ANSI AHRI 1350 I-P-2014 Mechanical Performance Rating of Central Station Air-handling Unit Casings (Addendum 1 September 2015).pdf
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1、 2014 Standard for Mechanical Performance Rating of Central Station Air-handling Unit Casings Approved by ANSI on May 19, 2015 ANSI/AHRI Standard 1350 (I-P) with Addendum 1 ANSI/AHRI STANDARD 1350 (I-P)-2014 WITH ADDENDUM 1 Mechanical Performance Rating of Central Station Air-handling Unit Casings S
2、eptember 2015 Addendum 1 (dated September 2015) of ANSI/AHRI Standard 1350 (I-P)-2014, “Changes to ANSI/AHRI Standard 1350 (I-P)-2014” is provided as follows. The following changes have been incorporated (deletions are shown by strikethroughs, additions are shown by shading) into the already publish
3、ed 2014 version of ANSI/AHRI Standard 1350 (I-P) to avoid confusion: Note: This addendum is not ANSI approved and is currently going through the process to become so. The changes include: 1) Added Section 3.16. Updated all subsequent numbering. 3.16 Pressure Section. A section bounded by a Pressure
4、Change Wall and/or the unit end(s) and is designed to operate entirely in Positive Pressure or Negative Pressure. 2) Updated Section 6.1.3. 6.1.3 All access points must be large enough (minimum nominal width 18 in) for a person to enter or reach in to place instrumentation, including thermal sensors
5、, heater(s), circulating fan(s), without damaging the test unit (i.e. by enlarging existing openings or creating new ones). One access point is required between end wall and first component (either fan or coil). 3) Updated Table C1. Table C1. Requirements for Test Instrumentation Measurement Measure
6、ment System Accuracy1,2,3,4,5 Display Resolution Selected, Installed, Operated, Maintained in Accordance With Air Temperature 0.2 1.0F 0.1F ANSI/ASHRAE Standard 41.1 Pressure 0.01 in H2O 0.005 in H2O ANSI/ASHRAE Standard 41.3 Standard Method for Pressure Measurement Length, width, and height 0.1 in
7、0.06 in ISO/IEC 17025 Length, deflection 0.002 in 0.001 in ISO/IEC 17025 Airflow 2.0% of the reading 1 cfm ANSI/ASHRAE Standard 41.2 Standard Method for Laboratory Airflow Measurement Power 1.0% of the quantity measured 1.0 W ANSI/ASHRAE Standard 41.11 Standard Methods for Power Measurement Notes: 1
8、. Accuracy requirement also applies to volumetric type meters. 2. Measurement system accuracy shall apply over the range of use during testing, as indicated by the Turn Down Ratio determined during calibration, i.e. from full scale down to a value of full scale divided by the Turn Down Ratio. For ma
9、ny types of instruments and/or systems this may require exceeding the accuracy requirement at full scale. Percent of Reading = %RDG, %FS = percent of full scale for the measurement instrument or measurement system. If dual requirements are shown in the table, FS and RDG, then both requirements shall
10、 be met. 3. Current Transformers and Potential Transformers shall have a metering accuracy class of 0.3 or better, rated in accordance with IEEE C57.13. 4. Display resolution shown is the minimum requirement (most coarse resolution allowable). Better (finer) resolution is acceptable for instrument o
11、r panel displays, or computer screen displays. The display resolution shown is the preferred resolution for data reporting on test reports. 5. Significant figures (also known as significant digits) determined in accordance with Section 7.2 of NIST Special Publication 260-100, “Handbook for SRM Users
12、”. 4) Updated third paragraph of Section C5.3.4. All service access points including access doors and access panels used in lieu of an access door are included in the deflection measurement and shall be installed according to the manufacturers instructions. 5) Updated Section C5.4.3. C5.4.3 Record t
13、he location of the Maximum Deflection Point on the casing drawing. Several measurements may be necessary to locate the Maximum Deflection Point. Measure and record the deflection(s) at the identified Maximum Deflection locations and the casing pressure every 5 minutes for 15 minutes. See Figure C7.
14、6) Updated Section C5.5.1. C5.5.1 The test is valid if any measured pressure, Pi, does not vary from the mean pressure, Pa, more than 0.10 in H2O, or 2%, whichever is greater, if any measured deflection, 1,2,3,4 , during the test does not vary from the average deflection, , by more than 0.01 in or 5
15、%, whichever is greater, and if the difference between the unpressurized final deflection,final ,and the unpressurized starting deflection, start, test does not vary by more than 0.01 in or 5%, whichever is greater 7) Updated Section C6.1.1.1. C6.1.1.1 Method 1: As an assembled unit with the entire
16、unit under negative or positive pressure. For negative pressure units, inward swinging doors shall be completely sealed and outward swinging doors shall not be sealed. In a negative pressure test, seal off all of the access points on the positive pressure side. For positive pressure units, outward s
17、winging doors shall be completely sealed and inward swinging doors shall not be sealed In a positive pressure test, seal off all of the access points on the negative pressure side.; or 8) Added Section C6.5.1.1. C6.5.1.1 If the unit has a Pressure Change Wall, there will be two Casing Air Leakage Ra
18、tings, one for the positive pressure section and one for the negative pressure section. 9) Updated Section C6.6.1. C6.6.1 Use the Casing Air Leakage Rate, CLx, to determine rating class. Refer to Table 2, Section 6.4. If the unit has a Pressure Change Wall, there will be 2 Casing Air Leakage Ratings
19、, one for the positive pressure section and one for the negative pressure section. 10) Updated Section C7.1.1. C7.1.1 The test shall be performed with distributed internal heat sources and circulating fans as needed to provide uniform internal temperatures. The heat source will be energized to provi
20、de a minimum of 30F higher average internal air temperature when compared to external ambient temperature but the internal temperature should not exceed 120 F. The manufacturer shall specify the maximum temperature for testing if the product has a lower maximum allowable internal temperature than 12
21、0 F. Steady state is defined in Section C7.3.3. See Figures C13, C14, and C15 for some example thermal set-ups. 11) Updated Section C7.2.3 C7.2.3 A minimum of 3 Circulating fans shall be installed inside the unit CSAHU to help achieve and maintain a uniform temperature distribution inside the unit p
22、rovide adequate air mixing to achieve uniform temperature distribution and convection inside the CSAHU. At a minimum, one fan shall be located in each Pressure Section and/or in each section divided by a coil so that circulating air is obtained throughout the entire unit. At minimum, one fan shall b
23、e located in each unit section bounded by any pressure change wall, coil, and/or unit end so that circulating air is obtained throughout the entire unit and provides adequate air mixing to achieve uniform temperature distribution inside the unit and simulate unit internal airflow velocities based on
24、 500 ft/min coil face velocity. The total airflow delivered by the circulating fan(s) in each unit section shall provide a minimum of 50 cfm per square foot of unit cross-sectional area. Multiple fans may be used to produce the required airflow. 12) Updated Section C7.2.3.1. C7.2.3.1 For example, a
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