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姓名 高强 职称 副研究员
职务 专业
所在系、所 通讯地址
电子信箱 qiang.gao@tju.edu.cn 办公室电话
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主要学历

2010.09 - 2014.07,哈尔滨工业大学,光学专业,博士生,获理学博士学位。
2008.09 - 2010.07,哈尔滨工业大学,凝聚态物理专业,硕士生,获理学硕士学位。
2004.09 - 2008.07,东北林业大学,物理学专业,本科生,获理学学士学位。

主要学术经历

1 2021.07-至今,天津大学,内燃机燃烧学国家重点实验室,副研究员

22016.05 – 2021.07,天津大学,内燃机燃烧学国家重点实验室,讲师。
32014.10 - 2015.12,瑞典隆德大学,燃烧物理系, 博士后。

主要研究方向

飞秒激光光谱技术 
放电等离子体技术 
吸收光谱技术 

主要讲授课程

燃烧激光诊断技术

测试技术

诺贝尔物理学奖那些事儿

主要学术兼职
主要学术成就、奖励及荣誉
主要科研项目及角色:

一、科研项目:

1.国家自然科学基金青年项目,放电增强飞秒激光诱导等离子体光谱技术研究,29万,负责人。
2.天津市科技局项目,等离子体光谱燃烧诊断研究,6万,负责人。
3.企事业委托项目,超声速燃烧直连式实验台光解荧光技术研究,20万,负责人。
4.企事业委托项目,添加剂对药剂燃烧火焰辐射光谱特性影响的研究,9.5万,负责人。
5.企事业委托项目,基于吸收光谱的碘原子在线监测研究,9万,负责人。
6.企事业委托项目,拟剂燃烧紫外吸收光谱特性诊断研,5万,负责人。
7.国家自然科学基金重点项目,针对先进发动机燃烧组织与优化的飞秒激光技术开发与应用,300万,参与人。
8.国家自然科学基金面上项目,可用于复杂湍流燃烧速度场表征的飞秒激光调控长程丝状放电特性的实验及理论研究,60万,参与人。
9.企事业委托项目,超声速燃烧中多组分PLIF实现火焰结构可视化的研究,50万,参与人。
10.国家自然科学基金面上项目,不同燃料极端条件下的喷雾燃烧机理及燃烧控制方法研究,59万,第二参与人。

代表性论著

1.张云刚, 刘黄韬, 高强, 朱志峰, 李博, 王永达, 基于飞秒激光引导高压放电的SF6分解物原位检测, 光谱学光谱分析, 2021, 41(5).
2.Bo Li, Xiaofeng Li, Zhifeng Zhu, and Qiang Gao*, Nanosecond laser-induced breakdown assisted by femtosecond laser pre-ionization in air: the effect on spatial resolution and continuous radiation, European Physical Journal Applied Physics, 2020, 92:20701(6p).
3.朱志峰, 李博, 高强*,基于多次放电的激光诱导击穿光谱信号增强研究, 光谱学光谱分析, 2020, 41(11).
4.李帅瑶, 张大源, 高强*, 李博, 何勇, 王智化, 基于飞秒激光成丝测量燃烧场温度, 物理学报, 2020, 23:234207(7p).
5.田轶夫, 李博, 高强*, 朱志峰,朱家健,放电等离子体高精度空间分辨光谱测量方法, 光谱学光谱分析, 2020, 40(5): 1340-1344.
6.张云刚, 刘黄韬, 高强, 朱志峰, 李博, 王永达, 飞秒激光引导高压放电下的SF6等离子体时间分辨光谱特性, 物理学报, 2020, 69, 185201(7p).
7.Bo Li, Dayuan Zhang*, Qiang Gao, One-dimensional full-range mixture fraction measurements with femtosecond laser-induced plasma spectroscopy, Experiments in Fluids, 2020,61(2):1-9.
8.Jixu Liu, Qiang Gao, Bo Li, Dayuan Zhang, Yifu Tian, Ammonia Measurements with Femtosecond Two-Photon Laser-Induced Fluorescence in Premixed NH3/Air Flames, Energy & Fuels, 2020, 34(2):1177-1183.
9.Hong Li, Qiang Gao, Xiaofeng Li, Bo Li*, Mingfa Yao and, Evaluating the validity of 2D images in reflecting the 3D structure of a symmetrical cone flame using orthogonal planar laser-induced fluorescence. Spectroscopy and Spectral Analysis, 2020 40(9):2968.
10.Qiang Gao, Dayuan Zhang, Xiaofeng Li, Bo Li*, Femtosecond-laser electronic-excitation tagging velocimetry using a 267 nm laser, Sensors and Actuators A: Physical, 2019, 287(1):138-142.
11.Bo Li, Dayuan Zhang, Jixu Liu, Yifu Tian, Qiang Gao*, A Review of Femtosecond Laser-Induced Emission Techniques for Combustion and Flow Field Diagnostics, Applied Sciences, 2019, 9(9):1906.
12.Dayuan Zhang, Qiang Gao, Bo Li, Jixu Liu, Ammonia measurements with femtosecond laser-induced plasma spectroscopy, Applied Optics, 2019, 58(5):1210-1214.
13.Dayuan Zhang, Qiang Gao, Bo Li, Zhifeng Zhu, Instantaneous one-dimensional equivalence ratio measurements in methane/air mixtures using femtosecond laser-induced plasma spectroscopy, Optics Express, 2019, 27 (3):2159-2169.
14.Xiaofeng Li, Bo Li, Jixu Liu, Zhifeng Zhu, Dayuan Zhang, Yifu Tian, Qiang Gao, and Enhancement of femtosecond laser-induced plasma fluorescence using a nanosecond laser, Optics Express, 2019, 27(4):5755-5763.
15.Dayuan Zhang, Qiang Gao, Bo Li, Jixu Liu, Yifu Tian, Femtosecond laser-induced plasma spectroscopy for combustion diagnostics in premixed ammonia/air flames, Applied Optics, 2019, 58(28):7810-7816.
16.Dayuan Zhang, Qiang Gao, Bo Li, Jixu Liu, Instantaneous one-dimensional ammonia measurements with femtosecond two-photon laser-induced fluorescence (fs-TPLIF), International Journal of Hydrogen Energy, 2019, 44(47): 25740-25745.
17.Bo Li, Yifu Tian, Qiang Gao*, Dayuan Zhang, Xiaofeng Li, Zhifeng Zhu, Filamentary anemometry using femtosecond laser-extended electric discharge-FALED, Optics Express, 2018, 26(16):21132-21140.
18.Bo Li, Dayuan Zhang, Xiaofeng Li, Qiang Gao*, Zhifeng Zhu, Femtosecond laser-induced cyano chemiluminescence in methane-seeded nitrogen gas flows for near-wall velocimetry, Journal of Physics D: Applied Physics, 2018, 51:295102 (5pp). 
19.Qiang Gao, Wubin Weng, Bo Li*, Marcus Aldén, Gas Temperature Measurement Using Differential Optical Absorption Spectroscopy (DOAS), Applied Spectroscopy, 2018, 72(7):1014-1020.
20.Qiang Gao, Wubin Weng, Bo Li*, Quantitative and spatially resolved measurement of atomic potassium in combustion using diode laser, Chinese Physics Letters, 2018, 35(2):024202.
21.Dayuan Zhang, Bo Li*, Qiang Gao, Applicability of femtosecond laser electronic excitation tagging in combustion flow field velocity measurements, Applied Spectroscopy, 2018, 72(12):1807-1813.
22.Tomas Leffler, Christian Brackmann*, Wubin Weng, Qiang Gao, Marcus Aldén, Experimental investigations of potassium chemistry in premixed flames, Fuel, 2017, 203:802-810.
23.Bo Li, Xiaofeng Li, Dayuan Zhang, Qiang Gao, Mingfa Yao, Comprehensive CO detection in flames using femtosecond two-photon laser-induced fluorescence, Optics Express, 2017, 25(21):25809-25818. 
24.Xue Zhou, Jia Yu, Lin Wang, Qiang Gao, Zhiguo Zhang*, Sensitive detection of oxygen using a diffused integrating cavity as a gas absorption cell, Sensors and Actuators B: Chemical, 2017, 241:1076-1081.
25.Wubin Weng, Qiang Gao, Zhihua Wang, Ronald Whiddon, Yong He, Marcus Aldén and Kefa Cen*, Quantitative measurement of Aatomic potassium in plumes over burning solid fuels using infrared-diode laser spectroscopy, Energy & Fuels, 2017, 31(3):2831-2837.
26.Bo Li*, Dayuan Zhang, Xiaofeng Li, Qiang Gao, Mingfa Yao, Strategy of interference-free atomic hydrogen detection in flames using femtosecond multi-photon laser-induced fluorescence, International Journal of Hydrogen Energy, 2017, 42(6):3876-3880.
27.Jia Yu, Qiang Gao, Yungang Zhang, Zhiguo Zhang*, Shaohua Wu, Effective optical path length for tandem diffuse cubic cavities as gas absorption cell, Journal of Optics, 2014, 16(12):125708.
28.Jia Yu, Qiang Gao, Zhiguo Zhang*, High reflected cubic cavity as long path absorption cell for infrared gas sensing, Proceedings of the SPIE, 2014, 9220:922001(12pp).
29.Jia Yu, Fu Zheng, Qiang Gao, Yinjie Li, Yungang Zhang, Zhiguo Zhang*, Shaohua Wu, Effective optical path length investigation for cubic diffuse cavity as gas absorption cell, Applied Physics B, 2014, 116(1):135-140.
30.Qiang Gao, Jia Yu, Yungang Zhang, Zhiguo Zhang*, Wenwu Cao, Diffuse reflectance measurement using gas absorption spectroscopy, Sensors and Actuators B: Chemical, 2014, 196:147-150.
31.Jia Yu, Yungang Zhang, Qiang Gao, Gang, Hu Zhiguo Zhang*, Shaohua Wu, Diffuse reflectivity measurement using cubic cavity, Optics Letters, 2014, 39(7):1941-1944. 
32.Qiang Gao, Yungang Zhang, Jia Yu, Zhiguo Zhang*, Shaohua Wu and Wei Guo, Integrating sphere effective optical path length calibration by gas absorption spectroscopy, Applied Physics B, 2014, 114(3):341-346.
33.Qiang Gao, Yungang Zhang, Jia Yu, Shaohua Wu, Zhiguo Zhang*, Fu Zheng, Xiutao Lou and Wei Guo, Tunable multi-mode diode laser absorption spectroscopy for methane detection, Sensors and Actuators A: Physical, 2013, 199:106-110.

发明专利

1.  高强; 李明; 李博; 一种介质阻挡放电的时空控制装置及方法,2021-11-9, 中国,2021113187459.

2.  高强; 李博; 一种高压放电等离子体的时空控制方法及装置,2018-11-13, 中国,201811344511x.

3. 高强; 李博; 一种基于高压放电的流场速度测量系统,2021-12-32036-12-2, 中国,2020105460596.

4.高强; 李博; 温度及二氧化硫气体浓度实时在线测量装置,2020-5-29, 中国,2020104820541.


课题组成员

   授:李   (博导)

副研究员:高  强(硕导)

博士研究生:朱志峰,韩磊,冯展宇

硕士研究生:李明,高尔聪,单沅