EN 13741:2003
Current
The latest, up-to-date edition.
Thermal performance acceptance testing of mechanical draught series wet cooling towers
10-12-2003
Foreword
1 Scope
2 Normative references
3 Terms, definitions and symbols
3.1 Terms and definitions
3.2 Symbols
4 Performance tests - General
4.1 Subject of the thermal performance acceptance
4.2 Performance curves
4.2.1 Performance curves format
4.2.2 Performance curve parameters
5 Measuring procedures and instrumentation
5.1 General
5.2 Measurements
5.2.1 Temperatures
5.2.2 Water flow
5.2.3 Fan power
5.2.4 Cooling tower pumping head
5.2.5 Temperature and flow of make up and blow down
6 Acceptance tests
6.1 General
6.1.1 Introduction
6.1.2 Time of the acceptance test
6.1.3 Management of the acceptance tests
6.2 Preparation of acceptance tests
6.2.1 Number and arrangement of the measuring points
6.2.2 Condition of the plant
6.3 Execution of acceptance tests
6.3.1 Pre conditions
6.3.2 Trial measurements
6.3.3 Acceptable deviations of operating conditions
6.3.4 Operating conditions during the test
6.3.5 Frequency of readings
6.3.6 Test duration
6.3.7 Validity of test results
7 Assessment of test results in view of guaranteed
performance data
7.1 Assessment of test results
7.2 Finding of face values from performance data
7.3 Comparison with the guaranteed performance data
8 Test tolerance
8.1 General
8.2 Error created by measuring tolerances
8.2.1 Influence of wet bulb measurement
uncertainties phi[w]
8.2.2 Influence of cooling range measurement
uncertainties phi[z]
8.2.3 Influence of fan power measurement
uncertainties phi[F]
8.2.4 Influence of water flow rate measurement
uncertainties phi[m]
8.3 Determination of measuring equipment tolerances
8.4 Determination of measuring tolerances
8.5 Determination of random errors
8.6 Determination of the test tolerance
9 Test report
Annex A (informative) Example
Annex B (informative) Performance curves
Annex C (informative) Position of measuring points
for cooling towers
Annex D (informative) Test Result analysis
Bibliography
This European Standard specifies requirements, test method and acceptance tests for thermal performance of mechanical draught series cooling towers. This European Standard is applicable to series type wet cooling towers as defined in 3.1. The acceptance testing covers the verification of the thermal and hydraulic performance data of the cooling tower selected from the product line (see 3.1) and specified in the contract between the supplier and the purchaser.
Committee |
CEN/TC 110
|
DocumentType |
Standard
|
PublisherName |
Comite Europeen de Normalisation
|
Status |
Current
|
Standards | Relationship |
BS EN 13741:2003 | Identical |
PN EN 13741 : 2004 | Identical |
UNE-EN 13741:2004 | Identical |
SN EN 13741 : 2004 | Identical |
I.S. EN 13741:2004 | Identical |
UNI EN 13741 : 2004 | Identical |
NEN EN 13741 : 2004 | Identical |
NBN EN 13741 : 2004 | Identical |
NS EN 13741 : 1ED 2004 | Identical |
NF EN 13741 : 2004 | Identical |
DIN EN 13741:2004-05 | Identical |
DIN EN 14705:2005-10 | Heat exchangers - Method of measurement and evaluation of thermal performances of wet cooling towers; German version EN 14705:2005 |
BS EN 14705:2005 | Heat exchangers. Method of measurement and evaluation of thermal performances of wet cooling towers |
EN 14705:2005 | Heat exchangers - Method of measurement and evaluation of thermal performances of wet cooling towers |
ISO 3354:2008 | Measurement of clean water flow in closed conduits — Velocity-area method using current-meters in full conduits and under regular flow conditions |
EN 306:1997 | Heat exchangers - Methods of measuring the parameters necessary for establishing the performance |
EN ISO 5167-1:2003 | Measurement of fluid flow by means of pressure differential devices inserted in circular cross-section conduits running full - Part 1: General principles and requirements (ISO 5167-1:2003) |
ISO 8316:1987 | Measurement of liquid flow in closed conduits — Method by collection of the liquid in a volumetric tank |
ISO 3966:2008 | Measurement of fluid flow in closed conduits Velocity area method using Pitot static tubes |
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