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天合光能至尊210組件價值更優(yōu)
返回列表 來源: 中國能源報 發(fā)布日期: 2021.01.30 瀏覽次數(shù):


     繼去年12 月初,國內(nèi)外領先設計院和權威第三方機構DNV GL對天合至尊系列組件系統(tǒng)成本和度電成本進行首輪測算后,20211月,DNV GL再次進行第二輪針對600W+至尊雙面雙玻平單軸雙排豎裝2P跟蹤系統(tǒng)價值進行全場景的度電成本優(yōu)勢和收益測算。本次測算地址選擇在具有地理代表性的西班牙和美國兩座電站。DNV GL測算報告顯示, 天合光能210至尊雙面雙玻組件較166mm雙面雙玻組件可節(jié)省BOS高達6.32% ,對應度電成本降幅達3.72%。
 
▎天合210組件及跟蹤系統(tǒng)價值持續(xù)提升
 
在光伏行業(yè)全面加速進入平價時代的背景下,天合光能持續(xù)致力于降本提效,先進210組件和至尊系列產(chǎn)品的度電成本優(yōu)勢更為突顯。在去年12月初,DNV GL對天合光能210至尊系列545W雙面雙玻組件單排豎裝1P與傳統(tǒng)166mm雙面雙玻450W組件、182mm雙面雙玻535W組件進行系統(tǒng)成本測算,評估結果表明210組件BOS優(yōu)勢明顯,度電成本(LCOE)更優(yōu),降幅達3.5%。 最佳度電成本之道系列報道(一)| DNV GL權威解讀600W+至尊雙面雙玻平單軸跟蹤系統(tǒng)價值
 
此次《DNV GL權威解讀600W+至尊雙面雙玻平單軸跟蹤系統(tǒng)價值系列報道(二)》針對雙排豎裝2P跟蹤系統(tǒng)的測算結果,再次肯定天合光能至尊組件的系統(tǒng)價值。至尊組件創(chuàng)新的低電壓、高串功率設計,使得單串組件功率顯著提高,同時有效降低各個環(huán)節(jié),進一步降低初始投資。
 
▎測算項目:BOS成本節(jié)約達 6.32% ,度電成本降幅達3.72%
 
此次雙排豎裝2P平單軸跟蹤測算,項目地選取在歐洲西班牙,美國德克薩斯典型光伏電站項目應用地區(qū),地點經(jīng)緯度坐標及氣候條件如下:        

以上述兩個地點作為測算項目地,DNV GL分別測算210至尊系列雙面雙玻545W組件在雙排豎裝2P跟蹤支架系統(tǒng)下,對比166mm 雙面雙玻450W組件及182mm雙面雙玻535W組件的系統(tǒng)成本BOS及度電成本LCOE。測算項目固定為100MW AC容量,相同DC/AC 比值設計電站,使用主流雙排豎裝平單軸(2P)跟蹤支架,配套主流組串式逆變器。系統(tǒng)設計中固定地面覆蓋率(GCR,Ground cover ratio),保證雙面組件的雙面應用陰影遮擋影響的一致性。  
上述設計旨在控制同地點外部因素影響、系統(tǒng)配置 ,客觀對比測算不同類型組件對于系統(tǒng)造價及度電成本的差異影響。在測算中針對兩個項目地址,三種組件的成本對比都采用了當?shù)卦O備、建安、人工造價 、上網(wǎng)電價、運維成本、土地成本、財務成本 等一致的條件,確保成本測算的完整及客觀。
  
▎測算結果

西班牙項目地測算結果:
天合光能210至尊雙面雙玻545W組件較166mm雙面雙玻 450W組件可降低BOS約6.32%,對應度電成本LCOE降幅約3.19%,較182mm雙面雙玻 535W組件節(jié)省BOS近1%,且度電成本LCOE更優(yōu)。
 
美國項目地測算結果:
天合光能210至尊雙面雙玻 545W組件較166mm雙面雙玻 450W組件可節(jié)省BOS約6.06%,對應度電成本降幅約3.72%,較182mm雙面雙玻 535W組件節(jié)省BOS約1.2%,相對應度電成本節(jié)省約0.5%。
  
▎DNV GL 報告再證:天合提升單串功率、降低多項成本、LCOE度電成本最低
 
繼單排豎裝1P跟蹤測算之后,第三方DNV GL對雙排豎裝2P跟蹤系統(tǒng)的測算結果,再次肯定了天合光能至尊組件的系統(tǒng)價值。首先,至尊組件創(chuàng)新的低電壓、高串功率設計,使得在1500V系統(tǒng)電壓下得以串聯(lián)更多的組件,顯著提高單串功率;同時,超高的單塊組件功率,可以減少項目組件使用總塊數(shù),組串數(shù)量降低帶來的直流線纜材料成本的節(jié)省,同時有效降低運輸、人工安裝及支架等成本,進一步降低初始投資。最后,加持至尊組件優(yōu)異的發(fā)電性能,確保LCOE度電成本最低,實現(xiàn)客戶價值最大化。
 

天合光能成立23年以來,一直以創(chuàng)新、可信賴的品質和客戶價值驅動發(fā)展。自2020年2月發(fā)布首款先進210組件,今天已演化出包括400W至尊小金剛,500W、550W和600W至尊系列等豐富的產(chǎn)品線,覆蓋戶用、工商業(yè)、常規(guī)地面電站以及與農(nóng)光、漁光等應用場景。天合光能在2021年底光伏組件產(chǎn)能規(guī)劃不低于50GW,未來將繼續(xù)夯實基于大尺寸電池的先進組件產(chǎn)能規(guī)模優(yōu)勢。


In early December, a leading domestic and foreign design institutes and authoritative third-party institutions DNV GL to TRW sovereign series component system cost and KWH cost calculates the first round, in January 2021, DNV GL again for a second in 600 w + the supreme double double glass flat uniaxial double row with 2 p vertical tracking system value for the whole scene of KWH cost advantage and earnings estimates. This time, two geographically representative power stations, Spain and the United States, were selected as the location of the calculation.DNV GL measurement report shows that Trina Solar 210 supreme double-sided double-glass module can save BOS up to 6.32% compared with 166mm double-sided double-glass module, and the corresponding cost per kilowatt hours can be reduced by 3.72%.

App of Trinda 210 components and tracking system continues to increase

As the PV industry accelerates its entry into the era of parity, Trina Solar continues to reduce costs and improve efficiency. The cost per kilowatt hour advantage of the advanced 210 modules and the Supreme series of products is more prominent. In early December of last year, DNV GL calculated the system cost of Trina Solar 210 Supreme Series 545W double-sided, double-glass single-row vertical 1P versus the traditional 166mm double-sided, double-glass 450W and 182mm double-sided, double-glass 535W. The evaluation results showed that the 210 BOS had significant advantages and the cost per kilowatt hours (LCOE) was better, with a decrease of 3.5%.(the way of best KWH cost series (a) | DNV GL authoritative interpretation of 600 w + the supreme value double double glass flat uniaxial tracking system)

This "DNV GL Authoritative Interpretation of 600W+ Ultimate Double-sided Double-glass Flat Single Axis Tracking System Value Series (2)", based on the measurement results of the Double-row Vertical 2P Tracking System, reaffirmed the system value of Trina Solar Ultimate. The innovative low voltage and high series power design of the supreme component significantly improves the power of the single series component and effectively reduces all links, further reducing the initial investment.

App introduction: cost saving of BOS at 6.32%, per day cost reduction at 3.72%

The project location is selected in typical application areas of PV power station projects in Europe, Spain and Texas of the United States. The location's longitude and latitude coordinates and climatic conditions are as follows:

Using the above two locations as the measurement project, DNV GL measured the system cost BOS and kilowatt hours (kWh) of the 210 supreme series double-sided double-glass 545W component and compared the 166mm double-sided double-glass 450W component and the 182mm double-sided double-glass 535W component under the double-row vertical 2P tracking bracket system. The calculation project is fixed at 100MW AC capacity, the same DC/AC ratio design power station, using the mainstream double-row vertical flat single axis (2P) tracking bracket, supporting the mainstream group series inverter. The fixed Ground cover ratio (GCR) in the system design ensures the consistency of shadow shielding effect of double-sided applications of double-sided components.

The above design aims to control the influence of external factors and system configuration at the same location, and objectively compare and measure the difference influence of different types of components on the system cost and kilowatt-hour cost. In the calculation of the two project addresses, the cost comparison of the three components adopts the same conditions of local equipment, construction and installation, labor cost, on-grid price, operation and maintenance cost, land cost, financial cost, etc., to ensure the integrity and objectivity of cost calculation.

App measurement results

Calculated results of the project in Spain:

Trina Solar 210 supreme double-sided dual-glass 545W module can reduce BOS by 6.32% compared with 166mm double-sided dual-glass 450W module, corresponding to a decrease of 3.19% in the cost per kilowatt (kWh), save BOS by nearly 1% compared with 182mm double-sided dual-glass 535W module, and the cost per kilowatt (kWh) is better.

Calculated results of the US project:

Trina Solar 210 supreme double-sided dual-glass 545W module can save about 6.06% BOS compared to 166mm double-sided dual-glass 450W module, which is about 3.72% lower in cost per kilowatt hour. It can save about 1.2% BOS compared to 182mm double-sided dual-glass 535W module, which is about 0.5% lower in cost per kilowatt hour.

▎DNV GL Report Revisit: This App promotes single battery power, reduces many costs, and has the lowest electricity cost for your LCOE

Following the single-row vertical 1P tracking measurement, the third party DNV GL's measurement of the double-row vertical 2P tracking system confirmed the system value of Trina Solar SUI. First of all, the innovative low voltage, high series power design of the supreme component enables more components to be connected in series under the 1500V system voltage, significantly increasing the single series power; At the same time, the ultra-high power of single component can reduce the total number of components used in the project and the reduction of the number of clusters, which can save the cost of DC cable material, and effectively reduce the cost of transportation, manual installation and bracket, and further reduce the initial investment.Finally, the superior power generation performance of the Supreme module ensures the lowest cost per kilowatt hour of LCOE and maximizes customer value.

Since its establishment 23 years ago, Trina Solar has been driven by innovation, reliable quality and customer value.Since the release of the first advanced 210 component in February 2020, today, it has evolved into a rich product line including 400W Supreme Little King Kong, 500W, 550W and 600W Supreme Series, covering household, industrial and commercial, conventional ground power stations, as well as agricultural light, fishing light and other application scenarios. By the end of 2021, Trina Solar plans to have a production capacity of no less than 50GW of photovoltaic modules. In the future, Trina Solar will continue to consolidate its advantage in the production capacity of advanced modules based on large-size batteries.





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