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ELEMENTARY STRUCTURAL ANALYSIS AND DESIGN OF BUILDINGS

A GUIDE FOR PRACTICING ENGINEERS AND STUDENTS

9781498775885 ::  ELEMENTARY STRUCTURAL ANALYSIS AND DESIGN OF BUILDINGS
ISBN:

9781498775885

EditorialTAYLOR & FRANCIS GROUP
Edicion:
Páginas:271
Idioma:INGLES
P.V.P.: 109,88 € + 4% IVA = 114,28 €
Dto 5% Ahorras 5,71 €
Importe final iva incl. 108,57 €
PLAZO DE ENTREGA 20 DIAS

<P>THIS OVERVIEW OF THE ANALYSIS AND DESIGN OF BUILDINGS RUNS FROM BASIC PRINCIPLES AND ELEMENTARY STRUCTURAL ANALYSIS TO THE SELECTION OF STRUCTURAL SYSTEMS AND MATERIALS, AND ON TO FOUNDATIONS AND RETAINING STRUCTURES. IT PRESENTS A VARIETY OF APPROACHES AND METHODOLOGIES&NBSP;WHILE FEATURING REALISTIC DESIGN EXAMPLES. </P><P></P><P>AS A COMPREHENSIVE GUIDE AND DESK REFERENCE FOR PRACTICING STRUCTURAL AND CIVIL ENGINEERS, AND FOR ENGINEERING STUDENTS, IT DRAWS ON THE AUTHOR’S TEACHING EXPERIENCE AT THE CITY COLLEGE OF NEW YORK AND HIS WORK AS A DESIGN ENGINEER AND ARCHITECT. IT IS ESPECIALLY USEFUL FOR THOSE TAKING THE NATIONAL COUNCIL OF EXAMINERS FOR ENGINEERING AND SURVEYING SE EXAM.</P>

<P><STRONG>1. MINIMUM DESIGN LOADS FOR BUILDINGS</STRONG> </P><OL><OL><OL><P></P></OL></OL></OL><P>1.1 LOADS </P><OL><OL><OL><P></P><P></P></OL></OL></OL><P>1.2 DEAD LOADS</P><P>1.3 LIVE LOADS</P><OL><OL><OL><P></P><OL><P></P></OL></OL></OL></OL><BLOCKQUOTE><P>1.3.1 REDUCTION IN UNIFORM LIVE LOADS </P></BLOCKQUOTE><OL><OL><OL><OL><P></P></OL><P></P></OL></OL></OL><P>1.4 SNOW LOADS</P><BLOCKQUOTE><P>1.4.1 FLAT ROOF SNOW LOADS</P><OL><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL></OL><P>1.4.2 MINIMUM SNOW LOAD</P><OL><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL></OL><P>1.4.3 SNOW DRIFTS ON LOWER ROOF</P></BLOCKQUOTE><P>1.5 THERMAL LOADING </P><P>1.6 FORCES AND LOADS DUE TO SOIL PRESSURES </P><BLOCKQUOTE><P>1.6.1 ACTIVE AND PASSIVE LATERAL PRESSURE</P><P>1.6.2 STATIC LATERAL SOIL PRESSURE</P><P>1.6.3 HYDROSTATIC PRESSURE</P><P>1.6.4 BEARING PRESSURE </P></BLOCKQUOTE><OL><B><P></P></OL><P>2. WIND AND SEISMIC FORCES APPLIED TO BUILDINGS</B> </P><P>2.1 LATERAL LOADS</P><P>2.2 WIND LOADS</P><P>2.3 HORIZONTAL SEISMIC LOADS</P><P>2.4 VERTICAL SEISMIC LOAD EFFECT </P><OL><B><P></P></OL><P>3. LATERAL FORCE DISTRIBUTION </P><P></B>3.1 WALL RIGIDITIES</P><P>3.2 RELATIVE RIGIDITY FORCE DISTRIBUTION (RIGID DIAPHRAGM ANALYSIS) </P><BLOCKQUOTE><P>3.2.1 CENTER OF MASS</P><P>3.2.2 CENTER OF RIGIDITY </P><P>3.2.3 POLAR MOMENT OF INERTIA </P><P>3.2.4 ECCENTRICITY </P><P>3.2.5 WALL SHEARS (DIRECT AND TORSIONAL)</P><P>3.2.6 DESIGN WALL SHEARS </P></BLOCKQUOTE><P>3.3 FLEXIBLE DIAPHRAGMS </P><P>3.4 SEISMIC STATIC FORCE PROCEDURE </P><BLOCKQUOTE><P>3.4.1 EQUIVALENT LATERAL FORCE METHOD </P></BLOCKQUOTE><P>3.5 HORIZONTAL AND VERTICAL IRREGULARITIES </P><OL><B><P></P></OL><P>4. METHODS</P><P></B>4.1 FRAME ANALYSIS BY APPROXIMATE METHODS </P><BLOCKQUOTE><P>4.1.1 ANALYSIS OF BUILDING FRAMES FOR VERTICAL LOADS </P><P>4.1.2 ANALYSIS OF BUILDING FRAMES FOR LATERAL LOADS</P></BLOCKQUOTE><OL><B><P></P></OL><P>5. DESIGN AND DETAILING OF STRUCTURES</P><P>5.1 </B>LATERAL FORCE RESISTING SYSTEMS </P><BLOCKQUOTE><P>5.1.1 BEARING WALL SYSTEMS </P><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL><P>5.1.2 BUILDING FRAME SYSTEMS </P><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL><P>5.1.3 MOMENT RESISTING FRAME SYSTEMS</P><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL><P>5.1.4 DUAL SYSTEMS WITH SPECIAL MOMENT FRAMES</P><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL><P>5.1.5 DUAL SYSTEMS WITH INTERMEDIATE MOMENT FRAMES</P><OL><OL><OL><OL><P></P><P></P></OL></OL></OL></OL><P>5.1.6 CANTILEVER COLUMN SYSTEM</P></BLOCKQUOTE><P>5.2 LOAD COMBINATIONS </P><OL><OL><OL><P></P><P></P></OL></OL></OL><P>5.3 BUILDING DRIFT</P><OL><OL><OL><P></P><P></P></OL></OL></OL><P>5.4 REDUNDANCY FACTORS </P><OL><OL><OL><P></P><P></P></OL></OL></OL><P>5.5 OVERSTRENGTH </P><OL><OL><OL><P></P><P></P></OL></OL></OL><P>5.6 STRUCTURAL SYSTEMS INTEGRATION </P><P><STRONG>6.</STRONG> <B>STEEL</B></P><P>6.1 INTRODUCTION TO LATERAL STEEL DESIGN</P><P>6.2 SPECIAL CONCENTRICALLY BRACED FRAMES</P><BLOCKQUOTE><P>6.2.1 BRACE DESIGN </P><P>6.2.2 FRAME DESIGN </P><P>6.2.3 COLUMN DESIGN </P><P>6.2.4 BEAM DESIGN </P></BLOCKQUOTE><OL><B><P></P></OL><P>7. CONCRETE</P><P></B>7.1 INTRODUCTION TO LATERAL CONCRETE DESIGN </P><P>7.2 SHEAR WALL SYSTEMS</P><P>7.3 MOMENT FRAME SYSTEMS </P><OL><B><P></P></OL><P>8. WOOD </P><OL><P></P></OL></B><P>8.1 INTRODUCTION TO LATERAL WOOD DESIGN </P><P>8.2 PLYWOOD DIAPHRAGM DESIGN </P><P>8.3 SHEAR WALLS AND COLLECTORS </P><P><STRONG>9.</STRONG> <B>MASONRY</B></P><P>9.1 INTRODUCTION TO LATERAL MASONRY DESIGN </P><P>9.2 BUILDING WALL DESIGN FOR IN-PLANE LOADS</P><P>9.3 BUILDING WALL DESIGN FOR OUT-OF-PLANE LOADS</P><P><B>10. FOUNDATIONS AND RETAINING STRUCTURES</P></B><P>10.1 TYPES OF FOUNDATIONS</P><P>10.2 SPREAD FOOTINGS </P><BLOCKQUOTE><P>10.2.1 CONCENTRICALLY LOADED FOOTINGS </P><P>10.2.2 ECCENTRICALLY LOADED FOOTINGS </P></BLOCKQUOTE><P>10.3 MAT-SLAB FOUNDATIONS </P><BLOCKQUOTE><P>10.3.1 COMBINED FOOTING</P></BLOCKQUOTE><P>10.4 DEEP FOUNDATIONS </P><BLOCKQUOTE><P>10.4.1 PILE CAPS</P></BLOCKQUOTE><P>10.5 RETAINING STRUCTURES </P><BLOCKQUOTE><P>10.5.1 FOUNDATION WALLS</P><P>10.5.2 FREE STANDING CANTILEVERED RETAINING WALLS </P></BLOCKQUOTE><P><B>11. STRUCTURAL REVIEW OF CONSTRUCTION</B></P><P>11.1 CONSTRUCTION ADMINISTRATION </P><P>11.2 SPECIAL INSPECTIONS AND STRUCTURAL OBSERVATIONS </P>

FISICA
INGENIERIA CIVIL / CONSTRUCCION
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