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Dive into the research topics where Zhou Guoyan is active.

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Featured researches published by Zhou Guoyan.


Journal of Heat Transfer-transactions of The Asme | 2014

Numerical and Experimental Study on the Heat Transfer and Pressure Drop of Compact Cross-Corrugated Recuperators

Zhou Guoyan; Tu Shan-Tung; Ma Hu-Gen

Recuperator is one of the key components in high temperature gas cooled reactors. Although cross-corrugated plates have been used to increase the thermal performance of the recuperators, the fundamental mechanisms of fluid flow and heat transfer are generally not clear. Fluid dynamics simulations and experiments are hence carried out to study the performance of the recuperators. A periodic cell is employed as the control volume. The flow field and heat transfer in sine-wave crossed-corrugated channels are investigated based on the Navier–Stokes and energy equations in the laminar flow regime between Re = 84 and 1168. The numerical results of the heat transfer factors and friction factors in different operating conditions show a fairly good agreement with the experimental measurements. The influence factors on the heat transfer and the hydraulic performance are also discussed in the paper. It is found that the heat transfer factor j and friction factor f decrease with the increase of the pitch-height ratio for a given Reynolds number.


international conference on materials for renewable energy environment | 2013

Comparison of heat transfer and pressure drop in different recuperator geometries with corrugated walls

Zhou Guoyan; Tu Shan-Tung; Zhu Dong-sheng

Recuperator is one of the key devices in the high temperature gas turbine system, which is mandatory to achieve 30% electrical efficiency or higher for microturbine engines. Cross-corrugated recuperators provide high heat transfer capabilities with compact size, light weight and strong mechanical strength. Flow in such geometries is usually laminar with typical Reynolds numbers varying from 300-2000. In order to understand mechanisms of flowing and heat transfer, periodic fully developed fluid flow and heat transfer in three types of cross-corrugated structures with inclination angle at 90o are investigated numerically. Periodicity is used to reduce the complexity of the channel geometry and enables the smallest possible segment of the flow channel to be modeled. The velocity and temperature distributions are obtained in the three-dimensional complex domain. Besides a detailed flow analysis, comparison of the local heat and mass transfer and the pressure losses for these geometries are presented. It is shown that the flow phenomena caused by the different geometries are of significant influence on the homogeneity and on the quantity of the local heat and mass transfer as well as on the pressure drop.


International Journal of Energy Research | 2008

Techno-economic study on compact heat exchangers

Zhou Guoyan; Wu En; Tu Shan-Tung


Archive | 2014

Multi-head miniature test specimen creep experiment device and test method

Tu Shandong; Zhuang Fakun; Zhou Guoyan; Wang Qiongqi; Xuan Fuzhen


International Journal of Pressure Vessels and Piping | 2013

Numerical investigation of frictional effect on measuring accuracy of different small specimen creep tests

Zhuang Fakun; Zhou Guoyan; Tu Shan-Tung


Archive | 2014

Method for testing mechanical property of braze welding connector

Zhou Guoyan; Shu Shuangwen; Chen Xing; Tu Shandong; Wang Qiongqi


Volume 6A: Materials and Fabrication | 2018

Study on the Creep Property by Small Beam Specimen With Fixed Constraint

Zhou Guoyan; Qin Hong-Yu; Wang Jun-Qi; Tu Shan-Tung; Gong Jian-Guo


Huaxue Gongcheng | 2016

Heat transfer enhancement mechanism of open-cell metal-foam structures based on hexahedral structure model

Shi Yanhua; Zhou Guoyan; Huang Yuanyuan; Tu Shandong


Huaxue Gongcheng | 2016

六面体モデルに基づく開孔発泡金属強化熱伝達機構【JST・京大機械翻訳】

Shi Yanhua; Zhou Guoyan; Huang Yuanyuan; Tu Shandong


Hanjie Xuebao | 2016

316Lステンレス鋼の溶接継手の機械的性質を試験した。【JST・京大機械翻訳】

Shu Shuangwen; Zhou Guoyan; Chen Xing

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Tu Shan-Tung

East China University of Science and Technology

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Tu Shandong

Nanjing University of Technology

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Wang Qiongqi

East China University of Science and Technology

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Zhuang Fakun

East China University of Science and Technology

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Xuan Fuzhen

East China University of Science and Technology

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Gong Jian-Guo

East China University of Science and Technology

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Ma Hu-Gen

University of Shanghai for Science and Technology

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Qin Hong-Yu

East China University of Science and Technology

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Wang Jun-Qi

East China University of Science and Technology

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Zhu Dong-sheng

East China University of Science and Technology

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