Coalbed methane reservoir (CBMR) evaluation is important for choosing the prospective target area for coalbed methane exploration and production. This study aims at identifying the characteristic parameters and meth...Coalbed methane reservoir (CBMR) evaluation is important for choosing the prospective target area for coalbed methane exploration and production. This study aims at identifying the characteristic parameters and methods to evaluate CBMR. Based on the geological surveys, laboratory measurements and field works, a four-level analytic hierarchy process (AHP) model for CBMR evaluation is proposed. In this model, different weights are prioritized and assigned on the basis of three main criteria (including reservoir physical property, storage capacity and geological characteristics), 15 sub-criteria, and 18 technical alternatives; the later of which are discussed in detail. The model was applied to evaluate the CBMR of the Permo-Carboniferous coals in the Qinshui Basin, North China. This GIS-based fuzzy AHP comprehensive model can be used for the evaluation of CBMR of medium-high rank (mean maximum vitrinite reflectance 〉0.5 %) coal districts in China.展开更多
The rapid changing near source, multi-stream depositional environment of conglomerate reservoirs leads to severe heterogeneity, complex lithology and physical properties, and large changes of oil layer resistivity. Qu...The rapid changing near source, multi-stream depositional environment of conglomerate reservoirs leads to severe heterogeneity, complex lithology and physical properties, and large changes of oil layer resistivity. Quantitative evaluation of water-flooded layers has become an important but difficult focus for secondary development of oilfields. In this paper, based on the analysis of current problems in quantitative evaluation of water-flooded layers, the Kexia Group conglomerate reservoir of the Sixth District in the Karamay Oilfield was studied. Eight types of conglomerate reservoir lithology were identified effectively by a data mining method combined with the data from sealed coring wells, and then a multi-parameter model for quantitative evaluation of the water-flooded layers of the main oil-bearing lithology was developed. Water production rate, oil saturation and oil productivity index were selected as the characteristic parameters for quantitative evaluation of water-flooded layers of conglomerate reservoirs. Finally, quantitative evaluation criteria and identification rules for water-flooded layers of main oil-bearing lithology formed by integration of the three characteristic parameters of water-flooded layer and undisturbed formation resistivity. This method has been used in evaluation of the water-flooded layers of a conglomerate reservoir in the Karamay Oilfield and achieved good results, improving the interpretation accuracy and compliance rate. It will provide technical support for avoiding perforation of high water-bearing layers and for adjustment of developmental programs.展开更多
研究水库下游河道中水文情势的变化是研究水利工程对河流生态系统胁迫的一种新途径。RVA(Range of Variability Approach)方法基于32个参数从水流的等级、频率、历时、发生时间、变化率5个方面的水文特征对建坝后河道水流情势的变化进...研究水库下游河道中水文情势的变化是研究水利工程对河流生态系统胁迫的一种新途径。RVA(Range of Variability Approach)方法基于32个参数从水流的等级、频率、历时、发生时间、变化率5个方面的水文特征对建坝后河道水流情势的变化进行定量分析,并给出各个参数确定的满足河道生态要求的流量特征变化范围。将该方法运用于位于浙江省飞云江上的珊溪水库,以其下游的峃口水文站为观测点,分析了该站52a的日流量资料,计算出了河道水流参数满足生态系统要求的可控制范围。并在原RVA评价各参数水文变化度的基础上进行了改进,利用改进的方法对32个参数的变化情况以及整个河流水流情势的变化情况进行了评价。通过与原方法的比较,结果表明改进后的RVA方法更为客观。根据计算结果,建坝后该河流的整体水流情势变化度为中度,流量的频率和历时指标变化最大,低流量事件的持续时间减少,出现次数增多,严重影响了河流的生态功能。展开更多
基金funded by the National Basic Research Program of China(Grant Nos.2006CB202202,2002CB211702,2009CB219600)National Natural Science Foundation of China(No.40572091)+1 种基金China Geological Survey(Grant Nos.20021010004,1212010534702)PetroChina Innovation Fundation(No.2008D-5006-01-04)
文摘Coalbed methane reservoir (CBMR) evaluation is important for choosing the prospective target area for coalbed methane exploration and production. This study aims at identifying the characteristic parameters and methods to evaluate CBMR. Based on the geological surveys, laboratory measurements and field works, a four-level analytic hierarchy process (AHP) model for CBMR evaluation is proposed. In this model, different weights are prioritized and assigned on the basis of three main criteria (including reservoir physical property, storage capacity and geological characteristics), 15 sub-criteria, and 18 technical alternatives; the later of which are discussed in detail. The model was applied to evaluate the CBMR of the Permo-Carboniferous coals in the Qinshui Basin, North China. This GIS-based fuzzy AHP comprehensive model can be used for the evaluation of CBMR of medium-high rank (mean maximum vitrinite reflectance 〉0.5 %) coal districts in China.
文摘The rapid changing near source, multi-stream depositional environment of conglomerate reservoirs leads to severe heterogeneity, complex lithology and physical properties, and large changes of oil layer resistivity. Quantitative evaluation of water-flooded layers has become an important but difficult focus for secondary development of oilfields. In this paper, based on the analysis of current problems in quantitative evaluation of water-flooded layers, the Kexia Group conglomerate reservoir of the Sixth District in the Karamay Oilfield was studied. Eight types of conglomerate reservoir lithology were identified effectively by a data mining method combined with the data from sealed coring wells, and then a multi-parameter model for quantitative evaluation of the water-flooded layers of the main oil-bearing lithology was developed. Water production rate, oil saturation and oil productivity index were selected as the characteristic parameters for quantitative evaluation of water-flooded layers of conglomerate reservoirs. Finally, quantitative evaluation criteria and identification rules for water-flooded layers of main oil-bearing lithology formed by integration of the three characteristic parameters of water-flooded layer and undisturbed formation resistivity. This method has been used in evaluation of the water-flooded layers of a conglomerate reservoir in the Karamay Oilfield and achieved good results, improving the interpretation accuracy and compliance rate. It will provide technical support for avoiding perforation of high water-bearing layers and for adjustment of developmental programs.
文摘研究水库下游河道中水文情势的变化是研究水利工程对河流生态系统胁迫的一种新途径。RVA(Range of Variability Approach)方法基于32个参数从水流的等级、频率、历时、发生时间、变化率5个方面的水文特征对建坝后河道水流情势的变化进行定量分析,并给出各个参数确定的满足河道生态要求的流量特征变化范围。将该方法运用于位于浙江省飞云江上的珊溪水库,以其下游的峃口水文站为观测点,分析了该站52a的日流量资料,计算出了河道水流参数满足生态系统要求的可控制范围。并在原RVA评价各参数水文变化度的基础上进行了改进,利用改进的方法对32个参数的变化情况以及整个河流水流情势的变化情况进行了评价。通过与原方法的比较,结果表明改进后的RVA方法更为客观。根据计算结果,建坝后该河流的整体水流情势变化度为中度,流量的频率和历时指标变化最大,低流量事件的持续时间减少,出现次数增多,严重影响了河流的生态功能。