MN EnergyCode 2024 1stptg
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Minnesota Commercial Energy Code, ANSI/ASHRAE/IES Standard 90.1-2019 with Minnesota Amendments
Published By | Publication Date | Number of Pages |
MN | 2024 | 381 |
The 2024 Minnesota Commercial Energy Code is updated to include ANSI/ASHRAE/IES Standard 90.1-2019 Energy Standard for Buildings Except Low-Rise Residential Buildings. This document is amended for use in Minnesota and the code book includes standard language that is modified by Minnesota Amendment.
PDF Catalog
PDF Pages | PDF Title |
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1 | 2024 MINNESOTA COMMERCIAL ENERGY CODE ANSI/ASHRAE/IES STANDARD 90.1-2019 WITH MINNESOTA AMENDMENTS |
3 | COPYRIGHT |
4 | DEPARTMENT OF LABOR AND INDUSTRY |
6 | TABLE OF CONTENTS |
8 | 2020 MINNESOTA BUILDING CODE ADMINISTRATION 1300.0010 ADMINISTRATION 1300.0020 TITLE 1300.0030 PURPOSE AND APPLICATION 1300.0040 SCOPE |
9 | 1300.0050 CHAPTERS OF MINNESOTASTATE BUILDING CODE 1300.0060 OPTIONAL ADMINISTRATION 1300.0070 DEFINITIONS |
10 | 1300.0080 CODE ADOPTION AND AMENDMENTS 1300.0090 DEPARTMENT OF BUILDING SAFETY 1300.0110 DUTIES AND POWERS OF BUILDING OFFICIAL |
12 | 1300.0120 PERMITS |
14 | 1300.0130 CONSTRUCTION DOCUMENTS |
15 | 1300.0150 VIOLATIONS, PENALTY 1300.0160 FEES 1300.0140 VIOLATIONS |
16 | 1300.0170 STOP WORK ORDER 1300.0180 UNSAFE BUILDINGS OR STRUCTURES |
17 | 1300.0190 TEMPORARY STRUCTURES AND USES 1300.0210 INSPECTIONS |
18 | 1300.0215 PLUMBING |
19 | 1300.0220 CERTIFICATE OF OCCUPANCY 1300.0225 MAINTENANCE 1300.0230 BOARD OF APPEALS |
20 | 1300.0240 DISCLAIMER CLAUSE 1300.0250 SEVERABILITY |
22 | 2024 MINNESOTA COMMERCIAL ENERGY CODE 1323.0001 TITLE 1323.0005 ADMINISTRATION AND PURPOSE 1323.0010 INCORPORATION BY REFERENCE OF ASHRAE STANDARD 90.1 1323.0020 REFERENCES TO OTHER CODES 1323.0030 ADMINISTRATIVE PROCEDURE CRITERIA 1323.0010 INCORPORATION BY REFERENCEOF ASHRAE STANDARD 90.1 1323.0020 REFERENCES TO OTHER CODES 1323.0030 ADMINISTRATIVE PROCEDURE CRITERIA |
28 | FOREWORD |
30 | 1: PURPOSE |
32 | 2: SCOPE |
34 | 3: DEFINITIONS, ABBREVIATIONS, AND ACRONYMS |
40 | FIGURE 3.2-1 COMPUTING THE DAYLIGHT AREA UNDER ROOF MONITORS |
41 | FIGURE 3.2-2 COMPUTING THE DAYLIGHT AREA UNDER SKYLIGHTS |
42 | FIGURE 3.2-3 COMPUTING THE DAYLIGHT AREA UNDER SKYLIGHTS IN MULTISTORY SPACES |
43 | FIGURE 3.2-4 COMPUTING THE PRIMARY SIDELIGHTED AREA |
44 | FIGURE 3.2-5 COMPUTING THE SECONDARY SIDELIGHTED AREA |
45 | FIGURE 3.2-6 COMPUTING THE PRIMARY AND SECONDARY SIDELIGHTED AREAS WITH EXTERNAL PROJECTIONS |
62 | TABLE 3.2 HEATED SPACE CRITERIA |
70 | 4: ADMINISTRATION AND ENFORCEMENT |
72 | TABLE 4.2.1.1 BUILDING PERFORMANCE FACTOR |
78 | 5: BUILDING DEVELOPEMENT |
83 | TABLE 5.5-0 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 0 |
84 | TABLE 5.5-1 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 1 |
85 | TABLE 5.5-2 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 2 |
86 | TABLE 5.5-3 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 3 |
87 | TABLE 5.5-4 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 4 |
88 | TABLE 5.5-5 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 5 |
89 | TABLE 5.5-6 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 6 |
90 | TABLE 5.5-7 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 7* |
91 | TABLE 5.5-8 BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 8 |
92 | FIGURE 5.5.2 EXTERIOR AND SEMIEXTERIOR BUILDING ENVELOPE TABLE 5.5.3.1.1 INCREASED ROOF INSULATION LEVELS |
96 | TABLE 5.5.4.4.1 SHGC MULTIPLIERS FOR PERMANENT PROJECTIONS |
103 | TABLE 5.8.3.1 MAXIMUM AIR LEAKAGE FOR MATERIALS AND ASSEMBLIES |
106 | 6: HEATING, VENTILATING, AND AIR CONDITIONING |
113 | TABLE 6.4.2.1 CLIMATIC DATA DESIGN CONDITIONS |
114 | TABLE 6.4.2.1 CLIMATIC DATA DESIGN CONDITIONS |
118 | TABLE 6.4.3.4.3 MAXIMUM DAMPER LEAKAGEA,B, CFM PER FT2 AT 1.0 IN. OF WATER |
120 | TABLE 6.4.3.10.1 DDC APPLICATIONS AND QUALIFICATIONS |
126 | TABLE 6.5.1-1 MINIMUM FAN-COOLING UNIT SIZE FOR WHICH AN ECONOMIZER IS REQUIRED TABLE 6.5.1-2 ELIMINATE REQUIRED ECONOMIZER FOR COMFORT COOLING BY INCREASING COOLING EFFICIENCY |
127 | TABLE 6.5.1.1.3 HIGH-LIMIT SHUTOFF CONTROL SETTINGS FOR AIR ECONOMIZERSB |
128 | TABLE 6.5.1.2.1 FLUID ECONOMIZER SIZING DRY-BULB AND WET-BULB REQUIREMENTS FOR COMPUTER ROOMS |
129 | TABLE 6.5.1.3 DX COOLING STAGE REQUIREMENTS FOR MODULATING AIRFLOW UNITS |
132 | TABLE 6.5.3.1-1 FAN POWER LIMITATION |
133 | TABLE 6.5.3.1-2 FAN POWER LIMITATION PRESSURE DROP ADJUSTMENT |
134 | TABLE 6.5.3.2.1 FAN AIRFLOW CONTROL |
136 | TABLE 6.5.3.7 MINIMUM FAN EFFICACY FOR LOW-POWER FANS |
137 | TABLE 6.5.4.1 BOILER TURNDOWN |
138 | TABLE 6.5.4.2 PUMP FLOW CONTROL REQUIREMENTS |
139 | TABLE 6.5.4.6 PIPING SYSTEM DESIGN MAXIMUM FLOW RATE IN GPM |
142 | TABLE 6.5.6.1.2 EXHAUST AIR ENERGY RECOVERY REQUIREMENTS FOR VENTILATION SYSTEMS |
145 | TABLE 6.5.7.2.2 MAXIMUM NET EXHAUST FLOW RATE, CFM PER LINEAR FOOT OF HOOD LENGTH |
146 | TABLE 6.5.9 HOT-GAS BYPASS LIMITATION |
150 | TABLE 6.8.1-1 ELECTRICALLY OPERATED UNITARY AIR CONDITIONERS AND CONDENSING UNITSāMINIMUM EFFICIENCY REQUIREMENTS |
151 | TABLE 6.8.1-1 ELECTRICALLY OPERATED UNITARY AIR CONDITIONERS AND CONDENSING UNITSāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
152 | TABLE 6.8.1-1 ELECTRICALLY OPERATED UNITARY AIR CONDITIONERS AND CONDENSING UNITSāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
153 | TABLE 6.8.1-2 ELECTRICALLY OPERATED AIR-COOLED UNITARY HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS |
154 | TABLE 6.8.1-2 ELECTRICALLY OPERATED AIR-COOLED UNITARY HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
155 | TABLE 6.8.1-3 WATER-CHILLING PACKAGESāMINIMUM EFFICIENCY REQUIREMENTS |
156 | TABLE 6.8.1-4 ELECTRICALLY OPERATED PACKAGED TERMINAL AIR CONDITIONERS, PACKAGED TERMINAL HEAT PUMPS, SINGLE-PACKAGE VERTICAL AIR CONDITIONERS, SINGLE-PACKAGE VERTICAL HEAT PUMPS, ROOM AIR CONDITIONERS, AND ROOM AIR-CONDITIONER HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS |
157 | TABLE 6.8.1-4 ELECTRICALLY OPERATED PACKAGED TERMINAL AIR CONDITIONERS, PACKAGED TERMINAL HEAT PUMPS, SINGLE-PACKAGE VERTICAL AIR CONDITIONERS, SINGLE-PACKAGE VERTICAL HEAT PUMPS, ROOM AIR CONDITIONERS, AND ROOM AIR-CONDITIONER HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS |
158 | TABLE 6.8.1-5 WARM-AIR FURNACES AND COMBINATION WARM-AIR FURNACES/AIR-CONDITIONING UNITS, WARM-AIR DUCT FURNACES, AND UNIT HEATERSāMINIMUM EFFICIENCY REQUIREMENTS |
159 | TABLE 6.8.1-6 GAS- AND OIL-FIRED BOILERSāMINIMUM EFFICIENCY REQUIREMENTS |
160 | TABLE 6.8.1-7 PERFORMANCE REQUIREMENTS FOR HEAT REJECTION EQUIPMENTāMINIMUM EFFICIENCY REQUIREMENTS |
161 | TABLE 6.8.1-8 ELECTRICALLY OPERATED VARIABLE-REFRIGERANT-FLOW AIR CONDITIONERSāMINIMUM EFFICIENCY REQUIREMENTS TABLE 6.8.1-9 ELECTRICALLY OPERATED VARIABLE-REFRIGERANT-FLOW AND APPLIED HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS |
162 | 6.8.1-9 ELECTRICALLY OPERATED VARIABLE-REFRIGERANT-FLOW AND APPLIED HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
163 | TABLE 6.8.1-10 FLOOR-MOUNTED AIR CONDITIONERS AND CONDENSING UNITS SERVING COMPUTER ROOMSāMINIMUM EFFICIENCY REQUIREMENTS |
164 | Table 6.8.1-10 Floor-Mounted Air Conditioners and Condensing Units Serving Computer Roomsā Minimum Efficiency Requirements (Continued) |
165 | Table 6.8.1-10 Floor-Mounted Air Conditioners and Condensing Units Serving Computer Roomsā Minimum Efficiency Requirements (Continued) |
166 | TABLE 6.8.1-11 COMMERCIAL REFRIGERATORS, COMMERCIAL FREEZERS, AND REFRIGERATIONāMINIMUM EFFICIENCY REQUIREMENTS |
167 | TABLE 6.8.1-11 COMMERCIAL REFRIGERATORS, COMMERCIAL FREEZERS, AND REFRIGERATIONāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
168 | TABLE 6.8.1-12 VAPOR-COMPRESSION-BASED INDOOR POOL DEHUMIDIFIERSāMINIMUM EFFICIENCY REQUIREMENTS TABLE 6.8.1-13 ELECTRICALLY OPERATED DX-DOAS UNITS, SINGLE-PACKAGE AND REMOTE CONDENSER, WITHOUT ENERGY RECOVERYāMINIMUM EFFICIENCY REQUIREMENTS TABLE 6.8.1-14 ELECTRICALLY OPERATED DX-DOAS UNITS, SINGLE-PACKAGE AND REMOTE CONDENSER, WITH ENERGY RECOVERYāMINIMUM EFFICIENCY REQUIREMENTS |
169 | TABLE 6.8.1-15 ELECTRICALLY OPERATED WATER-SOURCE HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS |
170 | TABLE 6.8.1-16 HEAT-PUMP AND HEAT RECOVERY CHILLER PACKAGESāMINIMUM EFFICIENCY REQUIREMENTS |
171 | TABLE 6.8.1-16 HEAT-PUMP AND HEAT RECOVERY CHILLER PACKAGESāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
172 | TABLE 6.8.1-17 CEILING-MOUNTED COMPUTER-ROOM AIR CONDITIONERSāMINIMUM EFFICIENCY REQUIREMENTS |
173 | TABLE 6.8.1-17 CEILING-MOUNTED COMPUTER-ROOM AIR CONDITIONERSāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) TABLE 6.8.1-18 WALK-IN COOLER AND FREEZER DISPLAY DOOR EFFICIENCY REQUIREMENTS |
174 | TABLE 6.8.1-19 WALK-IN COOLER AND FREEZER NONDISPLAY DOOR EFFICIENCY REQUIREMENTS TABLE 6.8.1-20 WALK-IN COOLER AND FREEZER REFRIGERATION SYSTEM EFFICIENCY REQUIREMENTS |
175 | TABLE 6.8.2 MINIMUM REQUIRED DUCT AND PLENUM INSULATION TABLE 6.8.3-1 MINIMUM PIPING INSULATION THICKNESS HEATING AND HOT-WATER SYSTEMSA,B,C,D,E (STEAM, STEAM CONDENSATE, HOT-WATER HEATING AND DOMESTIC WATER SYSTEMS) |
176 | TABLE 6.8.3-2 MINIMUM PIPING INSULATION THICKNESS COOLING SYSTEMS (CHILLED WATER, BRINE, AND REFRIGERANT) |
178 | 7: SERVICE WATER HEATING |
182 | TABLE 7.8 PERFORMANCE REQUIREMENTS FOR WATER-HEATING EQUIPMENTāMINIMUM EFFICIENCY REQUIREMENTS |
183 | TABLE 7.8 PERFORMANCE REQUIREMENTS FOR WATER-HEATING EQUIPMENTāMINIMUM EFFICIENCY REQUIREMENTS (CONTINUED) |
184 | 8: POWER |
185 | TABLE 8.4.4 MINIMUM NOMINAL EFFICIENCY LEVELS FOR LOW-VOLTAGE DRY-TYPE DISTRIBUTION TRANSFORMERSA |
188 | 9: LIGHTING |
191 | TABLE 9.2.3.1 EXCEPTIONS TO INTERIOR LIGHTING POWER AND MINIMUM CONTROL REQUIREMENTS |
192 | TABLE 9.3.1-1 SIMPLIFIED BUILDING METHOD FOR OFFICE BUILDINGS |
193 | TABLE 9.3.1-2 SIMPLIFIED BUILDING METHOD FOR RETAIL BUILDINGS TABLE 9.3.1-3 SIMPLIFIED BUILDING METHOD FOR SCHOOL BUILDINGS |
194 | TABLE 9.3.2 SIMPLIFIED BUILDING METHOD FOR BUILDING EXTERIORS |
199 | TABLE 9.4.2-1 EXTERIOR LIGHTING ZONES |
200 | TABLE 9.4.2-2 INDIVIDUAL LIGHTING POWER ALLOWANCES FOR BUILDING EXTERIORS |
201 | TABLE 9.4.2-2 INDIVIDUAL LIGHTING POWER ALLOWANCES FOR BUILDING EXTERIORS (CONTINUED) |
202 | TABLE 9.5.1 LIGHTING POWER DENSITY ALLOWANCES USING THE BUILDING AREA METHOD |
203 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD |
204 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD (CONTINUED) |
205 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD (CONTINUED) |
206 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD (CONTINUED) |
207 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD (CONTINUED) |
208 | TABLE 9.6.1 LIGHTING POWER DENSITY ALLOWANCES USING THE SPACE-BY-SPACE METHOD AND MINIMUM CONTROL REQUIREMENTS USING EITHER METHOD (CONTINUED) |
209 | TABLE 9.6.3 CONTROL FACTORS USED IN CALCULATING ADDITIONAL INTERIOR LIGHTING POWER ALLOWANCE |
212 | 10: OTHER EQUIPMENT |
216 | TABLE 10.8-1 MINIMUM NOMINAL FULL-LOAD EFFICIENCY FOR NEMA DESIGN A, NEMA DESIGN B, AND IEC DESIGN N MOTORS (EXCLUDING FIRE PUMP ELECTRIC MOTORS) AT 60 HZ |
217 | TABLE 10.8-2 MINIMUM NOMINAL FULL-LOAD EFFICIENCY FOR NEMA DESIGN C AND IEC DESIGN H MOTORS AT 60 HZA |
218 | TABLE 10.8-3 MINIMUM AVERAGE FULL-LOAD EFFICIENCY FOR POLYPHASE SMALL ELECTRIC MOTORSA TABLE 10.8-4 MINIMUM AVERAGE FULL-LOAD EFFICIENCY FOR CAPACITOR-START CAPACITOR-RUN AND CAPACITOR-START INDUCTION-RUN SMALL ELECTRIC MOTORSA |
219 | TABLE 10.8-5 MINIMUM NOMINAL FULL-LOAD EFFICIENCY FOR FIRE PUMP ELECTRIC MOTORSA |
220 | TABLE 10.8-6 MAXIMUM PUMP ENERGY INDEX (PEI) |
222 | 11: ENERGY COST BUDGET METHOD |
229 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET |
230 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET (CONTINUED) |
231 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET (CONTINUED) |
232 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET (CONTINUED) |
233 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET (CONTINUED) |
234 | TABLE 11.5.1 MODELING REQUIREMENTS FOR CALCULATING DESIGN ENERGY COST AND ENERGY COST BUDGET (CONTINUED) |
235 | TABLE 11.5.2-1 BUDGET SYSTEM DESCRIPTIONS |
236 | TABLE 11.5.2-2 NUMBER OF CHILLERS TABLE 11.5.2-3 WATER CHILLER TYPES TABLE 11.5.2-4 ECONOMIZER HIGH-LIMIT SHUTOFF TABLE 11.5.2-5 COOLING TOWER LEAVING WATER TEMPERATURE |
238 | 12: NORMATIVE REFERENCES |
244 | NORMATIVE APPENDIX: A RATED R-VALUE OF INSULATION AND ASSEMBLY U-FACTOR, C-FACTOR, AND F-FACTOR DETERMINATIONS |
247 | TABLE A2.2.3 ASSEMBLY U-FACTORS FOR ROOFS WITH INSULATION ENTIRELY ABOVE DECK |
248 | TABLE A2.3.3 ASSEMBLY U-FACTORS FOR METAL BUILDING ROOFS |
249 | TABLE A2.4.2 SINGLE-RAFTER ROOFS TABLE A2.4.3 ASSEMBLY U-FACTORS FOR ATTIC ROOFS WITH WOOD JOISTS |
250 | TABLE A2.5.2 ASSEMBLY U-FACTORS FOR ATTIC ROOFS WITH STEEL JOISTS (4.0 FT ON CENTER) |
255 | TABLE A3.1-1 ASSEMBLY U-FACTORS FOR ABOVE-GRADE CONCRETE WALLS AND MASONRY WALLS |
256 | TABLE A3.1-1 ASSEMBLY U-FACTORS FOR ABOVE-GRADE CONCRETE WALLS AND MASONRY WALLS (CONTINUED) |
257 | TABLE A3.1-1 ASSEMBLY U-FACTORS FOR ABOVE-GRADE CONCRETE WALLS AND MASONRY WALLS (CONTINUED) |
258 | TABLE A3.1-1 ASSEMBLY U-FACTORS FOR ABOVE-GRADE CONCRETE WALLS AND MASONRY WALLS (CONTINUED) |
259 | TABLE A3.1-2 ASSEMBLY U-FACTORS, C-FACTORS, RU, RC, AND HC FOR CONCRETE |
260 | TABLE A3.1-2 ASSEMBLY U-FACTORS, C-FACTORS, RU, RC, AND HC FOR CONCRETE (CONTINUED) |
261 | TABLE A3.1-3 ASSEMBLY U-FACTORS, C-FACTORS, RU, RC, AND HC FOR CONCRETE BLOCK WALLS |
262 | TABLE A3.1-3 ASSEMBLY U-FACTORS, C-FACTORS, RU, RC, AND HC FOR CONCRETE BLOCK WALLS (CONTINUED) |
263 | TABLE A3.1-3 ASSEMBLY U-FACTORS, C-FACTORS, RU, RC, AND HC FOR CONCRETE BLOCK WALLS (CONTINUED) |
264 | TABLE A3.1-4 EFFECTIVE R-VALUES FOR INSULATION/FRAMING LAYERS ADDED TO ABOVE-GRADE MASS WALLS AND BELOW-GRADE WALLS |
265 | TABLE A3.2.3 ASSEMBLY U-FACTORS FOR METAL BUILDING WALLS |
266 | TABLE A3.3.3.1 ASSEMBLY U-FACTORS FOR STEEL-FRAME WALLS |
267 | TABLE A3.4.3.1 ASSEMBLY U-FACTORS FOR WOOD-FRAME WALLS |
272 | TABLE A4.2.1 ASSEMBLY C-FACTORS FOR BELOW-GRADE WALLS |
273 | TABLE A5.2.3.1 ASSEMBLY U-FACTORS FOR MASS FLOORS |
274 | TABLE A5.3.3.1 ASSEMBLY U-FACTORS FOR STEEL-JOIST FLOORS |
275 | TABLE A5.4.3.1 ASSEMBLY U-FACTORS FOR WOOD-JOIST FLOORS |
276 | TABLE A6.3.1-1 ASSEMBLY F-FACTORS FOR SLAB-ON-GRADE FLOORS TABLE A6.3.1-2 ASSEMBLY F-FACTORS FOR FULLY INSULATED HEATED SLAB-ON-GRADE FLOORS |
278 | TABLE A8.1-1 ASSEMBLY U-FACTORS FOR UNLABELED SKYLIGHTS |
279 | TABLE A8.1-1 ASSEMBLY U-FACTORS FOR UNLABELED SKYLIGHTS (CONTINUED) |
280 | TABLE A8.1-2 ASSEMBLY SHGCS AND ASSEMBLY VISIBLE TRANSMITTANCES (VTS) FOR UNLABELED SKYLIGHTS |
281 | TABLE A8.2 ASSEMBLY U-FACTORS, ASSEMBLY SHGCS, AND ASSEMBLY VISIBLE TRANSMITTANCES (VTS) FOR UNLABELED VERTICAL FENESTRATION |
285 | FIGURE A9.4.6.1 GEOMETRY OF SINGLE-LAYER FIBERGLASS BATT |
287 | FIGURE A9.4.6.2-1 GEOMETRY OF DOUBLE LAYERS OF FIBERGLASS BATTS |
288 | FIGURE A9.4.6.2-2 COMPRESSION OF DOUBLE LAYERS OF FIBERGLASS INSULATION |
291 | FIGURE A9.4.6.3 GEOMETRY OF SINGLE CAVITY LAYER OR DOUBLE-LAYER WALL |
295 | TABLE A9.2-1 EFFECTIVE INSULATION/FRAMING LAYER R-VALUES FOR ROOF AND FLOOR INSULATION INSTALLED BETWEEN METAL FRAMING (4 FT ON CENTER) TABLE A9.2-2 EFFECTIVE INSULATION/FRAMING LAYER R-VALUES FOR WALL INSULATION INSTALLED BETWEEN STEEL FRAMING |
296 | TABLE A9.4.2-1 VALUES FOR CAVITY AIR SPACES |
297 | TABLE A9.4.2-2 EMITTANCE VALUES OF VARIOUS SURFACES AND EFFECTIVE EMITTANCES OF AIR SPACES TABLE A9.4.3 EFFECTIVE R-VALUES FOR FIBERGLASS |
298 | TABLE A9.4.4-1 R-VALUES FOR BUILDING MATERIALS TABLE A9.4.4-2 THERMAL CONDUCTIVITY OF CONCRETE BLOCK MATERIAL |
299 | TABLE A9.4.6.1 FIBERGLASS REFERENCE PROPERTIES |
300 | NORMATIVE APPENDIX B: (RETAINED FOR FUTURE USE) |
302 | NORMATIVE APPENDIX C: METHODOLOGY FOR BUILDING ENVELOPE TRADE-OFF OPTION IN SECTION 5.6 |
303 | FIGURE C1.4 SKYLIGHT WELL DIMENSIONS |
310 | INFORMATIVE APPENDIX D: (RETAINED FOR FUTURE USE) |
312 | INFORMATIVE APPENDIX E: INFORMATIVE REFERENCES |
316 | INFORMATIVE APPENDIX F: U.S. DEPARTMENT OF ENERGY MINIMUM ENERGY EFFICIENCY REQUIREMENTS, TEST PROCEDURES, AND DEFINITIONS |
317 | FIGURE F-1 MAP OF THE REGIONS FOR THE ANALYSIS OF CENTRAL AIR CONDITIONERS AND HEAT PUMPS TABLE F-1 MINIMUM EFFICIENCY REQUIREMENTS FOR SINGLE-PHASE CENTRAL AIR CONDITIONERS AND HEAT PUMPS FOR APPLICATIONS IN THE U.S |
318 | TABLE F-1 MINIMUM EFFICIENCY REQUIREMENTS FOR SINGLE-PHASE CENTRAL AIR CONDITIONERS AND HEAT PUMPS FOR APPLICATIONS IN THE U.S. |
319 | TABLE F-2 MINIMUM ENERGY EFFICIENCY REQUIREMENTS FOR WATER HEATERS AND POOL HEATERS |
320 | TABLE F-3 MINIMUM EFFICIENCY REQUIREMENTS FOR ROOM AIR CONDITIONERS FOR U.S. APPLICATIONS TABLE F-4 RESIDENTIAL FURNACESāMINIMUM EFFICIENCY REQUIREMENTS FOR U.S. APPLICATIONS (SEE 10 CFR 430) |
321 | TABLE F-5 RESIDENTIAL BOILER A MINIMUM EFFICIENCY REQUIREMENTS FOR U.S. APPLICATIONS (SEE 10 CFR 430) |
322 | NORMATIVE APPENDIX G: PERFORMANCE RATING METHOD |
327 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE |
328 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
329 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
330 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
331 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
332 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
333 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
334 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
335 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
336 | TABLE G3.1 MODELING REQUIREMENTS FOR CALCULATING PROPOSED AND BASELINE BUILDING PERFORMANCE (CONTINUED) |
345 | TABLE G3.1.1-1 BASELINE BUILDING VERTICAL FENESTRATION AREA TABLE G3.1.1-2 BASELINE SERVICE WATER-HEATING SYSTEM |
346 | TABLE G3.1.1-3 BASELINE HVAC SYSTEM TYPES TABLE G3.1.1-4 BASELINE SYSTEM DESCRIPTIONS TABLE G3.1.2.6 CLIMATE CONDITIONS UNDER WHICH ECONOMIZERS ARE INCLUDED FOR COMFORT COOLING FOR BASELINE SYSTEMS 3 THROUGH 8 AND 11, 12, AND 13 |
347 | TABLE G3.1.2.7 ECONOMIZER HIGH-LIMIT SHUTOFF TEMPERATURE TABLE G3.1.2.9 BASELINE FAN BRAKE HORSEPOWER MOTOR POWER TABLE G3.1.3.7 TYPE AND NUMBER OF CHILLERS TABLE G3.1.3.11 HEAT-REJECTION LEAVING WATER TEMPERATURE |
348 | TABLE G3.4-1 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONES 0 AND 1 (A,B) |
349 | TABLE G3.4-2 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 2 (A,B)* |
350 | TABLE G3.4-3 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 3 (A,B,C) |
351 | TABLE G3.4-4 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 4 (A,B,C)* |
352 | TABLE G3.4-5 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 5 (A,B,C)* |
353 | TABLE G3.4-6 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 6 (A,B)* |
354 | TABLE G3.4-7 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 7 |
355 | TABLE G3.4-8 PERFORMANCE RATING METHOD BUILDING ENVELOPE REQUIREMENTS FOR CLIMATE ZONE 8* |
356 | TABLE G3.5.1 PERFORMANCE RATING METHOD AIR CONDITIONERS (EFFICIENCY RATINGS EXCLUDING SUPPLY FAN POWER) TABLE G3.5.2 PERFORMANCE RATING METHOD ELECTRICALLY OPERATED UNITARY AND APPLIED HEAT PUMPSāMINIMUM EFFICIENCY REQUIREMENTS (EFFICIENCY RATINGS EXCLUDING SUPPLY FAN POWER) TABLE G3.5.3 PERFORMANCE RATING METHOD WATER CHILLING PACKAGESāMINIMUM EFFICIENCY REQUIREMENTS |
357 | TABLE G3.5.4 PERFORMANCE RATING METHOD ELECTRICALLY OPERATED PACKAGED TERMINAL AIR CONDITIONERS, PACKAGED TERMINAL HEAT PUMPS (EFFICIENCY RATINGS EXCLUDING SUPPLY FAN POWER) TABLE G3.5.5 PERFORMANCE RATING METHOD WARM-AIR FURNACES AND UNIT HEATERS TABLE G3.5.6 PERFORMANCE RATING METHOD GAS-FIRED BOILERSāMINIMUM EFFICIENCY REQUIREMENTS TABLE G3.6 PERFORMANCE RATING METHOD LIGHTING POWER DENSITIES FOR BUILDING EXTERIORS |
358 | TABLE G3.7 PERFORMANCE RATING METHOD LIGHTING POWER DENSITY ALLOWANCES AND OCCUPANCY SENSOR REDUCTIONS USING THE SPACE-BY-SPACE METHOD |
359 | TABLE G3.7 PERFORMANCE RATING METHOD LIGHTING POWER DENSITY ALLOWANCES AND OCCUPANCY SENSOR REDUCTIONS USING THE SPACE-BY-SPACE METHOD (CONTINUED) |
360 | TABLE G3.7 PERFORMANCE RATING METHOD LIGHTING POWER DENSITY ALLOWANCES AND OCCUPANCY SENSOR REDUCTIONS USING THE SPACE-BY-SPACE METHOD (CONTINUED) |
361 | TABLE G3.8 PERFORMANCE RATING METHOD LIGHTING POWER DENSITIES USING THE BUILDING AREA METHOD TABLE G3.4-9 HEATED SPACE CRITERIA |
362 | TABLE G3.9.1 PERFORMANCE RATING METHOD MOTOR EFFICIENCY REQUIREMENTS TABLE G3.9.2 PERFORMANCE RATING METHOD BASELINE ELEVATOR MOTOR TABLE G3.9.3 PERFORMANCE RATING METHOD HYDRAULIC ELEVATOR MOTOR EFFICIENCY TABLE G3.10.1 PERFORMANCE RATING METHOD COMMERCIAL REFRIGERATORS AND FREEZERS |
363 | TABLE G3.10.2 PERFORMANCE RATING METHOD COMMERCIAL REFRIGERATION |
364 | INFORMATIVE APPENDIX H: ADDITIONAL GUIDANCE FOR VERIFICATION, TESTING, AND COMMISSIONING |
366 | TABLE H-1 VERIFICATION OR COMMISSIONING REQUIRED BY BUILDING SIZE AND TYPE FIGURE H-1 COORDINATION OF VERIFICATION/FPT AND COMMISSIONING REQUIREMENTS |
367 | TABLE H-2 TYPICAL COMMISSIONING PROCESS ACTIVITIES, DELIVERABLES AND RESPONSIBILITIES |
368 | TABLE H-3 STANDARD 90.1 ITEMS TO VERIFY |
369 | TABLE H-3 STANDARD 90.1 ITEMS TO VERIFY (CONTINUED) |
370 | TABLE H-3 STANDARD 90.1 ITEMS TO VERIFY (CONTINUED) |
374 | INFORMATIVE APPENDIX I: ADDENDA DESCRIPTION INFORMATION TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
375 | TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
376 | TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
377 | TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
378 | TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
379 | TABLE I-1 ADDENDA TO ANSI/ASHRAE/IES STANDARD 90.1-2016 |
380 | ICC MEMBERSHIP |
381 | DIGITAL CODES PREMIUM |