SunPower完成Agilent大楼的太阳能发电系统安装

来源:Solarbe.com发布时间:2009-11-20 10:19:16

SunPower宣布,在Agilent总部的三栋大楼,完成安装1 MW的太阳能发电屋顶系统。  
 
SunPower Completes 1-Megawatt Solar Power System at Agilent Technologies Headquarters

Santa Clara Campus Installation Features SunPower T5 Solar Roof Tile, the Solar Industry's Most Powerful Rooftop System

SAN JOSE, Calif., Nov 19, 2009 /PRNewswire-FirstCall via COMTEX News Network/ -- SunPower Corp. (Nasdaq: SPWRA, SPWRB), a Silicon Valley-based manufacturer of high-efficiency solar cells, solar panels and solar systems, today announced the completion of a 1-megawatt solar power rooftop system on three buildings at Agilent's headquarters in Santa Clara, Calif. This is SunPower's second project with Agilent, following the design and installation of a 1-megawatt solar tracking system at Agilent's Santa Rosa, Calif., campus last year. Agilent expects to save $3.5 million in energy costs in the first 10 years of operation.

"Agilent is pleased to partner with SunPower on this second significant project, reinforcing our commitment to clean, renewable solar power and protecting the environment," said Keith Morgan, Agilent director of environmental, health, safety and security. "Using high-efficiency solar technology maximizes the return on our investment and minimizes the environmental impact of our operations."

The system features the SunPower T5 Solar Roof Tile, the solar industry's first non-penetrating rooftop product that combines a high-efficiency SunPower solar panel, frame and mounting system into a single pre-engineered unit. Tilted at a five-degree angle, the T5 Roof Tile system approximately doubles the energy generated per square meter compared to systems that are mounted flat onto commercial rooftops.

"Combined with SunPower's high-performance solar panels, the T5 Roof Tile will deliver more solar energy per square foot and greater energy savings than conventional systems," said Bill Kelly, managing director at SunPower. "This is a real demonstration of Agilent's commitment to sustainable practices, and will help the company maintain its position as an innovative business leader."

According to conversion formulas provided by the U.S. Environmental Protection Agency, Agilent's solar system in Santa Clara is expected to displace more than 50 million pounds of carbon dioxide over the next 30 years. This is equivalent to the emissions displaced from removing more than 4,200 cars from California's highways. Agilent owns the renewable energy credits and all environmental attributes associated with the system.

About SunPower

Founded in 1985, SunPower Corp. (Nasdaq: SPWRA, SPWRB) designs, manufactures and delivers the planet's most powerful solar technology broadly available today. Residential, business, government and utility customers rely on the company's experience and proven results to maximize return on investment. With headquarters in San Jose, Calif., SunPower has offices in North America, Europe, Australia and Asia. For more information, visit www.sunpowercorp.com.

Forward-Looking Statements

This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Forward-looking statements are statements that do not represent historical facts and may be based on underlying assumptions. The company uses words and phrases such as "will" and "expected" to identify forward-looking statements in this press release, including forward-looking statements regarding: (a) energy efficiency and savings; and (b) environmental benefits. Such forward-looking statements are based on information available to the company as of the date of this release and involve a number of risks and uncertainties, some beyond the company's control, that could cause actual results to differ materially from those anticipated by these forward-looking statements, including risks and uncertainties such as: (i) actual electricity generation; (ii) the actual energy consumption rate; (iii) unexpected changes in utility service rates; and (iv) variations in carbon dioxide emissions reductions.. These forward-looking statements should not be relied upon as representing the company's views as of any subsequent date, and the company is under no obligation to, and expressly disclaims any responsibility to, update or alter its forward-looking statements, whether as a result of new information, future events or otherwise.

SunPower is a registered trademark of SunPower Corp. All other trademarks are the property of their respective owners.

http://www.sunpowercorp.com


索比光伏网 https://news.solarbe.com/200911/20/7559.html
责任编辑:solarbe太阳能网资讯中心
索比光伏网&碳索光伏版权声明:

本站标注来源为“索比光伏网”、“碳索光伏"、"索比咨询”的内容,均属www.solarbe.com合法享有版权或已获授权的内容。未经书面许可,任何单位或个人不得以转载、复制、传播等方式使用。

经授权使用者,请严格在授权范围内使用,并在显著位置标注来源,未经允许不得修改内容。违规者将依据《著作权法》追究法律责任,本站保留进一步追偿权利。谢谢支持与配合!

推荐新闻
裁员、运营停止!美国太阳能组件安装企业Purelight Power申请破产来源:索比光伏网 发布时间:2025-12-29 08:55:52

据海外媒体消息,近日美国太阳能组件安装企业PurelightPower对外公布,将在全国范围内永久性裁减109名员工,并且停止在全国开展业务运营,同时申请破产清算程序。据PurelightPower透露,裁员工作早在10月23日就已启动,到12月26日还会有更多员工被解雇。公司官方网站信息显示,PurelightPower于2017年在俄勒冈州的梅德福市正式成立。

美媒:犹他州领导人正在密切关注太阳能开发工作,目标是将该州的能源供应增加一倍来源:SOLARZOOM光储一家 发布时间:2025-12-26 16:01:03

Operation Gigawatt:长臂行动:犹他州州长斯宾塞·考克斯去年宣布,该州将利用“上述任何一种”方式在未来十年内将能源产量翻倍。

苏大袁建宇团队AM: 倒置钙钛矿太阳能电池实现 26.11% 的冠军效率!来源:钙钛矿与OPV薄膜太阳能 发布时间:2025-12-23 14:15:02

效率:DCA-1F共SAMs器件表现最优,冠军PCE26.11%,开路电压1.179V,短路电流密度25.89mA/cm,填充因子85.49%;DCA-0F、DCA-2F共SAMs器件PCE分别为25.21%、25.05%,均高于纯MeO-2PACz对照组。稳定性:30-50%湿度环境下储存1000小时,DCA-1F共SAMs器件保持90%初始PCE;1太阳光照下最大功率点跟踪1000小时,仍维持~90%效率,而纯MeO-2PACz器件500小时后效率衰减超50%。DCA分子与MeO-2PACz在溶液状态下自聚集行为的示意图。近期报道的基于共自组装单分子层策略的高效钙钛矿太阳能电池性能汇总。

马斯克:计划每年部署100GW的太阳能AI卫星来源:SOLARZOOM光储一家 发布时间:2025-12-23 11:31:57

12月15日,特斯拉CEO埃隆·马斯克在社交平台“X”公开发声,明确表达对地球小型核电反应堆的否定态度,直言相关建造“简直愚蠢至极”。与此同时,他再次力推其太空太阳能AI设想,称太阳作为“天空中巨大的免费核聚变反应堆”,足以满足整个太阳系能源需求,地球上的小型核聚变反应堆本质是经济浪费。

黄劲松AEM:理解钙钛矿太阳能电池中基于膦酸分子的空穴传输层来源:知光谷 发布时间:2025-12-23 09:59:38

自组装单分子层已成为钙钛矿太阳能电池中一类重要的界面材料,能够调控能级、提升电荷提取效率,并改善器件效率与稳定性。其中,基于膦酸的自组装单分子层因其可与透明导电氧化物形成共价键,作为超薄、透明且可调控的空穴传输层而备受关注。解决这些挑战是将SAMs推向商业化钙钛矿太阳能产品的关键。

AEM:环境条件对无反溶剂两步法FAPbI₃薄膜及太阳能电池性能的影响来源:知光谷 发布时间:2025-12-23 09:58:30

综上,该研究表明,在干燥气氛中制备活性层或在最终退火时引入适度湿度,可获得两步法FAPbI太阳能电池的最佳性能与稳定性。

紫色光/紫外光线诱导的卤化物钙钛矿太阳能电池钝化失效来源:钙钛矿材料和器件 发布时间:2025-12-22 13:50:34

胺基末端配体,无论是直接使用还是以二维钙钛矿的形式使用,都是钙钛矿钙化剂中的主要缺陷钝化剂,并且显著推动了各种钙钛矿太阳能电池达到最高效率。然而,即便是这些最先进的钙钛矿太阳能电池,在运行过程中仍会迅速降解,这引发了对钝化耐久性的担忧。总之,研究结果揭示了一种普遍机制,即紫色光/紫外光线会导致胺基端配体的去钝化,而这类配体是钙钛矿太阳能电池的主要缺陷钝化剂。

固态钙钛矿太阳能电池的发现与进展来源:钙钛矿材料和器件 发布时间:2025-12-22 13:39:11

2012年,我们首次报道了长期稳定的固态钙钛矿太阳能电池,开辟了一个新领域,并引发了认证功率转换效率超过27.3%,超越了单晶硅太阳能电池的效率。如今,随着钙钛矿/硅叠层器件效率接近35%,钙钛矿太阳能电池已成为满足2050年净零碳排放目标所需太瓦级需求的主要候选者。展望未来,钙钛矿太阳能电池已准备好进入市场,预计钙钛矿/硅叠层器件将首先出现,随后是高效单结器件。固态钙钛矿太阳能电池的发现钙钛矿是具有ABX3通式的化合物。

SusMat综述:环保锡基钙钛矿太阳能电池的开压和填充因子损失来源:钙钛矿太阳能电池之基石搭建 发布时间:2025-12-22 09:36:56

基于锡的卤化物钙钛矿太阳能电池是一种极具前景的无铅替代方案,具有适宜的带隙和强光吸收特性,但其器件性能受制于显著的开路电压和填充因子损失。尽管相关研究已取得一定进展,但由于氧化化学、缺陷物理及界面能学的耦合作用,锡基钙钛矿太阳能电池的开路电压与填充因子性能仍难以媲美铅基钙钛矿太阳能电池。

肖娟定&蒋晓庆&逄淑平Angew:揭示分子柔韧性在增强吡啶基缺陷钝化以实现高效稳定钙钛矿太阳能电池中的作用来源:知光谷 发布时间:2025-12-22 09:33:25

通过对钙钛矿/C界面进行分子调控以减少缺陷密度,对实现高效稳定的倒置型钙钛矿太阳能电池至关重要。然而,取代基柔韧性对钝化性能的影响仍未得到充分理解。研究发现,柔性中心取代基显著增强了吡啶基团的电子云密度,从而提升了其钝化能力,同时抑制了分子聚集并促进了更好的界面接触。

西湖大学王睿AM:无MA钙钛矿结晶与可扩展刮涂钝化实现高操作稳定性的钙钛矿太阳能模块来源:知光谷 发布时间:2025-12-22 08:52:19

钙钛矿太阳能模块要实现商业化,不仅需要高功率转换效率,还必须具备长期的操作稳定性。本研究西湖大学王睿等人通过三管齐下的策略解决了这些挑战。本研究为在工业相关条件下实现高操作稳定性的钙钛矿太阳能模块建立了机制框架。