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LA216473-APPROVED - Thakur Engineering Letter flat
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Calvert Date: 2023.08.10 11:51:03 -06'00' Concept Approval ONLYSubject to Field Inspection Inspector Date 2020 MN Bldg Code 08/11/2023dpfannenstein Please provide a City Approved Plan and Permit Card on site accessible for Inspectors until final inspection BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB 'RPXV6WUXFWXUDO(QJLQHHULQJ//& 32%R[ %URRPILHOG&2 SURMHFWV#GRPXVVWUXFFRP 50.0 psf (ASCE7 - Eq 7-1) 1 (ASCE7 - Table 7-2) 1 (ASCE7 - Table 7-3) 1 35.0 psf (ASCE7 - Eq 7-2) 1 35.0 psf 3.62 psf 3.0 psf 2.00 ft 6.08 ft 12.17 sft 37 lb 4.00 2.00 0.73 0.00 (Ceiling Not Vaulted) 0.27 7.0 psf 8.4 psf *UDYLW\/RDGLQJ PV System Weight Weight of PV System (Per Blue Raven Solar) X Standoff Spacing = Y Standoff Spacing = Note: PV standoffs are staggered to ensure proper distribution of loading 2x4 Top Chords @ 24"o.c. I = Importance Factor = Cs = Slope Factor = Standoff Tributary Area = ps = Cspf ps = Sloped Roof Snow Load = pf = Flat Roof Snow Load = DL Adjusted to 34 Degree Slope Roof Snow Load Calculations pg = Ground Snow Load = Ce = Exposure Factor = pf = 0.7 CeCtI pg Ct = Thermal Factor = Roof Live Load = 20 psf Roof Plywood Roof Dead Load (MP1) Composition Shingle Note: Roof live load is removed in area's covered by PV array. DL Adjusted to 34 Degree Slope Point Loads of Standoffs Miscellaneous Vaulted Ceiling Total Roof DL (MP1) PV Dead Load = 3 psf (Per Blue Raven Solar) 7KDNXU/DNHYLOOH01 BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB 'RPXV6WUXFWXUDO(QJLQHHULQJ//& 32%R[ %URRPILHOG&2 SURMHFWV#GRPXVVWUXFFRP 115 mph C Gable Roof 34 degrees 20 ft 21.3 ft 0 ft (Eq. 26.10-1) 0.90 (Table 30.3-1) 1.00 (Fig. 26.8-1) 0.85 (Table 26.6-1) 1.00 115 mph (Fig. 26.5-1A) II (Table 1.5-1) qh = 25.95 Zone 1 Zone 2 Zone 3 Positive ya =0.77 0.80 0.80 0.77 GCp = (Fig. 30.3) Uplift Pressure =SVI SVI SVI SVI (T ASD Uplift Pressure =SVI SVI SVI SVI X Standoff Spacing = 2.00 2.00 1.33 Y Standoff Spacing = 6.08 3.04166667 3.04166667 Tributary Area = 12.17 6.08 4.06 Dead Load on attachment = 37 lb 18 lb 12 lb Footing Uplift (0.6D+0.6W) = -229 lb -141 lb -139 lb Zone 1 Zone 2 Zone 3 Positive ya =0.75 0.80 0.80 0.75 GCp = (Fig. 30.3) Uplift Pressure =SVI SVI SVI SVI (T ASD Uplift Pressure (0.6W)=SVI SVI SVI SVI X Standoff Spacing = 4.00 4.00 2.67 Y Standoff Spacing = 3.50 1.75 1.75 Tributary Area = 14.00 7.00 4.67 Dead Load on attachment = 42.00 21.00 14.00 Footing Uplift (0.6D+0.6W) = -246 lb -162 lb -156 lb -246 lb 450 lb Therefore, OK Fastener =1 - 5/16" dia. lag Number of Fasteners = 1 Embedment Depth = 2.5 Pullout Capacity Per Inch = 250 lb Fastener Capacity = 625 lb w/ F.S. of 1.5 & DOL of 1.6= 667 lb Therefore, OK Fastener Capacity Check Mean Roof Height Ground Elevation Kd (Wind Directionality Factor) = 667.2 lb capacity > 246 lb demand Ke (Ground Elevation Factor) = V (Design Wind Speed) = Risk Category = Standoff Uplift Calculations-Portrait Standoff Uplift Calculations-Landscape Standoff Uplift Check Standoff Uplift Capacity = 450 lb capacity > 246 lb demand :LQG&DOFXODWLRQV Maximum Design Uplift = Design Wind Pressure Calculations qh = 0.00256 * Kz * Kzt * Kd * Ke * V^2 Kz (Exposure Coefficient) = Kzt (topographic factor) = Wind Speed Exposure Category Roof Shape Roof Slope Effective Wind Area WĞƌ^ϳͲϭϲŽŵƉŽŶĞŶƚƐĂŶĚůĂĚĚŝŶŐ Input Variables 7KDNXU/DNHYLOOH01 BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB 'RPXV6WUXFWXUDO(QJLQHHULQJ//& 32%R[ %URRPILHOG&2 SURMHFWV#GRPXVVWUXFFRP 03PASS Dead Load 8.4 psf PV Load 3.6 psf Snow Load 35.0 psf Governing Load Combo = DL + SL Total Load 47.1 psf Fb (psi) = f'b x Cd x Cf x Cr (NDS Table 4.3.1) 900 x 1.15 x 1.5 x 1.15 Allowed Bending Stress = 1785.3 psi (wL^2) / 8 = 423.5596 ft# = 5082.715 in# Actual Bending Stress = (Maximum Moment) / S = 1659.7 psi L/180 (E = 1600000 psi Per NDS) = 0.4 in Deflection Criteria Based on = (w*L^4) / (185*E*I) = = L/542 > L/180 Therefore OK Allowed Deflection (Live Load) =L/240 0.3 in (w*L^4) / (185*E*I) L/728 > L/240 Therefore OK Member Area = Fv (psi) = 180 psi (NDS Table 4A) Allowed Shear = Fv * A = Max Shear (V) = w * L / 2 = 282 lb )UDPLQJ&KHFN 5.3 in^2 Check Shear w = 94 plf 2x4 Top Chords @ 24"o.c. Member Span = 6' - 0" 945 lb Allowed > Actual -- 29.9% Stressed -- Therefore, OK DF#2 Member Spacing @ 24"o.c. Maximum Moment = Check Deflection I (in^4) 5.36 Lumber Sp/Gr Actual Deflection (Live Load) = Allowed Deflection (Total Load) = Actual Deflection (Total Load) = Allowed > Actual -- 93% Stressed -- Therefore, OK Member Properties Member Size 2x4 S (in^3) 3.06 0.099 in Continuous Span 0.133 in Check Bending Stress (True Dimensions) 7KDNXU/DNHYLOOH01 BBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBBB 'RPXV6WUXFWXUDO(QJLQHHULQJ//& 32%R[ %URRPILHOG&2 SURMHFWV#GRPXVVWUXFFRP $SSHQGL[$*HQHUDO1RWHV *(1(5$/ Ɣ 7KHFRQWUDFWRUVKDOOYHULI\DOOGLPHQVLRQVSURSHUW\VHWEDFNV$+-+2$&& 5 VHOHYDWLRQVDQGVLWHFRQGLWLRQVEHIRUH VWDUWLQJZRUNDQGVKDOOQRWLI\'RPXV6WUXFWXUDO(QJLQHHULQJ//&RIDQ\GLVFUHSDQFLHV Ɣ $OOUHSRUWFRQFOXVLRQVUHSUHVHQW'RPXV6WUXFWXUDO(QJLQHHULQJ//& VEHVWSURIHVVLRQDOMXGJPHQWEDVHGXSRQLQGXVWU\ VWDQGDUGV Ɣ 5HVROYHDQ\FRQIOLFWVRQWKHGUDZLQJVZLWK'RPXV6WUXFWXUDO(QJLQHHULQJ//&EHIRUHSURFHHGLQJZLWKFRQVWUXFWLRQ Ɣ 7KHGHVLJQFULWHULDXVHGIRUWKLVSURMHFW OLVWHGRQWKHILUVWSDJHRIWKHUHSRUWLVEDVHGRQWKHHQJLQHHUVEHVWMXGJHPHQW DQGRUSURYLGHGE\WKH$7&FRXQFLO$+-VSHFLILFUHTXHVWVPD\GLIIHU3OHDVHFRQWDFWRXUWHDPLIWKHGHVLJQFULWHULDQHHGVWR EHPRGLILHG Ɣ $VLWHYLVLWZDVQRWSK\VLFDOO\FRQGXFWHGE\'RPXV6WUXFWXUDO(QJLQHHULQJ//&7KHDFFRPSDQ\LQJFDOFXODWLRQVDQG FHUWLILFDWLRQDUHSURYLGHGZLWKWKHXQGHUVWDQGLQJWKDWWKHVLWHEXLOGLQJDQGFRQVWUXFWLRQVWDQGDUGVPHHWDQDFFHSWDEOHOHYHORI LQGXVWU\VWDQGDUGV,WVKDOOEHWKHFRQWUDFWRUVUHVSRQVLELOLW\WRLGHQWLI\DQ\LUUHJXODULWLHVVXFKDVLQFRQVLVWHQWIUDPLQJ FRQGLWLRQVZDWHUGDPDJHILUHGDPDJHFUDFNHGVSOLWRUQRWLFHDEO\GHIOHFWLQJIUDPLQJPHPEHUV Ɣ 'RPXV6WUXFWXUDO(QJLQHHULQJ//&LVQRWUHVSRQVLEOHIRUHQIRUFLQJVDIHW\PHDVXUHVRUUHJXODWLRQV7KHFRQWUDFWRUVKDOO GHVLJQFRQVWUXFWDQGPDLQWDLQDOOVDIHW\GHYLFHVLQFOXGLQJVKRULQJDQGEUDFLQJDQGVKDOOEHVROHO\UHVSRQVLEOHIRU FRQIRUPLQJWRDOOORFDOVWDWHDQGIHGHUDOVDIHW\DQGKHDOWKVWDQGDUGVODZVDQGUHJXODWLRQV7KHFRQWUDFWRUVKDOOWDNH QHFHVVDU\SUHFDXWLRQVWRPDLQWDLQDQGLQVXUHWKHLQWHJULW\RIWKHVWUXFWXUHGXULQJFRQVWUXFWLRQ,IDODZVXLWLVILOHGE\RQHRI WKHFRQWUDFWRU VRUVXEFRQWUDFWRU VHPSOR\HHVRUDQ\RQHHOVHWKHFRQWUDFWRUZLOOLQGHPQLI\GHIHQGDQGKROGWKHRZQHUDQG 'RPXV6WUXFWXUDO(QJLQHHULQJ//&KDUPOHVVRIDQ\DQGDOOVXFKFODLPV Ɣ $Q\DQGDOOZDWHUSURRILQJVKDOOEHSURYLGHGE\WKHFRQWUDFWRU'RPXV6WUXFWXUDO(QJLQHHULQJ//&LVQRWUHVSRQVLEOHIRU ZDWHUSURRILQJ Ɣ $OOKDUGZDUHVKDOOEHLQVWDOOHGSHUPDQXIDFWXUHUVSHFLILFDWLRQVDQGZLWKLQVSHFLILHGGHVLJQOLPLWDWLRQV'RPXV6WUXFWXUDO (QJLQHHULQJ//&DVVXPHVQRUHVSRQVLELOLW\IRULQFRUUHFWO\LQVWDOOHGKDUGZDUHRUKDUGZDUHLQVWDOOHGRXWVLGHRIWKH PDQIDFWXUHUVSHFLILFDWLRQV 86(55(/,$1&( Ɣ 'RPXV6WUXFWXUDO(QJLQHHULQJ//&ZDVHQJDJHGE\%OXH5DYHQ6RODU&OLHQWWRSHUIRUPWKLVDVVHVVPHQW7KLVUHSRUWDQG WKHLQIRUPDWLRQWKHUHLQDUHIRUWKHH[FOXVLYHXVHRIWKH&OLHQW7KLVUHSRUWKDVQRRWKHUSXUSRVHDQGVKDOOQRWEHUHOLHGXSRQ RUXVHGE\DQ\RWKHUSHUVRQRUHQWLW\ZLWKRXWWKHZULWWHQFRQVHQWRI'RXV6WUXFWXUDO(QJLQHHULQJ//&7KLUGSDUWLHVWKDW REWDLQWKLVUHSRUWRUWKHLQIRUPDWLRQZLWKLQVKDOOKDYHQRULJKWVRIUHFRXUVHRUUHFRYHU\DJDLQVW'RPXV6WUXFWXUDO (QJLQHHULQJ//&LW¶VRIILFHUVRUHPSOR\HHV 522)02817('$55$<6 Ɣ ,IDQDQDO\VLVRIDVXSSRUWLQJVWXFWXUHLVLQFOXGHGLQRXUVFRSHRIZRUNWKHVWUXFWXUDODVVHVVPHQWRQO\DSSOLHVWRWKHVHFWLRQ RIWKHURRIWKDWLVGLUHFWO\VXSSRUWLQJWKHSURSRVHGVRODU39V\VWHP Ɣ 1RVWUXFWXUDOPHPEHUVFDQEHFXWIRUFRQGXLWHWFXQOHVVVSHFLILFDOO\VKRZQ2EWDLQSULRUZULWWHQDSSURYDOIRULQVWDOODWLRQRI DQ\DGGLWLRQDOFRQGXLWHWF Ɣ ,WLVDVVXPHGWKDWDVWDQGDUGTXDOLW\RIFRQVWUXFWLRQFDUHZDVXVHGWRFRQVWUXFWWKHRULJLQDOEXLOGLQJ,WVKDOOEHWKH FRQWUDFWRUVUHVSRQVLELOLW\WRILHOGYHULI\DQ\DQGDOOIUDPLQJPHPEHUVXSSRUWLQJWKHSURSRVHG39DUUD\DUHLQDGHTXDWH FRQGLWLRQ7KHFRQWUDFWRUVKDOOILHOGLQVSHFWIRUVXEVWDQGDUGFRQVWUXFWLRQPHDQVVLJQVRIGU\URWPROGILUHGDPDJHHWFDQG QRWLI\HQJLQHHULIDQ\FRPSURPLVHGPDWHULDOLVIRXQGRQVLWHSULRUWRVWDUWLQJFRQVWUXFWLRQ Ɣ ,WLVDVVXPHGWKDWWKHUHKDYHEHHQQRDGGLWLRQDOORDGV+9$&RU0(3HTXLSPHQWDGGLWLRQDOOD\HUVRIURRILQJHWFDGGHGWR WKHEXLOGLQJRYHUWKHFRXUVHRIWKHVWUXFWXUHVKLVWUR\7KHFRQWUDFWRUDQGRUFOLHQWVKDOOYHULI\WKLVZLWKWKHSURSHUW\RZQHUDQG QRWLI\'RPXV6WUXFWXUDO(QJLQHHULQJ//&LIDGGLWLRQDOORDGKDVEHHQDGGHGWRWKHVWUXFWXUHDOUHDG\ Ɣ )OH[LEOHXWLOLW\FRQQHFWLRQVPXVWEHXVHGDWDQ\EXLOGLQJVHLVPLFMRLQW Ɣ &DUHVKRXOGEHWDNHQWRHQVXUHWKDW39DUUD\VGRQRWSUHFOXGHGUDLQDJHRIUDLQZDWHU Ɣ 8QOHVVRWKHUZLVHQRWHGFRQVWUXFWLRQPDWHULDOVKDOOEHHYHQO\GLVWULEXWHGLISODFHGRQIUDPHGIORRUVRUURRIV/RDGVVKDOOQRW H[FHHGWKHDOORZDEOHORDGLQJIRUWKHVXSSRUWLQJPHPEHUVDQGWKHLUFRQQHFWLRQV Ɣ $OOODJVRUZRRGVFUHZVDWWKHURRIVKDOOEHVWDLQOHVVVWHHODQGLQVWDOOHGZLWKLQJWKHPLGGOHRIWKHGLPHQVLRQDOZLGWKRIWKH IUDPLQJPHPEHUV Ɣ $OOIDVWHQHUVVKDOOEHDPLQLPXPRIDZD\IURPDQ\WUXVVSDQHORUKLQJHMRLQWVWUXVVSODWHVDQGRUPHPEHUHQGV)LHOG YHULI\ORFDWLRQRIIDVWHQHUVSULRUWRVWDUWLQJFRQVWUXFWLRQ$OOIDVWHQHUVVKDOOEHSUHGULOOHGWRDYRLGVSOLWWLQJH[LVWLQJOXPEHU Ɣ 'RPXV6WUXFWXUDO(QJLQHHULQJ//&LVQRWUHVSRQVLEOHIRUGRZQVORSHHIIHFWVRIVQRZVKHGGLQJRUVOLGLQJRIIRIWKH39DUUD\ QRUDQ\GDPDJHWRGRZQVORSHGHFNVURRIVZDONZD\VODQGVFDSLQJDXWRPRELOHVSHWVSHRSOHHWF,IVQRZJXDUGVDUH UHTXHVWHGE\WKHFXVWRPHUQRWLI\'RPXV6WUXFWXUDO(QJLQHHULQJ//& 7KDNXU/DNHYLOOH01