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Oracle完全致力于多样性和包容性。Oracle尊重和价值观拥有多种劳动力,从而增加了思想领导和创新。作为我们建立一种更具包容性文化的计划的一部分,对员工,客户和合作伙伴产生积极影响,我们正在努力从产品和文档中删除不敏感的术语。我们还必须注意与客户现有技术保持兼容性的必要性,并需要确保服务连续性随着Oracle的产品和行业标准的发展而需要。由于这些技术限制,我们消除不敏感术语的努力正在进行中,并且需要时间和外部合作。
免责声明 TimberTech ® 高级 PVC 和复合地板的安装应采用与安装木质或复合地板相同的良好建筑原理,并遵守当地建筑规范和以下网站上的安装指南。AZEK Building Products LLC、其附属公司、继承人和受让人对本产品的不正确安装不承担任何责任。TimberTech 高级 PVC 和复合地板可能并不适合每种应用,安装人员有责任确保 TimberTech 高级 PVC 和复合地板适合预期用途。由于所有安装都是独一无二的,因此安装人员还有责任确定每种甲板应用的具体要求。TimberTech 建议在安装前由持牌建筑师、工程师或当地建筑官员审查所有应用。在购买之前,TimberTech 还建议您查看完整的安装指南,了解有关安装的更多详细信息以及有关保养和维护、存储和处理、保修范围参考和其他重要产品信息的信息。安装指南可在以下网址找到:https://www.timbertech.com/resources/installation-help/
• 典型的厨房抽油烟机操作会浪费能源,因为它们通常在员工到达时打开,员工离开时关闭,无论白天使用抽油烟机的频率如何。 • 需求控制厨房通风罩是一类厨房排气系统,可根据其下方的烹饪强度调节排气。 • DCKV 系统通过感应烟雾或蒸汽、热量和其他因素的不透明度来控制排气量。将补充空气和其他相关的 HVAC 系统与 DCKV 控制连接起来将大大增加节省。 • 根据 ENERGY STAR,食品服务的能源消耗可能比一般医院的面积高 34%。需求控制厨房通风针对的是设施中能源消耗最大的部分之一。 • 由于回报略高(3-8 年),在回报更快的 ECM 之后瞄准先进的厨房控制,利用过去的节省来资助这个 ECM。还可以考虑在厨房设备的报废更换期间增加 DCKV 的较小边际成本。 • 当空间无人占用时,减少厨房通风和排气的高要求将减少厨房和三级(HVAC 补充空气)设备的运行时间,延长设备寿命。
表列表表3。1个城市信息,包括其整体和建筑物的二氧化碳排放,研究中包括的主要和次要结果以及气候缓解计划。.............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................2 Building's Energy Efficiency ....................................................................................... 39 Table 3.3电气和地区能源........................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 44表3。4财务机制............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 49表3。5 Education and Capacity Building ................................................................................ 52 Table 3.6 Collaboration ............................................................................................................... 55 Table 4.1加拿大太阳能和Trina PV面板效率和价格..................................................................................................................................................................................................................................................................................................................................................... 67表4。 2 PV项目分解结构[253] ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 67表4。 3渥太华可再生能源合作社(OREC)采用的PV项目成本[254] 4 Facility and climate data location ................................................................................ 73 Table 4. 5 PV系统评估和输入............................................................................................................................................................................................................................................................................... 75表4。1加拿大太阳能和Trina PV面板效率和价格..................................................................................................................................................................................................................................................................................................................................................... 67表4。2 PV项目分解结构[253] ..................................................................................................................................................................................................................................................................................................................................................................................................................................................................................... 67表4。3渥太华可再生能源合作社(OREC)采用的PV项目成本[254]4 Facility and climate data location ................................................................................ 73 Table 4.5 PV系统评估和输入............................................................................................................................................................................................................................................................................... 75表4。6从RetScreen数据库采用的光伏项目的安装费用[189] ......... 76表4。7 Financial parameters .................................................................................................... 77 Table 4.8 GHG emissions data .................................................................................................... 80 Table 4.9 Uottawa PV系统的预期材料(2019年)[273]采用并调整了。 ................................................................................................................................. 84 Table 4. 10材料将材料运送到现场的运输假设........................................................................................................................................................................................................................................................................................................................................................................................................................................................... 85表4。 11 uOttawa students' distribution .................................................................................... 87 Table 4. 12 ARC building monthly electricity load and peak demand (averaged from 2017 and 2018 hourly electricity demand) ................................................................................................... 89 Table 4. 13 Desired bank power and capacity and battery properties to simulate peak demand mitigation scenarios ...................................................................................................................... 91 Table 4. 14电池电压属性和电化学模型数据............................................................................................................................................................................................................................................................................................................................................................................................................................................................. 15热属性................................................................................................................................................................................................................................................... 95表4。 3总建筑物每月预期的电力发电和消费...............................................................................................................................................................................................................................9 Uottawa PV系统的预期材料(2019年)[273]采用并调整了。................................................................................................................................. 84 Table 4.10材料将材料运送到现场的运输假设........................................................................................................................................................................................................................................................................................................................................................................................................................................................... 85表4。11 uOttawa students' distribution .................................................................................... 87 Table 4.12 ARC building monthly electricity load and peak demand (averaged from 2017 and 2018 hourly electricity demand) ................................................................................................... 89 Table 4.13 Desired bank power and capacity and battery properties to simulate peak demand mitigation scenarios ...................................................................................................................... 91 Table 4.14电池电压属性和电化学模型数据............................................................................................................................................................................................................................................................................................................................................................................................................................................................. 15热属性................................................................................................................................................................................................................................................... 95表4。 3总建筑物每月预期的电力发电和消费...............................................................................................................................................................................................................................14电池电压属性和电化学模型数据.............................................................................................................................................................................................................................................................................................................................................................................................................................................................15热属性................................................................................................................................................................................................................................................... 95表4。3总建筑物每月预期的电力发电和消费...............................................................................................................................................................................................................................每个峰缓解场景的物理特性............................................................................................................................................................................................................................................. 95表4。17 Charge Limits and Priority ........................................................................................ 96 Table 4.18 Average 2017 and 2018 Global Adjustment cost for ARC building based on the building electricity load obtained from the campus sustainability office and Ontario load from the IESO Data Directory [210] ..................................................................................................... 98 Table 4.基于IESO数据目录的19 HOEP率[210] ............................................................................................................................................................................................................................. 99表5。1渥太华大学31栋建筑物的光伏分析.......................................................................................................................................................................................................................................................................................................................................2基于电力消耗,除了发电外,九座建筑物的预期电需求抵消了...................................................................................................................4建筑物PV系统初始成本和操作和维护(O&M)成本....... 108表5。5 Financial viability results ........................................................................................... 109 Table 5.6 Cash Flow Table ........................................................................................................ 110 Table 5.7 Comparison of different PV system technology combinations ................................. 113 Table 5.8 Annual CO2 savings from the PV electricity generation and equivalent savings from various alternatives ..................................................................................................................... 114
免责声明 TimberTech PRO 和 EDGE 甲板的安装应采用与安装木质或复合甲板相同的良好建筑原理,并遵守当地建筑规范和下述安装指南。AZEK ® 建筑产品对本产品的不正确安装不承担任何责任。TimberTech PRO 和 EDGE 甲板可能并不适合每种应用,安装人员有责任确保 TimberTech PRO 和 EDGE 甲板适合预期用途。由于所有安装都是独一无二的,安装人员也有责任确定每种甲板应用的具体要求。AZEK 建筑产品建议在安装前由持牌建筑师、工程师或当地建筑官员审查所有应用。要获取更多信息,请访问 www.TimberTech.com 。在购买之前,AZEK 建筑产品还建议您查看完整的安装指南,了解有关安装的更多详细信息以及有关保养和维护、存储和处理、保修范围参考和其他重要产品信息的信息。安装指南可在以下网址找到:https://www.timbertech.com/resources/installation-help/
这是分布式 Raspberry Pi 研讨会准备工作的第 1 部分 QEMU-安装。在研讨会开始前至少一天完成第 1 部分的所有准备工作。第 1 部分有几个子步骤。在大多数情况下,如果互联网连接速度为 15 MBps,我们预计第 1 部分需要几个小时。第 1 部分可能需要最多 2 GB 的存储空间。
如上所述,该项目包括在奎松市 50 所学校安装光伏系统。CFF 技术援助小组收集了有关每所学校拟定峰值容量以及可供安装的屋顶大小、方向和倾斜角度的详细数据。利用有关容量要求、面板默认性能因素和特定场地屋顶特征以及太阳辐射数据的信息,估算出需要安装的太阳能电池板面积以及每所学校每年可产生多少电力。由于光伏板的退化,预计每个系统的发电潜力在第一年年底将下降 2%,然后在随后的每一年下降 0.8%。
目前,学生、教师和工作人员都受校园范围许可证的保护,该许可证现在允许他们在个人 Windows、Mac 或 Linux 计算机上使用软件。 • 请注意,安装完整软件套件需要 31GB 的可用空间 • 从 Web 浏览器开始使用 MATLAB Online • 访问“自定进度课程”下的软件培训 有关在您的个人或大学 Windows 计算机上下载和激活软件的说明。 1. 在您的 Web 浏览器地址栏中,转到 https://www.mathworks.com/academia/tah-
