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Consolidation analysis

Rapid, accurate SNP validation can be carried out using a sample-pooling technique—allele frequency—that rapidly screens and confirms the presence of an SNP and its allelic frequency in patient populations. Conventional technologies typically analyze each SNP in each individual of the population in question, and individual results are then consolidated to yield the overall SNP allele-frequency distribution. MS-based technology is able to determine SNP allele frequencies with high precision in pooled samples, thereby replacing hundreds of individual measurements with one consolidated analysis. To that end, DNA is isolated, purified, and quantitated. A pool of DNA is formed from a high number of different individuals, amplified, and mass measured. [Pg.248]

The drain element inherent in PLAXIS was used to model PVDs. In consolidation analysis, excess pore water pressures are set to zero in all nodes that belong to the drain element. In plane strain numerical simulation, the horizontal permeability values of layers (D, (D, and (Dj around PVDs were adjusted as mentioned in Section 3.1. [Pg.307]

Initial stress and pore pressure in the foundation were firstly generated in the numerical model with the backfill elements being deactivated. Consolidation analysis then was performed on staged-construction of backfill. Safety analysis based on the SRM was carried out after the calculation of the final construction stage was finished. [Pg.308]

FE analyses were initially carried out using both time-dependent coupled consolidation analysis (CCA) and steady state seepage (SSS) in CRISP. The bending moments computed for SSS were, critically, 55% greater than the CCA results. This result is contrary to the simple calculation reported in 4.3 above, which suggested that SSS would be established within the timescale of each stage of excavation. [Pg.42]

This result is shown in Fig. 10.6. We understand that the permeability obtained by the MD/HD procedure is different from the experimental data at these values of low void ratio. However, as we will discuss later, if we use both sets of data for the ID consolidation analysis, the results in both cases are similar, and we cannot reproduce the secondary consolidation response. Conducting permeability experiments on these low permeable materials is extremely difficult. Thus we cannot conclude that the MD/HD results are incompatible with the experimental results. [Pg.277]

A consolidation analysis is also related to a strength analysis (section 8.4.2), since the consolidation degree is directly related to the gain in strength. Each stability analysis should accurately model the geometry and characteristics of the fill at the corresponding point in time. [Pg.260]

Thiam-Soon Tan, Toshiyuki Inoue and Seng-Lip Lee. Hyperbolic Method for Consolidation Analysis, Journal of Geotechnical Engineering, 117(11) 1723-1737, 1991. [Pg.638]

Chai, J.-C., Horpibulsuk, S., Shen, S.-L., Carter, J.P., 2014. Consolidation analysis of clayey deposits under vacuum pressure with horizontal drains. Geotextiles and Geomembranes 42, 437-444. [Pg.301]

In addition, detailed analysis of the chemical and physical properties of different oils used in the plant can, in some cases, allow consolidation or reduction of the number and types of lubricates required to maintain plant equipment. Elimination of unnecessary duplication can reduce required inventory levels and therefore maintenance costs. [Pg.800]

Figure 8. 29Si MASS and CPMASS NMR spectra of silica gels dried at 50°C, heated to 200 and 600°C, and consolidated at 1100°C. Hydrated samples were exposed to 100% RH at 25°C for 24 hours prior to analysis. Figure 8. 29Si MASS and CPMASS NMR spectra of silica gels dried at 50°C, heated to 200 and 600°C, and consolidated at 1100°C. Hydrated samples were exposed to 100% RH at 25°C for 24 hours prior to analysis.
Solid-state NMR spectroscopy was used for studying the formation of cubic mesoporous aluminophosphate thin films and powders. The analysis of the initial gel, the as-deposited materials and the thermally-treated materials elucidated the changes in the coordination of phosphorus and aluminium atoms and thus revealed how the framework formation and condensation proceeds. The consolidation process in thin films was different than the process in powders. Most probably this could be attributed to the effect of glass substrate. [Pg.197]

There has much analysis in the petroleum industry as what is the prudent spacing table to use in the layout of an onshore facility. Attempts have even been made to compare the spacing tables used by individuals companies. This would provide a consolidated table the entire industry could apply. Although such an idea is admirable, there are several obstacles in achieving such a goal. [Pg.96]

Conrad-Limpach-Knorr synthesis, of quinolines, 21 189 Conrad recycling process, 21 455 Conradson carbon test method, 11 705, 721 Consensus materials standards, 15 743 Consent decree protocols, in the United States, 11 692-694 Consent decrees, 11 689-690 Consequence analysis, 21 860-861 Consequence modeling, 13 165-166 Conservation applications, high performance fibers in, 13 398 Conservation of energy, 21 290 Conservation of mass, 11 737, 738-739 Conservation, of resources, 24 164-167 Conservation scientists, 11 398-399 Consistent force field, 16 744 Consolidants, in fine art examination/ conservation, 11 410... [Pg.210]

There is room for further analysis in many traditional areas, as pointed out above during the discussion of enolization. Also, it is noted that the employment of transition state pKf values is very close to the use of the proton activating factors and deprotonating factors, introduced by Stewart (Stewart and Srinivasan, 1978 Stewart, 1985). It is to be hoped that the two approaches can be consolidated in a common view of acid-base catalysis. [Pg.63]


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