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Neutron Characteristics of Main Dolomite and Zechstein Limestone

机译:主白云岩和Zechstein石灰石的中子特征

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It has become clear that the knowledge of the macroscopic thermal neutron absorption cross section (sum_a) and hydrogen/water content of the solid phase of the geological formation can improve the interpretation of neutron porosity logs significantly. The view is generally taken that a reliable value of sum_a can be obtained only by a direct measurement. Therefore, many laboratories launched mesurements of sum_a for rock samples. On the other hand, the question of hydrogen content determination seems to be still underestimated. Hydrogen inherent in the solid phase of rocks is usually associated with clay minerals and, therefore, its estimation is mostly based on the petrografic analysis (cf. Lysne, 1988). However, the authors of this paper are convinced that hydrogen determination by the neutron thermalization technique is more adequate for this purpose (cf. Kreft et al., 1989b, Ciechanowski et al., 1991). To date, the only systematic study of neutron characteristics of a complex geological formation has been reported by Lysne (Lysne, 1988).
机译:已经清楚地知道,地质形成的固相的宏观热中子吸收横截面(SUM_A)和氢气/含水含量显着提高中子孔隙率原木的解释。通常认为,只能通过直接测量获得SUM_A的可靠值。因此,许多实验室发起了岩石样本的Sum_A的含量。另一方面,氢含量测定的问题似乎仍然低估。岩石固体相中固有的氢通常与粘土矿物质相关,因此,其估计主要是基于石油中的分析(CF.Lysne,1988)。然而,本文的作者确信,由于该目的,中子热化技术的氢气测定更适当(参见KReft等,1989B,Ciechanowski等。,1991)。迄今为止,Lysne(Lysne,1988年)报道了复杂地质形成的中子特征的唯一系统研究。

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