WT9 Dynamic LSA / Club 飞机是单引擎、双座(并排排列)、悬臂式低翼飞机,带有十字形尾翼。主要结构由玻璃和碳复合材料组成。飞机配备固定三轮起落架,带有可操纵前轮。飞机由 4 缸、水平对置、风冷和水冷、化油器 4 冲程 ROTAX 912 ULS2 发动机驱动,最大功率为 73.5 千瓦(100 马力),转速为 5800 rpm。该飞机的基本版本配备螺旋桨 EVRA PerformanceLine 175/xxx/805.5。它是 3 叶地面可调螺旋桨,直径为 1750 毫米(68.9 英寸)。它具有木质核心叶片,外面覆盖着玻璃纤维,前缘加固。叶片安装在铝制轮毂中。螺旋桨轮毂连接到法兰和底板上,并固定在发动机的螺旋桨法兰上。复合材料螺旋桨固定在底板上。牵引版本配备螺旋桨 KW-31 (EASA.P.177),这是一种 3 叶片电动飞行可调式飞机螺旋桨,直径为 1.726 米 (67.95 英寸)。叶片由实木和复合材料组合而成。螺旋桨可以手动或自动模式作为恒速螺旋桨操作。
根据 CS-LSA 子部分 G 的要求,飞机制造商提供了 WT9 Dynamic LSA 持续适航的说明。本手册旨在为可能完成轻型运动飞机维护、维修和改造的机主、机械师、机场、监管官员以及飞机和部件制造商提供指导。此外,本实践涵盖了维护手册的格式和内容以及 LSA 维护、维修和改造说明。飞机制造商和原始设备制造商发布的以下手册中提供了说明:• 飞行员操作手册(文档编号 AS-POH-01-000)
WT9 Dynamic LSA / Club 飞机是单引擎、双座(并排排列)、悬臂式低翼飞机,带有十字形尾翼。主要结构由玻璃和碳复合材料组成。飞机配备固定三轮起落架,带有可操纵前轮。飞机由 4 缸、水平对置、风冷和水冷、化油器 4 冲程 ROTAX 912 ULS2 发动机驱动,最大功率为 73.5 千瓦(100 马力),转速为 5800 rpm。该飞机的基本版本配备螺旋桨 EVRA PerformanceLine 175/xxx/805.5。它是 3 叶地面可调螺旋桨,直径为 1750 毫米(68.9 英寸)。它具有木质核心叶片,外面覆盖着玻璃纤维,前缘加固。叶片安装在铝制轮毂中。螺旋桨轮毂连接到法兰和底板上,并固定在发动机的螺旋桨法兰上。复合材料螺旋桨固定在底板上。牵引版本配备螺旋桨 KW-31 (EASA.P.177),这是一种 3 叶片电动飞行可调式飞机螺旋桨,直径为 1.726 米 (67.95 英寸)。叶片由实木和复合材料组合而成。螺旋桨可以手动或自动模式作为恒速螺旋桨操作。
亲爱的 StingSport 所有者:祝贺您购买 StingSport!您会发现您的新 TL Ultralight 飞机非常有趣、非常经济且易于维护。StingSport 是理想的轻型运动飞机。它速度快、经济、美观且用户友好。我们 TL Ultralight Sport Aircraft 确信您的 StingSport 将为您带来数小时的休闲飞行和享受。借助这本飞机维护手册 (AMM),我们希望帮助您了解飞机的支持和操作。如果您在阅读本手册时发现任何问题或错误,请立即联系我们,我们将发布澄清。再次感谢您的惠顾。我们期待继续保持满意的客户关系。如果您对 StingSport 有任何问题或意见,请随时与我们联系。飞行安全!飞行乐趣! (sig) Jiri Tlusty TL Ultralight, sro Letištĕ, Budova 84 503 41 Hradec Králové 捷克共和国
* 1959 年以后的经验表明,表 I 中所列的具体飞机类型并不涵盖空军正在采购的所有飞机系统。此外,表中列出的具体数字并非不可侵犯。因此,表 I 现在仅代表为新系统建立寿命要求的指南。根据 AFR 80-13,未来飞机系统的估计使用数据(包括使用寿命要求)将由使用司令部提供,并将包含在采购规范中。
1。Introduction................................................................................................................................. 1-1 1.1 Test Objectives ................................................................................................................. 1-2 1.2 Test Protocol Summary..................................................................................................... 1-3 1.2.1 HWC MACT ............................................................................................................................................................................................................................................................................................................................................................................................................................. 1-3 1.2.2 RCRA周期性测试............................................................................................................................................. Testing During the CfPT and RCRA Periodic and PCB DRE Test....................................... 1-7 2.Waste Characterization............................................................................................................... 2-1 2.1 Feedstream Description.................................................................................................... 2-1 2.1.1 Hazardous Waste Feeds................................................................................................... 2-1 2.1.2 Auxiliary Fuel .............................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................................Detailed Engineering and Process Information............................................................................ 3-1 3.1 Kiln Solids Feed Systems.................................................................................................. 3-3 3.2 Kiln Pumpable Waste Feed System .................................................................................. 3-5 3.3 Secondary Combustion Chamber设计....................................................................................................................................................................................................................................................................................................... .......................................................................................................... 3-6 3.5.2 Ionizing Wet Scrubber....................................................................................................... 3-7 3.5.3 Wet Electrostatic Precipitator ............................................................................................ 3-7 3.5.4 Fans and Stack................................................................................................................. 3-7 3.6 Automatic Waste Feed Cutoff............................................................................................ 3-8 3.7 Process Monitoring and Operator Training ........................................................................ 3-9 4.Test Design and Protocol ............................................................................................................ 4-1 4.1 Test Objectives ................................................................................................................. 4-1 4.1.1 CfPT for the HWC MACT .................................................................................................. 4-1 4.1.2 RCRA Permit Periodic Testing........................................................................................... 4-1 4.1.3 PCB Trial Burn.................................................................................................................. 4-3 4.2 Test Protocol..................................................................................................................... 4-3 4.3 Waste Feed Characteristics and Selection ........................................................................................................................................................................................................................................................................................................................................................................................................... 4-12 4.7 System Operation to Achieve Steady-state Conditions .................................................... 4-12 4.8 AWFCO System During the Test ..................................................................................... 4-13 4.9 Determination of Hazardous Waste Residence Time ....................................................... 4-13 5.Sampling, Analysis, and Monitoring Procedures .......................................................................... 5-1 5.1 Sampling .......................................................................................................................... 5-1 5.1.1 Stack Gas Sampling Procedures ....................................................................................... 5-1 5.1.1.1 Sample Port Location .................................................................................................. 5-1 5.1.1.2 EPA Methods 2, 3A, and 4 (Flowrate, Gas Composition, and Moisture)........................ 5-1 5.1.1.3 SW-846 Method 0030 (Chlorinated VOCs)................................................................... 5-4 5.1.1.4 SW-846 Method 0023A (Dioxins/Furans) ..................................................................... 5-4 5.1.1.5 SW-846 Method 0023A (PCBs).................................................................................... 5-4
RUN DATE: 01/27/2025 U.S. EPA SUPERFUND PROGRAM Page 10 of 154 DATA REFRESH DATE: 01/27/2025 11:40:53 2 Source: SEMS Superfund Public User Database VERSION: 200 FOIA-008 – CERCLA to RCRA Site Associations This report reflects site information tracked in EPA's Superfund Enterprise Management System (SEMS) and may not reflect subsequent revisions to RCRA处理程序名称和ID号在EPA的RCRAINFO数据库中跟踪。
• 120g/m2 knitted polyester/carbon • It can be used in cleanrooms from ISO 9 to 4 • Knitted continuous polyester filament • Laundered and packed in a cleanroom environment • Double packaging according to cleanroom standards • Very low levels of ions and extractables • This cleanroom product has been developed to shed minimal particles in use • Good absorption
RFI步骤发生在做出补救决定之前,是利益相关者开始计划可再生能源开发的理想时机。如果使用临时措施来控制或减轻正在进行的风险,请讨论该设施可再生能源的潜力。没有用于调查阶段的统一时间范围,并且该过程可能需要数年。可再生能源开发商应了解补救调查在建立现场控制策略时将在其站点进行多长时间。这将有助于确保站点控制选项或其他合同机制足够长时间扩展,并有助于避免开发人员在调查阶段完成之前的不当财务承诺。
