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BS 752:1974

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

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superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

Test code for acceptance of steam turbines

Available format(s)

Hardcopy , PDF

Superseded date

15-06-1996

Language(s)

English

Published date

31-12-1974

Co-operating organizations
Foreword
Specification
0 Introduction
Section one. General
1 Scope
2 References
Section two. Notation, units, and definitions
3 Notation and units
4 As-run heat rate
5 Fully-corrected heat rate
6 Output definitions
Section three. Guiding principles
7 Items on which it is essential that agreement is
    reached
8 Preparation for acceptance tests
9 Time of acceptance tests
10 Depreciation before the acceptance tests
11 Steam tables
12 Test instrumentation
13 Calibration of instruments
14 Proving runs and preliminary tests
15 Conduct of tests
16 Constancy of test conditions; permissible deviations
    and fluctuations
17 Maximum permissible deviations and fluctuations in
    operating conditions
18 Duration of tests and frequency of measurements
19 Reporting acceptance tests
Section four. Test isolation
20 Introduction
21 Flows that have to be isolated
22 Flows that have to be measured if not isolated
23 Suggested methods of effecting and checking
    isolation
24 Test isolation procedure and isolation log sheets
25 Leakage checks
Section five. Measurement of power
26 Determination of net power output of turbine-
    generator
27 Methods of measurement of electrical power
28 Electrical instrument connections
29 Electrical instruments
30 Instrument transformers
31 Calibration
32 Determination of boiler feed pump power
Section six. Measurement of fluid flow
33 Introduction
34 Position in cycle of main flow measurements
35 Use of pressure-difference devices
36 Devices available
37 Factors affecting choice of device
38 Area ratio
39 Installation of device
40 Constructional requirements for pressure-difference
    devices
41 Calibration of pressure-difference devices
42 Differential pressure measurement for main flow
    measurements
43 Connecting pipework to manometers
44 Secondary flow measurements
45 Pressure and temperature measurements for flow
    metering
46 Stored water changes
Section seven. Measurement of temperature
47 Points of temperature measurement
48 Instruments
49 Main temperature measurements
50 Feed train temperature measurement (including bled
    steam)
51 Accuracy of temperature measuring equipment
52 Thermometer wells
53 Precautions to be observed in the measurement of
    temperature
Section eight. Measurement of steam quality
54 General
55 Condensing method using tracers
56 Constant rate of tracer injection method
57 Tracers and their use
Section nine. Measurement of pressure (excluding
              condensing turbine exhaust pressure)
58 Pressures to be measured
59 Preferred instruments for pressure measurement
60 Pressure tapping holes
61 Connecting lines
62 Shut-off valves
63 Requisite accuracy of pressure measuring devices
64 Calibration of pressure measuring devices
65 Barometric pressure
66 Recording and correcting test readings
Section ten. Measurement of condensing turbine exhaust
             pressure
67 Introduction
68 Plane of measurement
69 Pressure sensing holes
70 Manifolds
71 Connecting lines
72 Tightness of measuring system
73 Instruments for measuring exhaust pressure
74 Calibration of gauges
75 Recording and correcting test readings
Section eleven. Condenser cooling water measurements
76 Measurements that may be required
77 Temperature measurements
78 Measurement of cooling water flow
79 Condenser leakage tests
Section twelve. Data acquisition equipment
80 Introduction
81 Data logger inputs
82 Data logger outputs
83 Accuracy of recording
84 Computer control
85 Calibration of transducers
Section thirteen. Speed responsive tests
86 Object of the tests
87 Overspeed trip
88 Speed governor droop
89 Permanent and maximum momentary speed variation
90 Quality of regulation
91 Methods of measurement
Section fourteen. Calculation of corrections to test
                  results
92 Conditions for which corrections may be needed
93 Approach to computation of corrected heat rate and
    power output
94 Corrections for terminal conditions
95 Corrections for feed train parameters
96 Correction for boiler feed pump
97 Typical results
Appendices
A Probable error in test steam or heat rate arising
    from errors of measurement
B Example calculation of as-run heat rate and heat
    rate corrected for feed-heating and feed pump
    performance
Figures
1 Illustration of as-run heat rate for a reheating
    regenerative condensing turbine with integrated
    boiler feed pump turbine
2 Diagram of connections and table layout for
    measuring electrical power in a three-phase circuit
    using three wattmeters
3 Diagram of connections and table layout for
    measuring electrical power in a three-phase circuit
    using two wattmeters
4 Diagram showing location of test measurements for
    superheat-reheat cycle
5 Diagram showing location of test measurements for
    wet steam cycle
6 Test flow metering for two alternative positions of
    main flow meters
7 Test orifice tube assembly with mild steel orifice
    plate
8 Test orifice tube assembly with stainless steel
    orifice plate
9 Arrangement for measuring water head pressure by
    means of a Bourdon gauge
10 Arrangement for measuring water head pressure being
    measured by a mercury manometer
11 Plane of exhaust pressure measurement with
    underslung axial or transverse condenser
12 Plane of exhaust pressure measurement with integral
    and radial type condensers
13 Plane of exhaust pressure measurement for turbine
    with two side exhausts to separate condenser
14 Plane of exhaust pressure measurement for turbine
    with four side outlets to separate condenser
15 Illustration of correction to heat rate for
    deviation of stopvalve pressure
16 Heat rate correction curves for cycle of figure 15
Tables
1 Permissible variations and fluctuations in test
    conditions
2 Typical corrections for cycle of figure 15

Primarily for constant speed condensing steam turbines driving electric power generators, whether superheated or saturated steam. Precautions for radiological safety where nuclear plant is involved. Gives sample calculation of heat rate for a large turbine.

Committee
W/-
DocumentType
Standard
Pages
67
PublisherName
British Standards Institution
Status
Superseded
SupersededBy

BS 4485-2:1988 Water cooling towers Methods for performance testing
BS 3843-3:1992 Guide to terotechnology (the economic management of assets) Guide to the available techniques
BS 1571-2:1975 Specification for testing of positive displacement compressors and exhausters Methods for simplified acceptance testing for air compressors and exhausters

BS 1042-1.1(1981) : 1981 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS - SPECIFICATION FOR SQUARE-EDGED ORIFICE PLATES, NOZZLES AND VENTURI TUBES INSERTED IN CIRCULAR CROSS SECTION CONDUITS RUNNING FULL
BS 1042-1.5(1987) : 1987 MEASUREMENTS OF FLUID FLOW IN CLOSED CONDUITS - GUIDE TO THE EFFECT OF DEPARTURE FROM THE STANDARD CONDITIONS SPECIFIED IN SECTION 1.1
IEC 60045-1:1991 Steam turbines - Part 1: Specifications
ISO/R 541:1967 Withdrawal of ISO/R 541-1967
BS 1042-1.2(1984) : LATEST SPEC. FOR SQUARE-EDGED ORIFICE PLATES, NOZZLES (WITH DRAIN HOLES, IN PIPES BELOW 50MM DIAMETER, AS INLET AND OUTLET DEVICES) AND OTHER ORIFICE PLATES AND BORDA INLETS
BS 1042-1.4(1984) : 1984 MEASUREMENT OF FLUID FLOW IN CLOSED CONDUITS - GUIDE TO THE USE OF DEVICES SPECIFIED IN SECTIONS 1.1 AND 1.2

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