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Featured researches published by Li Tie.


Chinese Physics Letters | 2011

A Hemispherical-Involute Cavity Receiver for Stirling Engine Powered by a Xenon Arc Solar Simulator

Li Zhigang; Tang Dawei; Li Tie; Du Jing-Long

We develop a solar simulator composed of multiple xenon arc lamps combined with a faceted paraboloidal dish concentrator to drive a Stirling engine in our laboratory for all-weather indoor testing. Experiments and numerical analysis are performed to determine the radiation flux and temperature distributions on the solar receiver surface. Based on the theoretical results, we present a receiver design for a solar Stirling engine with involute tubes closely conforming to the imaginary hemisphere to obtain a substantially uniform temperature field and a high solar-thermal efficiency of 67.1%.


Archive | 2014

Finite element analysis method for temperature action on prestressed reinforced concrete continuous rigid frame bridge

Gui Xiaohong; Song Xiange; Li Tie; Tang Dawei


Thermal Science | 2013

Influence of void ratio on phase change of thermal energy storage for heat pipe receiver

Gui Xiaohong; Song Xiange; Li Tie; Liang Shiqiang; Yuan Dazhong; Tang Dawei


Archive | 2014

Thermal performance test system of temperature control assembly

Gui Xiaohong; Song Xiang E; Li Tie; Zheng Xinghua; Tang Dawei


Archive | 2014

One-way loop gravity assisted heat pipe and manufacturing method thereof

Li Tie; Gui Xiaohong; Liu Qiang; Jiang Yuyan; Tang Dawei


Archive | 2014

Gas combustion chamber for Stirling engine

Li Tie; Gui Xiaohong; Cao Wenyu; Tang Dawei; Li Lanlan


Archive | 2013

Thermal head heat exchange performance testing method and testing device for solar energy Stirling engine

Li Tie; Gui Xiaohong; Cao Wenyu; Tang Dawei; Li Lanlan


Archive | 2017

Heat transfer method and heat transfer system based on heat-pressure conversion effect

Jiang Yuyan; Li Tie; Li Yuhua; Yuan Dazhong; Li Zhigang; Wang Tao; Tang Dawei


Archive | 2017

Hot-pressing conversion rigid flat pipe and battery thermal management device

Li Tie; Jiang Yuyan; Yue Peng; Xiao Lifeng


Applied Thermal Engineering | 2016

ガスタービンのステータのための実行可能な冷却法としてのループ熱サイフォン【Powered by NICT】

Li Tie; Jiang Yuyan; Li Zhigang; Liu Qiang; Tang Dawei

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Tang Dawei

Chinese Academy of Sciences

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Gui Xiaohong

Chinese Academy of Sciences

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Li Zhigang

Chinese Academy of Sciences

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Cao Wenyu

Chinese Academy of Sciences

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Song Xiange

Beijing International Studies University

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Du Jing-Long

Chinese Academy of Sciences

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Li Yuhua

Chinese Academy of Sciences

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