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李 鹏亮
机电学院
h-index
601
引用
14
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2016
2025
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(51)
相似学者
(12)
个人简介
指纹图谱
深入其中 Pengliang Li 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
12
相似简介
Methane
Engineering
100%
Deflagration
Engineering
75%
Explosion Characteristic
Engineering
63%
Ignition
Engineering
61%
Flame Propagation
Engineering
56%
Equivalence Ratio
Engineering
54%
Initial Pressure
Engineering
49%
Maximum Temperature
Engineering
39%
科研成果
每年的科研成果
2016
2023
2024
2025
2025
49
文章
1
会议文章
1
文献综述
每年的科研成果
每年的科研成果
A novel method for leakage monitoring in Network-Level urban medium- and Low-Pressure natural gas pipelines combining information theory and Light Gradient Boosting
Huang, Z.,
Qian, X.
,
Li, P.
, Shen, X., Hou, L., Li, Y. &
Yuan, M.
,
5月 2025
,
在:
Advanced Engineering Informatics.
65
, 103309.
科研成果
:
期刊稿件
›
文章
›
同行评审
Sampling Point
100%
Natural Gas Pipeline
100%
Network Level
100%
Learning System
100%
Machine Learning
100%
1
引用 (Scopus)
Characterization of the pressure, temperature, and phase evolution during pipeline leakage in full-size ethane high-pressure gas pipeline
Ma, J., Xiu, Z.,
Liu, Z.
, Li, M.,
Li, P.
, Li, S. & Li, R.,
5月 2025
,
在:
Case Studies in Thermal Engineering.
69
, 106020.
科研成果
:
期刊稿件
›
文章
›
同行评审
开放访问
Experimental Result
100%
Full Scale
100%
Experimental Platform
100%
Maximum Temperature
100%
Temperature Phase
100%
1
引用 (Scopus)
Coupled behavior of overpressure and vented flame in large-scale constrained spaces during methane deflagration: Effect of ignition position
Xiu, Z., Liu, Q.,
Liu, Z.
, Li, M.,
Li, P.
& Hao, B.,
6月 2025
,
在:
Process Safety and Environmental Protection.
198
, 107111.
科研成果
:
期刊稿件
›
文章
›
同行评审
Ignition
100%
Deflagration
100%
Methane
100%
Gaseous Explosion
50%
Flame Propagation Speed
18%
7
引用 (Scopus)
Damage Modeling and Hazard Index for Weakly Cemented Rock Using Energy Release Characteristics
Yang, P., Miao, S., Shang, X., Liu, Z. &
Li, P.
,
2月 2025
,
在:
Geotechnical and Geological Engineering.
43
,
2
, 121.
科研成果
:
期刊稿件
›
文章
›
同行评审
Energy Release
100%
Engineering Material
100%
Surface (Surface Science)
100%
Stress Level
80%
Siltstone
60%
1
引用 (Scopus)
Effects of pipe geometry and hydrogen concentration on flame quenching performance in crimped-ribbon flame arrester systems
Wang, J., Cao, X.,
Li, P.
, Wang, Z. &
Qian, X.
,
18 8月 2025
,
在:
International Journal of Hydrogen Energy.
159
, 150573.
科研成果
:
期刊稿件
›
文章
›
同行评审
Flame Propagation
100%
Arrester
100%
Expansion Chamber
66%
Flame Resistance
66%
Flame Velocity
33%