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100.00' <br />-NEW WALL / EXISTING <br />WALL CONNECTION <br />-- - -I 1 i <br />I00.00' <br />I <br />4 I <br />NEW WALL / EXISTING <br />I A-WALLCONNECTION <br />I <br />m I <br />IMM <br />NEW WALL / EXISTING <br />WALL CONNECTION <br />r - - - - - - - - - - - - - T <br />O <br />- <br />,I I <br />WH <br />I <br />II <br />IF <br />I I <br />III <br />41 <br />I <br />_n <br />L.- <br />11 / <br />I / <br />IIII <br />IIII <br />II <br />III <br />I <br />Ly <br />nj <br />IIII r�"til II <br />L i--J -�- <br />r�-�til III II I <br />L--1 \ IIII <br />I I ry l l <br />IIII L <br />r- - - - - - <br />'__L_J <br />- - - - ,� <br />I I <br />\ IIII <br />\� IIII <br />-- <br />LL_ JJI r-- <br />I I <br />I i <br />I I <br />I I <br />I I <br />all III I <br />II III I <br />I -----------' <br />L <br />r==� <br />=_� J '------ <br />--_ J I <br />I r F- <br />I tE==2 II <br />r==� <br />E=_3 II <br />r= r---- <br />�__7 1 10 <br />I I II <br />I I II <br />I I I <br />0--flil <br />II <br />II <br />II <br />I I <br />1 1 <br />I <br />0 <br />II pl I <br />II III I <br />L�JI I <br />r� <br />r --- --I� <br />r� <br />rf-I I <br />,IIII <br />�--nII <br />i� IIII <br />Illl <br />�'�I <br />/� III I <br />11 <br />I I <br />(-r-7-1l I <br />1 -I I <br />/ I <br />IIII/ IIII IIII <br />II yl I <br />��I <br />\ <br />IIII/ <br />II I <br />I 1 \ <br />II I It Ilpt <br />� <br />Ilp! <br />� <br />III I <br />41 I <br />LL_JJI I <br />I <br />- <br />I <br />� I <br />"5X 12" REBAR <br />-a 40" O.C. (TYP.) <br />I 1 <br />I 1 <br />05X 121, REBAR <br />---------�\ a 48" O.C. (TYP.) <br />I ® ® NEW WALL / EXISTING <br />I I � -WALL CONNECTION -- -_ <br />-------------- --- - - - - - - <br />■ <br />L��k <br />NEW WALL / EXISTING ■ - <br />WALL CONNECTION I ■ <br />4" CONCRETE w/6 "X 6 "X 10/10 W.W. <br />MESH REINFORCING REQUIRED <br />TPROUGI-1OUT THE CONCRETE SLAB <br />OR SYNTHETIC FIBER <br />REINFORCEMENT PER SECTION 1910.2, <br />2001 FLORIDA BUILDING CODE <br />-0 100.00' t= <br />0 <br />m <br />N <br />NO F:O <br />- <br />■ I z z <br />■ I -1Z _Jz <br />_10 <br />■ WQ W4 <br />Zzml zD <br />- - - - - - - - - - - - - ---- - - -y-- -I <br />Qp <br />N <br />I _---__------ NEW WALL / EXISTING <br />------------------- r <br />WALL CONNECTION <br />h <br />�0 <br />LL <br />O-A <br />M <br />1--------------------------------r <br />I <br />1---1 ---"�-1----------- <br />.a <br />0 21 41 <br />F O U N D A T I O N <br />11'-2 3/8" <br />PLAN <br />I <br />N <br />v <br />v <br />v <br />N <br />SECTION 1910 <br />MINIMUM SLAB PROVISIONS <br />1910.1 General. The thickness of concrete floor slabs supported directly on the ground shall not be less <br />than 31/2 inches (89 mm). A 6-mil (0.006 inch; 0.15 mm) polyethylene vapor retarded with joints lapped not <br />less thon 6 inches (152 mm) sholl be placed between the base course or sub grade and the concrete floor <br />slab, or other approved equivalent methods or materials shall be used to retard vapor transmission through <br />the floor slab. <br />Exception: A vapor retarded is not required: <br />1. For detached structures accessory to occupancies in Group R-3, such as garages, utility buildings or <br />other unheated facilities. <br />2. For unheated storage rooms having an area of less than 70 square feet (6.5 m2) and carports attached to <br />occupancies in Group R-3. <br />3. For buildings of other occupancies where migration of moisture through the slab from below will not be <br />detrimental to the intended occupancy of the building. <br />4. For driveways, walks, patios and other flat work which will not be enclosed at a later date. <br />5, Where approved based on local site conditions. <br />1910.2 Joints. Concrete slabs on ground sholl be provided with joints in accordance with ACI 224.3R or <br />other approved methods. Joints shall be designed by on architect or engineer. <br />Exception: Joints are not required in unreinforced plain concrete slabs on ground or in slabs for one -and <br />two-family dwellings complying with one of the following: <br />1. Concrete slabs on ground containing synthetic fiber reinforcement. Fiber lengths and dosage amounts <br />shall comply with one of the following <br />(a) Fiber lengths shall be 1/2 inch to 2 inches (13 to 51 mm) in length, Dosage amounts shall be from 0.75 <br />to 1.5 pounds per cubic yard (0.45 to 0.89 kg/m3) in accordance with the manufacturer's recommendations. <br />Synthetic fibers shall comply with ASTM C 1116. The manufacturer or supplier shall provide certification of <br />compliance with ASTM C 1116 when requested by the building official; or, <br />(b) Fiber length shall be from 1/2 inch to 2 inches (13 mm to 51 mm) in length, monofiloment or fabricated. <br />Dosage amounts shall be from 0.5 to 1.5 pounds per cubic yard (0,30 to 0.89 kg/m3) to achieve minimum 40 <br />percent reduction of plastic shrinkage cracking of concrete versus a control mix in accordance with ICBO <br />AC32. Independent test results using minimum (6) test specimens shall be provided to the building official <br />showing compliance with ICBO A32. Synthetic fiber shall comply with ASTM C 1116, Paragraph 4.1.3, Type III. <br />The manufacturer or supplier shall provide certification of compliance with ASTM C 1116 when requested by <br />building official. <br />2. Concrete slabs on ground containing 6 x 6 W1.4 x W1,4 welded wire reinforcement fabric located in the <br />middle to the upper one-third of the slab. Welded wire reinforcement fabric shall be supported with <br />approved materials or supports at spacings not to exceed 3 feet (914 mm) or in accordance with the <br />manufacturer's specificotions. Welded plain wire reinforcement fabric for concrete shall conform to ASTM A <br />185, Standard Specification for Steel Welded Wire Reinforcement Fabric, Plain, for Concrete Reinforcement. <br />ALL CMU WALLS CONSIDERED SHEAR WALL I <br />■ CELL POURED SOLID w/ (I)*15 <br />FROM FTG. TO BOND BEAM <br />- CONTROL JOINT (SAW CUT) <br />100.00' FINISHED FLOOR ELEVATION <br />(ASSUMED DATUM) <br />C TIE MAX BOLTS a E'-O" O.C. d <br />12" FROM ANY CORNER <br />B WINDOW OR DOOR OPENING <br />LOCATIONS <br />THE BUILDER SHALL VERIFY THAT THE <br />FOUNDATION BEARING SOIL HAS A <br />MINIMUM LOAD CARRYING CAPACITY OF <br />2,000 POUNDS PER SQUARE FOOT, IF A <br />LE55 SOIL BEARING CAPACITY EXISTS, <br />OBTAIN THE ENGINEER'S RESPONSE <br />BEFORE POURING FOUNDATION FOOTING, <br />AS FOUNDATION REVISIONS WILL BE <br />REQUIRED. <br />SECTION 181(o <br />TERMITE PROTECTION <br />I81(o.l Termite protection. Termite protection shall be provided <br />by registered termiticides, including soil -applied pesticides, <br />baiting systems and pesticides applied to wood, or other <br />approved methods of termite protection labeled for use as a preventative <br />treatment to new construction. See Section 202, Registered <br />Termiticide. Upon completion of the application of the <br />termite protective treatment, a certificate of compliance shall <br />be issued to the building department by the licensed pest control <br />company that contains the Following statement: "The <br />building -has received a complete treatment for the prevention <br />or subterranean termites. Treatment is in accordance with rules <br />and laws established by the Florida Department of Agriculture <br />and Consumer Services." <br />1816.1.1 IF soil treatment is used For subterranean termite <br />prevention, the initial chemical soil treatment inside the <br />Foundation perimeter shall be done after all excavation, <br />backrilling and compaction is complete. <br />1816.1.2 IF soil treatment is used for subterranean termite <br />prevention, soil area disturbed after initial chemical soil <br />treatment shall be retreated with a chemical soil treatment, <br />including spaces boxed or formed. <br />1816.1.3 IF roll treatment is used For subterranean termite <br />prevention, space in concrete Floors boxed out or formed for <br />the subsequent installation of plumbing traps, drains or any <br />other purpose shall be created by using plastic or metal permanently <br />placed Forms of sufficient depth to eliminate any <br />planned soil disturbance after initial chemical soil treatment. <br />1816.1.4 IF soil treatment is used For subterranean termite <br />prevention, chemically treated soil shall be protected with a <br />minimum 6 millimeter vapor retarder to protect against <br />rainfall dilution. IF rainfall occurs before vapor retarder <br />placement, retreatment is required. Any work, including <br />placement or reinforcing steel, done after chemical treatment <br />until the concrete Floor is poured, shall be done in such <br />manner as to avoid penetrating or disturbing treated soil. <br />1816.1.5 IF soil treatment is used for subterranean termite <br />prevention, concrete overpour or mortar accumulated along <br />the exterior Foundation perimeter shall be removed prior to <br />exterior chemical soil treatment to enhance vertical penetration of the <br />chemicals. <br />1616.1.E If soil treatment is used for subterranean termite <br />prevention, chemical soil treatments shall also be applied <br />under all exterior concrete or grade within i foot (305 mm) <br />of the primary structure sidewalls_ Also, a vertical chemical <br />barrier shall be applied promptly after construction is completed, <br />Including initial landscaping and irrigation/sprinkler <br />installation. Any soil disturbed after the chemical vertical <br />barrier is applied shall be promptly retreated. <br />1816.1.7 IF a registered termiticide Formulated and registered <br />as a bait system is used For subterranean termite <br />prevention, Sections 1516.1.1 through 1516.1.E do not <br />apply± however, a signed contract assuring the installation, <br />maintenance and monitoring or the baiting system for a <br />minimum of 5 years from the issue of the certificate or occupancy <br />shall be provided to the building official prior to the <br />pouring or the slab, and the system must be installed prior to <br />final building approval, it the baiting system directions For <br />use require a monitoring phase prior to installation of the <br />pesticide active ingredient, the installation or the monitoring <br />phase components shall be deemed to constitute installation <br />of the system. <br />1816.1.8 If a registered termiticide Formulated and registered <br />as a wood treatment is used For subterranean termite <br />prevention, Sections 1B16.1.1 through 1816.1.E do not <br />apply. Application of the wood -treatment termiticide shall <br />be as required by label directions for use, and must be completed <br />prior to Final building approval. Changes in framing <br />or additions to Framing in areas or the structure requiring <br />treatment that occur after the initialwood treatment must be <br />treated prior to Final building approval. <br />18l(o.2 Penetration. Protective sleeves around piping penetrating <br />concrete slab -on -grade Floors shall not be of cellulose -containing materials. IF <br />soil treatment is used rorsubterranean termite protection, the sleeve shall have a <br />maximumwall thickness or 0.010 inch (0.254 mm), and be sealed within the slab using <br />a non -corrosive clamping device to eliminate the annular space between the <br />pipe and the sleeve. No <br />termiticides shall be applied inside the sleeve. <br />ENGINFEF15 NOTE <br />(i.) ALL WORK TO BE DONE ACCORDING TO 2010 FLORIDA BUILDING CODES <br />(2.) ASSUMED SOIL BEARING CAPACITY TO BE 2000 PSF. SOIL CAPACITY TO BE <br />VERIFIED BY CONTRACTOR PRIOR TO CONSTRUCTION. INFORM ENGINEER OF <br />VARIATIONS. FOOTINGS TO BE EXCAVATED TO CLEAN SOIL, FREE OF VEGETATION <br />AND DELETERIOUS MATTER. CONCRETE SHALL BE PLACED ON AN UNDISTURBED <br />BASE. <br />(3.) IT IS THE CONTRACTOR'S SOLE RESPONSIBILITY TO DETERMINE ERECTION <br />PROCEDURE AND SEQUENCE TO INSURE THE SAFETY OF THE BUILDING AND ITS <br />COMPONENT PARTS DURING ERECTION. TH16 INCLUDES, BUT IS NOT LIMITED TO, THE <br />ADDITION OF WHATEVER TEMPORARY BRACING, GUYS, OR TIE DOWNS THAT MAY <br />BE NECESSARY. SUCH MATERIAL SHALL BE REMOVED AND SHALL REMAIN THE <br />PROPERTY OF THE CONTRACTOR AFTER COMPLETION OF THE PROJECT. <br />(4.) ALL DIMENSIONS AND ELEVATIONS SHOWN ON THE STRUCTURAL DRAWINGS <br />SHALL BE VERIFIED AND SHALL CONFORM TO THE ARCHITECTURAL DRAWINGS. <br />(5J CONCRETE : <br />MINIMUM COMPRESSIVE CONCRETE STRENGTH TO BE 3000 PSI IN 25 DAYS. ALL <br />CONCRETE SHALL BE READY MIXED" AND IN ACCORDANCE WITH AB.T.M. <br />SPECIFICATION C-94. ALL CONCRETE MODULAR UNITS SHALL HAVE A <br />COMPRESSIVE STRENGTH OF 1900 PSI WITH TYPE M OR S MORTAR, 2000 PSI. <br />(6.) SLAB ON FILL : <br />INTERIOR CONCRETE SLABS POURED ON FILL TO BE POURED OVER WATERPROOF <br />MEMBRANES. ALL 9LA59 TO BE REINFORCED WITH 6X6 10/10 WELDED WIRE MESH. <br />(1) LUMBER : <br />1. STORE LUMBER OFF GROUND. KEEP WELL VENTILATED AND COVERED. <br />2. CURRENT EDITION, ASSOCIATION GRADING RULES GOVERN. <br />3. ALL LUMBER SHALL BEAR GRADE MARK OF AN ASIC BOARD OF REVIEW <br />AGENCY. <br />4. ANY SPECIES ALLOWED UNLESS OTHERWISE NOTED. <br />5. SIZES ARE NOMINAL. ACTUAL SIZES SHALL CONFORM TO AMERICAN <br />LUMBER STANDARD PS 20-10, <br />fo. M015TURE CONTENT OF LUMBER 2" OR LESS IN THICKNESS SHALL BE 19 <br />OR LESS AT THE TIME OF INSTALLATION. <br />(5d TERMITE TREATING : <br />SOIL BELOW STRUCTURE TO BE TERMITE TREATED TO A DISTANCE OF 5'-0" <br />BEYOND THE PERIMETER LINES OF THE BUILDING. <br />(9d ALL STEEL SHALL BE 40 K51 WITH A MINIMUM CLEAR COVER OF 3" AGAINST <br />SOIL, AND SHALL HAVE A MINIMUM LAP OF 40 TIMES THE DIAMETER OF THE <br />REBAR. <br />(Ira.) 2"XI2" HEADERS SHALL BE 2-2"X12" LAMINATED W/ 1/2" PLYWOOD GLUED W/ <br />CONSTRUCTION ADHESIVE AND NAILED W/ 5-016D COMMONS 16" OC, TO MEET <br />LOADS AS INDICATED. <br />(I1.) ALL FASTENERS SHALL COMPLY WITH THE DESIGN LOADS. <br />(12.) 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