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reservoir coefficient
相关语句
  相似匹配句对
     Absorption coefficient is an important parameter for reservoir description.
     吸收系数是进行储层描述的重要参数。
短句来源
     DETERMINATION OF OIL-BEARING COEFFICIENT N AND ITS SIGNIFICANCE IN RESERVOIR EVALUATION
     油藏含油系数的确定及其在油藏评价中的意义
短句来源
     economic coefficient;
     经济系数;
短句来源
     THE ABSORPTION COEFFICIENT OF H~-
     H~-之吸收系数(英文)
短句来源
     reservoir's randomicity.
     由于储层的随机性,储层预测结果便具有多解性。
短句来源
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In order to acquire gross theory refrigeration,different results with and without reservoir are acquired.Analysis shows that the reservoir produces a continually heat accumulation in hot part of pulse tube.Relative formulas are concluded to calculate the potential largest gross refrigeration of pulse tube cooler with orifice and reservoir for a given pressure wave form.In these formulas,two parameters,flow rate coefficient of orifice and pressure wave will finally determine the gross refrigeration.With further...

In order to acquire gross theory refrigeration,different results with and without reservoir are acquired.Analysis shows that the reservoir produces a continually heat accumulation in hot part of pulse tube.Relative formulas are concluded to calculate the potential largest gross refrigeration of pulse tube cooler with orifice and reservoir for a given pressure wave form.In these formulas,two parameters,flow rate coefficient of orifice and pressure wave will finally determine the gross refrigeration.With further analysis,reservoir coefficient φ is proposed to replace the flow rate coefficient of orifice,which reveals that the structure parameter of pulse tube determines the gross refrigeration finally.Pressure wave is analyzed to show its relation to pulse tube dimensions,and pressure amplitude is determined.

通过分析脉冲管热端气体的变化而得到热端温度变化和热量交换的结果, 提出了改进型脉冲管制冷机的理论制冷量的计算方法和公式。在计算中首次提出了气库系数的概念来模拟气体活塞的特征, 且它成为理论制冷量公式的一个关键参数。此外, 分析获得了估算压力波动大小的方法, 为脉冲管完整制冷系统的模拟分析与计算奠定了基础。

The oolitic beach reservoir of Feixianguan formation in northeast of Sichuan Basin is the carbonate pool of dolomized oolitic limestone. There are developed pore cave fracture,argillaceous bed and gypsum salt bed in the reservoir with the characteristics of low velocity,low gamma and low impedance The argillaceous bed is of the characteristics of low velocity,high gamma and low impedance,and the gypsum salt bed is of the characteristics of low velocity,low gamma and high impedance It is very important...

The oolitic beach reservoir of Feixianguan formation in northeast of Sichuan Basin is the carbonate pool of dolomized oolitic limestone. There are developed pore cave fracture,argillaceous bed and gypsum salt bed in the reservoir with the characteristics of low velocity,low gamma and low impedance The argillaceous bed is of the characteristics of low velocity,high gamma and low impedance,and the gypsum salt bed is of the characteristics of low velocity,low gamma and high impedance It is very important to find out the oolitic beach reservoir from the complex surrounding rocks by using seismic prediction data and furthermore to select the high yield belt Through investigating many years,a set of efficacious techniques for predicting the oolitic beach reservoir of Feixianguan formation has been carried out,i e :① efficaciously predicting if there is any reservoir by velocity inversion with acoustic inversion and gamma inversion;② calculating the reservoir coefficient by porosity inversion and quantum technique to clarify the thickness and quality of the reservoir;③ whether there is any gas or not in the reservoir could be determined with the hydrocarbon profile figure gained by AVO technique Evident results have been obtained by the set of technique in practice

四川盆地东北部飞仙关组鲕滩储层是鲕粒灰岩云化后的碳酸盐岩储集体 ,孔洞缝发育 ,储层段中含有泥质、膏盐夹层 ,储层具有低速、低伽马、低阻抗的特征 ;泥质层具有低速、高伽马、低阻抗特征 ;而膏盐岩具有低速、低伽马、高阻抗特征。更重要的是 ,要如何通过地震预测的方法从复杂的围岩中检测鲕滩储层 ,进而指出天然气的高产区带。通过多年的攻关研究 ,终于寻找到了一套预测飞仙关组鲕滩储层行之有效的技术。即采用速度反演、辅以波阻抗和伽马反演有效地预测储层的有无 ;利用孔隙度反演和量化技术计算出储能系数 ,查明储层的厚薄和好坏 ;在储层段利用AVO技术得到的碳氢剖面可以判识储层是否含气。这套技术在实际应用中取得了明显的效果。

>=In order to acquire gross theory refrigeration, different results with and without reservoir are acquired, Analysis shows that the reservoir produces a continually heat accumulation in hot part of pulse tube, Relative formulas are concluded to calculate the potential largest gross refrigeration of pulse tube cooler with orifice and reservoir for a given pressure wave form, In these formulas, two parameters, flow rate coefficient of orifice and pressure wave will finally determine the gross refrigeration. With...

>=In order to acquire gross theory refrigeration, different results with and without reservoir are acquired, Analysis shows that the reservoir produces a continually heat accumulation in hot part of pulse tube, Relative formulas are concluded to calculate the potential largest gross refrigeration of pulse tube cooler with orifice and reservoir for a given pressure wave form, In these formulas, two parameters, flow rate coefficient of orifice and pressure wave will finally determine the gross refrigeration. With further analysis, reservoir coefficient is proposed to replace the flow rate coefficient of orifice,which reveals that the structure parameter of pulse tube determines the gross refrigeration finally, Pressure wave is analyzed to show its relation to pulse tube dimensions,and pressure amplitude is determined.

通过分析脉冲管热端气体的变化而得到热端温度变化和热量交换的结果,提出了改进型脉冲管制冷机的理论制冷量的计算方法和公式。在计算中首次提出了气库系数的概念来模拟气体活塞的特征,且它成为理论制冷量公式的一个关键参数。此外,分析获得了估算压力波动大小的方法,为脉冲管完整制冷系统的模拟分析与计算奠定了基础。

 
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