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4330 20TH ST (34)
i _ , ;�,`; - �-,� ; � .. ,��P�������S ����� D��A�'�T���I�� • - ti°g��~�f��s� ` � ' - Zephyrhills Florida 34248 � 700 6th Avenue (813) 782-8184 � January 30, 1989 FI�',�p�y� Robert F. Green, Project Engineer �I Fire Chief Proposed Zephyrhills Bottled Water Company � William T. Fenton %,� � �1f.�� Show electrically operated smoke detectors for all halls/corridors Assistant Chief lf and storage areas in entire West Office Areas. �, Robert Hartwig � 2. Show location of Fire Extinguishers for area mentioned above, plus manufacturing area. See NFPA ��10. � 3. Question, If J1 and K1 lights are battery operated emergency lights, 1 will J1 and K1 give the necessary candle power lighting at all walk � areas to exits(halls/corridors)? � 4. Show Fire Alarm System and pull boxes at each designated exit from structure. Fire Alarm System shall consist of spr.inkler system, smoke detectors, and pull boxes - show how system is supervised and how alarm is transmitted to Fire Department. (Private company is � acceptable.) See NFPA 101 28-1.7, 28-3.4.1, and 7-6. � 5. All four doors from West Office Areas to manufacturing area shall be a Class B 45 minute fire-rated door and assembly with door closures. 6. Designated exit door on South side shows an overhead door, this is not , acceptable. Exit on South side shall be a side-hinged door that swings to the outside. 7. Sprinkler system shall conform fully with NFPA 13 and SBC 901.8. All areas and rooms within the structure shall have proper spacing of sprinkler heads. , �I 8. Submit floor plans showing all locations of sprinkler heads and types '�I in all enclosed areas inside structure (Office Area, Supezvisor's , 2nd Floor location, etc.) , �� 9. Sprinkler heads in enclosed office areas other than Ordinary Group III to be classified as Light Hazard shall be 165°F heads, and spaced no � � ! more than every 200 sq. ft. i � I ; � ,I 10. i Show Branch Line from S.W, system to N.W. section. ; I i i i11. 1 A11 control valves shall have tamper switches and be tied intolFire ; ,Annunciator Panel, and indicate trouble if closed. ; i ' � . , I i 12. �IrAl1 12" Fire Hose racks shall have 12"NST hose. I � ', � Note - see attached Codes and Standards. I suggest that all concerned meet at the City Council Chambers to address eac of the above-mentioned items. � ` I �% �/�---��- I G W. T. Fenton, Fire Chief , . . ;,� �� - ` I = �� ,/���� ��'/ , _ :�_ . ' '+ .` � � ,,;; ,�LL } - INDU'�TRIAL OCCUPAiVC1ES 913 _.. . �. . •ial occupancy classifica- - explosion suppression or venting to ensure the life safety of a building's �duce exit requarements. occupants. Full utilization of fire protection en�uineering techniques ; resulting in a smaller - should be employed in such occupancies to minimize the potencial risk to as justification to reduce - life safety. �nts of exits required for � �� The industrial occupancy most obviously requiring classificacion as a <, ;,: itained. A reduction in high hazard occupancy is one associaced wich the production of explosives cs of the means of egress _ or highly reactive chemicals. In some esnecially hazardous operacions :ion of a building as a - extra esits will be necessary to ensure rapid occupant egress fo prevent _ loss of life should an explosion or fire occur. Where installacion of che `. r:: prevencive or procective measures specified in 28-3.2 is noc possible, due :o cludes those buildings having -_ the nature of che industrial operacion, consideracion should be given �o �gh hazard operations in low or `� operating procedures which restrict access to a limited number�oi people �ection 4-2 and 28-3.2 shall not � �;� during the hazardous portion of�he operacion.The procedure�vould limit _ life safecy esposure to those [rained personnel fully aware of che esten� oi ��; the hazard. Procedures should also include a record of the personnel who '� •cupancies where gasoline and = « ' have signed in or out to ensure prompt decermination of che number of d under such conditions as to -- personnel exposed co a hazardous operation and thus che number who may un dust, wood flour or plastic - require rescue. dusts may be produced; where _ � ed,or handled;where cotton or - 28-1.5 Classification of hazard of contents shall be as defined in Section 4-2. - conditions such as to produce _� ��: � . 28-1.6 Minimum Construction Standards. No occupancy requireinenc. Storage Occupancies, include i-; � ; ?� 28-1.7'� Occupant Load. The occupant load of induscrial occupancies for determi- nacion of ineans oE egress shall be one person per 100 sq Et (93 sq m) of gross floor mited to chosei industrial - area. � i � ;::.- I :tions. Incidental use of �. � Exceptrnn: In a .rpecral purpote induttrial accupancy, the occu�ant load shall be the .ilding does not constitute � ��y � maximum number of per.tont to ocarpy the area ttnder any probable conduiont. ' :fe safety precautions may � ' �:'`_ , ?�• �= :er to Chapter 5 of NFPA - A-28-1.7 In mosc cases the requirements for maximum travel distance to exits will be or guidance. Storage of .`-- che determming factor rather than numbers of occupants, as exits provided to sacisfy .ners would not require a � �`{ travel distance requirements will be sufficient to provide esit capacity for all occupants, �peration inclu'ded mixing , - excepc cases of unusual arrangement of buildings or high occupant load of a general �f containers. Ylising and ; Y �;_�; manufactuung occupancy. I d in a separate room with � � ' eas. In such an operation, ' The occupant load of an industrial building is based on a I average of ; i h a z a r d o c cu panc y while - 1 0 0 s q f t (9.3 s q m) o f g r o s s floor area per occunanc. v lanv in dusiria l be considered a general i users of the Code confuse this concept with che actual �number of ! cage occupancy subject to �:'�' employees. The usual complainc is cha[ the number of pocencial employees decermined for exic purposes by the 100-sq fr (9.3-sq m) cricerion iar or manufacturing process ; - � exceeds the anticipaced or acrual number of employees. Manv industrial d require a high hazard � _- mana�ers argue chac using the larger number as a basis for� esic design in industrial occupancies I requires more exits, wider doors, and more passageways than are neaded dusts. Every opportunity� - for exic purposes, all ac a penalty to productive work space and resulting �es working in operations ;'���' in increasing coscs. N� I of life should a dust , loss ,� .`-.- The concepc of decermining occupanc load is actuallv not relaced to che .f � } Y �. i tlal - .ch an explosion pocen ,, I :. .�s number ot anticipa�ed or actual emplovees, but is a means ot calculating :ation of techniques for i '= '�`'- the minimum exit requiremencs based on che needs oi i an average ��:: � , � i , i I •� ..,'`;: � I I � � i ' 1 ��' -�'��� � ��. .�. � - '. � , � •� ' � t� , � • ��` "` `~'-`�..,<s''*-,.,.� , . '� � � ` . � � ,, �, . ; y . i ; TABLE 901.7.4 � _ i HAZARDOUS PR=3DUCTi4N MATEftlAl.FAGIIlTIES _ i SFECIAL FIR� HAZARD AAEA REQUIREMENTS , _ � _ � Location NFiPA Hazard Graup _ � = ! Ordinary Hazard Group 3 � _ ; Fabrication Areas : � � _ ; HPM Service Corridors Ordinary Hazard Group 3• _ ! NPM 5eparate Inside Ordinary Hazard Graup 3 _ � S#orage Rooms Withaut = � Dispensing � � � I� NPM Separate lnside Extra Hazard Group 2 ; _ 1 Storage Rooms with _ � � , Dispensing _ IExit Ae,cess Corridors Ordinary Hazard Group 3 _ f � g01.8 Supervisary Fac3lities 901.8.i Where an automatic sprinkler system is provided either as a ; 1 ; requirement or as an alternate to another requirement of this Code, the �' ' system sha l l be a dequa tely su pervised to assure reliable operation. i � 901.8.2 The extinguishing system shall be electrically cannected, either directly or through a central statian facility or ather approved equal, to the fire department legally cammitteti to serve the area in whicki the building is lacated. System actuation shall initiate alarm sequence. i i 901.8.3 Where a system may be disabled by closing of valves; interruption i of power, etc., adequate supervision shall be provided to sound at least a � ' local trouble alarm when the system is deactivated and a traubie signal to _ . j ' _ the central station facility. In HPM Faciiities, as defined in 511, all valves = f ` shail be provided with supervisary tamper switches with the trouble signal = ` to ga to the emergency control station. � _ ! I 9Q1.8,4 Where building fire alarm facilities are provided, actuation of the ; � � extinguishing system shall cause the building alarm to saund. i � 901.8,5 See NFiPA 71,NFiPA�2L1 and NFiPA 1221. ( ` �� 902 STANDPlPES � .� : 902.i Requirements Unless otherwise pravided herein,standpipes,standpipe systezns,hose, water ' suppiy, pumps, connections, etc., shall be constructed and in;stalled to meet � i , NFiPA 14. j ( � � 902.2 Approvai • The cocnplete layout of the standpipe and hose system shall be submitted ; � • to the Buiiding Official before installation. � � I Standard Building Code/1988 � j4� , � ( � � ; � � � ; i � i � � � � � � � ; , , , 4E � i . � ) ' — - , i i 1,_ " r , . � �t � . ' ♦ } � � • � � � � la•34 = � ~ , S1"ANI3ARD FOR TtiE IiVSTALLATIQN OF SPRI�vKLER SYSTEhSS+ , ' Tabte 3-3fi.6.3(b} Ratings of Sprinklers in Sgeczfied Locations Ordinary Intermediate F�igh Location , Degree Rating Degree Rating Degree Rating Skylights — Glass or plastic — Attics Ventilated l;nvemilaced — Peaked Roof: �tetal or thin boards; concealed or not con- Ventilaced Lnven[ilated — cealed,insulaced or uninsuiated Fiat Roof: :vlecat, not concealed; Ventilated or un- Note:For uninsulated raof,climate and occupancy may — insulated or uninsuiated vemilated require Intermediate sprinklers.Check on job. Ftat Roof: Metat; concealedc — insutated or uninsulated Ventilated linventilated Shaw Windows Ventilated L'nvenUlated — Note:A check of job condition by means of thermameters may be necessary (a) Sprinklers near unit heacers. Where steam pressure (a} For equipments noc over 300 sprinklers, not t'ess is not more than 15 psi (1 bar), sprinklers in the heater than 6 sprinkIers E zone shalI be high and sprinklers in the danger aone in- (b) For equipments 300 to 1,004 sprinklers> not less termediate temperature classification. than 12 sprinklers (b) Sprinklers lpcated�within 12 in. (3d5 mm) to one (c) For ec}uipmencs above 1,000 sprinklers, not less side or 30 in. (762 mm} above an uncovered steam main, than 24 sprinkiers � heating coil, or radiator shall be intermediate tempera- (�} Stock of spare sprinklers shall include aII types and ture cIassification. (c} Sprinklers within ;7 ft (2.1 m) of a low pressure raCings installed. blowoff valve that discharges free in a large roam shall be 3-16.8�` Guards and Shields. Sprinkiers that are so high temperature classifcation. locaced as to be subject to mechanical injury(in eitherthe (d} Sprinkiers under glass or plastic skylights exposed upright or the pendent position) shall be protected vrith ta the direct rays of the sun shall be intermediate temper- � listed gvards. ature classification. � {e) Sprinklers in an unventilated concealed space 3-16.9 Painting and Ornamental Finishes. ' under an uninsulated roof, or in an unventilated attic, 3-16.9.1* When the sprinkler piping is given any k'rnd shall kae of intermediate cemperature cIassification. of coating, such as whitewash or painc, care shall be exer- {f) Sprinklers in unventilated show windows havin� cised to see that no automatic sprinklers are coated: hagh-powered electxic lights near the ceiling shall be in- termediate temperature classification. 3-16.92* Sprinklers shall no�be painted and any sprin- � Far s rinklers rotectin commercial-t e cookin kters tha� have been painted shall be replaced withinew {g� P p g yP � listed sprinklers of the same characteristics. equipment and ventilation syscems, temperature I classifications o£ intermediace, high, or extra high shail Exce�tian: Factory-ap�ilied coatings to s�innkler fr,'ames be provided as determined by use of a temperacure for identzfying s�rrznklers o f dzfferent terrx�erature ratings measuring device {see 9-4.18.2}. an accordance with 3-16.6.1. � � 3-16.6.4 In case af change of occupancy invaiving tem- 3-I6.9.3 Ornamental finishes shall not be appiied to perature change, the sprinklers shall be changed accord- sprinklers by anyone other than the sprinkler mariufac- ingiy. � curer and only sprinklers listed with such fmishes sh�all be - used. i 3-16.'T'� Stock af Spare�Sprinkiers. � 3-I69.I There shaill be maintained on the premises a �c�-1? Sprinkler Alarms. � supply of spare sprinkTe=s{never less than six}so that any 3-17,1 Definition. A local alarm unit is an assembiy of spnnklers that have operated or been damaged in any apparatus approved for the service and so canstructed way may be promptlq�replaced. These sprinklers shall �nd installed that any flow of wacer fram a spnnkler correspond to the typ'es and temperature ratings of the system equal to or greater chan that from a,i singIe sprinklers in the property. The sprinklers shali be kept in aucomacic sprinkler of the smaliest orifice size inscalled on a cabinet lacated wher'e the Cemperature to which they zhe systern wLil result in an audible alarm on the premises are subjected will at no time exceed 100°F (38°C). within 5 minutes after such flow begins.For remate sprin- _ t kler wacer flow aIarm cransmission see 3-17.7.L ; 3-I6.9.2 A speciai slprinicler wrench shall also be pro- ' vided and kept in the�cabinet, to be used in �he removai 3-17.2* Where Required. Local watert7aw �alarms _ and ins�ailation of sprinklers. shaii be pravided on all sprink�er systems having mare , � than 20 sprinklers. I 3-16.7.3 The stockl �af spare sprinklers shalI be as � _ follows•� � 3-17.3 Waterflow Detecting Devices. i � =:` . � ,,��.,�.;. 198T Edition E I �;'�',� :: �x ;.���. . •._..�,s,� � ----� i � --'- __ ._.__..._._ � •`�'i:- ' 1 � . , �)� i � � " j u. R" r � i � ♦ . � I s ( l M I � I 1 � >' , •r4 ' '� SYS7EM C�bIPOVE*!TS " c. ., �i ��-35 - w �:.,r-- . r - � . � 3-17.3.I Wet-Pipe Systems. The alarm apparatus for a €properly aligned and so installed as no[ to get out of ad- � wet-pipe system shall cansist of a listed alarm check valve .' �ustmenc. All piping ta these devices shall.be galvanized or other listed waterflow detecting alarm device with the or hrass or other approved corrosion-resistant material of ! j� necessary attachments required to give an alarzn, - . ' a size not less than �j in. (1.9 cm}, ; 3-17.3.2 3?ry-Pipe Systems. The alarm apparatus far a 3-17.6 Alarm Attachments — High-rise Buildings. � � d i e s stem shall cansist of listed alarm attachments When a fire must be foughc internaiiy due to the height � ry P P y of a buildin che foIlowin additional aiarm su ervision ' to the dry-pipe vaive. When a dry-pipe vaive is lacaced on g� b P i ; the system side of an alarm valve, the actuating device of must be provided: � the alarms for the dry-pipe valve may be connected to the (a) When each sprinkler system an j each flaor is I alarms on che wec-pipe system. equ�pped with a separace waterflaw device, it shall be i � connected to an alarm system in such a manner thac � = 3-17.3.3* Preaction and Deluge Systems. In addition operation of one sprinkler wiil actuate the aiarm system, j to the waterflow alarms required for systems having more and the location of the operated flow device shall be in- � � than 20 sprinklers, all deluge and preaction systems shall dicated an an annunciator andlor regiscer. The annun- I � be provided wich listed alarm attachments actuated by ciator or register shall be Iocated at grade level at the nor- , the deteetion system. mal point of fire department access, at a constantly at- � �ended building security control cencer,� or both loca- I 3-17.3.4� Waterflow alarm indicacors (paddie-type} cions. t � shall not be installed in dry-pipe, preaction, ar deluge Exce�tzon: YVhen the lacatzon mathin� the pratected '' systems. , buitdtngs where su,�ervisory ar alar�n sig als are recezved � u not under eonstant su�iervzszon by quatzfied�iersonnel j 3-17.4 Attachments — General. tn the emjiloy of the owner, a connect:on shall be j�ro- j � 3-17,4,1� An alarm unit shali indude a listed rraded to transmzt a sz�*nal to a remote oricentral statzon. i ' � mechanical alarm, horn or siren, or a listed weatherproof (b} A distinct troubie signai shall belprovided to in-� electric gong, bell, horn, or siren. dicate a candition that will impair the saeisfactory opera-� tion of the sprinkler system This shall include but not be' 3-17.4.2* Outdoor mechanical or electrically aperated limited to, monitoring controI valves, building tempera-+ heils shali ]ie of weatherproof and guarded type. tures, fire pump power supplies and running canditions,l ' and water tank levels and temperatures. Pressure supervi-� ; 3-19.4.3 On each alarm check valve used under condi- sion shall also be provided on pressure (anks. tions af variable water pressure, a retarding device shall � � be installed. Valves shaIl be provided in the connections 3-17.'7 Attachments— Electrically Operated. i � to retarding deviees, to permit repair or removal without �` � I shutting off sprinklers; these valves shalI be.so arranged 3-17.7.1 Electricaliy aperated alarm aetachments form� ing part of an auxiliary, centraI scatio�i, proprietary, or � that they may be locked or seaIed in the open position. remote stacion signaling system shalI be installed in aceor� +�, dance with the following applicable NFP�. standards. i = 3-1?.4.4 Alarm vaives, dry-pipe, preaction, and deluge i { � vaives shall be�tted with an alarm bypass test connection (�} NFPA '71,St¢ndard far the Installation, Mazntei ' � for an eleciric alarzn switch, water-motor gong, or both. nance, and Use of�'entral Stataon Sign¢lZng Systems, � This pipe connection shail be made on the wacer supplv (b) NFPA 72B, Standard for the Installation, Mainte� ; � side of the,system and pravided with a cantrol valve and nance, and Use of Auxilzary Protectzve Sagndlzng Systems�, drain for che alarm piping. A check valve shall be in- (c} NFPA 72C, Standard for the Installatzon, tYlaante,'- stalled in the pipe connecuon from the intermediace nance, and Use of Remote Statzon Protectzve Szgnaling � chamber of a dry-pipe valve. Systems, � � 3-17.4.5 �A control valve shall be installed in connection (�} NFPA 72D, Standard for the Installatzon, Maznte- with a pressnre-type contactor or water-motor-operated nance, and Use of Pro�artetarV Protectzve Szgnaling alarm deuices, and such valves shall be of the type that Systems. � will cleariy�indica[e whether they are open or closed and � be so cons'tructed that they may be locked or sealed in the 3-�fi�'�•�� The circuits of electricat alarm attachmencs open posiiion. The concroi valve for the retarding forming part of a lacal sprinkler wacerflow alarm syscelm chamber�on alarm check valves of wet-pipe systems mav need not be supervised. i be accepted as comptying with this paragraph. Exceptton: If the local s�irznkler waterflow alarm svstem , j � as�¢rt of¢requzred Zacal fire rzlarm,system, it shall be zn- E 3-17.5* Attachments — i�Iechanically tJpezateci. For stalled in accordance wzttt NFP.4 72.4, Standard for the i all types� of sprinkler systems employing water-motor- Installat2on, Mazntenance, and Zlse of Lacal Protectzve operated;,alarms, an approved 3/-in. {1.9-cm} strainer Signaltng Systems. � � shall be �insralled at che alarm ouelet af the warerflow � detectingidevice except that when a retarding chamber is 3-17.7.3 Waterflow detecting devices, inciuding the used in connectian with an alarm valve, the strainer shall associaced alarm c�rcuits, shail be tested by an actual � be located+'at the outlet of che retarding chamber unless waterflow through use of a test connecuon. (See 3-17 8 } the retarding chamber is provided with an appraved in- tegral szrainer in its autlet. Water-motor-aperated de- 3-17.7.4 Outdoor eleccric alarm devices shaII be of a ; vices shall be protected from the weather, and shail be type speci�cally listed for oucdoor use, and the outdoor �' , t987 Edition 4��"" '�+s: x �= � ' r , . • ,� - ��i';,o,• ' , � a �-_ ..v, , . . �►- . ' ,, �'•. ' , ,i � v ' • _e . _ - • . _ ,a v, _ ... '�,;. ,�3�.2..�,, ,--� 5 r=tii ; •; ,-=r, � �" GREEN ENGINEERING ��r ASSOCIATES, INC. '.. ' C�C��S�C G°� OO I� � °G�t aG��G���'L�CaL�, 806 W. Mendian Ave P 0. Box 1996 " Dade City, FL 33525 Dade City, FL 3429]_L496.. �'., . (904) 567-1958 (904'S6) 7-1959/� , �_� DATE � � � JO� NO. �� ' f , � �., ATTENTION . ' . ' - , , „ " , - � � 1 RE: � TO C�"� e � r� 1 � �1 �V; - , �o�� ��A YD� o�� • • . , .,j ` , 2�. �, r �<< 3 2 . ��� _. � � .. . ,. . , _1 _ . � .. �: ,����;; .;�;: _ , ; � -°�; ;��•�..,�; �: WE ARE SENDING YOU �,Attached ❑ Under separate cover via the following items: , _ , ::;- r' ' _ .:r:; .. , ❑ Shop drawings ❑ Prints � Pla s ❑ Samples � ❑ Specifications,�� ' "` �-; ,r_ '; � � -�� � � � �r-..;, .vQ.v�2 ;; ❑ Copy of letter ❑ Change order ❑ .T Q�� . COPIES DATE NO. 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Q� i�. ��h �C•�� VELOCITY = i.L8 14.49 @.Q�4�1 1�:.Gn� G�.�+3 ------------------------------------�---__----------------------------------------- 14.4� 17.3` � CS 84 J�7 _ ___�__���������'�_�� � " �,00 C=1�� ' 19�.v�v'� 17.92 ' G�F�= Q�.��c��'l= 17.`�� 59 2. 157 c�.��� 0.P�� ' VELOCITY = 1.27 � 14.4� P�.��c�l 1'��..�"�w7 t�.41 ' �%, ----------�---------------------------�------------------------------------------- 0.Q�A C=12¢� �.��"� 18. 33 � , � OA= �'�. c��F�T= iFi.33 % 6¢� �. 154 1T1�. k� 1�. �� �.@@ ' VELOCITY = i.28 14.4� �.�Q�L i i�.�:�4� q�.k73 ;� ------- 14.49 18.36 CS 85 bl --------------------------------------------------'---------'------�-`-----------^- 17.8`� C=1��h �. a��c'� 18.�4 G?A= 17.B�F�T= 18.+�4 5� 2. 15�i i T 14�. � 1 r�. �i� +�. Q�Q� VELDC I TY = i.57 17.8'� �.�Q�31 1�. �iG-i �.Q�4 ': -•_____•___•__________________-=_--_____-=�__--_-_-_____-_-__=_=__-_-__---_______-_'___ , ��.x-����a�#�-���*��*�*�a�*����## WI[iIIVTUr! 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' 1�.�7r�� �,m4 - '� --------------------------------------------------------- I !7.89 18.7� CS �; � �J ' � � ----__^____'----------------"-------------'----____��._.�_^____-�._-�_�__---�-_-�___ I� 21.9L C=i�0 `. ��� 18. 14 QA= �1,9;�F��1'= 16. 14 , 66 �. 154 �T1�. r�. i�. c�f� Q�.@Q� VELDCITY = i..�i ' �1.8;� Q�.@Q�4� i`. ��3 �Zi.�6 , --------------------------------------------------------------------------------- - 01.�� C=1�� 1 j,�.�C�� 18.2Q� , OR= 0.Q��F�T= 18.�� 67 2. 157 �. �� 0. �Q� VELOCITY� = i.91 �i.82 c�.0�45 19,�. �� Q�,88 ---------------------=-----------------�--------------------------�--------------- Q�.�7� C;=1�� 2. r�71�� 1�.�7 QA= Q�4��F'1"= 19.�� 68 ' 2:154 iT1�. � i.2�. �iy�1� Q+.Q� VELUCITY = 1. �� ,�1.8` �.Q��45 1�:. �ti7 �.�6 --------------------------------------�------------------------------------------- �1,g� 13. 13 CS 8S , G9 ------------------------------------------------------------------------------- � �5. �� C=i�� �:.�"��7� 18. 1� QA= �6,�@Pl'= 15. 19 70 `. 154 171 k7. � i�.0� Q�.�Q� VELOCI TY = �.31 26. 20 ��.��6�► i�=. �u)7 �.�18 L17�L�L� �Ou 1.J..! l.iS O�J 71 -------- - �.�Q� G=12� 1'3�4 vn� 18.27 , QA= �.�t�bF�l'= 18.�7 'l1 2. 157 ti�.�i�} Q�.0� VELUCITY = c:.,� � � �6.�Q Q�.0�64 1��'. ���Z� 1.�3 � , �___���._����_���__��_�����.���_"'_�.__�_""�_'w��_�C���.�.�����_��=��_`��__i�=�_`_c_ / /� @.�� C=1�L� `.��a} 1�..,4 QA- v�,fi�cyF T- 19.�m �: 7� �. 154 1 T 10. �.� i��.�'��t Q�.�� VEL�C I7Y = �:.31 �6.�Q� �v. P��Z►64 1�. c��� Q�a Q�8 , __�_._������j��J_����.����.��_�_.____�,«�._'_'_._�����..�C����......�.��'�...��.��'._._�s'��'._'.���_��� � L6,,�� 19.�9 CS 8b 73 , ; --------------------------------------�---------------------------�----------- _ - ; 3Q�.�;� C=12� ;�.}�7� 18,21 . � : QA= ,�P1.9�F'T= 18.�1 i 74 2. 154 i T l c�. � 10. �2� Q�.@� UELUC i TY = 2.7� 3Q�.9` �.Q��87 1�:.�ti� Q�. 11 ` � � • i ��x���*������a�-*����*��*�����*��- 4ili�1h11Ur! 1=:tf�z SF�R:iiVKLER:; ����x-�•�x-����-���-•x-�-������*��� � . JUE�-. ZEF�NYFtHILL5 E+OTTLED aJATER Jf�N NO 884siy UFaTE 'T-26-89 F�A�� , �*�a���-��x��*a�*���#��x���#��,����a��,�����������4:7i`�mQ�������c���•�����*��*���*�r����x���,��#r�tt��a� i H'r'llRLC. QA "C" Et�U I V. F�T.F�f� F�1' ,F'T ' ' R�F. FLDW D I(�. F I T7I N6 r'1'GS, F'E F'V ' ������� hlUTF 5 �'���-�� � F�OINT D.T LOSS/F LEiVGTHS '1"C�1". F�F F�hl I ---�-----------------------------------�---------------------------------------------- ---�------------------------------------------------�--�-----------___--•------------- i Q�.P1�D C=1�:� 1`3�='. v_n7 18.a� ; GlA= Q�.Q�k�F'1'= 38.32 75 �. 157 k7.ii.ti�2� R�.�0 . VELOCI7Y� _ �e 71 3�.9` �.H�87 19�:'.G'+�c 1.67 � G�.Q��h C=1�Q� ,-, ��� 1�.9� DA= �.k��Pi"= 19.9� 76 �. 15�+ i T i�. 0 1�?. �?�Z� Q�.0�b VELOCITY�_ `e 7` 3Q�.�2 0.&�087 1�.k��� �i. 11 . ----------�------------------------------------------•--------------------------- 3Q+. 9� �Q�.�C� CS 86 . �i • � �5.88 C=1�� i�.+��c� 14.61 QA= 9S.BbF�T= 14.61 1 3. 26P� . �i�.wy0 Q�.v�4� VELt]CITY„ _ ,�.68 '35.88 0.Q��'34 1�.��Tki �. 14 ' � ____�_����'�__��_���^_J_�����_._.___�_�""___�����.�.������`��`����=�������.j��=�� `�� '36.5� C-1��1 !;. ri�iZ� 14.75 QA- �5.5`PT- 14.7� 13 �.�62� �.t. �cti�Z� �.�� VELQCI'TY = 7.4 19�. 5�b Q�.�343 � 1;. �c� 0.51 1.37 C=1��1 1 a.�ti� 15.�6 ' QA== i. 37F'T= 1�.�6 L� ' ,� �bQ� �. f1+�Z� �.0�b VELOEITY = 7.45 193.87 0.Q�347 I�.�.'�� 0.5� � -17.s4 C=1�G� i�. iZ��v 15. 79 DA= -17. 34�'T= 1�. 79 �+� 3,�6Q� �h. �rti2� 0.@0 , VELQCI7Y� = 6. 78 176.�3 �.Q���� 1 a.�k� 4le 44 , � � I ----------------------------------------------___----•------ ---------------- � -13.8� C=1�� 1i. ���� iG.22 � QA- -13.8�t7F'7= 16.�c 34 3. �6� �.�. 41� �.�� VELqC:ITY = b.�5 16�. 73 0.a�51 1;. G"���� 0. 38 ------------------------------------�--------------_-------------------------------- -11. 14 C=12�?� 1�. ���� 16.6� QA= -�.l. l��f-'T= iG. �� --- 38 3e i6� �7�o r�y�� �. �� VELQCI�`Y = 5e 8� 151.�9 fi.�22k i�:����� Q�.33 ------------------------------- -�.5� C=1��+ 1�:, a��c'� 1 b.93 Qfl= --9. 5�F�7= 16.93 � 42 3. `6� ah. �h�Z� Q�.�¢� VELOCI7Y = 5.�►5 ' , ° . ' 14`.Q�7 Q�.�1�� 1;.+��� Q�.�9 i� ' --------."--- ----^-----'---'----•--'_' r J^ -9.Q�8 C=i�d� ?.�. ��} 17.`� � � QA= -9.�BPT= 17.�� / , �+6 �. �60 �.�. c�� - 0. �Q� V�LOCITY = 5. 11 13�. `�`� Q�.�C�17:3 1�.���� ��a c6 � -------------- - -�.89 C=1�� 15.V'��c� 17. 49 QA= --9.8`��'T= 17.49 50 3.�6Q� �. ��+ c�.�0 , VELOCITY = 4a 73 1L3. SQ� �.�1�� __i.,_���------a-�-�--------------' � C G J�' I ___�___�������_������_�__��______� . • �_��_��_��__�__ ; -11.77 C=1;'P+ 1:1. ���� 17.71 QA= -11..77F�T= 17.71 , i 54 3.�6� ict. rryn Q►. �(� VELQCITY = 4.�8 , 1 i l.33 Q�.Q�124 1;.���� Q�. 19 ' -___==__'_________________•-__-----___-_�--�'---___--=_-___-�__--_-___=_-___--_-__=__-__- � � i � I ^ I � n���x-�#�x���i�r��*����x�*#���� 6JIGIiVTi]l�1 FIRE SE'RIiVKLERS' ��:������-#a�����#��#�����-tt���� J�JEt- ZEF'E-lYRHILLS E�OTTLED WATER JUR Nq 8&4a1 •- UA"f� 7-26-8� � F'A�E �����-�-�������E**��****�-�*�*�����#�#��,�'�Z�/:��r������*����*�#�#�����-x��*���*�*�����*�-� ______- -__�-____________________________--____-___-____----_-_____--_-__=`_-_-�� tIYDRLC. ��A °C" EQUIU. � F�IF�E F'T �'T � REF. FLOW DIA. FITTIhJG F"fCf3. P� F'V , #���� NnTES ���#+� I �F�UIIVT ��T LOSS/F LEiVGTI-�S TO'i'. F'F F�fV �=-----=--------------------------------•---------------------------------------- I C� ___=�`_C����=J�__�..�___�_'_____�_"___�����.�`___'_�_...�.�.��.����^�_._��.��_�_`__ i��►.J� C-l��b l�. P��C� 17.9�7 G2A= 1�►a S�FT- 17.'3� ' �� 3.�6�'� �. �0 Q�. �d� VELCICI"fY = 3. 7.� � �5.83 �b.Q��'36 i�. ��rct Qt. 14 � �5.83 18.+�4 ' CS 87 � S�_ ,, ------------------------------------------------------------ ------------------ , -17.88 C=1�Q� 1�. ��a 18.�4 ' QA= -17.88F�T= 18.Q�4 , 6.:' 3.�:60 �. Q�0 Q�.�0 . V�LOCI7Y = 3. Q�3 j 7 B.�5 �}.b��Zt55 1�. ���� �. 1 a „ , ----------------------------------------�----------------------------------------- -�1 e 83 C=1�� 1��. �tr�i 18. !4 OA= -�1.83F'T= 3 8. 14 6G 3.`6Q� 4?�. Q�Q� @. �Q� VELOCI7Y = 2. 19 �7. 1� 6.Q��3fi 15.�Q� �b.Q�5 . ____V._��.�_����������_._�__��_�`_.�_�����______`_��.������ _.....��.����.�=�_�j�;�=���_'_� -c 6.�� C=1�� 1 1. �k7 18. 1`3 QF�= �6.4Q�F 7- 18. 1'3 � 7� ,�.260 ��. E'�Q� �b.Q�@ VELOCI"fY = i. 19 "�.92 �.Q��l i i�. �c� Q�.k'�` , ��. �` 18.;�1 CS 88 7�+ ' ' ' `-i6. 18 C=1�ti� 1�. �4�� 15.�5 QA= 930 19F'T= 1.6.�}6 � i�_ 4a �'60 �. Q�Q+ Q�.�Z�� VELOCTTY = c.�i 58. 18 �h.0Q�26 15. ��� �D.Q�4 , ------------------------------------__�------------------------------------------- � �8.@7 C=1�4:7 i�. ��7 15. !4� G?A= `J�3.ti77RT= 16. I� ��� �4. 25� �+. �� �+.Q+0 VELOCITY =, 4.42 i'.lb.�5 @.Q+�+'36 15. 4�� �. 14 ���.88 C=1�� 15. �C�4?� 16.�4 G2A= :9.t38F'T= 15. �4 �'3 4. �:5� �?. 0� 4�.�++� VELOCITY =� �. 09 ���6. !3 0.01�5 i�. �� �. 19 17.34 C=1L0 1�. �c��c'� 16.�+3 G2A= 17.,i4F'T= 15.43 33 4.`6@ �. �� 0e�b@ � V�LOCT7Y = � �.�t8 ' , ' :�ti3.47 4�. �143 1�. �Q� �.�� � �� i .13.80 C=1`� 15. �CG� 16.G5 G!A= l�i.8HF'T= 15.G5 � 3� 4.26Q� �+. Q�� Q�.rZ►� VELOCI'tY = �.79 � �57.27 0.Q�159 1�. �} �.�4 ` , ,' 11. 14 C=1�Q� 15. k��7 16.99 ' QA= 11, 14RT= 16.8� 41 4.26Q� �. �� Q.@0 VELDCITY = 6. 04 � ----------268_41 �.P�172 ----_15_��_ __ �.�5 . � ; --------------- - ----------------------�----------- - ' 9.52 C=1�4� 1�. a}� 17. 14 � QF�= 9.5���T= 17. 14 ' � 4�� 4.�6Q� �. Q�� Q�.�Q� VELDC:(TY = 6.�:5 � �77. 93 �.0183 1�. �c� 0,��8 `i . i x�•��•�-����x•��t��*��-������-��a�� W l�1 hJ(C1iV E�.�Kt: 5{�'k11VKLERS ��,��x��������a���-��x����:a��-��•�� JUN- �E��HYRHILLS BOTTLED dJATER JLJN NO 88431 ' DAT� 7=�6-89 F'AGE ' a:�li-�If-��flF#�tf�#�i(•�lE#IFIF�f-�F#�E##�F##�?f-#�IF#�K###iE###'k,`lc,77/`f�1f�11Zi#�Yc####�If�##*#�E####�3t�Yr##�#####�'t-#=iE##-##',E### HYDRL�. QA "C" , j EQUIVe f�IF�'E F'7 � FT ' . REF. FLOW llIR.j ; FITTIhd6 FT[ryS. �'E RV � ! ����� hJ0'fE5 ����� ' F�OI�lT QT L05S;� LEhJGTi�S Ti]Ta F'F ' � F�hl . , --------------------- ----------------------------------_� _ ---_____-_---_-______ �77.�3 • , 17.4L , ;,'CS 88 �F r.; � ' '3.�8 C=12Q� i.ie ��ti3 37.4� ` QA= ��e�BF�T= 17.4� 4'� 4.26� �c'�. Q�4� �.Q+� 1�'ELDCI7Y ��, 6.46 �87.Q�1 �.Q�195 ' 1�. �� �c.�� � ' '3.89 C=�2� 1,.���� 17.71 � QA= �e 89F'T= 17. 71 a3 4.26� &l. �k �.Q�4� , � VELQCI7Y = 6. E;8 ;'.9�.�0 �.Q+2�7 I�, �►4� ��:31 , .. , , 11.77 C=1 c�L 1;. +Z��c7 18.�3 ' ' Of-�= 1 I.77F�T= i�J. Ch3 ;"7 4.�6Q� u4. +�� Q�. Q�� � VELDCI"(Y = 6.,95 3Q�t3.67 4d.�2�3 1�.�� Q�.34 ' � � 1�+.�� C=i:'�b 1�. �ii� 18.36 � .'QA- �` �4. 54+PT= 18. 35 , , 6 f 4.26Qr fl.+. Q�� Q�. Q�Qt , � �'' ;VELOC I TY = 7.c:7 . 323. 17 0e��43 15. ��� �h.36 � ' , , ----------------------------------------------------------------___--------------- 17.88 C=1�� i�a �c��c'� 18.7� GIA= 1'1.8�3F'T= l�l. 7� 6� ' 1►.:'6Q� 4�. �r"�� Q�.0Q� , V�LDCI'fY = 7.b7 .��41.Q►5 �.�c68 !5.��cy �[�.4Q+ 21.8` C=1`� i�.+��'� 1'�. 13 �' D.A= �]..�3�F'T= 19. 1:� 6'� 4.�b0 ki, �k� Q�.Q�� VELOCITY = 8. 16 J�,�.87 Q�. L�.i L�i 1�'r. �Vl QI.rFJ ---------^-----------------------------------------------------------�_._�_-__----- � `5.�1 C=1��h 1�;.0�� 1�.58 � QA= � �G.�1F�T= 1`j. 5J ��i 4. �b� �:�. �c��.� 'Q�.Q�� � VELQCITY = 8.75 39'3.�+8 �e�34` 14;.�.34i �. sl � --------------------------------------__._--------------------__--_---------------- 3��. �� C=1�� i}��. �h+,� `Qi.Q�� ' ' QA= 3+�.9:�F�T= `�.�'� 7"l 4.LS+� iT��. �+ ,��?. +�u� �. �+� VELDCI7Y =' �.4� ___ 4��.�Q� d7.6�394 3ii�. ��1 1. !.8 0.�@ C=i�@ i��.V�kr ;�1.`8 QA= �.�+LIF'T- ;�i.�3 rE� f�.3�� :'73Qt. E�1 6�. +�� [�e 2+� VELOCT7Y = 4.c4 ' . � 4e�.�Q� �.�0�6 195.�'�v} 1.�4 , ----------------------------------�__--------------l------------_-__-_---_�------------ �: Q�.Q�0 C=12Q� 3��i. �4�'� �20.�� QA= Q�.Q�P1F�l'= ��. 3� � TASR 6. 3J7 �+�. ��+ 1�. �'� VCLDCITI� = 4.;�4 � 4��r�.�Q� �h.+���6 4�.��Z�(=. ?�.. �+�Z� Q�.4Q F'E= F(JR H1". 0� 3i_�. �+ / -----------------------------------------------__-_------------------------------ " i � 4�0. c��+ ; �I 35.'7� � CS 69 : I , PtiS�2 ,f I . I --------------------- I-----------------------------------------_-�___.----------- I ' 1��.��h C=12Q� 1 v}�i�. �7�7 35.72 � � � OA= !��+.�p�F'T= 35. 7� � Bf�SR 7.�BQ� 154"�. Q�Q� Q�.Q�+� VELOCITI' = 3. 33 ; ��'Q�.�0 �.��`7 15�t e��hF. :.�.,�i7. �+�rT t�.59 , ` � , � •� : ��it�iFiEiEiF�7F�lEiF� �iF�?F�FaF��1F�lF 4J.lt•ilP� IJN t•11t� '�I!K1 K � � �IE,tiFiE�iF•!E#�F3e��k�*�f�k��1F##�f•�f•�,E�(��F##��1E9l-## JOE+— 7_EF�HYRHILLS �+07TLEll WA"fER JUB Id0 884.s1 D('.�.'E 7—`6—El� K�RGE �*����w��**������-�-��#���a�**#��������r���.��c"+;'-_'��������a�����;���x��x����x���������-�a��**���*� _____ '__---________�______--_-____—_-�______________________------___—__--_—___—_ NYDRl,-C. QA "C" EDUIV. F'T.F'E fiT �T REF. �=LDW DIA. FI7TIPd� F7GS. F�E ►��V �*#�w* Np7E; �r�**�� � F�[IIiVT QT LOSS/F LENGTHS l"U7. 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