CR 13582-1999 Heat meter installation - Some guidelines for selecting installation and operation of heat meters《热电偶装置 一些关于热电偶选择 安装和操作指南》.pdf
《CR 13582-1999 Heat meter installation - Some guidelines for selecting installation and operation of heat meters《热电偶装置 一些关于热电偶选择 安装和操作指南》.pdf》由会员分享,可在线阅读,更多相关《CR 13582-1999 Heat meter installation - Some guidelines for selecting installation and operation of heat meters《热电偶装置 一些关于热电偶选择 安装和操作指南》.pdf(30页珍藏版)》请在麦多课文档分享上搜索。
1、PUBLISHED DOCUMENTPD CR 13582:1999Heat meter installation Some guidelines for selecting, installation and operation of heat metersICS 17.200.10g49g50g3g38g50g51g60g44g49g42g3g58g44g55g43g50g56g55g3g37g54g44g3g51g40g53g48g44g54g54g44g50g49g3g40g59g38g40g51g55g3g36g54g3g51g40g53g48g44g55g55g40g39g3g37
2、g60g3g38g50g51g60g53g44g42g43g55g3g47g36g58PD CR 13582:1999This Published Document was published under the authority of the Standards Policy and Strategy Committee on 31 March 2008 BSI 2008ISBN 978 0 580 61695 2National forewordThis published document is the UK implementation of CR 13582:1999.The UK
3、 participation in its preparation was entrusted by Technical Committee CPI/30, Measurement of fluid flow in closed conduits, to Subcommittee CPI/30/7, Volume flow-rate methods. A list of organizations represented on this committee can be obtained on request to its secretary.This publication does not
4、 purport to include all the necessary provisions of a contract. Users are responsible for its correct application.Amendments/corrigenda issued since publicationDate CommentsCEN REPORTRAPPORT CENCEN BERICHTCR 13582July 1999English versionHeat meter installation - Some guidelines for selecting,install
5、ation and operation of heat metersThis CEN Report was approved by CEN on 24 March 1999. It has been drawn up by the Technical Committee CEN/TC 176.CEN members are the national standards bodies of Austria, Belgium, Czech Republic, Denmark, Finland, France, Germany, Greece,Iceland, Ireland, Italy, Lux
6、embourg, Netherlands, Norway, Portugal, Spain, Sweden, Switzerland and United Kingdom.EUROPEAN COMMITTEE FOR STANDARDIZATIONCOMIT EUROPEN DE NORMALISATIONEUROPISCHES KOMITEE FR NORMUNGCentral Secretariat: rue de Stassart, 36 B-1050 Brussels 1999 CEN All rights of exploitation in any form and by any
7、means reservedworldwide for CEN national Members.Ref. No. CR 13582:1999 EICS 17.200.10CONTENTS1 INTRODUCTION 31.1 GENERAL .31.2 EXPLANATIONS OF TERMS.32 SELECTION OF METERS .32.1 GENERAL 32.2 OPERATIONAL CONDITIONS42.3 LIFE CYCLE COSTS 52.4 FLOW SENSORS.52.4.1 General52.4.2 Quality of the heat conve
8、ying liquid 62.4.3 Measuring principles / type of sensors .6a) Turbine flow sensor 6b) Magnetic inductive flow sensor.7c) Ultrasonic flow sensor 8d) Fluidistor flow sensor9e) Other types of flow sensors92.4.4 Sizes and dimensions.92.5 TEMPERATURE SENSORS.102.5.1 Temperature probes - general.102.5.2
9、Using temperature pockets112.5.3 Surface mounted temperature sensors. 112.6 CALCULATORS12Heat calculation. .123 LOCATING THE METERS .133.1. ENVIRONMENT .133.1.1 Electromagnetic interference133.1.2 Thunderstorm / Surge transients133.1.4 Temperature and humidity133.2 FLOW SENSORS133.2.1 Flow profile 1
10、33.3 TEMPERATURE SENSORS.163.3.1 General163.3.2 Locating temperature probes173.4 CALCULATORS174 INSTALLATION OF THE METERS174.1 GENERAL .174.2 MECHANICAL .184.4 ELECTRICAL CONNECTION 184.5 TAKING INTO SERVICE 185 OPERATIONAL MONITORING196 REFERENCES .19ANNEX A: QUALITY OF THE HEAT CONVEYING LIQUID .
11、20A1 GENERAL.20A2. LIQUID QUALITY .20A3. QUALITY OF THE HEAT CONVEYING LIQUID .20ANNEX B: THE EFFECTS OF INFLUENCE QUANTITIES ON THE MEASUREMENT ACCURACY OFDIFFERENT TYPES OF FLOW SENSORS24ANNEX C: FLOW SENSOR VARIETY 27Page 2PD CR 13582:19991 Introduction1.1 GeneralWhen EN1434 was being prepared, m
12、uch useful information and practical advice concerning the choiceand installation of heat meters was received. Though unsuitable for inclusion in the standard it is givenhere to help heat meter users.1.2 Explanations of termsFor the purposes of this report, in addition to the definitions in EN1434,
13、the following terms and symbolsapply1.2.1 DH (network)District heating systems1.2.2 MeterHeat (energy) meter1.2.3 WaterSanitary water1.2.4 Warm waterSanitary warm water1.2.5 Make up liquidLiquid for refilling leakage of heat conveying liquid1.2.6 LiquidHeat conveying liquid in a DH system2 Selection
14、 of meters2.1 GeneralA heat meter is composed of three parts, a flow sensor, a temperature sensor pair and a calculator.The calculator is a unit which calculates volumes and energy consumption using the values from thetemperature sensors and the flow sensor.The most common type of temperature sensor
15、 is a resistance thermometer of platinum type Pt 100, Pt500 or Pt 1000. The sensors measure the temperature difference between the incoming and outgoingliquid .The flow sensor is probably the most troublesome assembly of the heat meter. Despite an accuracyrequirement of only 4-10% it is very easy to
16、 fall outside these limits. In order to counter these effects asfar as possible, there follows a summary of the various types of flow sensor and their advantages anddisadvantages.The sizing of meters to match their required duty frequently turns out to have been incorrectly estimatedwhen the heating
17、 plant commences operation. In most cases heat meters that are too large for theirPage 3PD CR 13582:1999eventual duty are specified and accuracy at low load suffers as a result. Whilst this paper will give someguidance on essentials, it is felt that more information on this topic would be welcomed.H
18、eat meter accuracies at times of rapidly changing heat demand are unlikely to be high. Whilst at timesof low demand the effect of meter inaccuracy in terms of lost revenue is likely to be small, rapid changesinvolving high demands on the network may possibly have important implications in lost reven
19、ue if meterreaction to rapid changes is slow. Research into the subject seems to have been largely neglected sofar.The most commonly used types of flow sensors have been listed in Annex B and the effect on accuracyof different types of disturbances for each of the listed types of flow sensors are co
20、nsidered.There is little information on the effects of flow and flow disturbances on the service life of the flowsensor, as distinct from its effect on the sensors accuracy. To be welcomed, therefore, is the long termresearch project on this topic initiated in Germany which should result in useful d
21、ata.2.2 Operational conditionsTo get the total power needs of the building you have to calculate the sanitary warm waterproduction and add this power to the power due to heating.The demand of power for sanitary warm water may be calculated by using the ”Guidelines for hotservice water preparation” w
22、hich is the established European method worked out by Euroheat andPower (UNICHAL).When the maximum power is found the sizing of the meter can start.Effect on accuracy of changes in heat demandIn times of changing heat demand, factors which have an important effect on measurement resultsare:Level of
23、system temperaturesOperating strategies of the networkThe quality of the installationHow the substations are designedThe changing temperature level in the buildingThe maintenance levels of the buildingTherefore it is essential to have a routine or checklist for the personnel dealing with meters in t
24、heDH-company. The routine should cover consideration of all factors above.A classic expression is to measure is to know, and there is a great deal in this. But severalpreconditions should be met to enable the measured values to be used and understood in the right way:You must know what you want to m
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