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Report i -O cc) Zo 71I7 sv✓ i3eVE_L4 -/'.J 2oc* av c" 13 Fire Marshal's Division Offices TI/ LJV North 14480 SW Jenkins Rd., Beaverton, OR 97005, (503) 356-4700 Tualatin Valley South - 7401 SW Wash Ct., Tualatin, OR 97062, (503) 612 -7010 Fire & Rescue Fire Flow and Hydrant Worksheet This worksheet is required to be submitted to and approved by the Authority Having Jurisdiction (AHJ) before any permits for new building construction, building expansion or fire hydrants will be issued by any building department within the TVF &R District. See the instructions for assistance completing this form or call one of the above numbers. Preparer Information Preparer Name: (Thomas Kriz Phone: (503- 244 -0552 j Fax:1503- 244 -0417 1 Architect / Engineer of Record: (Mildren Design Group, P.C. ( Phone: (503 -244 -0552 Fax:1503- 244 -0417 I General Building Information Project Name: (7155 Beveland Buildings I Project Address: 17115 Beveland Street City:(Tigard I County:( Washington I Zip:197223 Construction Type(s): (Type V Non -rated I Total Bldg Area: I 6,077Isgft Total Fire Area: I 6,270(sgft Bldg Fire Flow: I 2138(Gallons Per Minute Describe Fire Area: (if more than one fire area, include an 8 1/2 x 11 or 11 x 17 drawing indicating the various fire areas) General office use. Fire flow was tested July 10, 2001, 6985 S.W. Beveland St., flow at 20 psi was 3823.44, static presure 87, residual prersure 65, see attached test report from Tualatin Valley Water District. Type of Occupancy or Use of Building: (B A. Single Occupancy Hazard (If using Item A, DO NOT use Item B) Al Building Fire Flow I 2138IGPM A2 Occupancy Factor I 11 A3 Required Fire Flow I 2138IGPM se= ithe ' temp '•tAbove r' Item B Beiow But Not ' : o h - 4 B. Multiple Occupancy Hazard (If using Item B, DO NOT use Item A) B1 Determine percent of each occupancy hazard in the fire area. r , >•+ iV- s . " B e y ° u< a a l ., e rea "� e 3a Cic�upancy Gass .. , r ; ire �� ot ,��<� ' ; Percetbf Area Light Hazard 0 SF WM . ,M 6,270 SF =003 0 Ordinary Hazard Grp 1 0 SF 6 SF WOW 0 Ordinary Hazard Grp 2 0 SF Via 6,270 SF *4001 0 % Extra Hazard Grp 1 0 SF tla 6,270 SF 141061 0 % Extra Hazard Grp 2 0 SF VIA 6,270 SF 00' •- 0 % Total Must equal 100% I 0 % I B2 Calculate Fire Flow te r. ,, • . upancy , , `Factor' F , Fa r e Are i �. _ low Bldg Fire l w t Light Hazard 1.0 pct 0 % 2138 GPM 0 GPM Ordinary Hazard Grp 1 1.2 *1. 0 % 2138 GPM to 0 GPM Ordinary Hazard Grp 2 1.3 0 % WV 2138 GPM 0 GPM Extra Hazard Grp 1 1.4 t 0 % 2138 GPM 0 GPM Extra Hazard Grp 2 1.5 Iiii 0 % 7 2138 GPM 0 GPM B3 Required Fire Flow I 0 GPM I C. Calculate the Minimum Number of Fire Hydrants Required Required Fire Flow 2138 GPM / 1500 = I 2 I No. of Hydrants Required (Min. of 2) D. Reduction of Fire Flow - Reductions are based on the following: D1 - Reduced by 25% for A Full Fire Alarm (multiply by .75) D2 - Reduced by 50% for Automatic Sprinklers (multiply by .50) D3 - Reduced by 75% for Central Station Supervised Automatic Sprinklers (multiply by .25) E. Required Fire Flow in Non - sprinklered or Sprinklered Buildings . El. Fire Flow 2138 GPM X I 0.75 I = I 1603.5 GPM (Max. 3000 - Min. 1500 gpm) I F. Available Fire Flow to the Building Test Results: I 3,823 I GPM Manually enter available fire flow here. Please attach documentation of the flow test that was made. It shall include date, time, location of static /residual and flow hydrants, and the tester's name, phone number and address. LQJ 00 Z I . .t I TUALATIN VALLEY WATER DISTRICT Z5 I' t 4* 3 L FIRE HYDRANT FLOW TEST REPORT Location: f .g.,5 ! .S (.(J 7i) "9t /&' Date: 7// DA/ Test Made By: (Company & Individual) �lo`l-//6 7;/r./() Witness: Time: // A-7-4 Purpose of Test: /9/9-c., 6r CA, 1- i s - /;/4;1) 6(.z... #1 #2 #3 #4 Total Flow Hydrant Ports GPM C = Hydrant Coefficient D = Inside Dia. Of Outlet, in. P = Pitot Reading YU Q =GPM 0,��' Flow equation: Q = 29.83 C D (P)' ; Use C = 0.9 for hydrant pitot flow gauge See Hydrant Monster data for flow equation. Flow tubes Used? Yes No x Hose Monster Used? Yes X No No. of ports flowed at a time: / - y/ ,. Static Pressure S 7 psi Residual Pressure psi Flow at 20 psi Residual Pressure (Calculated) i 7- 23 1 /a /o/ qpm Remarks Location Map: Show on map which hydrants were flowed and which were used to monitor residual pressure. Label ports #1, #2, etc. Notes: or ,,, jt , j The mapping, flow, or pressure information contained herein reflects conditions on the date and time of the test. Tualatin Valley Water District makes no representations as to the system's ability to meet specific fire flow requirements. Future system capability may differ from the flows reported herein because of subsequent modifications to the District's system and /or because flow and pressure may vary by time of day and season. _ ^ . ` , • ` „” \ \ �_~�~ . � , ' . . . ' . ^ ' ......, / / .; r~� ' ^ o, . - .' , • ' " ' C LI- ' ;iv. � /" )- " " / I° � \\1 r . _* ------- / | #5673 �� �- \ /L- / � � / LJL_ V �-[- < 12 * CV a'Gv ��______~~ r • ' 9 a _ _ _ _ ;. ^/ #6025 .2 _ � ': • »� -- -- ` --- -- -- -- -- --- __ __ ___ � �- ~ � ' WAT[no a ' :( I I C. • � k~ NN �- ` �� 1 a '. cm,. • ` v / ---��� � [~^ | , ' F - - CO � /-� _._ / \ � \ � � f�\ � 8 +� / - � []} . � NJ _ '� ._ #6152 ^ ------~~~ ^^� 'A --- --- -_. __ --- __ ' ` �� , . 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