楊衛(wèi)波,男,1975年6月生,湖北安陸人,揚(yáng)州市政協(xié)委員、致公黨揚(yáng)州市委委員、致公黨揚(yáng)州大學(xué)基層委副主委,工學(xué)博士,博士后,教授,博士生導(dǎo)師,揚(yáng)州大學(xué)電氣與能源動(dòng)力工程學(xué)院院長(zhǎng)助理、能源工程系主任、暖通空調(diào)學(xué)科帶頭人,F(xiàn)為揚(yáng)州大學(xué)優(yōu)秀青年骨干教師、中國(guó)制冷學(xué)會(huì)高級(jí)會(huì)員、中國(guó)建筑學(xué)會(huì)會(huì)員、揚(yáng)州市“綠揚(yáng)金鳳計(jì)劃”領(lǐng)軍人才、江蘇省“雙創(chuàng)計(jì)劃”科技副總,兼任中國(guó)建筑學(xué)會(huì)熱能動(dòng)力分會(huì)可再生能源工作部委員、江蘇省工程熱物理學(xué)會(huì)理事、江蘇省制冷學(xué)會(huì)委員、江蘇省可再生能源學(xué)會(huì)地?zé)崮軐I(yè)委員會(huì)副主任、江蘇省科技通訊咨詢專家、多個(gè)省科技系統(tǒng)及教育部學(xué)位與科技系統(tǒng)等評(píng)審專家、國(guó)家自然科學(xué)基金涵評(píng)專家等。長(zhǎng)期擔(dān)任Energy、Applied Energy、Renewable Energy、Geothermics、Energy and Buildings、東南大學(xué)學(xué)報(bào)、化工學(xué)報(bào)、太陽(yáng)能學(xué)報(bào)、制冷學(xué)報(bào)、農(nóng)業(yè)工程學(xué)報(bào)、工程熱物理學(xué)報(bào)、流體機(jī)械等30余個(gè)雜志審稿人。長(zhǎng)期致力于地源熱泵與淺層地?zé)崮荛_發(fā)利用、建筑節(jié)能與可再生能源利用等方面的理論研究與技術(shù)開發(fā),研究方向涉及地?zé)崮芾门c太陽(yáng)能熱利用中的傳熱傳質(zhì)問(wèn)題及熱泵節(jié)能技術(shù)。先后主持國(guó)家自然科學(xué)基金面上項(xiàng)目、國(guó)家星火計(jì)劃面上項(xiàng)目、中國(guó)博士后科學(xué)基金、江蘇省自然科學(xué)基金面上項(xiàng)目、住房與城鄉(xiāng)建設(shè)部科技計(jì)劃等項(xiàng)目40余項(xiàng)。發(fā)表論文80余篇,其中SCI/EI收錄40余篇,SCI總被引300余次,單篇最高被引80余次。授權(quán)專利20余項(xiàng),獨(dú)立出版《土壤源熱泵技術(shù)及應(yīng)用》著作1部,獲青島市科技進(jìn)步獎(jiǎng)二等獎(jiǎng)1項(xiàng)、江蘇省建設(shè)科學(xué)技術(shù)獎(jiǎng)三等獎(jiǎng)1項(xiàng)、江蘇省土木建筑科技獎(jiǎng)二等獎(jiǎng)1項(xiàng)、揚(yáng)州市自然科學(xué)學(xué)術(shù)論文一、二、三等獎(jiǎng)各1項(xiàng)及江蘇省優(yōu)秀碩士論文指導(dǎo)教師1項(xiàng)。
8.國(guó)際能源類雜志《Energy》、《Applied Energy》、《Applied Thermal Engineering》、《International Journal of Green Energy》、《Journal of Sustainable and Renewable Energy》、《制冷學(xué)報(bào)》、《東南大學(xué)學(xué)報(bào)》(英文版)及《流體機(jī)械》等雜志地?zé)崮芾梅矫嫜芯扛寮膶徃迦恕?
[1]楊衛(wèi)波,鞠磊,楊智鵬,汪峰.Laboratory investigations on the thermo-mechanical behaviour of an energy pile group operated in heat release mode.GEOTHERMICS,2023,109
[2]楊衛(wèi)波,強(qiáng)雨晗,鞠磊,汪峰,劉愛(ài)華.Numerical evaluations on the effects of different factors on thermo-mechanical behaviour of an energy pile group.COMPUTERS AND GEOTECHNICS,2023,162
[3]楊衛(wèi)波,孫韜夫,張朝陽(yáng),汪峰.Experimental and numerical investigations of thermo-mechanical behaviour of energy pile under cyclic temperature loads.ENERGY,2023,267
[4]楊衛(wèi)波,鞠磊,張來(lái)軍,汪峰.Experimental investigations of the thermo-mechanical behaviour of an energy pile with groundwater seepage.SUSTAINABLE CITIES AND SOCIETY,2022,77
[5]楊衛(wèi)波,孫韜夫,楊彬彬,汪峰.Laboratory study on the thermo-mechanical behaviour of a phase change concrete energy pile in summer mode.JOURNAL OF ENERGY STORAGE,2021,41
[6]楊衛(wèi)波,張來(lái)軍,張恒,汪峰,李曉金.Numerical investigations of the effects of different factors on the displacement of energy pile under the thermo-mechanical loads.CASE STUDIES IN THERMAL ENGINEERING,2020,21
[7]楊衛(wèi)波,徐瑞,汪峰,陳世坤.Experimental and numerical investigations on the thermal performance of a horizontal spiral-coil ground heat exchanger.RENEWABLE ENERGY,2020,147979-995.
[8]楊衛(wèi)波,徐瑞,楊彬彬,楊晶晶.Experimental and numerical investigations on the thermal performance of a borehole ground heat exchanger with PCM backfill.ENERGY,2019,174216-235.
[9]楊衛(wèi)波,張恒,梁幸福.Experimental performance evaluation and parametric study of a solar-ground source heat pump system operated in heating modes.ENERGY,2018,149173-189.
[10]楊衛(wèi)波,楊彬彬,徐瑞.Experimental Study on the Heat Release Operational Characteristics of a Soil Coupled Ground Heat Exchanger with Assisted Cooling Tower.ENERGIES,2018,11(1)
[11]楊衛(wèi)波,楊晶晶,孔磊.Numerical simulation and validation on heat exchange performance of pile spiral coil ground heat exchanger.Nongye Gongcheng Xuebao/Transactions of the Chinese Society of Agricultural Engineering,2016,32(5):200-205.
[12]楊衛(wèi)波,路鵬飛,陳永平.Laboratory investigations of the thermal performance of an energy pile with spiral coil ground heat exchanger.ENERGY AND BUILDINGS,2016,128:491-502.
[13]楊衛(wèi)波,孔磊,陳永平.Numerical evaluation on the effects of soil freezing on underground temperature variations of soil around ground heat exchangers.APPLIED THERMAL ENGINEERING,2015,75:259-269.
[14]楊衛(wèi)波,孫露露,陳永平.Experimental investigations of the performance of a solar-ground source heat pump system operated in heating modes.ENERGY AND BUILDINGS,2015,89:97-111.
[15]楊衛(wèi)波,梁幸福,施明恒,陳振乾.A Numerical Model for the Simulation of a Vertical U-Bend Ground Heat Exchanger Used in a Ground-Coupled Heat Pump.International. Journal of Green Energy,,2014,11(7):761-785.
[16]楊衛(wèi)波,張?zhí)K蘇,陳永平.A dynamic simulation method of ground coupled heat pump system based on borehole heat exchange effectiveness.ENERGY AND BUILDINGS,2014,77:17-27.
[17]楊衛(wèi)波,孫露露,吳晅.Energy storage and heat transfer characteristics of ground heat exchanger with phase change backfill materials.Nongye Gongcheng Xuebao/Transactions of the Chinese Society of Agricultural Engineering,2014,30(24):193-199.
[18]楊衛(wèi)波,陳振乾,施明恒,張程賓.An in situ thermal response test for borehole heat exchangers of the ground- coupled heat pump.International Journal of Sustainable Energy,2013,32(5)489-503.
[19]楊衛(wèi)波,陳永平,施明恒,J. Spitler.Numerical investigation on the underground thermal imbalance of ground-coupled heat pump operated in cooling-dominated district.APPLIED THERMAL ENGINEERING,2013,58(1):1-2.
[20]楊衛(wèi)波,施明恒.Heat exchange characteristics of vertical U-tube ground heat exchanger with discontinuous operation condition.Dongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Southeast University (Natural Science Edition),2013,43(2):328-333.
[21]楊衛(wèi)波,朱潔蓮,施明恒,陳振乾.Numerical simulation of the performance of a solar-assisted heat pump heating system.Procedia Environmental Sciences,2012,11()790-797.
[22]楊衛(wèi)波,朱潔蓮,陳振乾.Investigation on the influences of underground thermal imbalance ratio on soil temperature variation of ground coupled heat pump.7th International Symposium on Heating, Ventilating and Air Conditioning - Proceedings of ISHVAC 2011,2012,41334-1340.
[23]楊衛(wèi)波,王松松,劉光遠(yuǎn),朱潔蓮.Experimental study of the effect of backfills on the thermal performance of a vertical U-tube ground heat exchanger.7th International Symposium on Heating, Ventilating and Air Conditioning - Proceedings of ISHVAC 2011,2012,41341-1346. Shanghai, China, Nov.6-9, 2011. (EI收錄).
[24]楊衛(wèi)波,吳晅.In-situ thermal response test of the ground thermal properties for a ground source heat pump project located in the Inner Mongolia district.2011 2nd International Conference on Mechanic Automation and Control Engineering, MACE 2011 - Proceedings,2011,2254-2257. July15-July18, Hohhot, China. (EI收錄).
[25]W.B. Yang, J. L. Zhu, M. H. Shi, Z. Q. Chen. Numerical simulation of the performance of a solar-assisted heat pump heating system, Procedia Environmental Sciences, 2011,11:790-797.(EI收錄).
[26]Yang Weibo, Chen Zhenqian, Shi Mingheng. The alternate operation characteristics of a solar-ground source heat pump system. Journal of SoutheastUniversity(English Edition). 2010,26(2):327-332. (EI收錄).
[27]楊衛(wèi)波,Underground energy storage and release characteristics of ground source heat pump with seasonal energy storage.Dongnan Daxue Xuebao (Ziran Kexue Ban)/Journal of Southeast University (Natural Science Edition),2010,40(5)973-978.
[28]楊衛(wèi)波,Numerical simulation and experimental validation on intermittent operation characteristics of a ground-coupled heat pump.UECTC'09 - Proceedings of 2009 US-EU-China Thermophysics Conference - Renewable Energy(UECTC’09). May 28-30, 2009 Beijing, China. (EI收錄).
[29]楊衛(wèi)波,The alternate operation characteristics of a solar-ground source heat pump system.Proceedings of the 6th International Symposium on Heating, Ventilating and Air Conditioning(ISHVAC09). 2009,2009,1816-1824.
[30]楊衛(wèi)波,Numerical analysis of the heat transfer characteristics of vertical U-tube ground heat exchanger used in ground coupled heat pump.Proceedings of the 6th International Symposium on Heating, Ventilating and Air Conditioning (ISHVAC09), 2009,2009,1857-1864. Nanjing, China, Nov.6-9, 2009. (EI收錄).
[31]W. B. Yang, M.H. Shi, G.Y. Liu and Z.Q. Chen. A two-region simulation model of vertical U-tube ground heat exchanger and its experimental verification. Applied Energy, 2009, 86: 2005-2012. ( SCI 收錄)
[32]W. B. Yang, M. H. Shi and Z. Q. Chen. A variable heat flux line source model for boreholes in ground coupled heat pump. Proceedings of the 2009 Asia-Pacific Power and Energy Engineering Conference(APPEEC2009). March 28-31, 2009, Wuhan, China. (EI收錄).
[33]W. B. Yang and H. Zhang. In situ measurement of ground thermal conductivity based on analytical solution models. Proceedings of the 2009 Asia-Pacific Power and Energy Engineering Conference (APPEEC2009). March 28-31, 2009, Wuhan, China. (EI收錄).
[34]Yang W. B., Liu G. Y., Shi M. H. and Chen Z.Q. Experimental study on the cooling operation characteristics of a closed loop vertical ground-coupled heat pump system, Proceedings of the ICCR’2008, April 5-9, Shanghai, China. (ISTP收錄).
[35]Yang W. B., Liu G. Y., Shi M. H. and Chen Z.Q. Numerical simulation and experimental verification on heat transfer process of a vertical U-bend ground heat exchanger, Proceedings of the ICCR’2008, April 5-9, Shanghai, China. (ISTP收錄).
[36]Yang W. B., Liu G. Y., Shi M. H. and Chen Z.Q. 2008. Numerical simulation of the performance of a solar-induced ventilation wall. Proceedings of the First International Conference on Building Energy and Environment 2008(COBEE2008). DalianChina. (ISTP收錄)
[37]W. B. Yang, M.H. Shi and H. Dong. Numerical simulation of the performance of a solar-earth source heat pump system. Applied Thermal Engineering, 2006, 26(18): 2367-2376.(SCI 收錄)
[38]W. B. Yang, M. H. Shi and Z. Q. Chen. Study on the freezing characteristics of soil surrounding the ground heat exchanger of ground coupled heat pump. Proceedings of the 22nd International Congress of Refrigeration,2007,Beijing.
[39]W. B. Yang, M.H. Shi and Z. Q. Chen. Influence of soil freezing on the heat transfer characteristics of ground heat exchanger in ground coupled heat pump. Proceedings of the 7th International Symposium on Heat Transfer (ISHT7’08), Oct 26-29,2008 USTB, Beijing, China.
2012年2月至8月,為期半年的美國(guó)Oklahoma State University(俄克拉何馬州立大學(xué))訪問(wèn)令楊衛(wèi)波對(duì)美國(guó)地源熱泵的應(yīng)用留下了深刻的印象!懊绹(guó)和中國(guó)在地源熱泵的應(yīng)用領(lǐng)域有很大的區(qū)別!睋(jù)楊衛(wèi)波介紹,美國(guó)地源熱泵在運(yùn)用上遠(yuǎn)比中國(guó)做得好。相比而言,美國(guó)土地運(yùn)用較廣,而中國(guó)國(guó)內(nèi)土地使用有限,挖井很深,這對(duì)成本造價(jià)都帶來(lái)了很大的壓力,并可能產(chǎn)生許多問(wèn)題。諸如成本一高,加上熱回收效果不好,地源熱泵產(chǎn)品的節(jié)能性無(wú)法得到保證。美國(guó)地源熱泵多用于別墅及商用與公用建筑,在埋管規(guī)模上控制得比較好,尤其對(duì)于地下土壤熱平衡的控制做得較完善;國(guó)內(nèi)則大面積用于居民建筑,埋管規(guī)模較大,且土壤熱平衡調(diào)控措施不到位,容易造成長(zhǎng)期運(yùn)行后的地下“冷熱堆積”。雖然地源熱泵在技術(shù)上要求并不太高,但同樣也需要專業(yè)的設(shè)計(jì)安裝人員來(lái)進(jìn)行操作。楊衛(wèi)波曾參加美國(guó)國(guó)際地源熱泵協(xié)會(huì)(IGSHPA)舉辦的地源熱泵設(shè)計(jì)師培訓(xùn)會(huì),并對(duì)美國(guó)的考核制度很是贊同,“在美國(guó),地源熱泵設(shè)計(jì)師必須持證上崗,經(jīng)過(guò)嚴(yán)格的設(shè)計(jì)師培訓(xùn)后,取得資格證才能去安裝地源熱泵埋管,這些在外國(guó)做得非常到位,并非像國(guó)內(nèi)的偷工減料以及埋管回填不好等問(wèn)題的出現(xiàn),而這些問(wèn)題都會(huì)對(duì)地源熱泵的節(jié)能產(chǎn)生很大的影響。”