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Demand Response Opportunities in Industrial Refrigerated Warehouses in California

机译:加利福尼亚州工业冷藏仓库的需求响应机会

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Industrial refrigerated warehouses that implemented energy efficiency measures and have centralized control systems can be excellent candidates for Automated Demand Response (Auto- DR) due to equipment synergies, and receptivity of facility managers to strategies that control energy costs without disrupting facility operations. Auto-DR utilizes OpenADR protocol for continuous and open communication signals over internet, allowing facilities to automate their Demand Response (DR). Refrigerated warehouses were selected for research because: They have significant power demand especially during utility peak periods; most processes are not sensitive to short-term (2-4 hours) lower power and DR activities are often not disruptive to facility operations; the number of processes is limited and well understood; and past experience with some DR strategies successful in commercial buildings may apply to refrigerated warehouses. This paper presents an overview of the potential for load sheds and shifts from baseline electricity use in response to DR events, along with physical configurations and operating characteristics of refrigerated warehouses. Analysis of data from two case studies and nine facilities in Pacific Gas and Electric territory, confirmed the DR abilities inherent to refrigerated warehouses but showed significant variation across facilities. Further, while load from California’s refrigerated warehouses in 2008 was 360 MW with estimated DR potential of 45–90 MW, actual achieved was much less due to low participation. Efforts to overcome barriers to increased participation may include, improved marketing and recruitment of potential DR sites, better alignment and emphasis on financial benefits of participation, and use of Auto-DR to increase consistency of participation.
机译:工业冷藏仓库实施能效措施,并具有集中控制系统的优异候选人,可为自动化需求响应(自动博士)由于设备协同作用以及设施管理者的接受,以控制能源成本而不扰乱设施运营。 Auto-DR使用OpenadR协议进行互联网连续和打开通信信号,允许设施自动化其需求响应(DR)。选择冷藏仓库进行研究,因为它们具有显着的功率需求,特别是在公用峰期间;大多数过程对短期(2-4小时)不敏感(2-4小时)较低的权力,博士活动往往对设施运营往往是不断的;过程数量有限,理解得很好;过去的一些DR战略在商业建筑方面的经验可能适用于冷藏仓库。本文概述了负载棚的潜力,并从基线电力使用响应DR事件以及冷藏仓库的物理配置和操作特性。从两种案例研究和九个设施的数据分析,在太平洋气体和电气领域,确认了冷藏仓库固有的博士能力,但在设施中表现出显着的变化。此外,虽然2008年加利福尼亚冷藏仓库的装载量为360兆瓦,但估计DR潜力为45-90兆瓦,由于参与低,实际取得的达到较低。努力克服增加参与的障碍可能包括,改善营销和招募潜在的博士网站,更好地对准和强调参与的经济利益,以及使用自动博士来增加参与的一致性。

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