Calculated Porosity of Volcanic Reservoir in Wangjiatun of the Northern Songliao Basin, NE China

来源 :Journal of Geoscientific Research in Northeast Asia | 被引量 : 0次 | 上传用户:hsq650
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In Wangjiatun area of the Northern Songliao Basin, reservoir space can be divided into three types: primary pore, secondary pore and fissure according to their origins,which can be subdivided into eight subtypes: macro-vesicule, shrank primary vesicule, alteration pore, groundmass corrosive pore, normal structural crack, corrosive structural crack, filled structural crack and groundmass shrank crack according to texture and origin of the pore space. It has characteristic of double pore medium. Volcanic porosities of small diameter samples (with diameter of ca. 2.5 cm) and large diameter samples (with diameter of ca. 21.5 cm) were tested in accordance with the characteristic of volcanic reservoir space. Volcanic porosities for small diameter samples correspond with matrix porosities and those of large diameter samples correspond with total porosities including matrix and fractured porosities. Models of the calculated porosity by acoustic wave or density of volcanic reservoir are established in view of those measured data. Comparison of calculated and measuredporosities shows that precision of calculated porosities is lower for rhyolite and tuffites, and higher for basaltand andesite. Relative errors of calculated porosities by model of large diameter samples are lower than those of small diameter samples, i. e. precision of the former is higher than that of the later. In Wangjiatun area of ​​the Northern Songliao Basin, reservoir space can be divided into three types: primary pore, secondary pore and fissure according to their origins, which can be subdivided into eight subtypes: macro-vesicule, shrank primary vesicule, alteration pore, groundmass corrosive pore, normal structural crack, corrosive structural crack, filled structural crack and ground mass shrank crack according to texture and origin of the pore space. Volcanic porosities of small diameter medium ) and large diameter samples (with diameter of ca. 21.5 cm) were tested in accordance with the characteristic of volcanic reservoir space. Volcanic porosities for small diameter samples correspond with matrix porosities and those of large diameter samples correspond with total porosities including matrix and fractured porosities. Models of the calculated porosity by acoustic wave or density of volcanic reservoir are establi shed in view of those measured data. Comparison of calculated porosities that that precision of calculated porosities is lower for rhyolite and tuffites, and higher for basaltand andesite. relative errors of calculated porosities by model of large diameter samples are lower than those of small diameter samples, ie precision of the former is higher than that of the later.
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