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620 112TH ST SE SPACE 162 2019-08-16
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620 112TH ST SE SPACE 162 2019-08-16
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8/16/2019 8:40:51 AM
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112TH ST SE
Street Number
620
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SPACE 162
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SECTIGN 4.0 SOLID COVER INSTRUCTION$AND POST TABLES �c����NG N FFssio �Q� Table a.z <br /> ' �� � 9 2 y SS N ��� ���` pj�7`��'�r Pos t Descrip tion Max P O S <br /> �' 7258 E r 2 �,�C' SFO ot��:�sf��`. <br /> Q C�� ���c. ._,_ r. Hgt Type Detail <br /> GENERAL INSTRUCTIONS FOR THESE TABLES � Twin 0.032"x1.5"x1.5"Scroll 8' A MU100 <br /> 1.CHOOSE FREESTANDING OR ATTACHED STRUCTURE Feb 14 2017 -112 i 4 '� L Twin 0.062"x1.5"x1.5"Scroll 10' B MU100 <br /> 2. CHOOSE PROJECTION,WIDTH AND OVERHANG OF UNIT OREG N 0.024"x3"x3"Post w/Sideplates 11' C MU112 <br /> 3. DETERMINE WIND AND LIVE OR SNOW LOAD OF STRUCTURE SITE v(/ p� � � <br /> (PATIO UNITS USE 10 PSF MIN,COMMERCIAL UNITS USE 20 PSF MIN) C� �Y 31, � � T Q,'r �� f�'`766�`�, �� Alum 0.032"x3"x3"Lockseam 10' D MU89 <br /> qA p, �F �p Ff. 1.�rER Alum 0.040"x3"x3"Lockseam 10' E MU89 <br /> 4.CHOOSE A PANEL FROM SECTION 4.0 THAT HAS � PU C u�NQ�� SS�/t)�. ' � , Alum 0.055"x3"x3"Fluted 11' F MU95 <br /> ADEQUATE CLEARSPAN FOR YOUR NEEDS. Alum 0.075"x3"x3"Square 12' G MU49 <br /> 5. DETERMINE TRIBUTARY WIDTH FROM TABLE 4.1 OR CALCULATE EXPIRES:DEC 31,2 �$ Magnum 0.062"x3x3 11' H MUSS <br /> FROM TRIBUTARY DIAGRAM ON GENERAL NOTES PAGE TABLE 4.7 TR RY WIDTHS FOR NGLE SPA CHED STRUCTURES Steei 0.043"x3"x3"Lockseam 11' I MU89 <br /> 6. LOCATE HEADER TABLE IN SECTION 5.0 W/CORRECT PARAMETERS OVER- PROJECTION OF StNGLE 5 AN STRUCTURES(FT) Alum 0.120"x3"x3"Square 10' 1 MU96 <br /> a. GROUND SNOW LOAD,SEE 6EN NOTE#14 HANG s� r s� g� io� ir 12� 13� 1a� i5� 16� n� i8� ts� zo' 2r 22� Alum 0.120"x4"x4"Square 14' K MU50 <br /> b. LIVE LOAD,SEE#3 ABOVE o� 3' 3.5' 4' 4.5 s s.s s� s.s T �.5� a� s.s� s• s.5� io' ios' i r 3/16"x3"x3"Steel Square 12' L MU93 <br /> c. WIND SPEED,SEE GEN NOTE#13 i� 3.5� a� a.s� s' s.s� 6� 6.5' �� �.5� 8' 8.5' s' 9.5' 1o' 10.5� 11� 11.5� 3/16"x4"x4"Steel Square 15' MS MU93 <br /> d. EXPOSURE,SEE GEN NOTE#14 2' n/a n/a n/a 5.5' 6' 6.5' 7' 7.5' 8' 8.5' 9' 9.5' 10' 10.5' 11' 11.5' 12' 3/16"x4"x4"Steel Square 12' M2 MU93 <br /> e. $EISMIC,SEE GEN NOTE#14 3' n/a n/a n!a n/a n/a n/a n/a 8' 8.5' 9' 9.5' 10' 10.5' 11' 11.5' 12' �2.5' 3/16"x5"x5"Steel SqUare 15' N1 MU93 <br /> f. ATTACHED OR FREESTANDING 4' n/a n/a n/a n/a n/a n/a n!a n/a n/a n/a n/a to.5' 11' 11.5' 12' t2.5' 13' 3/16"x5"x5"Steel Square 12' N2 MU93 <br /> g. a-e ARE SET BY YOUR LOCAL BUILDING AUTHORITY 5' n/a n/a n/a n/a n/a n/a n/a n/a n/a n/a n/a nla n/a n/a n/a 13' 13.5' 3/16"x6"x6"Steel SqUare 15' 0 MU93 <br /> 7.CHOOSE A HEADER FROM TABLES IN SECTION 5.0 THAT HAS ADEQUATE POST SPACING <br /> 8. DETERMINE FOOTING SIZE TABLE 43 <br /> USE THE UPLIFT FOOTIN6 IF BOTH OF THESE CONDITIONS ARE MET Uplift Constrained d(in) <br /> a.STRUCTURE IS ATTACHED TO AN EXISTING STRUCTURE d(in) 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 <br /> b.PROJECTION IS EQUAL OR SHORTER THAN THE WIDTH(SEE SHEETSCOl) 14 I I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 O 0 O O 0 <br /> c.GO TO#9a 15 I I I I I I I I J 1 J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 O O 0 O <br /> 16 I I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 0 0 O <br /> IF EITHER a OR b ARE NOT TRUE THEN: 17 I I I I I I I I 1 J 1 K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 0 O 0 <br /> a.CHOOSE CONSTRAINED FOOTING SIZE BASED ON THE 3 CHOICES OF POST HEIGHT 18 I I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 O 0 0 <br /> b.USE THE LARGER OF THE UPLIFT OR CONSTRAINED FOOTING SIZE 19 I I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 O O 0 <br /> c.CONSTRAINED FOOTINGS MUST USE DETAIL MU108 OR MS 20 I i I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 O O O O 0 <br /> d.GO TO 9b 21 I I I I I I I I 1 1 J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 O 0 O O 0 <br /> 9. DETERMINE POSTTYPE 22 I I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 O O 0 <br /> a. IF BO7H 8a AND 8b ARE TRUE THEN USE POSTSHOWN IN TABLE UNDER"MIN POSTTYPE" 23 I I I I I I I I J J J K K K K L L L M1 MS M1 M1 M1 M1 N1 NS N1 N1 N1 0 0 0 0 0 <br /> CRO55 REFERENCE LETTER CODE W/TABLE 4.2 24 I I I I I I I I 1 J J K K K K L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 O O 0 O O <br /> IF THIS POST'S MAX HEIGHT IS TOO SHORT,UPGRADE THE POST. 25 I I I I I I I J J 1 J K K K L L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 0 O O O O <br /> 26 I I I I I I I J J J K K K K L L L L M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 O O 0 0 0 <br /> b. IF EITHER 8a OR 8b ARE NOT TRUE THEN: 27 I I I I I I I J J J K K K K L L L M1 M1 MS M1 M1 M1 M1 N1 N1 N1 N1 N1 0 0 O O n/a <br /> DETERMINE POST TYPE FROM CROSS REFERENCING THE UPLIFT FOOTING AND 28 I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 Ml N1 N1 N1 N1 N1 0 0 O O n/a <br /> CONSTRAINED FOOTING ON TABLE 43 29 I I I I I I I J J J K K K K L L L M1 M1 M1 M1 M1 M1 Ml N1 N1 N1 N1 N1 O O O O <br /> example#1: A 40"UPLIFT FOOTING AND A 20"CONSTRAINED FOOTING 30 I I I i I I J 1 1 1 K K K K L L L M1 M1 M1 M1 MS M1 M1 N1 N1 N1 N1 N1 0 0 O O <br /> ARE REQUIRED. POSTTYPE"J"IS REQUIRED. TABLE4.2SHOWS POSTTYPE 31 I I I I I I J 1 J J K K K K L L L M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 O O O O <br /> "J"TO BE A 0.120"X3"X3"ALUM POST WITH A MAX HEIGHT OF 10'. 32 I i I I I I J J J J K K K K L L L M1 M1 M1 M1 M1 M1 M2 N1 N1 Nl N1 N1 O 0 O O <br /> example#2: A 20"UPLIFT FOOTING AND A 40"CONSTRAINED FOOTING 33 I I I I I I J J J K K K K L L L L M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 0 O O <br /> ARE REQUIRED. POSTTYPE"N1"IS REQUIRED. TABLE4.25HOW5 POSTTYPE 34 I I I I I J J J J K K K K L L L M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 O O O O <br /> "N1"TO BE A 3/16"XS"XS"STEEL POST WITH A MAX HEIGHT OF 15'. 35 I I I I I J J J J K K K K L L L M1 M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 N1 O O O O <br /> 10. IF STRUCTURE IS ATTACHED FIND THE 0/C SPACING OR#OF FASTENERS FOR ATTACHING TO 36 I I I I J J J J 1 K K K K L L L M1 M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 N1 0 0 O O <br /> WALL FROM TABLE 7.5 OR TABLE 7.7 37 I I I I 1 J 1 1 K K K K L L L L M1 M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 N2 0 0 O O <br /> 11. USE THE APPROPRIATE DETAILS(MU01 TO MU120) 38 I I I J J J J J K K K K L L L M1 M1 M1 M1 M1 M1 M1 M1 N1 N1 N1 N1 N1 N2 O 0 0 O <br /> 39 I I I J J 1 J J K K K K L L L M1 M1 M1 M1 M1 M1 M1 Ml N1 N1 N1 N1 N1 N2 O 0 0 O <br /> FOR PATIO SLABS FOLLOW 1-7 FROM ABOVE THEN 40 I I J J 1 1 J K K K K K L L L M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 N2 O O 0 O <br /> SLAB 7. USE THE SMALLER OF THE POST SPACING ON SLAB OR HEADER POST SPACING 41 I 1 1 1 1 1 J K K K K L L L L M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 O 0 O O <br /> SLAB S. BOTH 8a AND 8b MUST BE TRUE 42 J J 1 J J 1 K K K K K L L L MS M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 0 O O 0 <br /> SLAB 9. FOLLOW 9a FROM ABOVE 43 J J J 1 1 J K K K K L L L L M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 NS N1 N1 N1 O 0 0 O O <br /> SLAB 10. FOLLOW 10 AND 11 FROM ABOVE 44 1 J J 1 J K K K K K L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 0 O O O <br /> SLAB 11. FOR TWO POST STRUCTURES USE TABLE 7.3 0N SHEET Mist3 FOR SLAB REQUIREMENTS 45 J J J J K K K K K K L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 0 0 O O <br /> INSTEAD OF SECTION 5.0 46 J J J J K K K K K L L L M1 M1 M1 M1 M1 Ml M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 0 O O O O <br /> 47 J J J K K K K K L L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 N1 0 0 0 0 O <br /> 48 J K K K K K K K L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 N1 0 0 O 0 O <br /> 49 K K K K K K K L L L M1 M1 M1 •M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 N2 0 O 0 0 n/a <br /> 50 K K K K K K L L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 N1 N1 N1 N1 N1 N2 O O 0 0 n/a <br /> 51 K K K K K L L L L M1 M1 M1 M1 M1 M1 Ml M1 M1 M1 M1 M2 M2 N1 N1 N1 N1 N1 N2 O O O O <br /> 52 K K K L L L L M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M1 M2 M2 N1 N1 N1 N1 N1 N2 O O 0 O <br /> Four Seasons ICC ESR 1953(2015 IBC) 1/26/2017 Page 44 of 98 ^�,� , <br /> / � � / <br />
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