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| 1 | Coal and gas outburst dynamic system显示文摘Coal and gas outburst is an extremely complex dynamic disaster in coal mine production process which will damage casualties and equipment facilities, and disorder the ventilation system by suddenly ejecting a great amount of coal and gas into roadway or working face. This paper analyzed the interaction among the three essential elements of coal and gas outburst dynamic system. A stress-seepage-damage coupling model was established which can be used to simulate the evolution of the dynamical system, and then the size scale of coal and gas outburst dynamical system was investigated. Results show that the dynamical system is consisted of three essential elements, coal-gas medium(material basis), geology dynamic environment(internal motivation) and mining disturbance(external motivation). On the case of C13 coal seam in Panyi Mine, the dynamical system exists in the range of 8–12 m in front of advancing face. The size scale will be larger where there are large geologic structures. This research plays an important guiding role for developing measures of coal and gas outburst prediction and prevention. | Fan Chaojun Li Sheng Luo Mingkun Du Wenzhang Yang Zhenhua | 2017 | International Journal of Mining Science and Technology2017,27,1: | 19 |
| 2 | Structure and deformation measurements of shallow overburden during top coal caving longwall mining显示文摘Mining induced pressures are strong and overburden failure areas are large in top coal caving longwall mining, which constrains high production and safety mining. By employing the combination of the full view borehole photography technique and the seismic CT scanner technique, the deformation and failure of overlying strata of fully mechanized caving face in shallow coal seam were studied and the failure development of overburden was determined. Results show that the full view borehole photography can reveal the characteristics of strata, and the seismic CT scanner can reflect the characteristics of strata between the boreholes. The combined measurement technique can effectively determine the height of fractured and caved zones. The top end of the caved zone in Yangwangou coal mine employing the top coal caving longwall mining was at the depth of 171 m and fractured zone was at the depth of 106-110 m. The results provide a theoretic foundation for controlling the overburden strata in the shallow buried top coal caving panel. | Li Sheng Fan Chaojun Luo Mingkun Yang Zhenhua Lan Tianwei Zhang Haifeng | 2017 | International Journal of Mining Science and Technology2017,27,6: | 4 |
| 3 | Genomes of major fishes in world fisheries and aquaculture: Status, application and perspective显示文摘Capture fisheries and aquaculture provide a significant amount of high-quality protein to human beings and thus play an essential role in ending global hunger and malnutrition.The availability of tens of hundreds of fish genomes and the advances of genomics have allowed addressing many challenging issues such as overfishing and germplasm degradation faced by fisheries and aquaculture.In this review,we describe the current status of genomics in fisheries and aquaculture,with an emphasis on 14 species of fish that are considerably important to global fisheries and aquaculture,in the context of genome sequencing and assembly,annotation,GC contents,and repeats.The majority of these genomes are assembled at the chromosome level and annotated with proteins and pathways,with functional relevance to fisheries and aquaculture,such as environmental adaptation and phenotypic variation.We summarize potential genomic applications in fisheries and aquaculture that are related to assessment and use of genetic resources,disease resistance,growth and development,sexual determination,and fisheries management.Although much progress has been achieved in genomic application to fisheries and aquaculture,the full potential remains to be explored and reaped.We discuss the challenges and perspectives of genomics in translational aquaculture and fisheries,which include genome assembly and annotation,genomic selection and breeding,genomics in fisheries management,and integrated artificial intelligence systems.In the coming decades,we anticipate the applications of genomic techniques such as genome editing and genomic selection,along with the use of emerging intelligence systems,in aquaculture and fisheries will contribute significantly to genetic improvements of farmed fish and sustainable exploitation of fishery resources,which consequently lead to eradicating global poverty by 2030,an ambitious goal set by the United Nations. | Guoqing Lu Mingkun Luo | 2020 | Aquaculture and Fisheries2020,5,4: | 2 |
| 4 | CRISPR-Cas9 sgRNA design and outcome assessment: Bioinformatics tools and aquaculture applications显示文摘The CRISPR-Cas9 genome editing has many advantages over its counterparts and could ultimately assist in disease control and molecular breeding in aquaculture.Single-guide RNA(sgRNA)design is presumably the most crucial task in a typical CRISPR-Cas9 experiment;an understanding of algorithms behind sgRNA design programs is thus essential for improved efficacy and specificity.We focus this review on the bioinformatics aspects in genome editing experiments and describe commonly used computational approaches and tools of sgRNA design and outcome assessment.We show an example of sgRNA design with optimal parameter settings and appropriate interpretation of results and present a brief overview of CRISPR-Cas9 applications,such as genetic improvement and sustainability in aquaculture.We discuss challenging issues,particularly in the context of computational biology,in the use of computational tools in CRISPR-based genome editing.This review provides a synthesis of bioinformatics tools used for CRISPR-Cas9 sgRNA design and outcome assessment and offers a general view of CRISPR-based applications in farmed fish,which are expected to facilitate genome editing programs and hence improve aquaculture breeding,production,and sustainability. | Mingkun Luo Jun Wang Zaijie Dong Chenghui Wang Guoqing Lu | 2022 | Aquaculture and Fisheries2022,7,2: | 0 |
| 5 | Elimination mechanism of coal and gas outburst based on geo‑dynamic system with stress–damage–seepage interactions显示文摘Coal and gas outburst is a complex dynamic disaster during coal underground mining.Revealing the disaster mechanism is of great signifcance for accurate prediction and prevention of coal and gas outburst.The geo-dynamic system of coal and gas outburst is proposed.The framework of geo-dynamic system is composed of gassy coal mass,geological dynamic environment and mining disturbance.Equations of stress–damage–seepage interaction for gassy coal mass is constructed to resolve the outburst elimination process by gas extraction with boreholes through layer in foor roadway.The results show the occurrence of outburst is divided into the evolution process of gestation,formation,development and termination of geo-dynamic system.The scale range of outburst occurrence is determined,which provides a spatial basis for the prevention and control of outburst.The formation criterion and instability criterion of coal and gas outburst are established.The formation criterion F1 is defned as the scale of the geo-dynamic system,and the instability criterion F2 is defned as the scale of the outburst geo-body.According to the geo-dynamic system,the elimination mechanism of coal and gas outburst—‘unloading+depressurization’is established,and the gas extraction by boreholes through layer in foor roadway for outburst elimination is given.For the research case,when the gas extraction is 120 days,the gas pressure of the coal seam is reduced to below 0.4 MPa,and the outburst danger is eliminated efectively. | Lingjin Xu Chaojun Fan Mingkun Luo Sheng Li Jun Han Xiang Fu Bin Xiao | 2023 | International Journal of Coal Science & Technology2023,10,4: | 0 |
| 6 | Effect of damage zone around borehole on carbon dioxide injection promoted gas extraction in soft and low-permeability coal seam显示文摘Injecting external CO_(2) into soft and low-permeability coal seams can improve CH4 extacctinn efficiency, and also benefit in CO_(2) sequestration. However, the distribution law of damage zone around borehole in soft coal seam and its effect on the efficiency of CO_(2) injection promoted CH4 extraction are not clear. In this paper, a multi-physics coupling mathematical model considering damage effect is established for simulating the process of CO_(2) injection promoted CH4 extraction in soft and low-permeability coal seam. The distribution of damage zone and permeability around boreholes under different diameters and coal strengths are analyzed. The gas pressure and gas content in coal seam during CO_(2) injection promoted CH4 extraction when the model considered damage effect are compared with that of ignored. The results show that small borehole diameter corresponds to narrow damage zone around the borehole in coal seam. The damage zone expands with the increase of the borehole diameter. The damage zone increases exponentially with the borehole diameter, while decreases exponentially with the compressive strength of coal seam. The highest permeability in the damage zone has increased by nearly 300 times under the condition of simulated case. CH4 pressure around the extraction borehole reduces, and the reduction area expands with the increase of time. Compared with the result of considering the damage effect, the reduction area of ignoring it is smaller, and the reducing speed is slower. The integrated effect of CO_(2) injection and CH4 extraction leads to rapid decrease of CH4 content in coal seam near the boreholes. The CO_(2) pressure and content increase around the injection borehole, and the increasing area gradually extends to the whole coal seam. In soft coal seams, failure to consider the damage effect will underestimate the efficiency of CH4 extraction and CO_(2) sequestration, resulting conservative layout of boreholes. | Lijun ZHOU Xihua ZHOU Gang BAI Xianlin LI Mingkun LUO | 2023 | Frontiers of Earth Science2023,17,3: | 0 |