different depth in a <font color=red >pumping well</font> to determine the correction factor for gas—oil mixtu- re in the casing annulus is presented.Thus the bottom hole pressure in a pumpi- ng <font color=red >well</font> can easily be calculated by measuring the fluid level in the annulus, Examples in Dagang oil field are given in this paper. </p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">本文介绍应用矿场实测压力梯度确定油井井下混气液柱比重修正系数,用以解决抽油井中根据液面资料计算井底压力的问题。</p></TD></TR><TR><TD> <script type="text/javascript">getWzSwitch();</script></TD></TR><TR><TD align=right><a href="dict_result.aspx?m=m&style=&scw=pumping+well&tjType=article" class="textlink9" )"><< 更多相关文摘</a>    </TD></TR></TBODY></TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><tr><td align=left class=text><img src="images/dot.gif" alt="图标索引" name=dot><strong> 相关查询</strong></td></tr><tr><td><div class="zztj"><ul><li><a href="h_51071294000.html">well pumping</a></li><li><a href="h_53126362000.html">screw pumping well</a></li><li><a href="h_53202792000.html">well pumping test</a></li><li><a href="h_52165307000.html">rod pumping well</a></li><li><a href="h_51030965000.html">conventional well pumping</a></li><li><a href="h_53842008000.html">deep well pumping</a></li><li><a href="h_53522528000.html">pumping well system</a></li><li><a href="h_53087442000.html">electric pumping 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