ANSI FCI 87-1-2017 CLASSIFICATION AND OPERATING PRINCIPLES OF STEAM TRAPS《疏水阀的分类和操作原理》.pdf
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1、 ANSI/FCI 87-1-2017 AMERICAN NATIONAL STANDARDCLASSIFICATION AND OPERATING PRINCIPLES OF STEAM TRAPS Fluid Controls Institute, Inc. Sponsor: Fluid Controls Institute, Inc. 1300 Sumner Ave Cleveland, Ohio 44115-2851 iiANSI/FCI 87-1-2017 AMERICAN NATIONAL STANDARD Classification and Operating Principl
2、es of Steam Traps Sponsor Fluid Controls Institute, Inc. American National Standard American National Standard implies a consensus of those substantially concerned with its scope and provisions. An American National Standard is intended as a guide to aid the manufacturer, the consumer, and the gener
3、al public. The existence of an American National Standard does not in any respect preclude anyone, whether he has approved the standard or not, from manufacturing, marketing, purchasing or using products, processes, or procedures not conforming to the standard. American National Standards are subjec
4、t to periodic review and users are cautioned to obtain the latest editions. CAUTION NOTICE: This American National Standard may be revised or withdrawn at any time. The procedures of the American National Standards Institute require that action be taken to reaffirm, revise, or withdraw this standard
5、 no later than five years from the date of publication. Purchasers of American National Standards may receive current information on all standards by calling or writing the American National Standards Institute. Sponsored and published by: FLUID CONTROLS INSTITUTE, INC. 1300 Sumner Avenue Cleveland,
6、 OH 44115-2851 Phn: 216/241-7333 Fax: 216/241-0105 E-Mail: fcifluidcontrolsinstitute.org URL: www.fluidcontrolsinstitute.org Copyright 2017 by Fluid Controls Institute, Inc. All Rights Reserved No part of this publication may be reproduced in any form, in an electronic retrieval system or otherwise,
7、 without the prior written permission of the publisher. Suggestions for improvement of this standard will be welcome. They should be sent to the Fluid Controls Institute, Inc. Printed in the United States of America iiiForeword For many years, steam trap manufacturers and users have recognized the n
8、eed to establish standards for determining capacities of industrial steam traps. Many factors affect steam trap capacity and this has led to some confusion in the past. The FCI Steam Trap Section has developed a series of standards that serve as the authoritative source for reference regarding the c
9、apabilities of steam traps. Since steam traps are for the purpose of venting air and discharging condensate, many principles of operation are employed. This has led to some confusion in determining trap capacities. However, since all steam traps are governed by basic flow principles which will affec
10、t the amount of condensate through an orifice, a set of standards is very practical. In order to have a comprehensive standard, we have developed this standard, which describes the various types of steam traps, their principles of operation, and factors that affect their performance. This informatio
11、n enables a user to compare the relative capacities of traps of different types and different manufacturers. The Steam Trap Section of the Fluid Controls Institute began work on these standards many years ago. The final results represent the labors and the accumulated years of experience of many ind
12、ividuals in arriving at what we feel is a very complete and correct set of standards. At the same time, we as a committee realize that there are always opportunities to expand and to improve, and we invite comments for consideration. FCI recognizes the need to periodically review and update this sta
13、ndard. Suggestions for improvement should be forwarded to the Fluid Controls Institute, Inc., 1300 Sumner Avenue, Cleveland, Ohio, 44115-2851. All constructive suggestions for expansion and revision of this standard are welcome. The existence of a Fluid Controls Institute (FCI) standard does not in
14、any respect preclude any member or non-member from manufacturing or selling products not conforming to this standard nor is the FCI responsible for its use. Please go to the FCI web site for all of the latest technical articles and standards. ivCONTENTS PAGE Foreword iv 1. Scope . 1 2. Definitions 1
15、 3. Operating Principles . 1-3 4. Types of Steam Traps 4-7 5. Testing References .9 6. Metric Equivalent/Conversions .9 TABLES Table 1 Volume Change of 1 Lb. of Condensate Following Flow Through Orifice at Different Inlet Pressures and Temperatures 3 Table 2 Flow of Water Through Orifice of 1 Sq. In
16、.2Area at 100 PSI Differential Pressure 3 Table 3 Metric Equivalent/Conversions 10 FIGURES Figure 1 Orifice Area and Shape .2 Figure 2 Metal Expansion Traps 4 Figure 3 Bi-Metal Traps 5 Figure 4 Liquid Expansion Traps 5 Figure 5 Balanced Pressure Flexible Structure Traps 6 Figure 6 Upright Bucket Tra
17、ps 6 Figure 7 Inverted Bucket Traps .7 Figure 8 Float Traps .7 Figure 9 Non-Lever Free Float Traps 8 Figure 10 Thermodynamic Piston Traps8 Figure 11 Thermodynamic Disc Traps .9vANSI/FCI 87-1-2017 AMERICAN NATIONAL STANDARD Classification and Operating Principles of Steam Traps 1.0 SCOPE This standar
18、d is for the purpose of establishing and illustrating various classifications of Steam Traps in accordance with their basic principles of operation. This standard does not attempt to define details of conception or construction. 2.0 DEFINITIONS 2.1 Steam trap An integral, self actuated valve which a
19、utomatically vents air in the steam system and drains condensate from a steam containing enclosure while remaining tight to live steam. Most steam traps will also pass non-condensible gases while remaining tight to live steam. Note: Some designs will allow a minimal steam flow at a controlled or adj
20、usted rate using a separate secondary orifice. 2.2 Production tests - Tests carried out by the manufacturer to confirm that the steam trap functions correctly. These tests may be witnessed by the purchaser or his representative. In this case, these tests are referred to as witness tests. 2.3 Perform
21、ance characteristics - Carried out to determine the operational characteristics of a particular design of steam trap. 3.0 OPERATING PRINCIPLES 3.1 Factors Affecting Condensate Flow Through a Steam Trap One of the most common components to all steam traps is the discharge orifice. In some trap types,
22、 the valve seat and the discharge orifice are the same; in others, the discharge orifice may be smaller than the valve seat. 3.2 In considering steam trap capacities, therefore, it is important to explain what happens when fluid flows through an orifice. While in steam trapping we are concerned with
23、 the discharge of cold water, air and other gases, condensate and air mixtures, and hot (flashing) condensate, the main function of the trap is to discharge condensate, usually in the flashing state. The water discharge capacity of an orifice depends on the following factors: 1. The area and shape o
24、f the orifice and the coefficient of discharge CD 2. Lift of valve from orifice 3. The pressure drop across the orifice 4. Density of the water 5. The temperature of the water. 6. The physical changes that take place when water flows through the orifice. 3.2.1 Orifice Area and Shape Theoretically, t
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