教师简介

邱浩 Qiu Hao

Email: qiuhao@sdu.edu.cn; h.qiu@imperial.ac.uk

Ø  个人简介(Academic Biography

邱浩,男,工学博士,山东大学助理研究员、硕士生导师,博士毕业于浙江大学热能工程研究所(能源高效清洁利用全国重点实验室)。

Dr Qiu Hao is an Assistant Professor in Energy Engineering, a Postgraduate Supervisor and a PI at Shandong University. He obtained a PhD in Engineering Thermophysics from Zhejiang University (ranked 13th in Asia, QS Rankings 2027), where he received his doctoral training at the Institute for Thermal Engineering and the State Key Laboratory of Clean Energy Utilization.

Google Scholar      ResearchGate

Ø  科研领域 (Research Interests)

研究工作聚焦工程热物理、清洁能源转换与先进热流体测量的交叉领域,面向高温太阳能利用和CO2能源系统,涵盖能量转换与储存、动力循环、热流体动力学与光学诊断,以及物理-数据融合的热流体场重构。

1. 太阳能光-热协同转换与高效利用新技术:研究光-热协同能量转换、光子增强热电子发射、太阳光谱能流调控及电-热协同驱动的高温电解制氢。

2. 先进CO2动力循环与能源系统:研究超临界CO2布雷顿循环、跨临界CO2朗肯循环及 CO2储能系统的循环构型与热力学性能。

3. 近临界CO2热流体动力学与光学诊断:研究伪临界区强物性变化下的密度结构演化、流动传热与热流体稳定性,探索非侵入光学测量、图像处理及人工智能辅助的热流体场重构。

4. 太阳能热化学转化与储能:研究颗粒基高温太阳能热化学充能与储存,探索太阳能吸热-反应器内的传热传质、颗粒流动与反应过程。

His research interests lie at the intersection of engineering thermophysics, clean-energy conversion and advanced thermal-fluid measurement. With a focus on high-temperature solar energy utilisation and CO2-based energy systems, his work spans energy conversion and storage, advanced power cycles, thermal-fluid dynamics, optical diagnostics, and physics- and data-informed field reconstruction.

1. Emerging solar technologies for synergistic photon-thermal energy conversion. Research explores synergistic photon-thermal conversion, photon-enhanced thermionic emission, solar spectral energy-flow management, and hydrogen production through high-temperature electrolysis jointly driven by electricity and heat.

2. Advanced CO2 power cycles and energy systems. Research examines the thermodynamic design and performance of supercritical CO2 Brayton cycles, transcritical CO2 Rankine cycles and CO2-based energy-storage systems.

3. Near-critical CO2 thermal-fluid dynamics and optical diagnostics. Research investigates the evolution of density structures, flow and heat transfer, and thermal-fluid stability under strong thermophysical-property variations in the pseudocritical region. Current work extends this foundation towards non-intrusive optical measurements, image processing and AI-assisted reconstruction of thermal-fluid fields.

4. Solar thermochemical conversion and energy storage. Research addresses particle-based high-temperature solar thermochemical charging and storage, with particular interest in heat and mass transfer, granular flow and reaction processes within solar receiver-reactors.

Ø  科研项目 (Research Fundings and Independence)

作为负责人,主持国家自然科学基金、山东省自然科学基金等国家/省部级项目 4 项,累计获批纵向经费超 150 万元;主持企业委托项目 2 项。

As Principal Investigator, Dr Qiu has led four competitively funded national, ministerial or provincial projects, including fundings from the National Natural Science Foundation of China (NSFC) and the Shandong Provincial Natural Science Foundation. The cumulative approved research funding exceeds RMB 1.5 million. He has also led two industry-commissioned projects.

Ø  教学与研究生培养(Teaching and Postgraduate Supervision

承担《传热学》《先进能源系统与设备节能技术》《工业仪表与测量技术》等本科生课程教学。

研究生培养强调基础理论、创新能力、科研方法、学术写作和国际交流的协同发展。每年计划招收硕士研究生约 2 名。欢迎具有工程热物理、能源动力、机械工程、计算/人工智能科学背景,并对太阳能、储能、先进循环和热流体测量感兴趣的学生联系。

He teaches undergraduate courses including Heat Transfer, Advanced Energy Systems and Energy-Saving Technologies, and Industrial Instrumentation and Measurement Technology.

His postgraduate supervision integrates fundamental theory, experimentation, computation, academic writing and international engagement. Enquiries are welcome from students with backgrounds in engineering thermophysics, energy and power engineering, mechanical engineering, or computational/AI science, and with interests in solar energy, energy storage, advanced cycles or thermal-fluid measurement.

Ø  国际合作与学术服务(International Engagement and Academic Service

1. 与英国帝国理工学院Clean Energy Processes (CEP) 实验室持续合作,围绕sCO2热流体光学诊断、先进太阳能技术开展联合研究;

2. 与浙江大学热能工程研究所持续合作,围绕太阳能高温转换、sCO2先进循环开展联合研究;

3. 教育部学位论文评审专家;

4. 国家自然科学基金通讯评审专家;

5. 国际期刊审稿人。

1. Visiting Researcher in the Clean Energy Processes (CEP) Laboratory at Imperial College London, conducting collaborative research on optical diagnostics of near-critical CO2 flows and advanced solar energy technologies.

2. Research collaboration with the Institute for Thermal Engineering at Zhejiang University, focusing on high-temperature solar energy conversion and advanced sCO2 power cycles.

3. External reviewer for postgraduate theses under the Ministry of Education of China.

4. External proposal reviewer for the National Natural Science Foundation of China (NSFC).

5. Peer reviewer for international journals.

Ø  著作(Books

1.《储能技术及应用》,中国电力出版社,2026 1 月,ISBN 978-7-5198-6034-9(作者位次:4/15);

2.《储能技术实验与测量》,机械工业出版社,2026 5 月,ISBN 978-7-111-80165-8(作者位次:3/7)。

1. Energy Storage Technology and Applications. China Electric Power Press, January 2026. ISBN 978-7-5198-6034-9 (4th of 15 co-authors).

2. Experiments and Measurements in Energy Storage Technology. China Machine Press, May 2026. ISBN 978-7-111-80165-8 (3rd of 7 co-authors).

Ø  学术论文 (Selected publications)

Ten selected publications are highlighted below:

1. Zhang X, Qiu H*, Teo BHW, Wang X, Han K, Qi J* & Markides CN (2026). Heat transfer characteristics of lead-bismuth eutectic and CO2-based mixtures in straight-channel printed circuit heat exchangers. International Journal of Thermal Sciences 230, 111183.

2. Qiu H*, Wang X, Xiao G & Markides CN (2026). Performance evaluation and design exploration of a novel thermionic emission-based sensor for high-temperature measurements. Measurement 290, 122763.

3. Bellucci A, Trucchi DM, Segev G, ... & Qiu H (2026). The 2026 thermionic converters roadmap. Journal of Physics D: Applied Physics 59(26), 263001.

4. Qiu H*, Hao M, Meng B, et al. (2026). Theories, advances, challenges, and innovations in photon-enhanced thermionic emission technology for concentrating solar systems. Renewable and Sustainable Energy Reviews 227, 116558.

5. Qiu H*, Hao M, Gao M, et al. (2026). In-situ monitoring of intrinsic parameters in the thermal system of thermionic energy converters via space-charge region modeling. Solar Energy Materials and Solar Cells 301, 114311.

6. Qiu H*, Hao M, Meng B, et al. (2025). Photon-enhanced thermionic emission solar converters with light-transparent anode: Observing significant efficiency boost. Energy 332, 137077.

7. Hao M, Xiao G & Qiu H* (2025). Experimental characteristics of thermionic energy converters employing barium-dispenser cathode and semiconductor anodes. Energy 325, 136132.

8. Qiu H, Lin S, Xu H, et al. (2023). Experimental and theoretical study on hybrid thermionic-photovoltaic energy converters with graphene/semiconductor Schottky junction. Energy Conversion and Management 276, 116584.

9. Qiu H, Lin S, Xu H, et al. (2022). Hybrid thermionic-photovoltaic converter with graphene-on-semiconductor heterojunction anode for efficient electricity generation. iScience 25(10), 105051.

10. Qiu H, Wang K, Yu P, et al. (2021). A third-order numerical model and transient characterization of a β-type Stirling engine. Energy 222, 119973.

Ø  发明专利(Invention patents

1. 一种斯特林压缩气体储能装置及其使用方法(授权)

2. 热电子和热光伏耦合发电系统及其工作方法(授权)

3. 一种供能系统及其控制方法(授权)

4. 一种具有自发电和储热功能的太阳能吸热器及其运行方法(授权)

5. 基于热电子发射的热流与温度复合传感器及测量方法(授权

6. 一种热电子耦合的电解反应系统及其运行方法(受理)

7. 一种利用热电子发射注入的化学还原反应强化系统及方法(受理)

8. 集成热电子发电窗口的塔式太阳能接收系统及其运行方法(受理)

9. 一种太阳能光谱能流调控与发电装置及方法(受理)

1. A Stirling-based compressed-gas energy-storage device and method of use (granted).

2. A coupled thermionic–thermophotovoltaic power-generation system and operating method (granted).

3. An energy-supply system and control method (granted).

4. A solar receiver with integrated power generation and thermal storage, and its operating method (granted).

5. A thermionic-emission-based combined heat-flux and temperature sensor and measurement method (granted).

6. A thermionic-coupled electrolysis reaction system and operating method (application filed).

7. A system and method for enhancing chemical reduction through thermionic-emission injection (application filed).

8. A tower solar-receiver system integrated with a thermionic power-generation window and its operating method (application filed).

9. A solar spectral energy-flux regulation and power-generation device and method (application filed).


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