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  • #REDIRECT [[Rock quality]]
    26 bytes (3 words) - 15:06, 19 December 2014
  • #REDIRECT [[Reservoir system quality prediction]]
    49 bytes (5 words) - 14:36, 28 July 2014
  • #REDIRECT [[Kerogen type and quality: visual assessment]]
    57 bytes (7 words) - 14:42, 8 July 2014
  • #REDIRECT [[Kerogen type and quality: visual assessment]]
    57 bytes (7 words) - 20:39, 14 May 2014
  • #REDIRECT [[Kerogen type and quality: visual assessment]]
    57 bytes (7 words) - 14:43, 8 July 2014
  • | chapter = Predicting reservoir system quality and performance ...r modeling pore-space evolution and enhance prediction of the location and quality of potential carbonate reservoir rocks.
    2 KB (251 words) - 18:32, 6 April 2022
  • [[Category:Predicting reservoir system quality and performance]]
    165 bytes (22 words) - 19:51, 14 April 2014
  • [[file:predicting-reservoir-system-quality-and-performance_fig9-40.png|500px|thumb|{{figure number|1}}How a Buckles pl ...pages.com/data/specpubs/beaumont/ch09/ch09.htm Predicting Reservoir System Quality and Performance], in E. A. Beaumont and N. H. Foster, Exploring for Oil and
    1 KB (183 words) - 18:19, 26 March 2015
  • To assess [[kerogen]] quality visually, we can separate it from the mineral matrix through acidification. ==Visual kerogen types and quality==
    2 KB (300 words) - 18:17, 9 February 2022
  • [[Category:Predicting reservoir system quality and performance]]
    204 bytes (33 words) - 16:05, 20 August 2014
  • | chapter = Predicting reservoir system quality and performance * [[Characterizing rock quality]]
    2 KB (229 words) - 16:31, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance ...a carbonate rock is generally more rewarding when searching for reservoir-quality rocks.
    5 KB (708 words) - 17:27, 5 December 2023
  • ...know the amount of hydrogen present in order to assess overall source rock quality. The amount of oxygen and hydrogen present in the [[kerogen]] defines the k ==Determining kerogen quality==
    3 KB (525 words) - 18:09, 9 February 2022
  • | chapter = Predicting reservoir system quality and performance ...omic viability of a play or prospect and is a function of reservoir system quality. Performance is expressed by
    4 KB (547 words) - 18:09, 1 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-85.png|300px|thumb|{{figure number|1}}Location of the
    3 KB (429 words) - 14:19, 11 April 2022
  • | chapter = Predicting reservoir system quality and performance ...from very limited data. This section discusses methods for predicting the quality of sandstone and carbonate reservoir systems.
    3 KB (425 words) - 17:11, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-66.png|thumb|300px|{{figure number|1}}Typical carbonat
    3 KB (433 words) - 18:32, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance ...oat size and connectivity|pore throat-size distribution]], and [[Reservoir quality|pore geometry]]. Mapping S<sub>w</sub> distribution in a reservoir helps us
    5 KB (687 words) - 17:09, 5 April 2022
  • [[Category:Predicting reservoir system quality and performance]]
    376 bytes (38 words) - 20:19, 14 April 2014
  • | chapter = Predicting reservoir system quality and performance ...eds of [[packstone]] and [[mudstone]]. [[:file:predicting-reservoir-system-quality-and-performance_fig9-103.png|Figure 1]] is a [[Pickett plot construction|Pi
    4 KB (588 words) - 17:01, 12 April 2022
  • ==Seal quality and dip rate== ...]s can be areally extensive. As structural dip steepens, the need for high-quality seals increases, raising the probability of trap failure.<ref name=ch21r19>
    5 KB (632 words) - 20:26, 3 February 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    2 KB (227 words) - 13:38, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance ...l, gas, and water move through rocks). [[:file:predicting-reservoir-system-quality-and-performance_fig9-9.png|Figure 1]] shows typical 3-D pore system geometr
    3 KB (388 words) - 13:52, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance ...t for understanding how to assess reservoir rock quality or to compare the quality of one flow unit to another.
    5 KB (694 words) - 20:41, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-99.png|300px|thumb|{{figure number|1}}Petrophysical ch
    6 KB (842 words) - 18:50, 4 December 2023
  • | chapter = Predicting reservoir system quality and performance # Enter R<sub>m</sub> and move across ([[:file:predicting-reservoir-system-quality-and-performance_fig9-32.png|Figure 1]]) to the appropriate mud weight.
    6 KB (1,027 words) - 16:40, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-29.png|500px|thumb|{{figure number|1}}Resistivity prof
    3 KB (427 words) - 16:16, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    2 KB (244 words) - 13:38, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-36.png|thumb|300px|{{figure number|1}}Plot points of m
    6 KB (878 words) - 16:16, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance ...tch predictions, many variables could be responsible; however, the number, quality, and location of containers is often incorrect.
    9 KB (1,231 words) - 18:42, 1 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-10.png|thumb|300px|{{figure number|1}}From Coalson et
    4 KB (516 words) - 14:04, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance ...r<sub>35</sub> method yields information about the fluid flow and storage quality of a rock.
    10 KB (1,534 words) - 16:53, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-22.png|300px|thumb|{{figure number|1}}Example reservoi
    5 KB (752 words) - 16:53, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-11.png|300px|thumb|{{figure number|1}}Example of a mer
    6 KB (898 words) - 16:21, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-102.png|300px|thumb|{{figure number|1}}Crossplot of ro
    5 KB (659 words) - 16:54, 12 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-14.png|300px|thumb|{{figure number|1}}Relationship bet
    6 KB (828 words) - 16:32, 4 April 2022
  • ...nd reservoir, and geological estimation of the nearest rock unit of source quality. * High-quality carrier beds
    3 KB (413 words) - 15:19, 14 February 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-1.png|300px|thumb|{{figure number|1}}Major components
    4 KB (579 words) - 14:34, 1 April 2022
  • | chapter = Predicting reservoir system quality and performance ...log]] data from one well (well 11; see [[:file:predicting-reservoir-system-quality-and-performance_fig9-86.png|Figure 1]]), we see a picture of a clastic rese
    6 KB (769 words) - 17:23, 11 April 2022
  • # Quality of science # Quality of writing
    2 KB (257 words) - 19:24, 27 July 2015
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-68.png|thumb|400px|{{figure number|1}}Time–porosity
    6 KB (727 words) - 19:06, 6 April 2022
  • * [[Reservoir quality]]
    867 bytes (82 words) - 20:42, 16 July 2014
  • | chapter = Predicting reservoir system quality and performance ...also can include the thickness and lateral extent as aspects of reservoir quality.
    7 KB (894 words) - 14:15, 11 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-6.png|300px|thumb|{{figure number|1}}Typical decline c
    7 KB (1,052 words) - 18:45, 1 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-48.png|300px|thumb|{{figure number|1}}Water movement p
    6 KB (787 words) - 13:43, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    2 KB (300 words) - 20:29, 5 April 2022
  • ...retard [[diagenesis]] in an [[accumulation]], sooner or later [[reservoir quality]] decreases with increasing age and burial.<ref name=ch11r5>Bloch, S., 1991 ...isplacement pressure]] in the reservoir rock may approach that of moderate-quality seals. As a result, a lithology that could seal an accumulation at shallow
    3 KB (430 words) - 15:35, 1 February 2022
  • | chapter = Predicting reservoir system quality and performance [[:file:predicting-reservoir-system-quality-and-performance_fig9-96.png|Figure 1]] is a map showing the location of Wey
    6 KB (848 words) - 17:34, 3 January 2024
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-90.png|300px|thumb|{{figure number|1}}From Hartmann an
    7 KB (956 words) - 17:24, 11 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-26.png|300px|thumb|{{figure number|1}}When a sample co
    9 KB (1,351 words) - 13:31, 5 April 2022
  • ==Data quality== ...]].) [[Basic seismic processing|Processing]] generally has less impact on quality but is still very important.
    5 KB (739 words) - 18:51, 27 January 2022
  • | chapter = Predicting reservoir system quality and performance ...a059/a059/0001/0000/0015.htm Regional controls on diagenesis and reservoir quality in Lower Tertiary sandstones along the Texas Gulf Coast], in D. A. McDonald
    10 KB (1,384 words) - 15:00, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance * Reservoir-quality facies that are
    5 KB (708 words) - 21:00, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-82.png|300px|thumb|{{figure number|1}}Comparison of mo
    5 KB (674 words) - 21:22, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance ...a059/a059/0001/0000/0015.htm Regional controls on diagenesis and reservoir quality in Lower Tertiary sandstones along the Texas Gulf Coast], in D. A. McDonald
    5 KB (729 words) - 20:48, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[Reservoir quality|Pore type]], [[Pore system shapes|pore geometry]], and [[Petroleum reservoi
    9 KB (1,118 words) - 17:03, 6 April 2022
  • * Quality capable of yielding moveable hydrocarbons ...ed by a measure of the [[total organic carbon (TOC)]] contained in a rock. Quality is measured by determining the types of [[kerogen]] contained in the organi
    4 KB (569 words) - 21:38, 4 February 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-76.png|300px|thumb|{{figure number|1}}Third-, fourth-,
    7 KB (989 words) - 20:45, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance ...r drive mechanism]]. Predicting recovery depends on predicting [[reservoir quality]] and reservoir drive.
    5 KB (691 words) - 17:10, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-83.png|300px|thumb|{{figure number|1}}(1) a typical su
    6 KB (761 words) - 13:47, 7 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-64.png|300px|thumb|{{figure number|1}}Examples of rock
    6 KB (882 words) - 17:19, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance predicting-reservoir-system-quality-and-performance_fig9-43.png|{{figure number|1}}Drainage and fill-up relativ
    8 KB (1,130 words) - 17:09, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance ...n]] patterns (Stonecipher and May, 1992). Effectively predicting sandstone quality depends on predicting diagenetic history as a product of depositional envir
    7 KB (870 words) - 20:30, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-79.png|300px|thumb|{{figure number|1}}Sequence of diag
    7 KB (960 words) - 21:00, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-70.png|300px|thumb|{{figure number|1}}Summary of early
    10 KB (1,352 words) - 19:07, 6 April 2022
  • | chapter = Predicting reservoir system quality and performance ...n be subdivided into “port types” by port size. (See [[Characterizing rock quality]] for a discussion of port size and r<sub>35</sub>.) The table below shows
    4 KB (650 words) - 14:23, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance An S<sub>w</sub>-elevation plot ([[:file:predicting-reservoir-system-quality-and-performance_fig9-95.png|Figure 1]]) for study wells 4, 8, and 11 define
    7 KB (1,044 words) - 16:57, 13 April 2022
  • | chapter = Predicting reservoir system quality and performance ...tone [[diagenesis]]. The flow chart in [[:file:predicting-reservoir-system-quality-and-performance_fig9-51.png|Figure 1]] shows the interrelationship of depos
    8 KB (1,129 words) - 14:11, 6 April 2022
  • ...res from a partial buildup may not reflect actual fluid pressures. As rock quality increases, extrapolated pore pressure from DST buildup falls more and more ==Controlling RFT quality==
    6 KB (849 words) - 17:55, 17 February 2022
  • MT can be valuable in areas that yield poor-quality seismic data and where acquiring seismic data is very expensive. The follow | Carbonate terrains || Poor-quality seismic data
    5 KB (706 words) - 15:11, 31 January 2022
  • ...ourse 35, 79 p.</ref><ref name=ch21r52>Wilson, M. D., ed., 1994, Reservoir quality Assessment and Prediction in Clastic Rocks: SEPM (Society of Sedimentary Ge ...before the formation of [[quartz]] cements, which degraded the reservoir's quality. From Rick Tobin, unpublished data.]]
    4 KB (544 words) - 21:38, 4 February 2022
  • | chapter = Predicting reservoir system quality and performance * Quality of aquifer pore geometry comparable to reservoir pore geometry
    6 KB (759 words) - 13:51, 4 April 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    3 KB (442 words) - 13:52, 4 April 2022
  • # Quality of science # Quality of writing
    3 KB (399 words) - 12:51, 28 September 2015
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-80.png|300px|thumb|{{figure number|1}}Periods of iceho
    7 KB (894 words) - 20:54, 6 April 2022
  • ...and indirect types of BCGSs are distinguished on the basis of source rock quality; a direct BCGS has a gas-prone source rock, and an indirect BCGS has an oil ...ion]] distance || Reservoir pressure || Pressure mechanism || Seal || Seal quality || Nature of upper boundary || Thermal maturity top of BCGA || Occurrence
    4 KB (469 words) - 19:01, 14 March 2016
  • ...pages.com/data/specpubs/beaumont/ch09/ch09.htm Predicting reservoir system quality and performance], in E. A. Beaumont & N. H. Foster, eds., [http://store.aap
    1 KB (206 words) - 17:37, 27 January 2015
  • ...h, then a relationship exists between [[lithofacies]] and reservoiror seal-quality rocks that we can use when prospecting for stratigraphic traps. A petrophys ...lationship exists between the development of reservoir-quality rocks, seal-quality rocks, and lithofacies that can be used to predict location and economic vi
    6 KB (763 words) - 18:53, 4 February 2022
  • | chapter = Predicting reservoir system quality and performance ...gested methods are most useful when dealing with modern log suites of good quality.
    5 KB (703 words) - 13:52, 5 April 2022
  • | chapter = Predicting reservoir system quality and performance * [[Characterizing rock quality]]
    6 KB (850 words) - 17:22, 4 April 2022
  • ...depth. This decrease is a result of several changes, including [[reservoir quality]] and [[migration pathway]]s. Most importantly, however, the distribution o ...ring of top seals|hydrofracturing]] rather than a simple loss of reservoir quality or other variable. Deeper reservoirs have the peak gas occurrence below the
    4 KB (605 words) - 20:30, 30 March 2022
  • | chapter = Predicting reservoir system quality and performance [[file:predicting-reservoir-system-quality-and-performance_fig9-30.png|300px|thumb|{{figure number|1}}Example log reco
    12 KB (1,763 words) - 16:18, 5 April 2022
  • ...ictionary/outcrop outcrop] data, is an effective concept for assessing the quality and location of source, seal, and reservoir rocks. However, most researcher ...updip pinch-outs of rocks with reservoir potential or mounds of reservoir-quality rocks, in the context of a depositional sequence. Knowing where the target
    8 KB (1,184 words) - 20:44, 4 February 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    4 KB (528 words) - 13:53, 4 April 2022
  • ...smic facies]], [[Fossil assemblage|biofacies]], and thickness of reservoir-quality rocks.
    2 KB (242 words) - 15:48, 1 March 2022
  • ...dary) [[porosity]]: Form as a result of localized leaching of nonreservoir-quality rock to create enhanced porosity and [[permeability]]. Common beneath [[unc * [[Reservoir quality]]
    5 KB (645 words) - 16:14, 13 April 2022
  • ...cations provide an indication of depositional energy setting and reservoir quality. ===Depositional Energy Setting and Reservoir Quality Indications===
    16 KB (1,986 words) - 14:09, 19 December 2023
  • ...otographs, JPEGs will strike the best balance between filesize (speed) and quality. For line art or other 'flat' images, use PNG for best results.
    2 KB (311 words) - 16:11, 2 April 2014
  • ...ng-source-rocks_fig6-11.png|{{figure number|5}}Histogram representing poor-quality vitrinite reflectance data due to contamination by caving. An excellent way to recognize high-quality vitrinite reflectance data is to plot it in a [[histogram]]. We can have hi
    7 KB (970 words) - 14:28, 10 February 2022
  • | chapter = Reservoir quality The quality of a reservoir is defined by its hydrocarbon storage capacity and deliverab
    18 KB (2,514 words) - 17:47, 21 January 2022
  • | chapter = Predicting reservoir system quality and performance [[Category:Predicting reservoir system quality and performance]]
    5 KB (723 words) - 17:02, 12 April 2022
  • ...nger the plateau shown by the capillary curve, the better is the reservoir quality of the rock (from Sneider et al.<ref name=Sneider1977>Sneider, R. M., F. H. ...ssure.<ref name=Vavra1992 /> Lower entry pressures are found in the better quality reservoir rocks, that is, those with larger pore throat diameters. A cap ro
    8 KB (1,182 words) - 20:27, 3 March 2016
  • ...quality]] rock, and second, the classification of that part of a reservoir quality interval as pay. ...tron microscopy for mineral composition and pore geometry (see [[Reservoir quality]]) and [[Thin section analysis]] and [[SEM, XRD, CL, and XF methods]]
    13 KB (1,799 words) - 19:01, 20 January 2022
  • ...etween lithofacies/depositional environment and reservoir distribution and quality. * Determine [[reservoir quality]]
    8 KB (983 words) - 20:49, 19 January 2022
  • | [[Reservoir quality]] drops below economic limits. ...troleum destruction, and cementation are more likely to alter the size and quality of old accumulations than young accumulations. Young accumulations with act
    5 KB (782 words) - 22:36, 31 January 2022
  • ...whether results from considering structural timing and reservoir and seal quality are consistent with current mechanical models of [[fold]] and fault generat | Control quality of all displays. This includes proper position of control and interpretive
    5 KB (738 words) - 15:58, 2 February 2022
  • * Data quality may deteriorate in rougher terrain ...over water, only the marine areas and large lakes have such data. The data quality is somewhat comparable to surface-acquired data, although the wavelength re
    5 KB (720 words) - 17:59, 24 January 2022
  • ...0201.htm Sedimentology, depositional model, and implications for reservoir quality], ''in'' D. Minisini, M. Fantín, I. L. Noguera, and H. A. Leanza, eds., In ...s was quickly acquired, companies began to evaluate the potential for high quality reservoir units in other parts of the depositional system.
    11 KB (1,644 words) - 16:14, 11 May 2023
  • ...orrelation of sedimentary facies and lithologies to petrographic reservoir quality. Distribution of reservoir facies in the subsurface Is compiled from observ ...approach to assess the depositional and diagenetic controls on [[reservoir quality]] and heterogeneity.
    11 KB (1,444 words) - 21:26, 4 January 2024
  • * Primary [[porosity]] preserved due to selective [[Reservoir quality#Cementation|cementation]] and/or early hydrocarbon emplacement
    2 KB (294 words) - 21:01, 4 February 2022

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