SlideShare a Scribd company logo
1 of 18
Stability &Stability &
BuoyancyBuoyancy
ObjectivesObjectives
•
Principles of StabilityPrinciples of Stability
•
Archimedes PrincipleArchimedes Principle
•
Terminology of ship’s hydrostaticsTerminology of ship’s hydrostatics
•
Stability & moments -> staying uprightStability & moments -> staying upright
•
Metacenter, Center of Gravity, Center ofMetacenter, Center of Gravity, Center of
Buoyancy, etc.Buoyancy, etc.
•
Stability curvesStability curves
Principles of StabilityPrinciples of Stability
•
Floating object is acted on by forces of gravityFloating object is acted on by forces of gravity
and forces of buoyancyand forces of buoyancy
• Static equilibriumStatic equilibrium ΣΣFFii = 0= 0
•
Three conditions of static equilibrium:Three conditions of static equilibrium:
• Stable:Stable: return to same position if tippedreturn to same position if tipped
•
Neutral:Neutral: when rotated, will come to rest in anywhen rotated, will come to rest in any
positionposition
• Unstable:Unstable: will come to rest in new position if forcewill come to rest in new position if force
acts on itacts on it
Archimedes PrincipleArchimedes Principle
•
Law: a body floating or submerged in aLaw: a body floating or submerged in a
fluid is buoyed up by a force equal to thefluid is buoyed up by a force equal to the
weight of the water it displacesweight of the water it displaces
•
Depth to which ship sinks depends onDepth to which ship sinks depends on
density of water (density of water (ρρ = 1 ton/35ft= 1 ton/35ft33
seawater)seawater)
Archimedes PrincipleArchimedes Principle
•
Ship sinks until weight of waterShip sinks until weight of water
displaced by the underwater volume isdisplaced by the underwater volume is
equal to the weight of the shipequal to the weight of the ship
• Forces of gravity:Forces of gravity: G = mG = mshipshipg =Wg =Wshipship
• Forces of buoyancy:Forces of buoyancy: B =B = ρρwaterwaterVVdisplaceddisplaced
WWshipship == ρρwaterwaterVVdisplaceddisplaced
Archimedes PrincipleArchimedes Principle
•
Forces act everywhere on ship -> tooForces act everywhere on ship -> too
tough to analyzetough to analyze
•
Center of Gravity (G):Center of Gravity (G): all gravity forcesall gravity forces
as one force acting downward throughas one force acting downward through
ship’s geometric centership’s geometric center
•
Center of Buoyancy (B):Center of Buoyancy (B): all buoyancyall buoyancy
forces as one force acting upwardforces as one force acting upward
through underwater geometric centerthrough underwater geometric center
Archimedes PrincipleArchimedes Principle
•
Center of Gravity (G):Center of Gravity (G):
•
Changes position only by change/shift inChanges position only by change/shift in
mass of shipmass of ship
•
Does not change positionDoes not change position with movement ofwith movement of
shipship
•
Center of Buoyancy (B):Center of Buoyancy (B):
• Changes positionChanges position with movement of ship ->with movement of ship ->
underwater geometric center movesunderwater geometric center moves
• Also affected by displacementAlso affected by displacement
G
Hydrostatics TerminologyHydrostatics Terminology
• Displacement:Displacement: total weight of ship = totaltotal weight of ship = total
submerged volume of ship (measured in tons)submerged volume of ship (measured in tons)
•
Draft:Draft: vertical distance from waterline to keel atvertical distance from waterline to keel at
deepest point (measured in feet)deepest point (measured in feet)
• Reserve Buoyancy:Reserve Buoyancy: volume of watertight portionvolume of watertight portion
of ship above waterline (important factor inof ship above waterline (important factor in
ship’s ability to survive flooding)ship’s ability to survive flooding)
•
Freeboard:Freeboard: vertical distance from waterline tovertical distance from waterline to
main deck (rough indication of reservemain deck (rough indication of reserve
buoyancy)buoyancy)
Hydrostatics TerminologyHydrostatics Terminology
• As draft & displacement increase,As draft & displacement increase,
freeboard and reserve buoyancy decreasefreeboard and reserve buoyancy decrease
MomentsMoments
•
Def’n: tendency of a force to produceDef’n: tendency of a force to produce
rotation or to move an object about anrotation or to move an object about an
axisaxis
• Distance between the force and axis ofDistance between the force and axis of
rotation is the moment armrotation is the moment arm
• Couple: two forces of equal magnitude inCouple: two forces of equal magnitude in
opposite and parallel directions,opposite and parallel directions,
separated by a perpendicular distanceseparated by a perpendicular distance
• G and B are a coupleG and B are a couple
MomentsMoments
• Depending on location of GDepending on location of G
and B, two types ofand B, two types of
moments:moments:
•
Righting moment:Righting moment: tends totends to
return ship to upright positionreturn ship to upright position
•
Upsetting moment:Upsetting moment: tends totends to
overturn shipoverturn ship
• Magnitude of rightingMagnitude of righting
moment:moment:
•
RM = W * GZRM = W * GZ (ft-tons)(ft-tons)
•
GZ: moment armGZ: moment arm (ft)(ft)
MetacenterMetacenter
•
Def’n: the intersectionDef’n: the intersection
of two successiveof two successive
lines of action of thelines of action of the
force of buoyancy asforce of buoyancy as
ship heels throughship heels through
small angles (M)small angles (M)
•
If angle too large, MIf angle too large, M
moves off centerlinemoves off centerline
MetacenterMetacenter
•
Metacentric HeightMetacentric Height
(GM)(GM)
•
Determines size ofDetermines size of
righting/upsetting armrighting/upsetting arm
(for angles < 7(for angles < 7oo
))
GZ = GM*sinGZ = GM*sinφφ
•
Large GM -> largeLarge GM -> large
righting arm (stiff)righting arm (stiff)
•
Small GM -> smallSmall GM -> small
righting arm (tender)righting arm (tender)
MetacenterMetacenter
•
Relationship between G and MRelationship between G and M
• G under M: ship is stableG under M: ship is stable
•
G = M: ship neutralG = M: ship neutral
• G over M: ship unstableG over M: ship unstable
STABLESTABLE UNSTABLEUNSTABLE
Metacenter v. Stability CurvesMetacenter v. Stability Curves
•
At this point, we could use lots ofAt this point, we could use lots of
trigonometry to determine exact valuestrigonometry to determine exact values
of forces, etc for all angles -> too muchof forces, etc for all angles -> too much
workwork
•
GM used as a measure of stability up toGM used as a measure of stability up to
7°, after that values of GZ are plotted at7°, after that values of GZ are plotted at
successive angles to create the stabilitysuccessive angles to create the stability
curvecurve
Stability CurveStability Curve
Stability CurveStability Curve
• Plot GZ (righting arm) vs. angle of heelPlot GZ (righting arm) vs. angle of heel
•
Ship’s G does not change as angle changesShip’s G does not change as angle changes
•
Ship’s B always at center of underwater portion ofShip’s B always at center of underwater portion of
hullhull
•
Ship’s underwater portion of hull changes as heelShip’s underwater portion of hull changes as heel
angle changesangle changes
• GZ changes as angle changesGZ changes as angle changes
Questions?Questions?

More Related Content

What's hot

Buoyancy & floatation
Buoyancy & floatationBuoyancy & floatation
Buoyancy & floatationRupesh Parikh
 
NAVAL ARCHITECTURE- GEOMETRY OF SHIP
NAVAL ARCHITECTURE- GEOMETRY OF SHIPNAVAL ARCHITECTURE- GEOMETRY OF SHIP
NAVAL ARCHITECTURE- GEOMETRY OF SHIPSomasundaramRenganat
 
Ch 9 Rotational Dynamics
Ch 9 Rotational DynamicsCh 9 Rotational Dynamics
Ch 9 Rotational DynamicsScott Thomas
 
Conservation of linear momentum
Conservation of linear momentumConservation of linear momentum
Conservation of linear momentumIdrul Nafiz
 
Chapter four fluid mechanics
Chapter four fluid mechanicsChapter four fluid mechanics
Chapter four fluid mechanicsabrish shewa
 
Mechanical properties of fluids
Mechanical properties of fluidsMechanical properties of fluids
Mechanical properties of fluidshome
 
Pressure in fluids
Pressure in fluidsPressure in fluids
Pressure in fluidsreastment
 
Chapter 7 gravitation
Chapter 7 gravitationChapter 7 gravitation
Chapter 7 gravitationecphysics
 
Fluids Lecture
Fluids LectureFluids Lecture
Fluids LectureFroyd Wess
 
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIM
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIMTUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIM
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIMYogga Haw
 
Hidrodinamica...
Hidrodinamica...Hidrodinamica...
Hidrodinamica...stebanj
 
1.5 projectile motion
1.5    projectile motion1.5    projectile motion
1.5 projectile motionDavid Young
 
Conservation Of Momentum
Conservation Of MomentumConservation Of Momentum
Conservation Of MomentumMaizer
 
IGCSE PHYSICS: Equilibrium and Centre of Mass
IGCSE PHYSICS: Equilibrium and Centre of MassIGCSE PHYSICS: Equilibrium and Centre of Mass
IGCSE PHYSICS: Equilibrium and Centre of MassRozzie Jhana CamQue
 
Ship Loads and stresses
Ship Loads and stressesShip Loads and stresses
Ship Loads and stressesdhanabenz
 

What's hot (20)

Buoyancy & floatation
Buoyancy & floatationBuoyancy & floatation
Buoyancy & floatation
 
NAVAL ARCHITECTURE- GEOMETRY OF SHIP
NAVAL ARCHITECTURE- GEOMETRY OF SHIPNAVAL ARCHITECTURE- GEOMETRY OF SHIP
NAVAL ARCHITECTURE- GEOMETRY OF SHIP
 
Ch 9 Rotational Dynamics
Ch 9 Rotational DynamicsCh 9 Rotational Dynamics
Ch 9 Rotational Dynamics
 
Unit 23 - Fluid Pressure
Unit 23 - Fluid PressureUnit 23 - Fluid Pressure
Unit 23 - Fluid Pressure
 
Conservation of linear momentum
Conservation of linear momentumConservation of linear momentum
Conservation of linear momentum
 
PHY300 Chapter 8 physics 5e
PHY300 Chapter 8 physics 5ePHY300 Chapter 8 physics 5e
PHY300 Chapter 8 physics 5e
 
Chapter four fluid mechanics
Chapter four fluid mechanicsChapter four fluid mechanics
Chapter four fluid mechanics
 
Mechanical properties of fluids
Mechanical properties of fluidsMechanical properties of fluids
Mechanical properties of fluids
 
1.2.1 projectile motion
1.2.1   projectile motion1.2.1   projectile motion
1.2.1 projectile motion
 
Pressure in fluids
Pressure in fluidsPressure in fluids
Pressure in fluids
 
Chapter 7 gravitation
Chapter 7 gravitationChapter 7 gravitation
Chapter 7 gravitation
 
Fluids Lecture
Fluids LectureFluids Lecture
Fluids Lecture
 
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIM
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIMTUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIM
TUGAS MERANCANG KAPAL III - PERHITUNGAN STABILITAS DAN TRIM
 
Hidrodinamica...
Hidrodinamica...Hidrodinamica...
Hidrodinamica...
 
1.5 projectile motion
1.5    projectile motion1.5    projectile motion
1.5 projectile motion
 
Conservation Of Momentum
Conservation Of MomentumConservation Of Momentum
Conservation Of Momentum
 
IGCSE PHYSICS: Equilibrium and Centre of Mass
IGCSE PHYSICS: Equilibrium and Centre of MassIGCSE PHYSICS: Equilibrium and Centre of Mass
IGCSE PHYSICS: Equilibrium and Centre of Mass
 
Stabiltas&buoyancy
Stabiltas&buoyancyStabiltas&buoyancy
Stabiltas&buoyancy
 
Oscillation & Oscillatory Motion
Oscillation & Oscillatory MotionOscillation & Oscillatory Motion
Oscillation & Oscillatory Motion
 
Ship Loads and stresses
Ship Loads and stressesShip Loads and stresses
Ship Loads and stresses
 

Viewers also liked (18)

Naval arch incline test
Naval arch incline testNaval arch incline test
Naval arch incline test
 
Engine speed governors
Engine speed governorsEngine speed governors
Engine speed governors
 
generators
generatorsgenerators
generators
 
Ac generator
Ac generatorAc generator
Ac generator
 
Timber deck code
Timber deck codeTimber deck code
Timber deck code
 
INTERNSHIP REPORT (FINAL)
INTERNSHIP REPORT (FINAL)INTERNSHIP REPORT (FINAL)
INTERNSHIP REPORT (FINAL)
 
Governor
GovernorGovernor
Governor
 
Governor
GovernorGovernor
Governor
 
Watt Governors
Watt GovernorsWatt Governors
Watt Governors
 
Railwayloco 140218012723-phpapp02
Railwayloco 140218012723-phpapp02Railwayloco 140218012723-phpapp02
Railwayloco 140218012723-phpapp02
 
Governor
GovernorGovernor
Governor
 
Important terminology in governors
Important terminology in governorsImportant terminology in governors
Important terminology in governors
 
Electronic governor
Electronic governorElectronic governor
Electronic governor
 
Governors
GovernorsGovernors
Governors
 
Governor used in vehicles
Governor used in vehiclesGovernor used in vehicles
Governor used in vehicles
 
NTPC BADARPUR PROJECT REPORT
NTPC BADARPUR PROJECT REPORTNTPC BADARPUR PROJECT REPORT
NTPC BADARPUR PROJECT REPORT
 
Governors
GovernorsGovernors
Governors
 
Speed Governers
Speed GovernersSpeed Governers
Speed Governers
 

Similar to Lesson 24 buoyancy & stability

Chp4-1to4-8.ppt
Chp4-1to4-8.pptChp4-1to4-8.ppt
Chp4-1to4-8.pptPhamTtTip
 
Coupled motions in turning and sea trials
Coupled motions in turning and sea trials Coupled motions in turning and sea trials
Coupled motions in turning and sea trials Ahmed Taha
 
Bargestabilityguidelines 121107093639-phpapp01
Bargestabilityguidelines 121107093639-phpapp01Bargestabilityguidelines 121107093639-phpapp01
Bargestabilityguidelines 121107093639-phpapp01HSD Luu
 
Rotational motion pt1
Rotational motion pt1Rotational motion pt1
Rotational motion pt1stephm32
 
Shear Force And Bending Moment--KPC/CE/1st year/Mainak Biswas
Shear Force And Bending Moment--KPC/CE/1st year/Mainak BiswasShear Force And Bending Moment--KPC/CE/1st year/Mainak Biswas
Shear Force And Bending Moment--KPC/CE/1st year/Mainak BiswasSovonesh Pal
 
Bending and Shear in Simple Beams.ppt
Bending and Shear in Simple Beams.pptBending and Shear in Simple Beams.ppt
Bending and Shear in Simple Beams.pptRadhiMajmudar
 
Displacement and weight of Ship
Displacement and weight of ShipDisplacement and weight of Ship
Displacement and weight of ShipAhmed Taha
 
Overview of Ship Stability and how to desing ship.pptx
Overview of Ship Stability and how to desing ship.pptxOverview of Ship Stability and how to desing ship.pptx
Overview of Ship Stability and how to desing ship.pptxUswahPawara1
 
Basic civil Mechanical Engineering Subject full notes according to JNTUA
Basic civil Mechanical Engineering Subject full notes according to JNTUABasic civil Mechanical Engineering Subject full notes according to JNTUA
Basic civil Mechanical Engineering Subject full notes according to JNTUAMOKSHIT TECH
 
Stabilitas Pelajaran (1) (introduction).ppt
Stabilitas Pelajaran (1) (introduction).pptStabilitas Pelajaran (1) (introduction).ppt
Stabilitas Pelajaran (1) (introduction).pptIskandarZulkarnain24647
 

Similar to Lesson 24 buoyancy & stability (20)

Buoyancy & Stability
Buoyancy & StabilityBuoyancy & Stability
Buoyancy & Stability
 
Chp4-1to4-8.ppt
Chp4-1to4-8.pptChp4-1to4-8.ppt
Chp4-1to4-8.ppt
 
Coupled motions in turning and sea trials
Coupled motions in turning and sea trials Coupled motions in turning and sea trials
Coupled motions in turning and sea trials
 
Stability lrg
Stability lrgStability lrg
Stability lrg
 
Bargestabilityguidelines 121107093639-phpapp01
Bargestabilityguidelines 121107093639-phpapp01Bargestabilityguidelines 121107093639-phpapp01
Bargestabilityguidelines 121107093639-phpapp01
 
3.gravimetry
3.gravimetry3.gravimetry
3.gravimetry
 
9 29
9 299 29
9 29
 
Ship_Stability.ppt
Ship_Stability.pptShip_Stability.ppt
Ship_Stability.ppt
 
Rotational motion pt1
Rotational motion pt1Rotational motion pt1
Rotational motion pt1
 
Ship's Transverse Stability
Ship's Transverse StabilityShip's Transverse Stability
Ship's Transverse Stability
 
Shear Force And Bending Moment--KPC/CE/1st year/Mainak Biswas
Shear Force And Bending Moment--KPC/CE/1st year/Mainak BiswasShear Force And Bending Moment--KPC/CE/1st year/Mainak Biswas
Shear Force And Bending Moment--KPC/CE/1st year/Mainak Biswas
 
108459462 chapter-7
108459462 chapter-7108459462 chapter-7
108459462 chapter-7
 
Bending and Shear in Simple Beams.ppt
Bending and Shear in Simple Beams.pptBending and Shear in Simple Beams.ppt
Bending and Shear in Simple Beams.ppt
 
Displacement and weight of Ship
Displacement and weight of ShipDisplacement and weight of Ship
Displacement and weight of Ship
 
Overview of Ship Stability and how to desing ship.pptx
Overview of Ship Stability and how to desing ship.pptxOverview of Ship Stability and how to desing ship.pptx
Overview of Ship Stability and how to desing ship.pptx
 
Small angle stability
Small angle stability Small angle stability
Small angle stability
 
Basic civil Mechanical Engineering Subject full notes according to JNTUA
Basic civil Mechanical Engineering Subject full notes according to JNTUABasic civil Mechanical Engineering Subject full notes according to JNTUA
Basic civil Mechanical Engineering Subject full notes according to JNTUA
 
Physics
PhysicsPhysics
Physics
 
Structural features fold, fault, joints
Structural features fold, fault, jointsStructural features fold, fault, joints
Structural features fold, fault, joints
 
Stabilitas Pelajaran (1) (introduction).ppt
Stabilitas Pelajaran (1) (introduction).pptStabilitas Pelajaran (1) (introduction).ppt
Stabilitas Pelajaran (1) (introduction).ppt
 

Recently uploaded

Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptDineshKumar4165
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...drmkjayanthikannan
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXssuser89054b
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdfKamal Acharya
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptNANDHAKUMARA10
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdfKamal Acharya
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxMuhammadAsimMuhammad6
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueBhangaleSonal
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . pptDineshKumar4165
 
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptx
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptxA CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptx
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptxmaisarahman1
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadhamedmustafa094
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationBhangaleSonal
 
Wadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptxWadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptxNadaHaitham1
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapRishantSharmaFr
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxSCMS School of Architecture
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Call Girls Mumbai
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdfKamal Acharya
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network DevicesChandrakantDivate1
 

Recently uploaded (20)

Thermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.pptThermal Engineering -unit - III & IV.ppt
Thermal Engineering -unit - III & IV.ppt
 
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
Unit 4_Part 1 CSE2001 Exception Handling and Function Template and Class Temp...
 
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
XXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXX
 
Online food ordering system project report.pdf
Online food ordering system project report.pdfOnline food ordering system project report.pdf
Online food ordering system project report.pdf
 
Block diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.pptBlock diagram reduction techniques in control systems.ppt
Block diagram reduction techniques in control systems.ppt
 
School management system project Report.pdf
School management system project Report.pdfSchool management system project Report.pdf
School management system project Report.pdf
 
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptxOrlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
Orlando’s Arnold Palmer Hospital Layout Strategy-1.pptx
 
Double Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torqueDouble Revolving field theory-how the rotor develops torque
Double Revolving field theory-how the rotor develops torque
 
Thermal Engineering Unit - I & II . ppt
Thermal Engineering  Unit - I & II . pptThermal Engineering  Unit - I & II . ppt
Thermal Engineering Unit - I & II . ppt
 
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptx
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptxA CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptx
A CASE STUDY ON CERAMIC INDUSTRY OF BANGLADESH.pptx
 
kiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal loadkiln thermal load.pptx kiln tgermal load
kiln thermal load.pptx kiln tgermal load
 
DC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equationDC MACHINE-Motoring and generation, Armature circuit equation
DC MACHINE-Motoring and generation, Armature circuit equation
 
Wadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptxWadi Rum luxhotel lodge Analysis case study.pptx
Wadi Rum luxhotel lodge Analysis case study.pptx
 
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak HamilCara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
Cara Menggugurkan Sperma Yang Masuk Rahim Biyar Tidak Hamil
 
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced LoadsFEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
FEA Based Level 3 Assessment of Deformed Tanks with Fluid Induced Loads
 
Unleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leapUnleashing the Power of the SORA AI lastest leap
Unleashing the Power of the SORA AI lastest leap
 
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptxHOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
HOA1&2 - Module 3 - PREHISTORCI ARCHITECTURE OF KERALA.pptx
 
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
Bhubaneswar🌹Call Girls Bhubaneswar ❤Komal 9777949614 💟 Full Trusted CALL GIRL...
 
Online electricity billing project report..pdf
Online electricity billing project report..pdfOnline electricity billing project report..pdf
Online electricity billing project report..pdf
 
Computer Networks Basics of Network Devices
Computer Networks  Basics of Network DevicesComputer Networks  Basics of Network Devices
Computer Networks Basics of Network Devices
 

Lesson 24 buoyancy & stability

  • 2. ObjectivesObjectives • Principles of StabilityPrinciples of Stability • Archimedes PrincipleArchimedes Principle • Terminology of ship’s hydrostaticsTerminology of ship’s hydrostatics • Stability & moments -> staying uprightStability & moments -> staying upright • Metacenter, Center of Gravity, Center ofMetacenter, Center of Gravity, Center of Buoyancy, etc.Buoyancy, etc. • Stability curvesStability curves
  • 3. Principles of StabilityPrinciples of Stability • Floating object is acted on by forces of gravityFloating object is acted on by forces of gravity and forces of buoyancyand forces of buoyancy • Static equilibriumStatic equilibrium ΣΣFFii = 0= 0 • Three conditions of static equilibrium:Three conditions of static equilibrium: • Stable:Stable: return to same position if tippedreturn to same position if tipped • Neutral:Neutral: when rotated, will come to rest in anywhen rotated, will come to rest in any positionposition • Unstable:Unstable: will come to rest in new position if forcewill come to rest in new position if force acts on itacts on it
  • 4. Archimedes PrincipleArchimedes Principle • Law: a body floating or submerged in aLaw: a body floating or submerged in a fluid is buoyed up by a force equal to thefluid is buoyed up by a force equal to the weight of the water it displacesweight of the water it displaces • Depth to which ship sinks depends onDepth to which ship sinks depends on density of water (density of water (ρρ = 1 ton/35ft= 1 ton/35ft33 seawater)seawater)
  • 5. Archimedes PrincipleArchimedes Principle • Ship sinks until weight of waterShip sinks until weight of water displaced by the underwater volume isdisplaced by the underwater volume is equal to the weight of the shipequal to the weight of the ship • Forces of gravity:Forces of gravity: G = mG = mshipshipg =Wg =Wshipship • Forces of buoyancy:Forces of buoyancy: B =B = ρρwaterwaterVVdisplaceddisplaced WWshipship == ρρwaterwaterVVdisplaceddisplaced
  • 6. Archimedes PrincipleArchimedes Principle • Forces act everywhere on ship -> tooForces act everywhere on ship -> too tough to analyzetough to analyze • Center of Gravity (G):Center of Gravity (G): all gravity forcesall gravity forces as one force acting downward throughas one force acting downward through ship’s geometric centership’s geometric center • Center of Buoyancy (B):Center of Buoyancy (B): all buoyancyall buoyancy forces as one force acting upwardforces as one force acting upward through underwater geometric centerthrough underwater geometric center
  • 7. Archimedes PrincipleArchimedes Principle • Center of Gravity (G):Center of Gravity (G): • Changes position only by change/shift inChanges position only by change/shift in mass of shipmass of ship • Does not change positionDoes not change position with movement ofwith movement of shipship • Center of Buoyancy (B):Center of Buoyancy (B): • Changes positionChanges position with movement of ship ->with movement of ship -> underwater geometric center movesunderwater geometric center moves • Also affected by displacementAlso affected by displacement G
  • 8. Hydrostatics TerminologyHydrostatics Terminology • Displacement:Displacement: total weight of ship = totaltotal weight of ship = total submerged volume of ship (measured in tons)submerged volume of ship (measured in tons) • Draft:Draft: vertical distance from waterline to keel atvertical distance from waterline to keel at deepest point (measured in feet)deepest point (measured in feet) • Reserve Buoyancy:Reserve Buoyancy: volume of watertight portionvolume of watertight portion of ship above waterline (important factor inof ship above waterline (important factor in ship’s ability to survive flooding)ship’s ability to survive flooding) • Freeboard:Freeboard: vertical distance from waterline tovertical distance from waterline to main deck (rough indication of reservemain deck (rough indication of reserve buoyancy)buoyancy)
  • 9. Hydrostatics TerminologyHydrostatics Terminology • As draft & displacement increase,As draft & displacement increase, freeboard and reserve buoyancy decreasefreeboard and reserve buoyancy decrease
  • 10. MomentsMoments • Def’n: tendency of a force to produceDef’n: tendency of a force to produce rotation or to move an object about anrotation or to move an object about an axisaxis • Distance between the force and axis ofDistance between the force and axis of rotation is the moment armrotation is the moment arm • Couple: two forces of equal magnitude inCouple: two forces of equal magnitude in opposite and parallel directions,opposite and parallel directions, separated by a perpendicular distanceseparated by a perpendicular distance • G and B are a coupleG and B are a couple
  • 11. MomentsMoments • Depending on location of GDepending on location of G and B, two types ofand B, two types of moments:moments: • Righting moment:Righting moment: tends totends to return ship to upright positionreturn ship to upright position • Upsetting moment:Upsetting moment: tends totends to overturn shipoverturn ship • Magnitude of rightingMagnitude of righting moment:moment: • RM = W * GZRM = W * GZ (ft-tons)(ft-tons) • GZ: moment armGZ: moment arm (ft)(ft)
  • 12. MetacenterMetacenter • Def’n: the intersectionDef’n: the intersection of two successiveof two successive lines of action of thelines of action of the force of buoyancy asforce of buoyancy as ship heels throughship heels through small angles (M)small angles (M) • If angle too large, MIf angle too large, M moves off centerlinemoves off centerline
  • 13. MetacenterMetacenter • Metacentric HeightMetacentric Height (GM)(GM) • Determines size ofDetermines size of righting/upsetting armrighting/upsetting arm (for angles < 7(for angles < 7oo )) GZ = GM*sinGZ = GM*sinφφ • Large GM -> largeLarge GM -> large righting arm (stiff)righting arm (stiff) • Small GM -> smallSmall GM -> small righting arm (tender)righting arm (tender)
  • 14. MetacenterMetacenter • Relationship between G and MRelationship between G and M • G under M: ship is stableG under M: ship is stable • G = M: ship neutralG = M: ship neutral • G over M: ship unstableG over M: ship unstable STABLESTABLE UNSTABLEUNSTABLE
  • 15. Metacenter v. Stability CurvesMetacenter v. Stability Curves • At this point, we could use lots ofAt this point, we could use lots of trigonometry to determine exact valuestrigonometry to determine exact values of forces, etc for all angles -> too muchof forces, etc for all angles -> too much workwork • GM used as a measure of stability up toGM used as a measure of stability up to 7°, after that values of GZ are plotted at7°, after that values of GZ are plotted at successive angles to create the stabilitysuccessive angles to create the stability curvecurve
  • 17. Stability CurveStability Curve • Plot GZ (righting arm) vs. angle of heelPlot GZ (righting arm) vs. angle of heel • Ship’s G does not change as angle changesShip’s G does not change as angle changes • Ship’s B always at center of underwater portion ofShip’s B always at center of underwater portion of hullhull • Ship’s underwater portion of hull changes as heelShip’s underwater portion of hull changes as heel angle changesangle changes • GZ changes as angle changesGZ changes as angle changes