LEADER 04382nam 2200925z- 450 001 9910639993303321 005 20231214133137.0 010 $a3-0365-6004-1 035 $a(CKB)5470000001633420 035 $a(oapen)https://directory.doabooks.org/handle/20.500.12854/95774 035 $a(EXLCZ)995470000001633420 100 $a20202301d2022 |y 0 101 0 $aeng 135 $aurmn|---annan 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aAdvances in Methane Production from Coal, Shale and Other Tight Rocks 210 $aBasel$cMDPI - Multidisciplinary Digital Publishing Institute$d2022 215 $a1 electronic resource (188 p.) 311 $a3-0365-6003-3 330 $aThis collection reports on the state of the art in fundamental discipline application in hydrocarbon production and associated challenges in geoengineering activities. Zheng et al. (2022) report an NMR-based method for multiphase methane characterization in coals. Wang et al. (2022) studied the genesis of bedding fractures in Ordovician to Silurian marine shale in the Sichuan basin. Kang et al. (2022) proposed research focusing on the prediction of shale gas production from horizontal wells. Liang et al. (2022) studied the pore structure of marine shale by adsorption method in terms of molecular interaction. Zhang et al. (2022) focus on the coal measures sandstones in the Xishanyao Formation, southern Junggar Basin, and the sandstone diagenetic characteristics are fully revealed. Yao et al. (2022) report the source-to-sink system in the Ledong submarine channel and the Dongfang submarine fan in the Yinggehai Basin, South China Sea. There are four papers focusing on the technologies associated with hydrocarbon productions. Wang et al. (2022) reported the analysis of pre-stack inversion in a carbonate karst reservoir. Chen et al. (2022) conducted an inversion study on the parameters of cascade coexisting gas-bearing reservoirs in coal measures in Huainan. To ensure the safety CCS, Zhang et al (2022) report their analysis of available conditions for InSAR surface deformation monitoring. Additionally, to ensure production safety in coal mines, Zhang et al. (2022) report the properties and application of gel materials for coal gangue control. 606 $aTechnology: general issues$2bicssc 606 $aHistory of engineering & technology$2bicssc 610 $agel?foam 610 $achitosan 610 $aacrylic acid 610 $acoal gangue 610 $aInSAR monitoring 610 $acarbon capture and storage 610 $afeasibility assessment model 610 $alow-field NMR 610 $acoal 610 $afree methane 610 $aparamagnetic mineral 610 $asubmarine channel 610 $asubmarine fan 610 $asource-to-sink 610 $agas reservoirs 610 $aSouth China Sea 610 $aYinggehai Basin 610 $apore structure 610 $ashale gas 610 $aN2 adsorption experiment 610 $amolecular simulation 610 $apore connectivity 610 $atight sandstone 610 $acoal measure 610 $asouthern margin of Junggar basin 610 $adiagenetic process 610 $areservoir quality control 610 $areservoir forming 610 $acarbonate cavern reservoir application 610 $apre-stack inversion 610 $amodel 610 $agrey correlation method 610 $amultiple linear regression 610 $aproduction evaluation 610 $amain control factor 610 $aestimated ultimate recovery 610 $acoalbed methane (CBM) 610 $aprestack seismic inversion 610 $abrittle index 610 $agas-bearing property 610 $afractures 610 $acomplex fracture net 610 $aformation of bedding 610 $aFuling area 615 7$aTechnology: general issues 615 7$aHistory of engineering & technology 700 $aLi$b Yong$4edt$0960600 702 $aCui$b Fan$4edt 702 $aXu$b Chao$4edt 702 $aLi$b Yong$4oth 702 $aCui$b Fan$4oth 702 $aXu$b Chao$4oth 906 $aBOOK 912 $a9910639993303321 996 $aAdvances in Methane Production from Coal, Shale and Other Tight Rocks$93023911 997 $aUNINA