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Online since: October 2011
Authors: Xiao Ming Yuan, Long Wei Chen, Xian Zhang Ling
Acknowledgements
This work was financially supported by Specific Item of Fundamental Scientific Research in Institute of Engineering Mechanics (2009B01), the China Key Fundamental Research and Progress Project (2007CB714201), China Nature and Science Foundation for Key Research Program (90715017), International Joint Program by China Science Department (2009DFA71720).
Carter: Journal of Geotechnical and Geoenvironmental Engineering Vol. 131, Issue.7 (2005), p. 811-825
O’Rourke: Journal of Geotechnical and Geoenvironmental Engineering Vol. 123, No. 1 (1996), p. 37-45
[5] International Code Council: 2003 International Building Code (Printed in the USA, 2003) [6] The Building Seismic Safety Council of the National Institute of Building Sciences: NEHRP Recommended Seismic Provisions (Building Seismic Safety Council, Washington, D.C., 2009) [7] L.W.
Sun: Advanced Material Research Vols. 243-249. (2004), p. 2842-2851
Carter: Journal of Geotechnical and Geoenvironmental Engineering Vol. 131, Issue.7 (2005), p. 811-825
O’Rourke: Journal of Geotechnical and Geoenvironmental Engineering Vol. 123, No. 1 (1996), p. 37-45
[5] International Code Council: 2003 International Building Code (Printed in the USA, 2003) [6] The Building Seismic Safety Council of the National Institute of Building Sciences: NEHRP Recommended Seismic Provisions (Building Seismic Safety Council, Washington, D.C., 2009) [7] L.W.
Sun: Advanced Material Research Vols. 243-249. (2004), p. 2842-2851
Online since: December 2012
Authors: Jin Dong, Rui Feng Zhang, Hao Wei Zhou, Hui Liu, Rong Kang, Zai Xing Jiang
Fluid Flow of Daxing Conglomerate in Langgu Depression and Its Controlling Effects on Reservoir
Ruifeng Zhang1,a, *Haowei Zhou2,b, Zaixing Jiang3,c, Hui Liu4,d, Rong Kang3,e and Jin Dong2,f
1Huabei Oilfield Branch Company, PetroChina, Renqiu, China
2CNOOC Research Institute, CNOOC, Beijing, China
3School of Energy Resources, China University of Geosciences, Beijing, China
4Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing, China
aktb_zrf@petrochina.com.cn, bzhw_1021@yahoo.cn, cjiangzx@cugb.edu.cn, dlhpplu@yahoo.com.cn, e879806328@qq.com, fdjongin@sina.com
Keywords: Fluid Flow, Diagenesis, Reservoir, Daxing Conglomerate, Langgu Depression.
The carbonate cement can destroy the primary pores because of filling effect in one hand, and provide material base for the later dissolution on the other hand, so alkaline fluid has dual function for the reservoir.
Rong: Journal of Northeast University (Natural Science Edition), vol. 36 (2006), p. 807-810 [3] R.C.
Dong: Journal of Chengdu University of Technology (Science & Technology Edition), vol. 33 (2006), p. 587-592 (in Chinese) [4] H.
The carbonate cement can destroy the primary pores because of filling effect in one hand, and provide material base for the later dissolution on the other hand, so alkaline fluid has dual function for the reservoir.
Rong: Journal of Northeast University (Natural Science Edition), vol. 36 (2006), p. 807-810 [3] R.C.
Dong: Journal of Chengdu University of Technology (Science & Technology Edition), vol. 33 (2006), p. 587-592 (in Chinese) [4] H.
Online since: February 2014
Authors: Hua Hua Wang, Ming Li, Lei Cheng Chen
In the real communication environment, if we want to test the performance parameters of wireless communication, we will cost a lot of manpower and material resources [2].
Acknowledgements This work was financially supported by Major National Science and Technology Projects (No. 2012ZX03001024) and the Sciences Youth Funded Projects for Chongqing University of Posts and Telecommunications (No.
Journal of modern telecommunication technology. 2012, (8) : 26-29
Journal of modern telecommunication technology, 2008, 42 (5) : 36 to 39
Xi 'an: xi 'an university of electronic science and technology, 2008
Acknowledgements This work was financially supported by Major National Science and Technology Projects (No. 2012ZX03001024) and the Sciences Youth Funded Projects for Chongqing University of Posts and Telecommunications (No.
Journal of modern telecommunication technology. 2012, (8) : 26-29
Journal of modern telecommunication technology, 2008, 42 (5) : 36 to 39
Xi 'an: xi 'an university of electronic science and technology, 2008
Online since: September 2014
Authors: Si Ping Mo, Rong Yao Ji, Qun Xu
It is found that bands 7, 4, 2 for RGB was found to be most effective for mapping coastline, while the bands 3, 2, 1 for RGB to be most effective for suspended material.
Acknowledgment This work i was financially supported by the National Natural Science Foundation of China (41306081 and 51061130546).
El-Asmar: Journal of Coastal Research, 18, 433-441 (2002)
Liu: Geo-Information Science, 6, 94-98 (2004)
Damen: Journal of Marine Systems, 82, 554-561 (2010).
Acknowledgment This work i was financially supported by the National Natural Science Foundation of China (41306081 and 51061130546).
El-Asmar: Journal of Coastal Research, 18, 433-441 (2002)
Liu: Geo-Information Science, 6, 94-98 (2004)
Damen: Journal of Marine Systems, 82, 554-561 (2010).
Online since: August 2020
Authors: Patrik Bayer, Zbyněk Keršner, Hana Šimonová, Pavla Rovnaníková, Iva Rozsypalová, Ivana Kumpová, Petr Frantík
Introduction
Aluminosilicate materials such as fine-grain ceramics are suitable materials for use as a precursor for alkaline activation.
Fired ceramic material (brick body) contains a significant amount of amorphous phase, which is necessary for the preparation of alkali-activated materials [1].
The values are close to those known for other materials, such as fine-grained cement-based composites.
Materials and Structures, 18(4) (1985) 285–290
The Journal of Pathology 178 (1996) 100–105.
Fired ceramic material (brick body) contains a significant amount of amorphous phase, which is necessary for the preparation of alkali-activated materials [1].
The values are close to those known for other materials, such as fine-grained cement-based composites.
Materials and Structures, 18(4) (1985) 285–290
The Journal of Pathology 178 (1996) 100–105.
Online since: November 2012
Authors: Yu Jie Jin, Xing Tian Qu, Zhi Ping Wang, Xin Jiang, Fu Qing Zhang
Ceramic materials have priority to conventional materials in performance of anti-wear, anti-corrosion, heat resistance and anti-high-temperature oxidation.
Test Methods Coating Materials and Their Preparation Methods.
He and Dong YC: Journal of Materials Processing Technology, Vol.197(2008) No.3, p. 31
Berndt: Materials Science and Engineering A, Vol.313(2001)No.1-2, p. 75
KILLINGER: Materials Science and Engineering B, Vol.148(2008)No.1-3, p.58
Test Methods Coating Materials and Their Preparation Methods.
He and Dong YC: Journal of Materials Processing Technology, Vol.197(2008) No.3, p. 31
Berndt: Materials Science and Engineering A, Vol.313(2001)No.1-2, p. 75
KILLINGER: Materials Science and Engineering B, Vol.148(2008)No.1-3, p.58
Online since: March 2008
Authors: Bin Shi Xu, Pei Jing Shi, Yi Xu, Xiao Li Wang, Bo Zhang, Yang Zhao
Lubricating technology is an effective solution to
avoid the wear of materials.
Self-repairing technology for wear of materials is an innovation technology in the field of surface engineering [1-5].
In this paper, a special kind of inorganic mineral powders was selected as the self-repairing materials.
The morphologies, element distributions and micro-mechanical properties of the worn surface were investigated by means of scanning electron microscopy (SEM), energy dispersive spectrometry (EDS) and nanoindentation tester, respectively. 2 Experimental 2.1 Experimental Materials The base treatment solution is 50CC oil, the self-repairing material is inorganic mineral powders.
Journal of Colloid and Interface Science. 2000(231): 176-181
Self-repairing technology for wear of materials is an innovation technology in the field of surface engineering [1-5].
In this paper, a special kind of inorganic mineral powders was selected as the self-repairing materials.
The morphologies, element distributions and micro-mechanical properties of the worn surface were investigated by means of scanning electron microscopy (SEM), energy dispersive spectrometry (EDS) and nanoindentation tester, respectively. 2 Experimental 2.1 Experimental Materials The base treatment solution is 50CC oil, the self-repairing material is inorganic mineral powders.
Journal of Colloid and Interface Science. 2000(231): 176-181
Online since: June 2018
Authors: Danila E. Pshonkin, Mikhail N. Luk'yanov, Arkady A. Skvortsov
Materials and Methods
Metal-semiconductor structures were investigated.
Acknowledgements This work was financially supported by the Ministry of Education and Science of the Russian Federation (project No 9.8392.2017).
Miyamura, K., Three-dimensional analysis of dislocation multiplication during thermal process of grown silicon with different orientations, Journal of Crystal Growth 474 (2017) 121-129.
Qin, The method of fundamental solutions for thermoelastic analysis of functionally graded materials (Book Chapter).
Functionally Graded Materials, Nova Science Publishers Inc., New York, 2011
Acknowledgements This work was financially supported by the Ministry of Education and Science of the Russian Federation (project No 9.8392.2017).
Miyamura, K., Three-dimensional analysis of dislocation multiplication during thermal process of grown silicon with different orientations, Journal of Crystal Growth 474 (2017) 121-129.
Qin, The method of fundamental solutions for thermoelastic analysis of functionally graded materials (Book Chapter).
Functionally Graded Materials, Nova Science Publishers Inc., New York, 2011
Online since: January 2012
Authors: Xin Yu Shao, Zai Lin Guan, Ya Rong Chen, Hong Ming Zhou
Acknowledgements
This research work was jointly supported by the National Natural Science Foundation of China (70772056, 50825503), the Natural Science Foundation of Zhejiang Province, China (Y7100680),and the Science and Technology Plan Project of Wenzhou (G20090038).
International journal of production research, Vol 41, pp. 699-712, April 2003
European Journal of Operational Research, Vol 201, pp.99-111,2010
International Journal of Advanced Manufacturing Technology, Vol 45,pp.968-986,2009
International Journal of Production Economics, Vol 85,pp.347-358,2003
International journal of production research, Vol 41, pp. 699-712, April 2003
European Journal of Operational Research, Vol 201, pp.99-111,2010
International Journal of Advanced Manufacturing Technology, Vol 45,pp.968-986,2009
International Journal of Production Economics, Vol 85,pp.347-358,2003
Online since: March 2016
Authors: Wei Jie Lu, Jian Wei Mao, Guang Fa Huang, Jiu Xiao Li, Xiang Long Guo, Ji Heng Wang
Materials Science and Engineering: A 2011;528:4883-7
Materials Science and Engineering: A 2014;595:257-65
Materials Science and Engineering: A 1992;149:253-7
Materials Science and Engineering: A 2013;560:140-7
Journal of materials science 2015;50:5674-83
Materials Science and Engineering: A 2014;595:257-65
Materials Science and Engineering: A 1992;149:253-7
Materials Science and Engineering: A 2013;560:140-7
Journal of materials science 2015;50:5674-83