發(fā)明專利:
[1]趙耀華,王林成,徐紅霞,全貞花. 一種安全節(jié)能的平板熱管風(fēng)冷式燃料電池堆[P]. CN216084968U,2022-03-18.
[2]趙耀華,靖赫然,徐紅霞,全貞花. 一種基于微熱管陣列的節(jié)水消霧冷卻塔設(shè)備及系統(tǒng)[P]. CN215598158U,2022-01-21.
[3]趙耀華,王林成,徐紅霞,全貞花. 一種安全節(jié)能的平板熱管風(fēng)冷式燃料電池堆及熱管理方法[P]. CN113823823A,2021-12-21.
[4]趙耀華,靖赫然,徐紅霞,全貞花. 一種基于微熱管陣列的節(jié)水消霧冷卻塔設(shè)備及系統(tǒng)[P]. CN113432449A,2021-09-24.
[5]全貞花,劉新,孫育英,趙耀華. 基于平板熱管的雪車雪橇賽道[P]. CN113215918A,2021-08-06.
[6]楊金鋼,趙耀華,韋新東,王浩,許永超,劉暉晧,劉禹宏. 一種基于柔性熱管的動(dòng)力電池管理系統(tǒng)及方法[P]. CN111002830B,2021-06-18.
[7]刁彥華,秦倩,趙耀華,王澤宇,陳傳奇. 一種微熱管陣列式梯級(jí)相變蓄熱系統(tǒng)[P]. CN112985135A,2021-06-18.
[8]王林成,全貞花,趙耀華,靖赫然. 平板熱管式熱電熱回收新風(fēng)機(jī)[P]. CN212585115U,2021-02-23.
[9]刁彥華,王澤宇,趙耀華,梁林. 一種復(fù)合拋物面聚光發(fā)電-相變蓄熱裝置[P]. CN110686414B,2020-12-04.
[10]楊金鋼,趙耀華,韋新東,王浩,許永超,劉暉晧,劉禹宏. 一種基于柔性熱管的動(dòng)力電池管理系統(tǒng)及方法[P]. CN111002830A,2020-04-14.
[11]刁彥華,王澤宇,趙耀華,陳傳奇. 一種基于搭接式微熱管陣列的真空管太陽(yáng)能集熱-儲(chǔ)熱一體化裝置[P]. CN110701799A,2020-01-17.
[12]刁彥華,王澤宇,趙耀華,梁林. 一種復(fù)合拋物面聚光發(fā)電-相變蓄熱裝置[P]. CN110686414A,2020-01-14.
[13]刁彥華,王澤宇,趙耀華,王騰月. 一種應(yīng)用復(fù)合拋物面聚光器的真空管-微熱管陣列太陽(yáng)能集熱-儲(chǔ)熱一體化裝置[P]. CN110686415A,2020-01-14.
[14]孫峙峰,趙耀華,徐偉,王東旭. 一種封裝式高效蓄冷裝置[P]. CN107255326B,2019-12-17.
[15]楊金鋼,趙耀華,全貞花,王崗. 一種用于多熱源散熱的余熱儲(chǔ)熱回收方法[P]. CN109539291B,2019-12-13.
[16]楊金鋼,趙耀華,王春青,陳傲雪,趙洪宇,鄧蘭西. 一種基于微熱管技術(shù)的低溫淋浴廢水熱回收換熱裝置[P]. CN108050872B,2019-09-10.
[17]趙耀華,靖赫然,全貞花,徐紅霞. 一種新型太陽(yáng)能PV/T建筑一體化幕墻構(gòu)件及多能互補(bǔ)供能系統(tǒng)[P]. CN209293246U,2019-08-23.
[18]趙耀華,靖赫然,全貞花,董瑞雪. 一種基于平板微熱管陣列的地板輻射采暖系統(tǒng)[P]. CN208794530U,2019-04-26.
[19]劉婧,刁彥華,趙耀華. 一種扁管式相變蓄熱裝置[P]. CN107062972B,2019-03-29.
[20]楊金鋼,趙耀華,全貞花,王崗. 一種用于多熱源散熱的余熱儲(chǔ)熱回收方法[P]. CN109539291A,2019-03-29.
[21]王澤宇,刁彥華,趙耀華. 一種基于搭接式平板微熱管陣列的太陽(yáng)能集熱、蓄熱一體化裝置[P]. CN107062646B,2019-03-22.
[22]趙耀華. 一種高效板式低溫暖氣片及其專用組件[P]. CN106403640B,2019-03-19.
[23]趙耀華,靖赫然,全貞花,董瑞雪. 一種干式接觸式平板熱管地板輻射采暖方法及采暖系統(tǒng)[P]. CN109307305A,2019-02-05.
[24]趙耀華,靖赫然,全貞花,徐紅霞. 一種新型太陽(yáng)能PV/T建筑一體化幕墻構(gòu)件及多能互補(bǔ)供能系統(tǒng)[P]. CN109235717A,2019-01-18.
[25]趙耀華. 一種低溫暖氣片[P]. CN106323042B,2018-09-11.
[26]楊金鋼,趙耀華,王春青,陳傲雪,趙洪宇,鄧蘭西. 一種基于微熱管技術(shù)的低溫淋浴廢水熱回收換熱裝置[P]. CN108050872A,2018-05-18.
[27]楊金鋼,趙耀華,陳傲雪,丁金波,曹東旭,于江. 一種適于嚴(yán)寒地區(qū)農(nóng)村住宅聯(lián)合供暖供熱系統(tǒng)[P]. CN108036387A,2018-05-15.
[28]楊金鋼,趙耀華,陳傲雪,包滿喜,曹東旭,李中陽(yáng). 一種基于微熱管技術(shù)的空氣-水一體化太陽(yáng)能集熱器[P]. CN108019958A,2018-05-11.
[29]趙耀華,全貞花,刁彥華. 高熱流密度機(jī)柜散熱冷卻方法及其復(fù)合換熱器[P]. CN107548263A,2018-01-05.
[30]趙耀華. 一種平板微熱管相變蓄放熱系統(tǒng)[P]. CN105627797B,2017-12-15.
[31]楊金鋼,趙耀華,陳傲雪,李鑫福. 一種基于微熱管技術(shù)的低溫?zé)煔鉄峄厥論Q熱裝置[P]. CN206724267U,2017-12-08.
[32]孫峙峰,趙耀華,徐偉,王東旭. 一種封裝式高效蓄冷裝置[P]. CN107255326A,2017-10-17.
[33]劉婧,刁彥華,趙耀華. 一種扁管式相變蓄熱裝置[P]. CN107062972A,2017-08-18.
[34]王澤宇,刁彥華,趙耀華. 一種基于搭接式平板微熱管陣列的太陽(yáng)能集熱、蓄熱一體化裝置[P]. CN107062646A,2017-08-18.
[35]楊金鋼,趙耀華,陳傲雪,李鑫福. 一種基于微熱管技術(shù)的低溫?zé)煔鉄峄厥論Q熱裝置[P]. CN106989426A,2017-07-28.
[36]刁彥華,趙耀華,王澤宇,梁林. 平板微熱管陣列式太陽(yáng)能空氣集熱、蓄熱一體化裝置[P]. CN106839463A,2017-06-13.
[37]趙耀華,葉欣,張楷榮. 圓柱體電池組的熱管理系統(tǒng)和方法[P]. CN106785236A,2017-05-31.
[38]趙耀華. 一種高效板式低溫暖氣片及其專用組件[P]. CN206160766U,2017-05-10.
[39]趙耀華,葉欣,張楷榮. 長(zhǎng)方體電池組的熱管理系統(tǒng)和方法[P]. CN106571499A,2017-04-19.
[40]趙耀華. 一種新型混合驅(qū)動(dòng)式節(jié)能空調(diào)末端[P]. CN206055780U,2017-03-29.
[41]趙耀華. 一種低溫暖氣片[P]. CN206056342U,2017-03-29.
[42]趙耀華. 一種高效板式低溫暖氣片及其專用組件[P]. CN106403640A,2017-02-15.
[43]關(guān)云峰,程鵬,樊洪明,閆桂蘭,彭宏,孟文博,孫立冬,趙耀華. 一種平板熱管及相變蓄放熱裝置[P]. CN205940240U,2017-02-08.
[44]趙耀華. 一種新型混合驅(qū)動(dòng)式節(jié)能空調(diào)末端[P]. CN106369674A,2017-02-01.
[45]趙耀華. 一種低溫暖氣片[P]. CN106323042A,2017-01-11.
[46]趙耀華,張楷榮. 熱管輻射立式采暖/制冷系統(tǒng)和方法[P]. CN103954073B,2017-01-04.
[47]趙耀華,張楷榮. 半導(dǎo)體溫差發(fā)電裝置[P]. CN101882902B,2016-12-14.
[48]趙耀華,全貞花,刁彥華. 高熱流密度機(jī)柜復(fù)合換熱器[P]. CN205812621U,2016-12-14.
[49]趙耀華,刁彥華,張楷榮. 一種微熱管陣列板相變蓄放熱方法與系統(tǒng)[P]. CN106123661A,2016-11-16.
[50]趙耀華,張楷榮. 熱管輻射式頂板采暖/制冷系統(tǒng)和方法[P]. CN103940147B,2016-06-22.
[51]趙耀華. 一種平板微熱管相變蓄放熱系統(tǒng)[P]. CN105627797A,2016-06-01.
[52]趙耀華. 一種蓄熱裝置[P]. CN105627594A,2016-06-01.
[53]趙耀華,葉欣,張楷榮. 圓柱體電池組的熱管理系統(tǒng)[P]. CN205282609U,2016-06-01.
[54]趙耀華. 一種蓄熱裝置及蓄熱系統(tǒng)[P]. CN105526722A,2016-04-27.
[55]趙耀華,葉欣,張楷榮. 長(zhǎng)方體電池組的熱管理系統(tǒng)[P]. CN205039216U,2016-02-17.
[56]趙耀華,朱婷婷,刁彥華. 熱管式平板太陽(yáng)能空氣集熱器[P]. CN204987500U,2016-01-20.
[57]趙耀華,朱婷婷,刁彥華. 熱管式平板太陽(yáng)能空氣集熱器及其采暖方法[P]. CN105066471A,2015-11-18.
[58]趙耀華,趙文仲,朱濱,全貞花,刁彥華. 太陽(yáng)能空氣集熱采暖系統(tǒng)和方法[P]. CN102980238B,2015-08-19.
[59]趙耀華,張楷榮. 一種高效換熱水管以及熱管輻射采暖/制冷系統(tǒng)[P]. CN203893729U,2014-10-22.
[60]趙耀華,張楷榮. 熱管輻射式頂板采暖/制冷系統(tǒng)[P]. CN203824159U,2014-09-10.
[61]趙耀華,張楷榮. 熱管輻射立式采暖/制冷系統(tǒng)[P]. CN203824160U,2014-09-10.
[62]趙耀華,張楷榮. 一種高效換熱水管以及熱管輻射采暖/制冷系統(tǒng)[P]. CN103968700A,2014-08-06.
[63]趙耀華,張楷榮. 板狀熱管插接式大功率LED散熱器[P]. CN203757673U,2014-08-06.
[64]趙耀華,張楷榮. 熱管輻射立式采暖/制冷系統(tǒng)和方法[P]. CN103954073A,2014-07-30.
[65]趙耀華,張楷榮. 熱管輻射式頂板采暖/制冷系統(tǒng)和方法[P]. CN103940147A,2014-07-23.
[66]趙耀華. 新型散熱器[P]. CN203687710U,2014-07-02.
[67]趙耀華,張楷榮. 板狀熱管插接式大功率LED散熱器[P]. CN103807835A,2014-05-21.
[68]趙耀華,張楷榮. 大功率集成發(fā)熱器件均溫支架及大功率集成發(fā)熱器件組件[P]. CN203536416U,2014-04-09.
[69]趙耀華,全貞花,侯隆澍,王偉. 新型太陽(yáng)能空氣源熱泵系統(tǒng)及熱水制備方法[P]. CN102563973B,2014-04-02.
[70]趙耀華. 新型散熱器[P]. CN103615921A,2014-03-05.
[71]趙耀華,趙文仲,朱濱,全貞花,刁彥華. 太陽(yáng)能空氣集熱采暖系統(tǒng)[P]. CN203036757U,2013-07-03.
[72]趙耀華,趙文仲,朱濱,全貞花,刁彥華. 太陽(yáng)能空氣集熱采暖系統(tǒng)和方法[P]. CN102980238A,2013-03-20.
[73]趙耀華,全貞花,侯隆澍,王偉. 新型太陽(yáng)能空氣源熱泵系統(tǒng)[P]. CN202648245U,2013-01-02.
[74]趙耀華,張楷榮,刁彥華. 具有多層微孔管陣列的三維平板熱管及其加工工藝[P]. CN101738118B,2012-08-01.
[75]趙耀華,全貞花,侯隆澍,王偉. 新型太陽(yáng)能空氣源熱泵系統(tǒng)及熱水制備方法[P]. CN102563973A,2012-07-11.
[76]趙耀華,刁彥華,張楷榮. 一種板狀熱管及其加工工藝[P]. CN102506597A,2012-06-20.
[77]趙耀華,刁彥華,張楷榮. 一種板狀熱管及其加工工藝[P]. CN101709929B,2012-05-30.
[78]刁彥華,趙耀華,于雯靜. 多孔材料太陽(yáng)能空氣集熱裝置[P]. CN101846404B,2012-05-30.
[79]趙耀華,張楷榮,刁彥華. 用于LED及大功率散熱器件的散熱器[P]. CN101515572B,2012-04-18.
[80]趙耀華,張楷榮. 筆記本電腦散熱系統(tǒng)及高效散熱的筆記本電腦[P]. CN201965530U,2011-09-07.
[81]趙耀華,張楷榮,刁彥華. 太陽(yáng)能光伏電池高效散熱裝置及熱電聯(lián)供系統(tǒng)[P]. CN101764167B,2011-08-24.
[82]趙耀華,刁彥華,張楷榮. 新型平板式太陽(yáng)能集熱方法及其集熱器[P]. CN101319823B,2011-08-17.
[83]趙耀華,張楷榮. 筆記本電腦散熱方法和散熱系統(tǒng)及高效散熱的筆記本電腦[P]. CN102156521A,2011-08-17.
[84]趙耀華,刁彥華,張楷榮. 一種用于電子器件冷卻的平板熱管及其加工工藝[P]. CN101363696B,2011-07-20.
[85]趙耀華,刁彥華,張楷榮. 新型微電子器件散熱器[P]. CN101510533B,2011-06-15.
[86]趙耀華. 大型空調(diào)制冷機(jī)的回風(fēng)預(yù)冷換熱系統(tǒng)[P]. CN201852257U,2011-06-01.
[87]趙耀華,刁彥華,張楷榮. 一種新型太陽(yáng)能熱水系統(tǒng)[P]. CN101504197B,2011-05-18.
[88]趙耀華,張楷榮. 筆記本電腦及便攜式小型發(fā)熱機(jī)器的外置散熱器[P]. CN201837956U,2011-05-18.
[89]趙耀華,刁彥華,張楷榮. 光伏電池散熱裝置[P]. CN101414644B,2011-05-11.
[90]趙耀華. 大型空調(diào)制冷機(jī)的回風(fēng)預(yù)冷換熱系統(tǒng)[P]. CN101984303A,2011-03-09.
[91]刁彥華,趙耀華,于雯靜. 多孔材料太陽(yáng)能空氣集熱裝置[P]. CN201731654U,2011-02-02.
[92]趙耀華,張楷榮. 半導(dǎo)體溫差發(fā)電裝置[P]. CN201717812U,2011-01-19.
[93]趙耀華,張楷榮,刁彥華. 太陽(yáng)能光伏電池高效散熱裝置及電池板、熱電聯(lián)供系統(tǒng)、板管式換熱器[P]. CN201655823U,2010-11-24.
[94]趙耀華,張楷榮. 半導(dǎo)體溫差發(fā)電裝置[P]. CN101882902A,2010-11-10.
[95]趙耀華,刁彥華,張楷榮. 一種具有層列微槽微熱管群的新型平板熱管[P]. CN101493296B,2010-10-06.
[96]趙耀華. 平板熱管采暖系統(tǒng)[P]. CN201599863U,2010-10-06.
[97]趙耀華. 半導(dǎo)體制冷除濕器[P]. CN201599886U,2010-10-06.
[98]刁彥華,趙耀華,于雯靜. 多孔材料太陽(yáng)能空氣集熱裝置[P]. CN101846404A,2010-09-29.
[99]刁彥華,趙耀華,王櫻,于雯靜. 一種EHD強(qiáng)化的微型散熱裝置[P]. CN101252822B,2010-09-15.
[100]趙耀華,陳蘇紅,劉道川. 一種板式太陽(yáng)能集熱器及集熱系統(tǒng)以及加工工藝[P]. CN101430141B,2010-08-11.
[101]趙耀華,刁彥華,張楷榮. 新型平板熱管[P]. CN201548107U,2010-08-11.
[102]趙耀華,張楷榮,刁彥華. 太陽(yáng)能光伏電池高效散熱裝置及熱電聯(lián)供系統(tǒng)[P]. CN101764167A,2010-06-30.
[103]趙耀華,李光明. 一種高效散熱動(dòng)力電池、電動(dòng)車溫控系統(tǒng)及電動(dòng)車[P]. CN101764249A,2010-06-30.
[104]趙耀華,張楷榮,刁彥華. 具有多層微孔管陣列的三維平板熱管及其加工工藝[P]. CN101738118A,2010-06-16.
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[107]趙耀華,張楷榮,刁彥華. 新型LED及大功率散熱器件散熱器[P]. CN101515572,2009-08-26.
[108]趙耀華,刁彥華,張楷榮. 新型微電子器件散熱器[P]. CN101510533,2009-08-19.
[109]趙耀華,刁彥華,張楷榮. 一種新型太陽(yáng)能熱水系統(tǒng)[P]. CN101504197,2009-08-12.
[110]趙耀華,張楷榮,刁彥華. 一種改進(jìn)的平板式太陽(yáng)能集熱方法及其集熱器和熱水系統(tǒng)[P]. CN101504198,2009-08-12.
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論文專著:
先后發(fā)表學(xué)術(shù)論文140余篇,其中SCI、EI收錄的有40余篇。
發(fā)表部分英文期刊論文:
[1]Diao, Y. H.*; Yin, L. L.; Wang, Z. Y.; Zhao, Y. H.; Liang, L.; Bai, F. W. Numerical analysis of heat transfer characteristics for air in a latent heat thermal energy storage using flat miniature heat pipe arrays .Applied Thermal Engineering, 2019, 162: UNSP 114247.
[2]Sun Zhifeng; Zhao Yaohua; Xu Wei; Wang Dongxu*; Li Huiyong; Zhang Xinyu; Li Huai; Li Yang.Cold Storage Capacity for Solar Air-Conditioning in Office Buildings in Different Climates .Journal of Thermal Science, 2019, 28(6): 1195-1204.
[3]Chen, C Q; Diao, Y H*; Zhao, Y H; Ji, W H; Wang, Z Y; Liang, L.Thermal performance of a thermal-storage unit by using a multichannel flat tube and rectangular fins .Applied Energy, 2019, 250: 1280-1291.
[4]Wang, Zeyu; Diao, Yanhua*; Zhao, Yaohua; Chen, Chuanqi; Liang, Lin; Wang, Tengyue.Thermal performance investigation of an integrated collector-storage solar air heater on the basis of lap joint-type flat micro-heat pipe arrays: Simultaneous charging and discharging mode .Energy, 2019, 181: 882-896.
[5]Wang, Teng yue; Zhao, Yao hua*; Diao, Yan hua; Ren, Ru yang; Wang, Ze yu.Performance of a new type of solar air collector with transparent-vacuum glass tube based on micro-heat pipe arrays .Energy, 2019, 177: 16-28.
[6]Sun, Qin; Diao, Yanhua; Zhao, Yaohua*; Tang, Sheng; Zhang, Ji; Wang, Zeyu.Developing Convective Heat Transfer in Multiport Microchannel Flat Tubes .Journal of Heat Transfer-Transactions of the ASME, 2019, 141(6): 062401.
[7]Wang, Zeyu; Diao, Yanhua*; Zhao, Yaohua; Yin, Lili; Chen, Chuanqi; Liang, Lin; Wang, Tengyue.Performance investigation of an integrated collector-storage solar water heater based on lap-joint-type micro-heat pipe arrays .Applied Thermal Engineering, 2019, 153: 808-827.
[8]Yang, Jingang*; Zhao, Yaohua; Chen, Aoxue; Quan, Zhenhua.Thermal Performance of a Low-Temperature Heat Exchanger Using a Micro Heat Pipe Array .Energies, 2019, 12(4): 675.
[9]Wang, Gang; Quan, Zhenhua*; Zhao, Yaohua; Wang, Hongyan.Performance of a flat-plate micro heat pipe at different filling ratios and working fluids .Applied Thermal Engineering, 2019, 146: 459-468.
[10]Diao, Y H; Liang, L; Zhao, Y H*; Wang, Z Y; Bai, F W.Numerical investigation of the thermal performance enhancement of latent heat thermal energy storage using longitudinal rectangular fins and flat micro-heat pipe arrays .Applied Energy, 2019, 233: 894-905.
[11]Ye Xin*; Zhao Yaohua; Quan Zhenhua.Experimental study on heat dissipation for lithium-ion battery based on micro heat pipe array (MHPA) .Applied Thermal Engineering, 2018, 130: 74-82.
[12]Ye Xin*; Zhao Yaohua; Quan Zhenhua.Thermal management system of lithium-ion battery module based on micro heat pipe array .International Journal of Energy Research, 2018, 42(2): 648-655.
[13]Wang Z Y; Diao Y H*; Liang L; Zhao Y H; Zhu T T; Bai F W.Experimental study on an integrated collector storage solar air heater based on flat micro-heat pipe arrays .Energy and Buildings, 2017, 152: 615-628.
[14]Diao Y H; Liang L; Kang Y M; Zhao Y H; Wang Z Y; Zhu T T.Experimental study on the heat recovery characteristic of a heat exchanger based on a flat micro-heat pipe array for the ventilation of residential buildings .Energy and Buildings, 2017, 152: 448-457.
[15]Zhu T T; Diao Y H; Zhao Y H*; Ma C; Wang T Y; Liu J.A Comparative Investigation of Two Types of MHPA Flat-Plate Solar Air Collector Based on Exergy Analysis .Journal of Solar Energy Engineering-Transactions of the ASME, 2017, 139(5): 051011.
[16]Liu J; Diao Y H*; Zhao Y H; Li F F; Zhu T T.Heat Transfer Properties of a Latent Thermal Storage Unit with Flat Microheat Pipe Arrays .Journal of Energy Engineering, 2017, 143(5): 04017048.
[17]Liu J; Diao Y H*; Zhao Y H; Li F F; Zhu T T.Heat Transfer Properties of a Latent Thermal Storage Unit with Flat Microheat Pipe Arrays .Journal of Energy Engineering, 2017, 143(5): 04017048.
[18]Wang Teng yue; Diao Yan hua*; Zhu Ting ting; Zhao Yao hua; Liu Jing; Wei Xiang qian.Thermal performance of solar air collection-storage system with phase change material based on flat micro-heat pipe arrays .Energy Conversion and Management, 2017, 142: 230-243.
[19]Zhu Tingting; Diao Yanhua*; Zhao Yaohua; Ma Cheng.Performance evaluation of a novel flat-plate solar air collector with micro-heat pipe arrays (MHPA) .Applied Thermal Engineering, 2017, 118: 1-16.
[20]Zhang, Ji; Diao, Yanhua*; Zhao, Yaohua; Zhang, Yanni.An experimental investigation of heat transfer enhancement in minichannel: Combination of nanofluid and micro fin structure techniques .Experimental Thermal and Fluid Science, 2017, 81: 21-32.
[21]Zhu Ting ting; Zhao Yao hua*; Diao Yan hua; Li Feng fei; Quan Zhen hua.Experimental investigation and performance evaluation of a vacuum tube solar air collector based on micro heat pipe arrays .Journal of Cleaner Production, 2017, 142: 3517-3526.
[22]Diao Y H*; Li C Z; Zhang J; Zhao Y H; Kang Y M.Experimental investigation of MWCNT-water nanofluids flow and convective heat transfer characteristics in multiport minichannels with smooth/micro-fin surface .Powder Technology, 2017, 305: 206-216.
[23]Diao Y H*; Wang S; Li C Z; Zhao Y H; Zhu T T.Experimental study on the heat transfer characteristics of a new type flat micro heat pipe heat exchanger with latent heat thermal energy storage .Experimental Heat Transfer, 2017, 30(2): 91-111.
[24]Sun Zhifeng; Zhao Yaohua; Xu Wei; Zhang Xinyu; Li Huai; Wang Min; He Tao; Wang Dongxu.A Solar Heating and Cooling System in a Nearly Zero-Energy Building: A Case Study in China .International Journal of Photoenergy, 2017, 2017: 2053146.
[25]Hou Longshu; Quan Zhenhua*; Zhao Yaohua; Wang Lincheng; Wang Gang.An experimental and simulative study on a novel photovoltaic-thermal collector with micro heat pipe array (MHPA-PV/T) .Energy and Buildings, 2016, 124: 60-69.
[26]Zhu Ting Ting; Diao Yan Hua*; Zhao Yao Hua; Li Feng Fei.Thermal performance of a new CPC solar air collector with flat micro-heat pipe arrays .Applied Thermal Engineering, 2016, 98: 1201-1213.
[27]Li Feng fei; Diao Yan hua; Zhao Yao hua; Zhu Ting ting; Liu Jing.Experimental study on the thermal performance of a new type of thermal energy storage based on flat micro-heat pipe array .Energy Conversion and Management, 2016, 112: 395-403.
[28]Zhang Ji; Diao Yanhua*; Zhao Yaohua; Zhang Yanni.Thermal-Hydraulic Performance of SiC-Water and Al2O3-Water Nanofluids in the Minichannel .Journal of Heat Transfer-Transactions of the ASME, 2016, 138(2): 021705.
[29]Li S C; Wang W*; Zhao Y H; Dong X G.A NEW SEMIEMPIRICAL MODEL FOR THE MAXIMUM TEMPERATURE UNDER THE CEILING IN URBAN TRAFFIC LINK TUNNEL FIRES .Heat Transfer Research, 2016, 47(11): 989-1011.
[30]Wang Gang; Quan Zhenhua*; Zhao Yaohua; Sun Chenming; Deng Yuechao; Tong Jiannan.Experimental study on a novel PV/T air dual-heat-source composite heat pump hot water system .Energy and Buildings, 2015, 108: 175-184.
[31]Deng Yuechao; Quan Zhenhua; Zhao Yaohua; Wang Lincheng; Liu Zhongliang.Experimental research on the performance of household-type photovoltaic-thermal system based on micro-heat-pipe array in Beijing .Energy Conversion and Management, 2015, 106: 1039-1047.
[32]Diao Y H*; Wang S; Zhao Y H; Zhu T T; Li C Z; Li F F.Experimental study of the heat transfer characteristics of a new-type flat micro-heat pipe thermal storage unit .Applied Thermal Engineering, 2015, 89: 871-882.
[33]Diao Y H*; Li C Z; Zhao Y H; Liu Y; Wang S.Experimental investigation on the pool boiling characteristics and critical heat flux of Cu-R141b nanorefrigerant under atmospheric pressure .International Journal of Heat and Mass Transfer, 2015, 89: 110-115.
[34]Zhang Ji; Zhao Yaohua*; Diao Yanhua; Zhang Yanni.An experimental study on fluid flow and heat transfer in a multiport minichannel flat tube with micro-fin structures .International Journal of Heat and Mass Transfer, 2015, 84: 511-520.
[35]Zhu Ting ting; Diao Yan hua*; Zhao Yao hua; Deng Yue chao.Experimental study on the thermal performance and pressure drop of a solar air collector based on flat micro-heat pipe arrays .Energy Conversion and Management, 2015, 94: 447-457.
[36]Diao Y H*; Liu Y; Zhang J; Guo L; Zhao Y H; Wang S.Effect of electric field on the enhanced heat transfer characteristic of an evaporator with multilayered sintered copper mesh .Journal of Electrostatics, 2015, 73: 26-32.
[37]Deng Yuechao; Zhao Yaohua*; Quan Zhenhua; Zhu Tingting.Experimental study of the thermal performance for the novel flat plate solar water heater with micro heat pipe array absorber .3rd International Conference on Solar Heating and Cooling for Buildings and Industry (SHC), 2014-10-13 to 2014-10-15.
[38]Wang Lincheng; Zhao Yaohua*; Quan Zhenhua; Gan Hongyu; Jing Heran.Simulation study on household forced circulation photovoltaic thermal system based on micro heat pipe array .3rd International Conference on Solar Heating and Cooling for Buildings and Industry (SHC), 2014-10-13 to 2014-10-15.
[39]Zhu Ting ting; Zhao Yao hua*; Diao Yan hua; Li Feng fei; Deng Yue chao.Experimental investigation on the performance of a novel solar air heater based on flat micro-heat pipe arrays (FMHPA) .3rd International Conference on Solar Heating and Cooling for Buildings and Industry (SHC), 2014-10-13 to 2014-10-15.
[40]Wang Gang; Quan Zhenhua*; Zhao Yaohua; Xu Peng; Sun Chenming.Experimental study of a novel PV/T-air composite heat pump hot water system .3rd International Conference on Solar Heating and Cooling for Buildings and Industry (SHC), 2014-10-13 to 2014-10-15.
[41]Wang Gang; Quan Zhenhua*; Zhao Yaohua; Sun Chenming; Tong Jiannan.Performance studies on a novel solar PV/T-air dual heat source heat pump system .9th International Symposium on Heating Ventilation and Air Conditioning ISHVAC Joint with the 3rd International Conference on Building Energy and Environment COBEE, 2015-07-12 to 2015-07-15.
[42]Liu Huimin*; Wang Wei; Zhao Yaohua; Deng Yuechao.Field study of the performance for a solar water heating system with MHPA-FPCs .3rd International Conference on Solar Heating and Cooling for Buildings and Industry (SHC), 2014-10-13 to 2014-10-15.
[43]Zhang Ji; Diao Yanhua*; Zhao Yaohua; Zhang Yanni.Experimental study of TiO2-water nanofluid flow and heat transfer characteristics in a multiport minichannel flat tube .International Journal of Heat and Mass Transfer, 2014, 79: 628-638.
[44]Diao Y H*; Guo L; Liu Y; Zhao Y H; Wang S.Electric field effect on the bubble behavior and enhanced heat-transfer characteristic of a surface with rectangular microgrooves .International Journal of Heat and Mass Transfer, 2014, 78: 371-379.
[45]Diao Y H*; Guo L; Liu Y; Zhao Y H; Wang S.Electric field effect on the bubble behavior and enhanced heat-transfer characteristic of a surface with rectangular microgrooves .International Journal of Heat and Mass Transfer, 2014, 78: 371-379.
[46]Diao Yanhua*; Zhang Ji; Yu Wenjing; Zhao Yaohua.Experimental study on the heat recovery characteristic of a plate heat pipe heat exchanger in room ventilation .HVAC&R Research, 2014, 20(7): 828-835.
[47]Zhang Ji; Diao Yanhua*; Zhao Yaohua; Zhang Yanni; Sun Qin.Thermal-hydraulic performance of multiport microchannel flat tube with a sawtooth fin structure .International Journal of Thermal Sciences, 2014, 84: 175-183.
[48]Diao Yanhua*; Liu Yan; Wang Rui; Zhao Yaohua; Guo Lei.Experimental investigation of the Cu/R141b nanofluids on the evaporation/boiling heat transfer characteristics for surface with capillary micro-channels .Heat and Mass Transfer, 2014, 50(9): 1261-1274.
[49]Diao Y H*; Liu Y; Zhao Y H; Wang S.Evaporation/Boiling Heat Transfer Performance in a Sintered Copper Mesh Structure .Journal of Heat Transfer-Transactions of the ASME, 2014, 136(8): 081502.
[50]Zhang J; Diao Y H*; Zhao Y H; Zhang Y N.An experimental study of the characteristics of fluid flow and heat transfer in the multiport microchannel flat tube .Applied Thermal Engineering, 2014, 65(1-2): 209-218.
[51]Tang Xiao; Zhao Yao Hua*; Diao Yan hua.Experimental investigation of the nucleate pool boiling heat transfer characteristics of delta-Al2O3-R141b nanofluids on a horizontal plate .Experimental Thermal and Fluid Science, 2014, 52: 88-96.
[52]Diao Y H*; Liu Y; Wang R; Zhao Y H; Guo L; Tang X.Effects of nanofluids and nanocoatings on the thermal performance of an evaporator with rectangular microchannels .International Journal of Heat and Mass Transfer, 2013, 67: 183-193.
[53]Zhang J; Diao Y H*; Zhao Y H; Tang X; Yu W J; Wang S.Experimental study on the heat recovery characteristics of a new-type flat micro-heat pipe array heat exchanger using nanofluid .Energy Conversion and Management, 2013, 75: 609-616.
[54]Deng Yuechao; Zhao Yaohua*; Wang Wei; Quan Zhenhua; Wang Lincheng; Yu Dan.Experimental investigation of performance for the novel flat plate solar collector with micro-channel heat pipe array (MHPA-FPC) .Applied Thermal Engineering, 2013, 54(2): 440-449.
[55]Deng YueChao; Quan ZhenHua*; Zhao YaoHua; Wang LinCheng.Experimental investigations on the heat transfer characteristics of micro heat pipe array applied to flat plate solar collector .SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2013, 56(5): 1177-1185.
[56]Du, Shi-Yuan; Zhao, Yao-Hua*.Numerical study of conjugated heat transfer in evaporating thin-films near the contact line .International Journal of Heat and Mass Transfer, 2012, 55(1-3): 61-68.
[57]Li, Ningjun*; Quan, Zhenhua; Zhao, Yaohua; Guo, Nana.The Experimental Study of New-Type Water-Cooling PV/T Collector .4th International Conference on Technology of Architecture and Structure (ICTAS 2011), 2011-09-22 to 2011-09-24.
[58]Sun, Yuying*; Zhao, Yaohua; Wang, Yingjie; Hu, Yanting; Ni, Yongfeng.Control Strategies on Yalong Bay Ice Storage District Cooling System .International Conference on Materials Science and Information Technology (MSIT 2011), 2011-09-16 to 2011-09-18.
[59]Du, Shi-Yuan; Zhao, Yao-Hua*.New boundary conditions for the evaporating thin-film model in a rectangular micro channel .International Journal of Heat and Mass Transfer, 2011, 54(15-16): 3694-3701.
[60]Hua, G. Y.; Wang, W.*; Zhao, Y. H.; Li, L. A study of an optimal smoke control strategy for an Urban Traffic Link Tunnel fire .Tunnelling and Underground Space Technology, 2011, 26(2): 336-344.
[61]Liu J*; Zhao Y; Jiang Y J; Lee C M; Liu Y L; Siu G G.Identification of zinc and oxygen vacancy states in nonpolar ZnO single crystal using polarized photoluminescence .Applied Physics Letters, 2010, 97(23): 231907.
[62]Xiao, J.; Wang, W.; Guo, Q. C.; Zhao, Y. H..An experimental study of the correlation for predicting the frost height in applying the photoelectric technology .International Journal of Refrigeration, 2010, 33(5): 1006-1014.
[63]Yu, Wen-Jing*; Diao, Yan-Hua; Zhao, Yao-Hua.EXPERIMENTAL INVESTIGATION ON THE PLATE HEAT PIPE HEAT EXCHANGER FOR HEAT RECOVERY CHARACTERISTIC IN ROOM VENTILATION .
14th International Heat Transfer Conference, 2010-08-08 to 2010-08-13.
[64]Zhao, Yao-Hua*; Zou, Fei-Long; Diao, Yan-Hua; Quan, Zhen-Hua.EXPERIMENTAL INVESTIGATION OF A NEW FLAT PLATE SOLAR HEAT COLLECTOR BY MICRO HEAT PIPE ARRAY .14th International Heat Transfer Conference, 2010-08-08 to 2010-08-13.
[65]Xiao, J.; Wang, W.; Zhao, Y. H.; Zhang, F. R..An analysis of the feasibility and characteristics of photoelectric technique applied in defrost-control .International Journal of Refrigeration, 2009, 32(6): 1350-1357.
[66]Diao, Y. H.; Liu, J. R.; Wang, Y.; Zhao, Y. H..An Experimental Investigation on Heat Transfer Characteristics for Micro-Capillary Evaporator .Experimental Heat Transfer, 2009, 22(2): 87-98.
[67]He, Kaiyuan; Fan, Hongming; Wang, Feng; Zhao, Yaohua; Yin, Zhifang.NUMERICAL PREDICTION OF AIR DISTRIBUTION OF VENTILATION AND AIR-CONDITIONING IN A SUBWAY TRANSFER STATION .5th International Workshop on Energy and Environment of Residential Buildings/3rd International Conference on Built Environment and Public Health, 2009-05-29 to 2009-05-31.
[68]Hua, Gaoying; Wang, Wei; Zhao, Yaohua; Li, Lei.Study on smoke evacuation strategy in an Urban Traffic Link Tunnel fire .1st International Conference on Building Energy and Environment (COBEE 2008), 2008-07-13 to 2008-07-16.
[69]Hua Gaoying; Wang Wei; Zhao Yaohua; Li Lei.Numerical Study on Smoke Control in Urban Traffic Link Tunnel Fires .International Symposium on Safety Science and Technology, 2008-09-24 to 2008-09-27.
[70]Diao, Yan-Hua; Zhao, Yao-Hua; Wang, Qiu-Liang.Photographic study of bubble dynamics for pool boiling of refrigerant R11 .Heat and Mass Transfer, 2007, 43(9): 935-947.
[71]Liu, Zhigang; Zhao, Yaohua; Takei, Masahiro.Experimental study on axial wall heat conduction for convective heat transfer in stainless steel microtube .Heat and Mass Transfer, 2007, 43(6): 587-594.
[72]Diao, Y. H.; Zhao, Y. H.; Wang, Q. L..Photographic study of bubble behaviors for saturated pool boiling of binary refrigerant mixture R141B-R113 .Experimental Heat Transfer, 2006, 19(4): 309-325.
[73]Shen, Fang; Tan, Wenchang; Zhao, Yaohua; Masuoka, Takashi.The Rayleigh-Stokes problem for a heated generalized second grade fluid with fractional derivative model .Nonlinear Analysis: Real World Applications , 2006, 7(5): 1072-1080.
[74]Diao, YH; Zhao, YH; Wang, QL.Visualization of bubble dynamics for pool boiling of binary refrigerant mixture R11-R113 .Chinese Journal of Chemical Engineering, 2006, 14(2): 149-157.
發(fā)表中文期刊論文:
[1]婁曉瑩,全貞花,杜伯堯,趙耀華,邵思博,王偉.太陽(yáng)能-空氣能雙源直膨式熱泵系統(tǒng)夏季冷熱電性能研究[J].制冷學(xué)報(bào),2022,43(03):133-141.
[2]趙耀華,魯嘯山,刁彥華,王澤宇,陳傳奇.復(fù)合拋物面聚光式太陽(yáng)能空氣集蓄熱一體化系統(tǒng)性能研究[J].北京工業(yè)大學(xué)學(xué)報(bào),2022,48(07):750-761.
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[138]刁彥華,趙耀華,王秋良.雙組分混合制冷工質(zhì)沸騰換熱理論研究[J].化學(xué)工程,2006(08):13-16+27.
[139]顏曉虹,胡學(xué)功,趙耀華.微槽群相變式微冷系統(tǒng)的換熱特性實(shí)驗(yàn)[J].中國(guó)科學(xué)院研究生院學(xué)報(bào),2006(03):313-316.
[140]劉志剛,徐建中,趙耀華.微型鋼管外表面溫度場(chǎng)可視化實(shí)驗(yàn)研究[J].中國(guó)科學(xué)院研究生院學(xué)報(bào),2006(03):317-322.
[141]刁彥華,趙耀華,王秋良.制冷工質(zhì)R11池沸騰換熱氣泡行為的可視化研究[J].自然科學(xué)進(jìn)展,2006(04):449-456.
[142]劉志剛,趙耀華.微粗糙管內(nèi)部流動(dòng)與對(duì)流換熱的實(shí)驗(yàn)研究[J].北京工業(yè)大學(xué)學(xué)報(bào),2006(02):167-172.
[143]劉志剛,徐建中,趙耀華.對(duì)流換熱條件下微鋼管壁面軸向?qū)岬膶?shí)驗(yàn)研究[J].上海理工大學(xué)學(xué)報(bào),2006(01):75-78.DOI:10.13255/j.cnki.jusst.2006.01.018.
[144]顏曉虹,趙耀華.微管內(nèi)流動(dòng)沸騰流型的可視化研究[J].工程熱物理學(xué)報(bào),2005(S1):183-186.
[145]梁世強(qiáng),陳堅(jiān),方徐應(yīng),徐靖中,趙耀華.水蒸氣滴狀冷凝過(guò)程的可視化實(shí)驗(yàn)研究[J].工程熱物理學(xué)報(bào),2005(06):88-90.
[146]劉志剛,趙耀華.微型管內(nèi)流動(dòng)特性的實(shí)驗(yàn)研究[J].工程熱物理學(xué)報(bào),2005(05):835-837.
[147]劉志剛,趙耀華.微管內(nèi)流場(chǎng)的可視化實(shí)驗(yàn)研究[J].中國(guó)科學(xué)E輯:工程科學(xué) 材料科學(xué),2005(07):717-724.
[148]劉志剛,張春平,趙耀華,唐大偉.一種新型腔式吸熱器的設(shè)計(jì)與實(shí)驗(yàn)研究[J].太陽(yáng)能學(xué)報(bào),2005(03):38-43.
[149]劉志剛,趙耀華.微型管內(nèi)摩擦特性的實(shí)驗(yàn)研究[J].上海理工大學(xué)學(xué)報(bào),2005(02):123-126.DOI:10.13255/j.cnki.jusst.2005.02.007.
[150]胡學(xué)功,顏曉虹,趙耀華.微槽群蒸發(fā)器在電子芯片冷卻方面的應(yīng)用[J].化工學(xué)報(bào),2005(03):412-416.
[151]刁彥華,趙耀華,王秋良.R-113池沸騰氣泡行為的可視化及傳熱機(jī)理[J].化工學(xué)報(bào),2005(02):227-234.
[152]刁彥華,趙耀華.雙組分混合物沸騰換熱的理論研究[J].工程熱物理學(xué)報(bào),2004(S1):103-106.
[153]沈芳,譚文長(zhǎng),趙耀華,T·增岡隆士.DECAY OF VORTEX VELOCITY AND DIFFUSION OF TEMPERATURE IN A GENERALIZED SECOND GRADE FLUID[J].Applied Mathematics and Mechanics(English Edition),2004(10):1151-1159.
[154]沈芳,譚文長(zhǎng),趙耀華,T·增岡隆士.廣義二階流體渦流速度的衰減和溫度擴(kuò)散[J].應(yīng)用數(shù)學(xué)和力學(xué),2004(10):1053-1060.
[155]趙耀華,鶴田隆治,胡學(xué)功.毛細(xì)微槽內(nèi)的相變傳熱的實(shí)驗(yàn)研究[J].工程熱物理學(xué)報(bào),2004(05):816-818.
[156]張春平,劉志剛,趙耀華,唐大偉.碟式聚光太陽(yáng)能熱發(fā)電系統(tǒng)用腔式吸熱器熱性能分析[J].上海理工大學(xué)學(xué)報(bào),2004(04):294-297.DOI:10.13255/j.cnki.jusst.2004.04.002.
[157]趙耀華,刁彥華,鶴田隆治,西川日出男.Heat Transfer in Nucleate Pool Boiling of Binary and Ternary Refrigerant Mixtures[J].Chinese Journal of Chemical Engineering,2004(03):39-44.
[158]趙耀華,姬朝玥.過(guò)冷沸騰氣泡行為的實(shí)驗(yàn)研究[J].工程熱物理學(xué)報(bào),2004(01):109-111.
[159]趙耀華,劉志剛,鶴田隆治.電子器件制造過(guò)程中的一種均勻化加熱法的數(shù)值研究[J].工程熱物理學(xué)報(bào),2003(05):870-872.
[160]董兆一,淮秀蘭,趙耀華.超急速爆發(fā)沸騰傳熱的實(shí)驗(yàn)與理論研究[J].工程熱物理學(xué)報(bào),2003(04):667-669.
[161]趙耀華,張春平,鶴田隆治.多孔介質(zhì)體干燥過(guò)程中含水率分布的可視化研究[J].工程熱物理學(xué)報(bào),2003(02):280-282.
[162]趙耀華.沸騰換熱及臨界熱流的動(dòng)態(tài)微液層模型[J].工程熱物理學(xué)報(bào),2002(S1):85-88.
[163]趙耀華,姬朝玥.微液層模型預(yù)測(cè)過(guò)冷沸騰的臨界熱流密度[J].工程熱物理學(xué)報(bào),2002(04):467-469.
[164]沈芳,嚴(yán)宗毅,趙耀華,堀井清之.氣流排除傾斜管道積水的理論分析[J].應(yīng)用數(shù)學(xué)和力學(xué),2002(06):619-626.
[165]趙耀華,苑中顯,馬重芳,雷道亨,劉立志,增岡隆士.高溫壁面液體射流沖擊瞬態(tài)沸騰傳熱的實(shí)驗(yàn)研究[J].工程熱物理學(xué)報(bào),2000(01):101-104.
[166]趙耀華,馬重芳.圓形自由射流沖擊任意熱流密度平板時(shí)的換熱分析[J].北京工業(yè)大學(xué)學(xué)報(bào),1989(03):7-13.
發(fā)表會(huì)議論文:
[1]李寧軍; 趙耀華; 梁琳; 戴旭. 新型太陽(yáng)能光伏光熱集熱器的實(shí)驗(yàn)研究[C]//.綠色設(shè)計(jì) 創(chuàng)新 實(shí)踐——第5屆全國(guó)建筑環(huán)境與設(shè)備技術(shù)交流大會(huì)文集.,2013:280-283.
[2]李寧軍; 全貞花; 趙耀華; 唐瀟. 基于微通道平板熱管陣列的光伏光熱系統(tǒng)實(shí)驗(yàn)研究[C].低碳經(jīng)濟(jì)與土木工程科技創(chuàng)新——2010中國(guó)(北京)國(guó)際建筑科技大會(huì)論文集.,2010:476-480.
[3]全貞花; 李寧軍; 趙耀華; 唐瀟. 基于平板熱管的太陽(yáng)能光伏光熱系統(tǒng)實(shí)驗(yàn)研究[C].全國(guó)暖通空調(diào)制冷2010年學(xué)術(shù)年會(huì)論文集.[出版者不詳],2010:17.
[4]肖婧; 王偉; 郭慶慈; 路偉鵬; 趙耀華. 空氣源熱泵在北京低溫環(huán)境下運(yùn)行性能的現(xiàn)場(chǎng)實(shí)測(cè)研究[C].全國(guó)暖通空調(diào)制冷2010年學(xué)術(shù)年會(huì)學(xué)術(shù)文集.[出版者不詳],2010:247-250.
[5]刁彥華; 樊洪明; 謝靜超; 趙耀華. 工科研究生《高等流體力學(xué)》教學(xué)思考[C].土木建筑教育改革理論與實(shí)踐(第12卷).,2010:208-210.
[6]謝靜超; 刁彥華; 畢月虹; 趙耀華. 探討科研與教學(xué)結(jié)合的必要性[C].土木建筑教育改革理論與實(shí)踐(第12卷).,2010:9-11.
[7]刁彥華; 謝靜超; 畢月虹; 樊洪明; 趙耀華. 論理工科研究生科研能力的培養(yǎng)[C].土木建筑教育改革理論與實(shí)踐(第12卷).,2010:32-34.
[8]謝靜超; 畢月虹; 刁彥華; 趙耀華; 喬然. 關(guān)于“自動(dòng)控制原理”教學(xué)的思考[C].土木建筑教育改革理論與實(shí)踐(第12卷).,2010:433-435.
[9]張富榮; 王偉; 肖婧; 趙耀華. 冷表面結(jié)霜實(shí)驗(yàn)臺(tái)的開(kāi)發(fā)與應(yīng)用[C].全國(guó)暖通空調(diào)制冷2008年學(xué)術(shù)年會(huì)論文集.2008:122.
[10]刁彥華; 樊洪明; 趙耀華. 流體力學(xué)課程中公式的講授方法探討[C].土木建筑教育改革理論與實(shí)踐.,2008:99-101.
[11]樊洪明; 謝靜超; 趙耀華; 全貞花. 淺談主體教育與創(chuàng)新能力培養(yǎng)[C].土木建筑教育改革理論與實(shí)踐.,2008:269-271.
[12]謝靜超; 全貞花; 樊洪明; 趙耀華. 多媒體在教學(xué)應(yīng)用中的優(yōu)勢(shì)與弊端[C].土木建筑教育改革理論與實(shí)踐.,2008:241-243.