译稿小虹FormK13.1K11太阳能备选方案(110425....doc
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1、联合铁路SHAH-HABSHAN-RUWAIS铁路项目投标文件Form K 13.1 K1太阳能光伏发电系统供电备选方案中铁第一勘察设计院集团有限公司2011年5月 中国西安Form K 13.1 K1 光伏发电系统供电备选方案目 录1 引言Introduction12 采用的主要技术标准 Main Technical Standards Applied13 环境条件Environmental Conditions24 系统总体设计System overall Design25 沿线负荷分布情况26 光伏发电系统简介56.1 光伏电池方阵56.2 控制器56.3 蓄电池56.4 逆变器67 系
2、统设计67.1 光伏电池方阵设计67.2 系统方案配置计算87.3 设备主要技术指标说明158 太阳能和主电网供电方案比较258.1 太阳能供电系统特点258.2 优势特点258.3 结论259 综合寿命周期成本分析2610 系统维护2610.1 光伏组件方阵的维护2610.2 蓄电池(组)的维护2610.3 光伏控制器和逆变器的维护2710.4 系统运行注意事项2711 项目施工案例 CASE STUDY2811.1 Suntech Green Energy HQ Building2811.2 Kanazawa Bus Terminal2911.3 Beijing Jingya Hotel
3、BIPV Project3011.4 Dunhuang Photovoltaic Farm3011.5 Shang Hai 2010 Expo Theme Hall3111.6 Solar Power Supply for Nad Al Sheba Horse Training Course Desalination System3211.7 Module Supply Experiences33 2 Form K 13.1 K1 光伏发电系统供电备选方案1 引言Introduction本文描述了铁路沿线通信、信号、GSM-R、HABD等小容量负荷采用太阳能光伏发电系统供电的解决方案、技术参数
4、、设计、采购、安装、试运行的范围和服务。2 采用的主要技术标准 Main Technical Standards Applied采用了包括但不限于如下的标准或准则,并等同于或略高于这些标准或准则。如果有不合规的地方,承包商将给业主提供报告以进行审批。 IEC61215 晶体硅光伏组件设计鉴定和定型 Crystalline Silicon Terrestrial Photovoltaic (PV) Modules - Design Qualification and Type Approval IEC61730.1 光伏组件的安全性构造要求 Photovoltaic (PV) module sa
5、fety qualification - Part 1: Requirements for construction IEC6173O.2 光伏组件的安全性测试要求Photovoltaic ( PV ) modules safety qualificationtesting EN 61345-1998 光伏组件紫外试验UV test of photovoltaic (PV) modules EN 61701-1999 光伏组件盐雾腐蚀试验Salt mist corrosion testing of photovoltaic (PV) modules EN 61721-1999 光伏组件对意外碰
6、撞的承受能力(抗撞击试验) Susceptibility of a photovoltaic (PV) module to accidental impact damage (resistance to impact test) EN 61829-1998 晶体硅光伏方阵I-V特性现场测量Crystalline silicon photovoltaic (PV) array - On-site measurement of I-V characteristics3 环境条件Environmental Conditions 下列的环境条件在设计时已充分考虑。The following envir
7、onmental conditions have been considered for dimensioning of components:Height above sea level150mmax ambient temperature+ 52.0 Cminimum ambient temperature+1 CMax incident light intensity (energy)780 W/m2Ambient humidity max.100%Ambient humidity min.20%Design ambient humidity80%Average yearly rainf
8、all80mmAverage wind speed60km/h with airborne sandMaximum wind speed during operations115km/hStandstill exceptional wind speed160km/h4 系统总体设计System overall Design光伏发电系统的设计是基于以下设备的用电需求:The Power and Electrical Services system has been designed on basis of the power consumption requirements of our app
9、lied equipment: 沿线信号设备Wayside Signalling Equipment 沿线通信设备Wayside communication Equipment 沿线GSM-R设备Wayside GSM-R Equipment 沿线HABD设备Wayside HABD Equipment5 沿线负荷分布情况负荷分布情况详见下表。序号负荷代号负荷名称里程负荷容量(kW)负荷总容量(kW)1P01 RUWAIS LINE HABDRWS 10.0006.415.22P02RUWAIS SPURRWS 8.9008.83PB01 GSM-R BASE STATIONRWS 5.000
10、6.415.24P03RUWAIS SPURRWS 4.1008.85P04RUWAIS JUNCTION RWS 0.6008.815.26PB02 GSM-R BASE STATIONGMB 0.6006.47PB03 GSM-R BASE STATIONGMB 5.5006.46.48P05RADIO BASE STATIONGMB 10.0006.46.49PB01GSM-R BASE STATIONGMB 15.5006.46.410PB04 GSM-R BASE STATIONGMB 20.5006.46.411P06 HOT BOX DETECTORGMB 23.0006.412
11、.812PB05 GSM-R BASE STATIONGMB 25.5006.413PB06 GSM-R BASE STATIONGMB 30.5006.46.414P07BAYNUNAH XOVERGMB 32.5008.817.615P08BAYNUNAH SET OFF TRACKGMB 33.0008.816PB07 GSM-R BASE STATIONGMB 35.5006.46.417PB02GSM-R BASE STATIONGMB 37.5006.46.418PB08 GSM-R BASE STATIONGMB 40.5006.46.419P09RADIO BASE STATI
12、ONGMB 42.0006.46.420PB09 GSM-R BASE STATIONGMB 45.5006.46.421P10HOT BOX DETECTORGMB 50.0006.412.822PB10 GSM-R BASE STATIONGMB 50.5006.423P11MIRFA XOVERGMB 53.0008.826.424P12MIRFA DEPOT GMB 53.20008.825P13MIRFA XOVERGMB 53.40008.826PB11GSM-R BASE STATIONGMB 55.5006.46.427PB12GSM-R BASE STATIONGMB 60.
13、5006.46.428P14MIRFA SET OFF TRACKGMB 63.5008.88.829PB13GSM-R BASE STATIONGMB 65.0006.46.430P15 AL MIRFA STATION GMB 68.1001622.431PB14GSM-R BASE STATIONGMB 69.5006.432P16RADIO BASE STATIONGMB 73.0006.46.433PB03GSM-R BASE STATIONGMB 78.0006.46.434P17HOT BOX DETECTORGMB 83.0006.412.835PB15GSM-R BASE S
14、TATIONGMB 84.0006.436PB04GSM-R BASE STATIONGMB 90.2006.46.437PB16GSM-R BASE STATIONGMB 95.0006.46.438P18 TARIF XOVER GMB 97.4008.817.639P19 TARIF SET OFF TRACKGMB 97.7008.840PB17GSM-R BASE STATIONGMB 100.0006.46.441PB18GSM-R BASE STATIONGMB 105.0006.412.842PB05 GSM-R BASE STATIONGMB 105.3506.4续表序号负荷
15、代号负荷名称里程负荷容量(kW)负荷总容量(kW)43P20 SUPER SITE LIWAGMB 113.0006.46.444P21LIWA JUNCTIONSHA 0.0008.88.845PB19GSM-R BASE STATIONSHA 5.0006.46.446P22 RADIO BASE STATIONSHA 10.0006.46.447PB06 GSM-R BASE STATIONSHA 15.5006.46.448PB20GSM-R BASE STATIONSHA 20.5006.46.449P23 HABSHAN HABD SHA 22.0008.88.850PB21GSM
16、-R BASE STATIONSHA 25.0006.46.451P24 HABSHAN JUNCTIONSHA 27.1008.88.852P25HABSHAN SET OFF TRACK SHA 29.5008.88.853PB07 GSM-R BASE STATIONSHA 34.2506.46.454P26 MADINAT ZAYED HABD SHA 39.0008.88.855PB22GSM-R BASE STATIONSHA 44.0006.46.456P27MADINAT ZAYED STATIONSHA 46.000161657P28RADIO BASE STATIONSHA
17、 49.0006.46.458PB08 GSM-R BASE STATIONSHA 54.0006.46.459P29MADINAT ZAYED HABDSHA 59.0008.88.860PB23GSM-R BASE STATIONSHA 64.5006.415.261P30 MADINAT ZAYED SOUTHSHA 65.4008.862PB24GSM-R BASE STATIONSHA 69.0006.46.463PB09 GSM-R BASE STATIONSHA 72.5006.412.864PB25GSM-R BASE STATIONSHA 73.5006.465P31RADI
18、O BASE STATIONSHA 78.0006.46.466PB10 GSM-R BASE STATIONSHA 84.0006.46.467P32MEZAIRA TOWN HOT BOX DETECTORSHA 90.0006.46.468PB11 GSM-R BASE STATIONSHA 96.1506.46.469PB26GSM-R BASE STATIONSHA 101.0006.422.470P33 MEZAIRA STATION SHA 102.3001671PB27GSM-R BASE STATIONSHA 106.0006.46.472P34 HOT BOX DETECT
19、ORSHA 109.0006.46.473PB28GSM-R BASE STATIONSHA 111.0006.46.474PB29GSM-R BASE STATIONSHA 116.0006.46.475P35HIGH DUNES SET OFF TRACKSHA 119.3008.88.876PB30GSM-R BASE STATIONSHA 121.0006.46.477PB12 GSM-R BASE STATIONSHA 125.6506.412.878PB31GSM-R BASE STATIONSHA 126.0006.479PB32GSM-R BASE STATIONSHA 131
20、.0006.415.280P36 SHAH METEOROLOGICAL SITESHA 132.0008.881PB33GSM-R BASE STATIONSHA 136.0006.46.482P37 SHAH FACILITYSHA 140.0008.815.283PB34GSM-R BASE STATIONSHA 141.0006.4Total610.4610.46 光伏发电系统简介光伏发电是利用光伏组件半导体材料的“光伏效应”将太阳光辐射能直接转换为电能的发电方式。太阳能光伏发电系统按与电力系统关系的分类,通常分为两类,即:独立型太阳能光伏发电系统和并网型太阳能光伏发电系统。与电力系统
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