AHRI GUIDELINE V SI-2011 Calculating the Efficiency of Energy Recovery Ventilation and its Effect on Efficiency and Sizing of Building HVAC Systems.pdf
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1、 AHRI Guideline V (SI) 2011Guideline for Calculating the Efficiency of Energy Recovery Ventilation and its Effect on Efficiency and Sizing of Building HVAC Systems Price $10.00 (M) $20.00 (NM) Copyright 2011, by Air-Conditioning, Heating, and Refrigeration Institute Printed in U.S.A. Registered Unit
2、ed States Patent and Trademark Office IMPORTANT SAFETY DISCLAIMER AHRI does not set safety standards and does not certify or guarantee the safety of any products, components or systems designed, tested, rated, installed or operated in accordance with this standard/guideline. It is strongly recommend
3、ed that products be designed, constructed, assembled, installed and operated in accordance with nationally recognized safety standards and code requirements appropriate for products covered by this standard/guideline. AHRI uses its best efforts to develop standards/guidelines employing state-of-the-
4、art and accepted industry practices. AHRI does not certify or guarantee that any tests conducted under its standards/guidelines will be non-hazardous or free from risk. Note: This guideline supersedes AHRI Guideline V2003. For the I-P version, see AHRI Guideline V (I-P) -2011. TABLE OF CONTENTS SECT
5、ION PAGE Section 1. Purpose 1 Section 2. Scope .1 Section 3. Definitions .1 Section 4. Information Requirements .4 Section 5. General Principles .5 Section 6. Calculating the Recovery Efficiency Ratio for the Energy Recovery Ventilation Component 5 Section 7. Integrating the Efficiency of the Energy
6、 Recovery Component with the Efficiency of Cooling and Heating Equipment .8 Section 8. Calculating the Effect of Energy Recovery Ventilation on Cooling System Efficiency 9 Section 9. Calculating the Effect of Energy Recovery Ventilation on Heating System Efficiency 9 Section 10. Sizing .9 Section 11
7、. Implementation 10 FIGURE Figure 1. Generic Configuration of an Air-to-Air Heat Exchanger Used for Energy Recovery in Ventilation Applications .2 APPENDICES Appendix A. References Normative 11 Appendix B. References Informative 11 Appendix C. Sample Calculations Informative .13 Appendix D. Comparin
8、g Typical Combined Efficiency and Energy Analysis Results in a Varietyof ClimatesInformative 24 Appendix E. Rating Conversions Informative .24 TABLE FOR APPENDICES Table D1. Sample Calculation Results for Five Climates 24 FIGURES FOR APPENDICES Figure C1. Placement of Fans for a Draw-through Arrange
9、ment .18 Figure C2. Placement of Fans for a Blow-through Supply with Draw-Through Exhaust Arrangement 19 AHRI GUIDELINE V (SI)-2011_ 1 CALCULATING THE EFFICIENCY OF ENERGY RECOVERY VENTILATION AND ITS EFFECT ON EFFICIENCY AND SIZINGOF BUILDING HVAC SYSTEMS Section 1. Purpose 1.1 Purpose.The purpose
10、of this guideline is to establish a method of calculating the energy efficiency of applied Energy Recovery Ventilation components and of heating, ventilating, and/or air-conditioning systems utilizing such components at selected operating conditions. It also provides guidance on proper sizing of coo
11、ling and heating equipment when such energy recovery components are applied. 1.1.1 Intent.This guideline is intended for the guidance of the industry, including engineers, installers, contractors and users. It provides a means for calculating the impact of applied energy recovery equipment on the en
12、ergy efficiency of the heating, ventilating and air-conditioning system at a single selected operating condition. The guideline is not a rating system for Energy Recovery Ventilation (ERV) Equipment, nor does it provide a means of estimating annual energy use. 1.1.2 Review and Amendment. This guidel
13、ine is subject to review and amendment as technology advances. Section 2. Scope 2.1 Scope. This guideline applies to energy recovery ventilation component applications and combinations of energy recovery components with unitary heating, ventilating, and air-conditioning equipment incorporating mecha
14、nical ventilation with outside air. 2.1.1 This guideline applies only to energy recovery applications utilizing components tested and rated in accordance with AHRI Standard 1061 (SI) -2011. 2.1.2 Because non-certified data is required for the calculations, the results should not be considered to be
15、“certified”. Section 3. Definitions All terms in this document follow the standard industry definitions in the current edition of ASHRAE Terminology of Heating, Ventilation, Air Conditioning and Refrigeration and ASHRAE Standard 84, unless otherwise defined in this section. 3.1 Coefficient of Perfor
16、mance (COP). A ratio of the cooling/heating capacity in watts to the power input values in watts at any given set of Rating Conditions expressed in watts/watts. 3.1.1Coefficient of Performance Cooling (COPc). A ratio of the cooling capacity in watts to the power input values in watts at any given se
17、t of Rating Conditions expressed in watts/watts. 3.1.2Coefficient of Performance heating (COPh)A ratio of the heating capacity in watts to the power input values in watts at any given set of Rating Conditions expressed in watts/watts. 3.2 Combined Efficiency (CEF). The efficiency of a system incorpo
18、rating an ERV component with a unitary packaged air conditioner, heat pump, etc. Units vary according to the application. CEF is expressed in W/W. 3.3 Effectiveness. The measured energy recovery Effectiveness not adjusted to account for that portion of the psychrometric change in the leaving supply
19、air (Figure 1, Station 2) that is the result of leakage of entering exhaust air (Figure 1, Station 3) rather than exchange of heat or moisture between the airstreams. The equation for determining Effectiveness is given in AHRI Standard 1061 (SI), Appendix C. _AHRI GUIDELINE V (SI)-2011 2 3.4 Energy
20、Recovery Ventilation (ERV) Equipment. Units which employ air-to-air heat exchangers to recover energy from exhaust air for the purpose of pre-conditioning outdoor air prior to supplying the conditioned air to the space, either directly or as part of an air-conditioning (to include air heating, air c
21、ooling, air circulating, air cleaning, humidifying and dehumidifying) system. Also referred to as the air-to-air heat exchanger (AAHX). 3.4.1 Heat Pipe Heat Exchanger. A device employing tubes charged with a fluid for the purpose of transferring sensible energy from one air stream to another. Heat t
22、ransfer takes place through the vaporization of the fluid exposed to the warmer air stream and condensation of the fluid in the cooler air stream. 3.4.2 Plate Heat Exchanger. A device for the purpose of transferring energy (sensible or total) from one air stream to another with no moving parts. This
23、 exchanger may incorporate parallel, cross or counter flow construction or a combination of these to achieve the energy transfer. 3.4.3 Rotary Heat Exchanger. A device incorporating a rotating cylinder or wheel for the purpose of transferring energy (sensible or total) from one air stream to the oth
24、er. It incorporates heat transfer material, a drive mechanism, a casing or frame, and includes any seals, which are provided to retard the bypassing and leakage of air from one air stream to the other. 3.5 Exhaust Air Transfer Ratio (EATR). The tracer gas concentration difference between the Leaving
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