地热能方向博士职位
PhD Studentship - MINELOOP: Investigating MINEwater Systems using Closed-LOOP Geothermal Technologies
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 研究地热能和矿水系统
- 申请条件
- 至少 2.1 荣誉学位或硕士学位(或国际同等学历)在相关科学或工程学科
- 待遇
- 每年 £21,805 的税前津贴和学费
- 申请方式
- 请联系主导师 Dr Christopher Brown 并提供个人信息和动机陈述
- 材料清单
- 个人信息
- 学术背景
- 相关经验
- 动机陈述
由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 90%。
结构化信息
- 截止
- (Europe/London) 剩 81 天
- 学科
- 能源
- 合同类型
- 雇佣合同
- 原文薪资
- GBP 21,805 / 年(税前)
- 税后月薪(估)
- ¥13,700;房租后 ¥5,400
- 估算假设
- 单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
- 原帖发布
- 本站收录
- 内容更新
- 导师
- Dr Christopher Brown
- 来源
- jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-07
判定依据(原文摘录)
- is_phd
This 3.5-year PhD project
- bachelor_ok
at least a 2.1 honours degree or a master’s (or international equivalent)
原文
Application deadline: All year round
Research theme: Minewater geothermal
How to apply: uom.link/pgr-apply-2425
This 3.5-year PhD project is fully funded; students who are eligible to pay tuition fees at the Home rate are eligible to apply. The successful candidate will receive an annual tax-free stipend set at the UKRI rate (£21,805 for 2026/27) and tuition fees will be paid. We expect the stipend to increase each year.
We recommend that you apply early as the advert may be removed before the deadline.
Geothermal energy supports net zero targets and energy security by providing a reliable, low-carbon, local energy source. Minewater geothermal systems represent a largely untapped resource that often coincides with major population centres across the UK, but their use has been limited by technical uncertainties in open-loop systems. This PhD project will investigate the interactions between borehole heat exchangers (BHEs)/closed-loop technology and flooded minewater systems, with the aim of developing low-risk, high-performance geothermal energy solutions. The PhD will examine high-density polyethylene U-tube systems suspended in minewater voids, focussing on: i) their comparative performance to grouted BHEs, ii) the influence of minewater circulation on thermal efficiency and heat plume evolution; iii) predicting flow pathways in a real-world case study emulating a system with high throughflow rates and their implications for system performance; and iv) the potential of thermal energy storage to enhance overall efficiency.
The project will apply a mixed-methods approach combining numerical modelling, field experimentation, and hydrothermal analysis. Numerical simulations will be carried out using FEFLOW (or COMSOL/alternative) to represent coupled heat, flow, and transport processes in minewater systems, with additional model development and customisation undertaken in MATLAB or Python to extend capabilities and explore sensitivity analyses. Experimental data from controlled experiments at the Glasgow Geoenergy Observatory will provide direct evidence of hydro-thermal responses and subsurface characterisation, which will help to determine sustainable resource use when coupled to a suspended U-tube system. All datasets will be integrated into a comprehensive data analysis workflow, using statistical and forward modelling methods to calibrate and validate numerical models. This combined approach ensures robust understanding of heat exchanger/minewater interactions and supports the development of predictive tools and operational guidelines for effective deployment.
The student will receive a comprehensive programme of training to support both technical and professional development. Core technical training will include in-house numerical modelling sessions, supplemented by access to specialised FEFLOW online courses to build expertise in coupled heat and flow simulations.
Applicants should have, or expect to achieve, at least a 2.1 honours degree or a master’s (or international equivalent) in a relevant science or engineering related discipline.
To apply, please contact the main supervisor, Dr Christopher Brown . Please include details of your current level of study, academic background and any relevant experience and include a paragraph about your motivation to study this PhD project.