英文版DL T 50541996 火力发电厂汽水管道设计技术规定.doc
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1、Professional Standard of the Popeples Republic of ChinaDL/T 5054-1996Technical Specification for the Steam/Water Piping Design of Fossil Fuel Power Plant火力发电厂汽水管道设计技术规定Notice on the issuing of power industry standard Electric Power Industry of People Republic of ChinaDian Ji 1996 No.340After inspect
2、ion and approval, Technical Specification for the Steam/WaterPiping Design of Fossils Fuel Power Plant is approved to be a reference specification and is hereby issued. The standard code is: DL/T 5054-1996This standard shall be implemented from October 1, 1996.Please notify the Ministry of Electric
3、Industry, Electric Power Planning and Design General Institution of the problems and suggestions during the specifications implementation, also a copy of it shall be sent to the office of ministry standardization leading group.This standard is under the charge of China Water Power Press to publish.U
4、nit and meaning of the frequently used symbols:SymbolUnitMeaningPMPadesigned pressurePNMPanominative pressurePTMPatest pressurePdPa, MPadynamical pressure of the media inside the pipePd1Pa, MPadynamical pressure at the initial end of the pipePd2Pa, MPadynamical pressure of the pipe endPOPa, MPastagn
5、ation pressure at the initial end of the pipeP1Pa, MPapressure at the initial end of the pipeP2Pa, MPapressure of the pipe endPCPa, MPacritical pressure of the media inside the pipePdPa, MPacritical dynamical pressure of the media inside the pipe-ratio of the pressure at the initial end of the pipe
6、and the pressure at the end of the spacec-ratio of the pressure at the initial end of the pipe and the critical pressuretdesign temperature or working temperatureterdesign installation temperatureb20MPaminimal tensile strength of the steel products at 20 3MPaminimal yield limit of the steel products
7、 at design temperaturet3 (0.2%)MPaminimal yield limit when the steel products residual deformation is 0.2% at design temperaturetDMPa100, 000 h average endurable strength of the steel materials at design temperatureTMPasafe allowable stress of the steel products at design temperature-safe allowable
8、stress compensation factorDNmminside nominal diameterDOmmpipe external diameterDimminternal pipe sizesmmmminimal straight pipe wall thicknessSCmmcalculated wall thickness of the straight pipeSmmwall thickness of the straight pipeA-negative deviation coefficient of the pipe thicknessGt/hmedia mass fl
9、owGmaxt/hmedia maximal mass flowGmint/hmedia minimal mass flowQm3/hmedia volumetric flowvm3/kgmedia specific volumev0m3/kgpipeline initial end stagnation specific volumev1m3/kgmedia specific volumeat the pipe initialv2m3/kgmedia specific volume at the pipe terminalvm3/kgmedia critical specific volum
10、e-media specific volume ratio at the pipe terminal and initial end0-ratio of media critical specific volume and pipeline initial media specific volumekg/m3media density1kg/m3media density at the pipeline initial2kg/m3media density at the pipe terminalwm/smedia flow velocitymkg/(m2s)media mass veloci
11、tyw0m/smedia critical velocitym0kg/(m2s)media critical mass flow velocityLmoverall pipeline stretched length-pipeline friction coefficientR-Reynolds number-resistance coefficient of pipeline+ 1-pipelines general coefficient of local resistancee-pipe equivalent roughnessgm/s2acceleration of gravityk-
12、steam adiabatic exponenta-media mass flow velocity ratio before and after the local changes of the pipelineH1mheight mark of the pipe initial endH2mheight mark of the pipe terminal endPatPaatmospheric PressurePopNworking load of the springPNinstallation load of the springPmaxNmaximal allowable load
13、of the springmaxmmmaximal allowable distortion of the springHopmmspring working heightHetmmspring fitting heightH0mmspring free heightZtmmthermal walking value of the pipes supports and hangers along the vertical directionKmm/Nspring coefficient-friction coefficientLmaxmmaximal allowable spacing of
14、the supporter and hangerIcm4pipe section moment of inertiaqkN/mself weight of the pipeline per unit lengthE20kN/mm2elastic modulus of the steel products at 20EtkN/mm2elastic modulus of the steel products under design temperaturet10-6/linear expansibility of steel products at working temperatureMPash
15、ear StressHfmmweld heighthummeffective throat thicknessXmmaxial displacement absorbed by the expansion jointYmmtransversal displacement absorbed by the expansion jointX0mmmaximal compensation quantity of the hose balance by the expansion jointY0mmmaximal compensation quantity of the transverse balan
16、ce by the expansion joint1. General Provisions1.0.1 The purpose of this specification is to direct the design of the water/steam pipeline of fossil fuel power plant to ensure a secure, full-load, and economical operation.1.0.2 This specification is suitable for the steam/water piping design in the f
17、ossil fuel power plant with the unit main steam parameter as 27MPa, 550 (high temperature and reheated steam can be as high as 565) or below.The steam/water piping design within the generating units and the furnace shall not only comply with this specification, but also needs to be determined after
18、being negotiated with the manufacturer.The heating network pipe and the pipe for transferring oil and air inside the power plant can refer to this specification.This specification is not suitable for the designs of fuel pipeline, fuel gas pipeline, hydrogen gas pipeline and underground straight buri
19、ed pipe.1.0.3 Related standards quoted by this specification:Nominal diameter of the pipeline parts (3131047)Nominal pressure of the pipeline parts (3131048)Seamless steel pipe shall be used for high-pressure boiler (385310)For low- and media-pressure boiler, seamless steel pipe is used (GB3087)Carb
20、on construction steel (313700)Spiral welded steel pipe (SY50365039)Low-pressure stream conveyance with welding steel pipe (3133092)Steel pressure vessel (GB150)Carbon steel covered electrode (GB5117)Low alloy structural steel (GB5118)Technical specifications on pipeline stress calculation of fossil
21、fuel power plant (SDGJ6)Electric power construction and technical specification for the acceptance (pipeline section) (DJ56)Electric power construction and technical specification for the acceptance(Welding in fossil fuel power plant) (DL5007)Electric power construction and technical specification f
22、or the acceptance(Radio examination of the steel load-bearing pipeline butt-jointed seams) (SD143)Metallic technical supervision specification of the fossil fuel power plant (DLA38)Supervision code for boiler of power industry (SDl67)2 General policy conditions2.0.1 Design specificationsPiping desig
23、n shall be carried out according to the thermodynamic system and setup. It requires good material sources, proper setup, good indemnification, smooth drainage, smaller flow resistance, low construction cost, appropriate hanger and support, convenient installation as well as maintenance, flexible ext
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