ASME PTC 12.4 1992 R2019
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ASME PTC 12.4-1992 – Moisture Separator Reheaters – Reapproved 2019
Published By | Publication Date | Number of Pages |
ASME | 1992 | 64 |
14925? Preview ASME PTC 12.4-1992 (R2019) Moisture Separator Reheaters STANDARD by ASME International, 05/24/1993 View all product details ?Most Recent ?Track It Language: Available FormatsOptionsAvailabilityPriced From ( in USD ) Secure PDF ???Immediate download5.00Add to Cart Printed EditionShips in 1-2 business days5.00Add to Cart Printed Edition + PDFImmediate download45.00Add to Cart Customers Who Bought This Also Bought 1946810ASME PTC 4.3-2017 Priced From 00.001607966ASME PTC 4.4-2008 (R2013) Priced From 01.002015439ASME PTC 40-2017 Priced From 5.00938758ASME PTC 12.5-2000 (R2015) Priced From 70.00 About This Item Full Description Product Details Full Description This Code provides the procedures, direction, and guidance for the accurate testing of Moisture Separator Reheaters (MSRs) which includes moisture separating and steam reheating components located between the high pressure and low pressure steam turbine. The purpose of the Code is to determine the performance of the MSR and to provide guidance in the evaluation of its performance effect on the turbine cycle heat with regard to: (a) Moisture Separator Outlet Quality; (b) Reheater Terminal Temperature Difference (TTD) per stage; (c) Cycle Steam pressure drop across applicable component(s); and (d) Excess heating steam flow. Requirements are specified by this Code for application on MSR testing in the following areas: (a) Pretest arrangements and agreements; (b) Instrumentation types and accuracies; (c) Instrumentation applications and methods of measurement; (d) Testing and calculation techniques; (e) Information contained in the report.
PDF Catalog
PDF Pages | PDF Title |
---|---|
3 | Foreword |
4 | Committee Roster |
6 | CONTENTS |
8 | 0 Introduction |
9 | 1 Object and Scope 1.1 Object 1.2 Scope 1.3 Expected Measurement Uncertainty |
10 | 2 Definitions and Description of Terms 2.1 Nomenclature 2.2 Definitions |
12 | 3 Guiding Principles 3.1 Preparation for the Test |
13 | 3.2 General Test Requirements 3.3 Test Operating Conditions |
14 | 3.4 Test Techniques Tables 3.1Permissible Deviation of Variables. |
16 | Figures 3.1 Typical Test Point Locations |
18 | 4 Instrumentation and Methods of Measurement 4.1 General Considerations 4.2 Measurement of Pressure |
19 | 4.3 Measurement of Differential Pressure 4.1 Water Leg Determination.. |
20 | 4.4 Measurement of Temperature |
21 | 4.5 Measurement of Steam Quality 4.6 Flow Rate Determinations |
25 | 4.2 Injection and Sampling Point Locations – MSR Two-Pass Arrangement. . |
26 | 4.3 Injection and Sampling Point Locations – MSR Four-Pass Arrangement. |
27 | 4.4 Typical Installation of Injection and Sampling Points. |
28 | 4.5 Oxygen Content of Sample |
29 | 4.7 Measurement of Water Levels |
30 | 5 Computation of Results 5.1 MSR Performance Computation 5.2 Component Pressure Drop 5.3 Terminal Temperature Difference |
31 | 5.4 Moisture Separator Outlet Quality |
32 | 5.1 Moisture Separator Reheater – Typical Data Point Locations. |
33 | 5.5 Reference Values 5.6 Sensitivity of Deviation from the Reference Value 5.1 MSR Performance Computations |
34 | 6 Test Report 6.1 Introduction |
37 | Appendices A Sample Calculation |
57 | B Measurement.Uncertainty Calculations |