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構建綜合能源系統,助力實現“30•60”目標
發布者:admin | 0評論 | 3578查看 | 2021-01-12 15:20:28    

我國(guo)能(neng)(neng)源(yuan)(yuan)碳(tan)(tan)排放占碳(tan)(tan)排放總量的(de)(de)80%左右(you),實現“碳(tan)(tan)達(da)峰”“碳(tan)(tan)中和(he)(he)”目標,核(he)心是推(tui)動能(neng)(neng)源(yuan)(yuan)低碳(tan)(tan)轉型和(he)(he)能(neng)(neng)源(yuan)(yuan)革(ge)(ge)命,本質措施是控(kong)制和(he)(he)縮減化(hua)石能(neng)(neng)源(yuan)(yuan)消費量、增加可再生能(neng)(neng)源(yuan)(yuan)發電比例、提(ti)升社會整體(ti)能(neng)(neng)效水平。當前,我國(guo)新(xin)能(neng)(neng)源(yuan)(yuan)正由(you)補(bu)充型電源(yuan)(yuan)逐(zhu)步向(xiang)主力型電源(yuan)(yuan)發展(zhan),傳統(tong)以單一系統(tong)縱向(xiang)延伸為主增加可再生能(neng)(neng)源(yuan)(yuan)發電比重的(de)(de)能(neng)(neng)源(yuan)(yuan)發展(zhan)模式,將不(bu)能(neng)(neng)滿(man)足能(neng)(neng)源(yuan)(yuan)革(ge)(ge)命在(zai)保(bao)障(zhang)能(neng)(neng)源(yuan)(yuan)安(an)全、提(ti)高能(neng)(neng)源(yuan)(yuan)效率和(he)(he)促進新(xin)能(neng)(neng)源(yuan)(yuan)消納等方面的(de)(de)要求(qiu)。


系(xi)(xi)統(tong)調(diao)峰(feng)調(diao)差壓力巨大。近期,江(jiang)西、湖南、河北(bei)等地電(dian)力尖峰(feng)負(fu)荷屢創新高(gao),京津唐電(dian)網(wang)(wang)冬季(ji)負(fu)荷峰(feng)谷差達(da)30%以上,給電(dian)網(wang)(wang)機組調(diao)峰(feng)帶來了極大的壓力;同時(shi)可再生能源發電(dian)比(bi)重(zhong)的增(zeng)加改變了傳統(tong)電(dian)力系(xi)(xi)統(tong)的電(dian)源結構(gou),導(dao)致(zhi)電(dian)網(wang)(wang)調(diao)峰(feng)、調(diao)差壓力持續增(zeng)大。


新能(neng)源(yuan)發(fa)(fa)電(dian)(dian)消(xiao)納難題突出。在“30?60”目(mu)標的(de)要(yao)求下,未來(lai)10年(nian)我國年(nian)均新增(zeng)風、光發(fa)(fa)電(dian)(dian)裝機需(xu)不少(shao)于7500萬(wan)千瓦,使傳統(tong)發(fa)(fa)電(dian)(dian)機組(zu)一(yi)次調頻(pin)、電(dian)(dian)網(wang)傳輸以及分(fen)布式(shi)可(ke)(ke)(ke)再(zai)生能(neng)源(yuan)并網(wang)管理等壓力劇增(zeng),集中式(shi)可(ke)(ke)(ke)再(zai)生能(neng)源(yuan)異地消(xiao)納和分(fen)布式(shi)可(ke)(ke)(ke)再(zai)生能(neng)源(yuan)利用等問題將會進一(yi)步(bu)突出。


用(yong)戶(hu)(hu)單一(yi)(yi)供(gong)(gong)能(neng)(neng)(neng)風(feng)險加劇。近年來(lai),以(yi)季節性和區(qu)域性為特征的(de)(de)高峰供(gong)(gong)電緊張和氣荒現(xian)象多有發生,傳(chuan)統(tong)(tong)能(neng)(neng)(neng)源(yuan)供(gong)(gong)應方式供(gong)(gong)能(neng)(neng)(neng)可替代(dai)性和保障(zhang)性差等問題日益凸顯。同時分布式電源(yuan)裝機的(de)(de)增加加劇了電力系統(tong)(tong)安(an)全運(yun)行(xing)的(de)(de)風(feng)險,以(yi)傳(chuan)統(tong)(tong)單一(yi)(yi)能(neng)(neng)(neng)源(yuan)供(gong)(gong)應的(de)(de)方式難(nan)以(yi)滿足用(yong)戶(hu)(hu)對用(yong)能(neng)(neng)(neng)可靠性、安(an)全性的(de)(de)要(yao)求。


能(neng)源提(ti)質增效形勢嚴峻。我國(guo)(guo)單(dan)位GDP能(neng)耗(hao)明顯高(gao)于世界能(neng)耗(hao)強度平均(jun)水(shui)(shui)平,社(she)會生產生活的工藝(yi)流程及相關供能(neng)設(she)備能(neng)源投入產出(chu)比不高(gao)、設(she)備運行未達到(dao)其較好的出(chu)力(li)狀態等(deng)因素限制(zhi)了我國(guo)(guo)能(neng)效水(shui)(shui)平的提(ti)高(gao),國(guo)(guo)內設(she)備技術水(shui)(shui)平難以突破,社(she)會整體能(neng)效水(shui)(shui)平提(ti)升緩慢。


用(yong)戶節(jie)能(neng)(neng)(neng)降(jiang)本(ben)需求(qiu)迫切。隨著市(shi)場(chang)經(jing)濟的(de)(de)進一(yi)步(bu)發展,企(qi)業(ye)競(jing)爭壓力越來越大,降(jiang)低(di)能(neng)(neng)(neng)源成本(ben)依然成為提升企(qi)業(ye)競(jing)爭力的(de)(de)重(zhong)要(yao)因素(su)。企(qi)業(ye)的(de)(de)用(yong)能(neng)(neng)(neng)管理需要(yao)從(cong)原來的(de)(de)粗放、單一(yi)、低(di)效的(de)(de)管理方式(shi)逐步(bu)過(guo)渡(du)到(dao)精細、綜(zong)合、集約的(de)(de)管理形(xing)式(shi),從(cong)而降(jiang)低(di)企(qi)業(ye)整體用(yong)能(neng)(neng)(neng)成本(ben),提升企(qi)業(ye)產品的(de)(de)競(jing)爭力。


一、構建綜合能源系統助力實現“30?60”目標


未來能(neng)源(yuan)(yuan)(yuan)將(jiang)會(hui)朝著清潔(jie)化、智慧化、去中心(xin)化、綜(zong)(zong)合(he)(he)化(四(si)化)方向發展(zhan),能(neng)源(yuan)(yuan)(yuan)利用(yong)(yong)形式將(jiang)會(hui)呈現冷(leng)、熱(re)(re)、電(dian)、氣能(neng)源(yuan)(yuan)(yuan)在(zai)供應(ying)、傳(chuan)輸、消費和轉化環節的(de)(de)綜(zong)(zong)合(he)(he)優(you)化利用(yong)(yong)趨(qu)勢。綜(zong)(zong)合(he)(he)能(neng)源(yuan)(yuan)(yuan)系(xi)統(tong)(tong)(tong)以“四(si)化”為基本特(te)征,以“兩高(gao)(gao)三低”為目標(兩高(gao)(gao):系(xi)統(tong)(tong)(tong)綜(zong)(zong)合(he)(he)能(neng)效(xiao)的(de)(de)提高(gao)(gao)、系(xi)統(tong)(tong)(tong)運行可(ke)靠性的(de)(de)提高(gao)(gao);三低:用(yong)(yong)戶(hu)用(yong)(yong)能(neng)成(cheng)本的(de)(de)降低、系(xi)統(tong)(tong)(tong)碳排放的(de)(de)降低和系(xi)統(tong)(tong)(tong)其他污染物排放的(de)(de)降低),整合(he)(he)冷(leng)、熱(re)(re)、電(dian)、氣等多種能(neng)源(yuan)(yuan)(yuan)資源(yuan)(yuan)(yuan),推動打破(po)傳(chuan)統(tong)(tong)(tong)單一能(neng)源(yuan)(yuan)(yuan)發展(zhan)的(de)(de)技術壁壘(lei)、市場壁壘(lei)和體制壁壘(lei),實現多能(neng)源(yuan)(yuan)(yuan)的(de)(de)互補(bu)互濟和協調優(you)化,有效(xiao)提升了(le)(le)能(neng)源(yuan)(yuan)(yuan)利用(yong)(yong)效(xiao)率、促進了(le)(le)能(neng)源(yuan)(yuan)(yuan)的(de)(de)可(ke)持續發展(zhan)。因此(ci),構(gou)建(jian)綜(zong)(zong)合(he)(he)能(neng)源(yuan)(yuan)(yuan)系(xi)統(tong)(tong)(tong),有利于推動能(neng)源(yuan)(yuan)(yuan)轉型、助力實現雙(shuang)碳控制目標。


創新(xin)低碳發展(zhan)規劃技術,助(zhu)力(li)多元(yuan)化(hua)清(qing)潔(jie)供(gong)給體系(xi)(xi)建設。通過創新(xin)綜(zong)合能(neng)(neng)源(yuan)(yuan)(yuan)系(xi)(xi)統規劃技術,有效整(zheng)合光伏、風電、熱(re)泵、沼氣三(san)聯供(gong)、工業余熱(re)余壓利用(yong)等分布式(shi)能(neng)(neng)源(yuan)(yuan)(yuan),從多種能(neng)(neng)源(yuan)(yuan)(yuan)協同發展(zhan)的(de)角度(du)設計優(you)化(hua)能(neng)(neng)源(yuan)(yuan)(yuan)生(sheng)產(chan)模式(shi),從多能(neng)(neng)耦合角度(du)探索可(ke)再(zai)生(sheng)能(neng)(neng)源(yuan)(yuan)(yuan)供(gong)給比重擴大模式(shi),打(da)造以可(ke)再(zai)生(sheng)能(neng)(neng)源(yuan)(yuan)(yuan)為(wei)主體的(de)綜(zong)合能(neng)(neng)源(yuan)(yuan)(yuan)低碳供(gong)能(neng)(neng)新(xin)結(jie)構,推動高比例可(ke)再(zai)生(sheng)能(neng)(neng)源(yuan)(yuan)(yuan)的(de)綜(zong)合能(neng)(neng)源(yuan)(yuan)(yuan)系(xi)(xi)統建設,促進風電、太陽能(neng)(neng)發電裝(zhuang)機容(rong)量(liang)增長(chang),助(zhu)力(li)多元(yuan)化(hua)清(qing)潔(jie)供(gong)給體系(xi)(xi)建設。


創(chuang)新(xin)(xin)(xin)電(dian)(dian)源(yuan)側運(yun)行優(you)化技(ji)術(shu),助力新(xin)(xin)(xin)能(neng)(neng)(neng)(neng)源(yuan)發(fa)電(dian)(dian)消(xiao)納(na)(na)能(neng)(neng)(neng)(neng)力提(ti)升。通過推動(dong)綜合能(neng)(neng)(neng)(neng)源(yuan)系(xi)統(tong)(tong)多能(neng)(neng)(neng)(neng)源(yuan)高效運(yun)行技(ji)術(shu)創(chuang)新(xin)(xin)(xin),加(jia)強分(fen)布(bu)式(shi)(shi)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)與多種能(neng)(neng)(neng)(neng)源(yuan)的(de)互動(dong),實現(xian)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)時空轉換利用(yong),促進(jin)分(fen)布(bu)式(shi)(shi)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)發(fa)電(dian)(dian)就地利用(yong);創(chuang)新(xin)(xin)(xin)分(fen)布(bu)式(shi)(shi)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)并網(wang)運(yun)行管(guan)理模式(shi)(shi),以綜合能(neng)(neng)(neng)(neng)源(yuan)系(xi)統(tong)(tong)為主體實現(xian)與電(dian)(dian)網(wang)的(de)交互,推動(dong)分(fen)布(bu)式(shi)(shi)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)的(de)有序并網(wang);通過創(chuang)新(xin)(xin)(xin)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)、傳統(tong)(tong)發(fa)電(dian)(dian)機組(zu)以及大型儲(chu)(chu)能(neng)(neng)(neng)(neng)的(de)協調運(yun)行技(ji)術(shu),發(fa)揮儲(chu)(chu)電(dian)(dian)、抽水蓄能(neng)(neng)(neng)(neng)等(deng)儲(chu)(chu)能(neng)(neng)(neng)(neng)靈活資源(yuan)與傳統(tong)(tong)發(fa)電(dian)(dian)機組(zu)的(de)調節能(neng)(neng)(neng)(neng)力,降低電(dian)(dian)網(wang)調峰和一次調頻壓力,促進(jin)集中式(shi)(shi)可(ke)(ke)再(zai)生(sheng)能(neng)(neng)(neng)(neng)源(yuan)消(xiao)納(na)(na)和錯峰輸(shu)送。


創新設(she)備(bei)(bei)整體能(neng)(neng)效(xiao)優化(hua)技術(shu),助力用(yong)戶用(yong)能(neng)(neng)成(cheng)(cheng)本(ben)有(you)效(xiao)降(jiang)低。通過(guo)推動(dong)大(da)數據、云計算(suan)等(deng)信息技術(shu)與能(neng)(neng)源(yuan)(yuan)物(wu)(wu)理技術(shu)的(de)融合,挖掘不同(tong)工況下各類(lei)設(she)備(bei)(bei)運行(xing)特性,實(shi)現各類(lei)能(neng)(neng)源(yuan)(yuan)設(she)備(bei)(bei)物(wu)(wu)理出力狀態(tai)的(de)數字孿生(sheng);通過(guo)推動(dong)綜(zong)合能(neng)(neng)源(yuan)(yuan)系統(tong)能(neng)(neng)源(yuan)(yuan)設(she)備(bei)(bei)能(neng)(neng)效(xiao)優化(hua)技術(shu)創新,從全(quan)局最優角(jiao)度實(shi)現綜(zong)合能(neng)(neng)源(yuan)(yuan)系統(tong)多類(lei)型(xing)設(she)備(bei)(bei)的(de)能(neng)(neng)效(xiao)優化(hua),以經濟高效(xiao)的(de)設(she)備(bei)(bei)運行(xing)策略滿足用(yong)戶用(yong)能(neng)(neng)需求,實(shi)現用(yong)戶用(yong)能(neng)(neng)成(cheng)(cheng)本(ben)的(de)有(you)效(xiao)降(jiang)低。


創新(xin)多(duo)種供能(neng)(neng)(neng)設備(bei)互補(bu)耦合(he)技(ji)(ji)術,助力用戶(hu)用能(neng)(neng)(neng)安(an)全可靠。以(yi)“兩高三低”目標為導向,推(tui)(tui)動(dong)綜合(he)能(neng)(neng)(neng)源(yuan)系統(tong)多(duo)能(neng)(neng)(neng)源(yuan)高效互補(bu)耦合(he)技(ji)(ji)術創新(xin),整(zheng)合(he)熱(re)、電(dian)、冷、天然氣、新(xin)能(neng)(neng)(neng)源(yuan)等多(duo)種能(neng)(neng)(neng)源(yuan),實(shi)現多(duo)種能(neng)(neng)(neng)源(yuan)間的(de)互補(bu)互濟(ji)和綜合(he)利(li)用;通過推(tui)(tui)動(dong)綜合(he)能(neng)(neng)(neng)源(yuan)系統(tong)源(yuan)網荷儲聯動(dong)優化技(ji)(ji)術創新(xin),有(you)效調動(dong)多(duo)種供能(neng)(neng)(neng)設備(bei)互補(bu)和替代特(te)性,以(yi)增強能(neng)(neng)(neng)源(yuan)系統(tong)應對(dui)疫(yi)情、節日、突變天氣等特(te)殊事件下的(de)保(bao)障能(neng)(neng)(neng)力,實(shi)現用戶(hu)用能(neng)(neng)(neng)的(de)安(an)全穩定。


創新(xin)多(duo)能(neng)(neng)(neng)(neng)(neng)源(yuan)主體(ti)市(shi)(shi)場交(jiao)易技術(shu),助(zhu)力多(duo)元化市(shi)(shi)場機制完善。通過推動跨區(qu)域(yu)(yu)多(duo)能(neng)(neng)(neng)(neng)(neng)源(yuan)系(xi)統市(shi)(shi)場交(jiao)易技術(shu)創新(xin),實現跨區(qu)域(yu)(yu)多(duo)能(neng)(neng)(neng)(neng)(neng)源(yuan)的(de)聯動交(jiao)互(hu),促(cu)進跨區(qu)域(yu)(yu)能(neng)(neng)(neng)(neng)(neng)源(yuan)消納(na)和(he)交(jiao)易機制完善;通過培育虛(xu)擬電(dian)廠(chang)、負荷聚集(ji)商、儲能(neng)(neng)(neng)(neng)(neng)電(dian)站等新(xin)型市(shi)(shi)場主體(ti),建(jian)立能(neng)(neng)(neng)(neng)(neng)源(yuan)消費與(yu)能(neng)(neng)(neng)(neng)(neng)源(yuan)生產的(de)互(hu)動以(yi)及不(bu)同能(neng)(neng)(neng)(neng)(neng)源(yuan)需求(qiu)之(zhi)間(jian)的(de)協(xie)同關系(xi),推動需求(qiu)響應等輔助(zhu)市(shi)(shi)場的(de)市(shi)(shi)場主體(ti)和(he)規則完善;以(yi)綜合能(neng)(neng)(neng)(neng)(neng)源(yuan)系(xi)統靈活(huo)性特點(dian)為基(ji)礎,加強與(yu)其(qi)他市(shi)(shi)場主體(ti)的(de)合作與(yu)交(jiao)互(hu),促(cu)進能(neng)(neng)(neng)(neng)(neng)源(yuan)供給的(de)集(ji)權優(you)化和(he)市(shi)(shi)場主體(ti)間(jian)的(de)合作共(gong)贏。


二、綜合能源視角下雙碳控制目標的解決思路


綜(zong)(zong)合能(neng)源(yuan)(yuan)系(xi)統(tong)(tong)是在全球致力于低碳發展(zhan)、能(neng)源(yuan)(yuan)轉型的(de)宏觀背景下,受技術、市場(chang)、政策以(yi)及產業(ye)生態(tai)發展(zhan)等多重(zhong)因素驅動,傳統(tong)(tong)能(neng)源(yuan)(yuan)產業(ye)融合清(qing)潔化、智能(neng)化、去中心化、綜(zong)(zong)合化等新要(yao)素形(xing)成的(de)能(neng)源(yuan)(yuan)新業(ye)態(tai)。為充分發揮(hui)綜(zong)(zong)合能(neng)源(yuan)(yuan)系(xi)統(tong)(tong)對能(neng)源(yuan)(yuan)革命、雙(shuang)碳控制目標(biao)實現的(de)支撐作(zuo)用,需要(yao)從頂層設計、技術創(chuang)新、基礎設施建設以(yi)及商業(ye)模(mo)式(shi)等方面,探索綜(zong)(zong)合能(neng)源(yuan)(yuan)視角下“30?60”目標(biao)發展(zhan)新思路(lu)。


合(he)理規劃頂層設計。立足(zu)于我國能(neng)(neng)(neng)源轉(zhuan)型和(he)能(neng)(neng)(neng)源電力(li)行業(ye)自身的特點,以綜(zong)合(he)能(neng)(neng)(neng)源系(xi)統(tong)(tong)為紐帶,推動傳統(tong)(tong)能(neng)(neng)(neng)源與新能(neng)(neng)(neng)源的協同(tong)發展(zhan);確保(bao)綜(zong)合(he)能(neng)(neng)(neng)源行業(ye)管理和(he)監管體系(xi)協調統(tong)(tong)一,共同(tong)推動各能(neng)(neng)(neng)源品種之間打破行業(ye)壁壘;融合(he)傳統(tong)(tong)垂直產業(ye)鏈,推動分布式可再生能(neng)(neng)(neng)源項目開發和(he)布局,從(cong)而深入(ru)推進(jin)工(gong)業(ye)、建筑、交通(tong)運輸、公(gong)共機構等重(zhong)點領(ling)域和(he)重(zhong)點單(dan)位(wei)節能(neng)(neng)(neng)減(jian)排。


加(jia)大技(ji)(ji)術(shu)創(chuang)新力度。加(jia)快可再生(sheng)能源(yuan)開發利(li)(li)用關(guan)鍵設備(bei)創(chuang)新研發,加(jia)快數字信息技(ji)(ji)術(shu)與(yu)能源(yuan)物理技(ji)(ji)術(shu)的融合(he),著力解(jie)決可再生(sheng)能源(yuan)利(li)(li)用造價高(gao)、效率低等“卡脖子”問題(ti);加(jia)快綜合(he)能源(yuan)耦合(he)型(xing)設備(bei)關(guan)鍵技(ji)(ji)術(shu)研發,突(tu)破限制(zhi)多能源(yuan)耦合(he)轉化的技(ji)(ji)術(shu)壁(bi)壘,進一步增強異質能源(yuan)的互補性(xing)和(he)可替代性(xing)。


加(jia)強(qiang)基礎設施(shi)建(jian)(jian)設。加(jia)強(qiang)清(qing)潔(jie)能(neng)源(yuan)(yuan)和多(duo)類型儲能(neng)設施(shi)建(jian)(jian)設,鼓(gu)勵因地制(zhi)宜建(jian)(jian)設含(han)高比例可(ke)再生能(neng)源(yuan)(yuan)的(de)綜合(he)能(neng)源(yuan)(yuan)系統,推動分布式清(qing)潔(jie)能(neng)源(yuan)(yuan)就地消納;加(jia)強(qiang)智能(neng)終端和智慧能(neng)源(yuan)(yuan)平臺建(jian)(jian)設,實現能(neng)源(yuan)(yuan)生產消費(fei)的(de)智能(neng)監測、診斷和調控,鼓(gu)勵能(neng)效水平低、污(wu)染排放大的(de)老舊設備更新迭代,推進老舊園(yuan)區綜合(he)能(neng)源(yuan)(yuan)改造項目。


推進商(shang)業(ye)模(mo)式(shi)創(chuang)(chuang)新。以低(di)碳(tan)應用為(wei)基本(ben)思路,創(chuang)(chuang)新以客戶為(wei)中心的綜合(he)能(neng)源(yuan)(yuan)服務模(mo)式(shi),推進差異化綜合(he)能(neng)源(yuan)(yuan)解決(jue)方案創(chuang)(chuang)新;鼓勵以可再生能(neng)源(yuan)(yuan)為(wei)主(zhu)的多(duo)種能(neng)源(yuan)(yuan)供應主(zhu)體的共贏合(he)作,以低(di)碳(tan)、高效(xiao)、經濟為(wei)主(zhu)要原則,創(chuang)(chuang)新多(duo)主(zhu)體投資、運(yun)營、利(li)益分配機制,創(chuang)(chuang)建互利(li)互惠(hui)的商(shang)業(ye)生態圈。


推動電(dian)力(li)市(shi)場(chang)(chang)(chang)(chang)建設。推動新(xin)能(neng)源積極參與電(dian)力(li)市(shi)場(chang)(chang)(chang)(chang)競(jing)爭,完善電(dian)價機(ji)制(zhi),建立公平合(he)理的(de)調峰(feng)輔助服(fu)務(wu)市(shi)場(chang)(chang)(chang)(chang);推動以用(yong)戶側綜合(he)能(neng)源系(xi)統為主(zhu)體的(de)電(dian)力(li)現(xian)貨市(shi)場(chang)(chang)(chang)(chang)交(jiao)易(yi)模(mo)式,激發(fa)用(yong)戶側資源參與電(dian)力(li)市(shi)場(chang)(chang)(chang)(chang)的(de)活力(li),依托綜合(he)能(neng)源系(xi)統,形成涵(han)蓋電(dian)力(li)市(shi)場(chang)(chang)(chang)(chang)、碳(tan)交(jiao)易(yi)市(shi)場(chang)(chang)(chang)(chang)、綠色配額(e)交(jiao)易(yi)市(shi)場(chang)(chang)(chang)(chang)、煤電(dian)聯動機(ji)制(zhi)等多類型市(shi)場(chang)(chang)(chang)(chang)機(ji)制(zhi)。


綜(zong)(zong)上所(suo)述,綜(zong)(zong)合(he)能源(yuan)(yuan)系統是(shi)能源(yuan)(yuan)電力系統未來的重要轉型方(fang)向。“十四五(wu)”期間,分布式風電和(he)光伏電源(yuan)(yuan)將會得(de)到較大的發(fa)展,綜(zong)(zong)合(he)能源(yuan)(yuan)系統將在(zai)促進新能源(yuan)(yuan)消納、保(bao)障供(gong)能安全可(ke)靠方(fang)面發(fa)揮更大的作(zuo)(zuo)用(yong),政府應推動重點排(pai)碳行業(ye)的綜(zong)(zong)合(he)能源(yuan)(yuan)系統示范工程落地,著力改(gai)善(shan)用(yong)戶用(yong)能質量、降低用(yong)能成本、提高(gao)能效水平,為我(wo)國實現能源(yuan)(yuan)革命(ming)和(he)“30?60”目標(biao)作(zuo)(zuo)出貢獻。


注:作者系華北電力大學能源互聯網研究中心,原文首發于《電力決策與輿情參考》2021年1月1日第1、2期。

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