| 查看: 1446 | 回复: 27 | |||
| 【有奖交流】积极回复本帖子,参与交流,就有机会分得作者 babyforhappy 的 79 个金币 ,回帖就立即获得 1 个金币,每人有 1 次机会 | |||
[交流]
法国CNRS, 南特大学, 3个CSC博士项目招聘
|
|||
|
法国国家科学研究院cnrs,南特大学,lten实验室的3个博士csc职位,请小伙伴积极踊跃申请: general information the lten (heat transfer and energy laboratory at nantes, france) enrolls a full-time phd student with a csc scholarship. the phd project will start at autumn 2021 with a duration of up to 48 months (36 months preferred). the csc grant for each awardee will be about 1.350 / per month, with additional health insurance, an international airfare and visa application fees. details of the csc scholarship can be found at https://www.csc.edu.cn/chuguo/s/1949 (general channel) or at https://bg.csc.edu.cn/download.aspx?projectcode=200168 (special agreement between csc and polytech). phd project will be realized at lten-cnrs umr6607, a research laboratory of the nantes university and of the french cnrs. centre national de la recherche scientifique (cnrs) is the french largest research organization carrying out research in all scientific fields of knowledge and conducts interdisciplinary programmes. more description of the french cnrs can be found at http://www.cnrs.fr/en/aboutcnrs/overview.htm the lten is a reference academic laboratory of france on the domain of thermal science and energy engineering. it is also well recognized both at the international level and by the industrial world. more information about the lten can be found at http://www.polytech.univ-nantes.fr/ltn/en/ the csc granted students will be registered as a phd student at the nantes university, the tuition fees and registration fees being waived. in addition, free french language courses, and daily-life assistances will be provided by the relevant service of the nantes university. description of the phd projects: - project #1: phd position on process and energy engineering: integrated heat exchanger-reactor for the methanation of co2: catalytic reactor design, modelling, and characterisation the methanation of co2 into ch4 has been studied for decades for its interests both in reducing ghg emissions and providing add-values. nonetheless, one of the key technology barriers exothermic nature of methanation reaction. catalysts (conventionally ni-based) undergoes severe deactivation at high temperatures, preventing their use in long-term, high throughput operations. therefore, proper design of the heat exchanger-reactor for efficient heat removal and reaction temperature control is of vital importance to make this technology truly economically viable for widespread commercialization. the main objective of the task is to improve fundamental understanding of the methanation reaction by designing, developing and testing of lab-scale catalytic methanation reactors. the main tasks involve: (1) to properly design and fabricate the lab-scale catalytic reactor for methanation; (2 to acquire basic understanding and new physical insights on the methanation reaction by thermodynamics and kinetic studies of the methanation reaction; (3) to experimentally characterize the flow, thermal and catalytic conversion performances of the lab-scale prototypes. - project #2: microfluidic technology for the intensification of carbon capture and storage process: the carbon capture and storage (ccs) is considered as a crucial strategy for meeting co2 emission reduction targets. different technologies are actually available for removing large amounts of co2 from natural, refinery and synthesis gas streams. among them, the most mature and widely used technique is the chemical absorption/desorption process using alkanolamine-based solvents. the current involved equipment for co2 absorption/desorption process usually involves towers or packed columns having huge volumes, which are difficult to control and not energy-efficient. one of the routes to realize the co2 absorption/desorption process intensification is through the miniaturization, more precisely the employment of microfluidic devices, providing a largely reduced required volume, enhanced mass and heat transfer, cleaner, safer, higher productivity and more efficient use of energy. the objective of this phd project is to propose, develop and investigate novel miniature micro-structured devices (absorber) to intensify the co2 chemical absorption process. the major scientific & technological objectives are threefold: (1) to understand the fundamental transport mechanisms for co2 chemical absorption process in microchannels; (2) to design and fabricate laboratory-scale miniature devices for co2 absorption intensification; (3) to characterize the performances of the realized micro-structured co2 absorber using optical-based measurement techniques. - project #3: design, modeling and performance optimization of thermal energy storage-heat exchanger unit: the design and development of integrated heat storage-exchanger units have received increasing attention in recent years, mainly for the waste heat recovery both in industries and in buildings. nevertheless, most of the studies are based on conventional concepts (double-tubes, tube-and-fins, compact heat exchanger, plate heat exchanger, etc.) while efficient design of the heat storage-exchanging unit with enhanced thermal performances is still lacking. this phd project aims at designing and developing innovative, compact and integrated heat storage-exchanger unit with enhanced heat transfer, for the storage and recovery of waste heat from the built-environment (e.g., data centers; sunlight greenhouses, etc.). the advantages expected are multiple: compact, modular, high thermal performances, high volumetric storage capacity and desired transfer kinetic. the dynamic behaviors of the storage unit during the charging/discharging operations and its integration to the built-environment will be particularly addressed. ##supervision team##: prof. lingai luo, directeur de recherche cnrs/cnrs research director dr. yilin fan, french cnrs researcher (cr cnrs), and others ##required skills##: - master degree holder (or candidate) on relevant majors (thermal science; engineering thermophysics; process engineering, etc.); - sound background knowledge of heat transfer, fluid mechanics and engineering thermodynamics; - mastering dynamic modeling tools (dymola; simulink; etc.); mastering programming tools (matlab; python; etc.); basic cfd tools preferred (but not mandatory); - high level of communication skills in both oral and written english; basic french skill preferred (but not mandatory); - fully involvement with the phd project, strong motivation and autonomy, good team work ability, academic integrity and responsible character; good adaptability to working constraints. ##application documents##: interested candidates please prepare and send the following documents for a pre-assessment: - a detailed cv; - a motivation letter of one page; - a one-page synopsis of the master dissertation; - a reference letter (optional). ##contact person##: for further information or queries, please feel free to contact: dr. yilin fan email address: yilin.fan@univ-nantes.fr ##the closing date##: 25 feb. 2021 请小伙伴踊跃申请,不用私信站内给我,直接尽快给上面的联系人投递简历并咨询相关项目信息! 祝大家申请顺利 good luck you guys !!![ last edited by babyforhappy on 2021-2-7 at 18:06 ] [ Last edited by babyforhappy on 2021-2-7 at 18:06 ] |
» 猜你喜欢
【全奖博士/科研助理/博后招生】新加坡南洋理工大学机械与航空航天学院
已经有4人回复
有谁可曾问过你过的还好吗?
已经有22人回复
售T0P一区SCI文章,我:8O5.51.O.54,科目齐全,可+急
已经有5人回复
E0414, 我的本子有没有希望?
已经有7人回复
一篇论文同时出现在两个期刊,一模一样,这算不算学术不端,请各位老师斧正。
已经有12人回复
希望面上有个好结果
已经有7人回复
三区计算机方向期刊推荐
已经有5人回复
sci论文二审求助
已经有5人回复
» 抢金币啦!回帖就可以得到:
MOCVD 外延GaN和AlN以及LED服务
+1/88
硫化物 / 氧化物 / 卤化物全拆解:固态电池手套箱选型核心指南
+1/84
Cu2O纳米线
+5/80
温州医科大学李校堃院士团队宋林涛/黄志锋课题组诚聘博士后
+1/77
青年拔尖人才还有指标 25w*8年
+1/74
骨生物材料与侗药调控类器官再生湖南省普通高等学校重点实验室招聘生物医用材料相关博
+2/68
哈工大深圳-材料学院-招收申请审核制2027年春季/秋季入学博士生(2026年9月报名)
+1/36
哈工大深圳-材料学院-招收申请审核制2027年春季/秋季入学博士生(2026年9月报名)
+1/35
上海交通大学刘祖明课题组招聘博士后
+1/31
湖南师范大学(211)—招收2026年入学的“申请-考核”制博士(有微纳光学经验者优先)
+1/24
坐标广州,征女友
+2/18
澳大利亚西澳大学招收交通工程/智能交通方向博士生
+1/17
东北师范大学荒漠与草地生态学方向诚聘博士后青年才俊
+1/9
哈尔滨工业大学(深圳)赵怡潞课题组诚招博士后、2027学年博士生
+1/5
天津大学高分子方向博士招生
+1/5
密苏里大学生物材料合成生物学博士后招聘
+1/4
北京理工大学-集成电路与电子学院-招博士后
+1/3
招科研助理,提前招27年博士生
+1/1
2026年黄河科技学院纳米功能材料研究所招聘
+1/1
香港中文大学陈也课题组、香港中文大学(深圳)陈仲欣课题组招收联合培养博士后
+1/1
简单回复
tzynew2楼
2021-02-07 05:24
回复
babyforhappy(金币+1): 谢谢参与
。8 发自小木虫Android客户端
一品哥哥3楼
2021-02-07 07:15
回复
babyforhappy(金币+1): 谢谢参与
, 发自小木虫Android客户端
nono20094楼
2021-02-07 07:45
回复
babyforhappy(金币+1): 谢谢参与
。 发自小木虫Android客户端
柑橘5楼
2021-02-07 08:53
回复
babyforhappy(金币+1): 谢谢参与
。 [ 发自手机版 https://muchong.com/3g ]
bjdxyxy6楼
2021-02-07 09:18
回复
babyforhappy(金币+1): 谢谢参与
。 发自小木虫Android客户端
longwave7楼
2021-02-07 09:35
回复
babyforhappy(金币+1): 谢谢参与
祝福 发自小木虫Android客户端
2021-02-07 09:52
回复
babyforhappy(金币+1): 谢谢参与
2021-02-07 12:22
回复
babyforhappy(金币+1): 谢谢参与
Candor10楼
2021-02-07 13:17
回复
babyforhappy(金币+1): 谢谢参与
xiaoqiuqiu2011楼
2021-02-07 16:15
回复
babyforhappy(金币+1): 谢谢参与
kingluck12楼
2021-02-07 20:44
回复
babyforhappy(金币+1): 谢谢参与


BiotageAB13楼
2021-02-07 22:17
回复
babyforhappy(金币+1): 谢谢参与
。
frankfh14楼
2021-02-08 15:07
回复
babyforhappy(金币+1): 谢谢参与
miaojiabing15楼
2021-02-08 15:56
回复
babyforhappy(金币+1): 谢谢参与
7
psylhh16楼
2021-02-09 20:37
回复
babyforhappy(金币+1): 谢谢参与
slytjiaofei17楼
2021-02-09 22:08
回复
babyforhappy(金币+1): 谢谢参与
访客登录18楼
2021-02-10 08:45
回复
babyforhappy(金币+1): 谢谢参与
k 发自小木虫Android客户端
slytjiaofei19楼
2021-02-10 18:57
回复
芳香200920楼
2021-02-10 19:41
回复
shenrenren21楼
2021-02-11 15:38
回复
babyforhappy(金币+1): 谢谢参与
slytjiaofei22楼
2021-02-11 21:00
回复
slytjiaofei23楼
2021-02-12 19:28
回复
shenrenren24楼
2021-02-13 12:10
回复
slytjiaofei25楼
2021-02-13 14:56
回复
2021-02-13 15:09
回复
babyforhappy(金币+1): 谢谢参与
frankfh27楼
2021-02-13 15:33
回复
gter_wang28楼
2021-02-13 20:34
回复
babyforhappy(金币+1): 谢谢参与











!!!
回复此楼