riversongs Posted November 23, 2024 Report Share Posted November 23, 2024 Free Download Steam Boilers, Steam & Condensate Systems 16Hour MasterclassPublished 11/2024MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHzLanguage: English | Size: 6.83 GB | Duration: 16h 3mA comprehensive guide to design operation optimization and troubleshooting of boiler plants steam and condensate systemsWhat you'll learnDesign and optimize steam systems for safe, efficient, and reliable operation in process plantsCalculate and measure steam consumption across various plant items, equipment, and processesSize and layout steam distribution pipes and manage steam mains, ensuring proper drainage and expansion controlUnderstand the properties of steam, including superheated steam and steam quality, and apply this knowledge to heat transfer applicationsSelect and maintain steam traps and strainers to ensure efficient steam system operation and reduce energy lossIdentify potential hazards of steam and implement preventive measures to ensure system safetyOperate and troubleshoot steam boilers based on an in-depth understanding of boiler design, construction, and controlsOptimize boiler efficiency through best practices in combustion, water treatment, and heat recovery systemsManage boiler water levels and implement automatic level control systems, alarms, and safety measuresRecover and reuse condensate effectively, reducing energy consumption and operational costsDesign and size condensate return lines, avoiding pressure drops and ensuring smooth condensate flowPumping and lifting condensate efficiently, minimizing energy loss and ensuring proper system operationApply real-world troubleshooting techniques to resolve common issues in steam, boiler, and condensate systemsUtilize engineering best practices to improve the overall performance and safety of steam and condensate systemsRequirementsThere are no strict prerequisites for enrolling in this masterclass. Whether you are an experienced engineer or new to steam systems, boilers, and condensate recovery, this course is designed to accommodate learners of all levelsWhat you need to succeedA basic understanding of industrial operations is helpful, but no prior knowledge of steam or condensate systems is requiredAn interest in improving energy efficiency and operational safety in plant environmentsA desire to learn practical, real-world skills from experienced professionalsThis masterclass is structured to guide you step-by-step through foundational concepts and gradually introduce more advanced techniques, making it accessible for beginners while still being valuable for seasoned professionals looking to enhance their expertiseWith this flexible approach, anyone interested in improving their knowledge of steam, boiler, and condensate systems can confidently join and succeed in the courseDescriptionUnlock the full potential of your steam and condensate systems with this 16-hour masterclass packed with real-world case studies, engineering best practices, and extensive visuals.Designed and delivered by industry experts with hands-on experience, this course is perfect for engineers, plant managers, and technicians aiming to master the intricacies of steam systems, boilers, and condensate recovery.Why take this course?Steam and condensate systems are essential to the efficiency, safety, and productivity of process plants. This masterclass will equip you with the knowledge and skills to design, operate, maintain, and optimize these systems to enhance energy efficiency and ensure trouble-free operations. Throughout the course, you'll be guided by in-depth technical descriptions, detailed animations, step-by-step instructions, and numerous solved problems that emphasize key learning points.PART 1: Steam SystemsIn this part, we will dive deep into steam systems, which form the foundation of efficient plant operations. You will learn how to design, size, and maintain steam systems, ensuring they are optimized for safety, energy efficiency, and operational excellence.Topics include:Steam plant overview and the properties of steam (including superheated steam and steam quality)Heat transfer principles in steam and condensate systemsEstimating and measuring steam consumption for process equipment, tanks, and plant itemsPipe sizing for steam distribution and effective drainage strategiesThe importance of steam traps, strainers, and understanding steam hazardsBy the end of Part 1, you'll have a solid understanding of how to manage your steam distribution system from the boiler to the point of use and through condensate recovery.PART 2: Steam BoilersThis section is dedicated to steam boilers, focusing on the design, control, and efficient operation of these critical systems. Whether you're dealing with shell boilers or other boiler types, this module offers the insights needed to ensure reliable performance and safety.Topics covered include:Overview of the boiler house and boiler efficiencyBoiler fittings, mountings, and steam headersFeedwater conditioning, controlling TDS (Total Dissolved Solids), and heat recovery from boiler blowdownManaging water levels and automatic level control systems in steam boilersTroubleshooting guidelines and operation best practices in accordance with ASME and other standardsIn this part, you'll gain valuable insights from real-world industrial scenarios, learning what worked and what didn't during boiler startup, debottlenecking, and troubleshooting.PART 3: Condensate SystemsEfficient condensate recovery is key to maximizing the energy potential of your steam systems. In this final part, you'll explore everything from condensate return line layouts to pumping methods and system optimization.Topics include:Condensate recovery strategies to reduce energy wasteBest practices for layout and sizing of condensate return linesPumping condensate from vented receivers and how to lift condensate over obstaclesEnsuring efficient condensate system operation and troubleshootingBy mastering these concepts, you'll be able to design and operate condensate systems that maximize plant efficiency while minimizing downtime and operational costs.Key Features of the Masterclass:Real-world case studies showcasing actual plant scenariosExtensive visuals and animations to simplify complex topicsEngineering best practices with downloadable resources and design templatesNumerous quizzes and solved problems to reinforce learning and ensure concept masteryDelivered by experienced engineers with hands-on expertise in steam systems and boilersBy completing this masterclass, you will gain the confidence and expertise needed to manage and troubleshoot your steam, boiler, and condensate systems effectively. This course will help you avoid costly mistakes and ensure the safe, efficient, and reliable operation of your plant.Enroll now and take the next step in your professional development !WR TrainingSpread the wings of your knowledgeOverviewSection 1: Steam plant overviewLecture 1 IntroductionLecture 2 The boilerLecture 3 FeedwaterLecture 4 BlowdownLecture 5 Level controlLecture 6 The flow of steam to the plantLecture 7 Steam qualityLecture 8 Pressure reductionLecture 9 Steam at the point of useLecture 10 Process controlLecture 11 Condensate removalLecture 12 Before you proceed to the next sectionSection 2: What is steam ?Lecture 13 IntroductionLecture 14 Triple pointLecture 15 IceLecture 16 WaterLecture 17 SteamLecture 18 Enthalpy of evaporationLecture 19 Enthalpy of saturated steamLecture 20 Saturated steam tablesLecture 21 Dryness fractionLecture 22 The steam phase diagramLecture 23 Flash steamLecture 24 Mass and energy conservationLecture 25 Before you proceed to the next sectionSection 3: Superheated steamLecture 26 IntroductionLecture 27 Superheated steam tablesLecture 28 Superheated steam for heat transfer applicationsLecture 29 Sizing exampleLecture 30 The effect of reducing steam pressureLecture 31 The Mollier chartLecture 32 Steam expansion through a turbineLecture 33 Before you proceed to the next sectionSection 4: Steam qualityLecture 34 IntroductionLecture 35 Correct quantityLecture 36 Correct temperature and pressureLecture 37 Air and other incondensable gasesLecture 38 Other sources of air in the steam and condensate systemsLecture 39 Cleanliness of steamLecture 40 Dryness of steamLecture 41 WaterhammerLecture 42 Before you proceed to the next sectionSection 5: Heat transfer in steam and condensate systemsLecture 43 Modes of heat transferLecture 44 The overall heat transfer coefficient "U"Lecture 45 Temperature differenceLecture 46 Barriers to heat transferLecture 47 Temperature gradients across layersLecture 48 Defining the overall heat transfer coefficient "U"Lecture 49 Before you proceed to the next sectionSection 6: Methods of estimating steam consumptionLecture 50 IntroductionLecture 51 CalculationLecture 52 Non-flow type applicationsLecture 53 Flow type applicationsLecture 54 Before you proceed to the next sectionSection 7: Measurement of steam consumptionLecture 55 Steam flowmeterLecture 56 Condensate pumpLecture 57 Collecting condensateLecture 58 Thermal ratingLecture 59 Before you proceed to the next sectionSection 8: Steam consumption of process tanksLecture 60 IntroductionLecture 61 Energy requirementsLecture 62 Example of heat consumption of tanks - part 1Lecture 63 Before you proceed to the next sectionSection 9: Heating process equipment with steam coils and jacketsLecture 64 IntroductionLecture 65 Submerged steam coilsLecture 66 Example of heat consumption of tanks - part 2Lecture 67 Other steam coil layoutsLecture 68 Control valve arrangementLecture 69 Steam jacketsLecture 70 Before you proceed to the next sectionSection 10: Heating tanks by steam injectionLecture 71 IntroductionLecture 72 Size of the steam bubblesLecture 73 Head of liquid over steam injection pointLecture 74 Steam bubbles velocityLecture 75 Temperature of the liquidLecture 76 Sparge pipesLecture 77 Example of heat consumption of tanks - part 3Lecture 78 Steam injectorsLecture 79 Example of heat consumption of tanks - part 4Lecture 80 Before you proceed to the next sectionSection 11: Steam consumption of pipesLecture 81 Introduction to steam consumption of pipesLecture 82 Steam mainsLecture 83 Warmin-up loadLecture 84 Running-up loadLecture 85 Before you proceed to the next sectionSection 12: Steam consumption of plant itemsLecture 86 Heat exchangersLecture 87 More about shell and tube heat exchangersLecture 88 More about plate and frame heat exchangersLecture 89 Tracer linesLecture 90 Sizing tracer linesSection 13: The boiler houseLecture 91 Introduction to the boiler houseLecture 92 Boiler typesLecture 93 Shell boilersLecture 94 Lancashire boilersLecture 95 Economic boilers - Two-pass, dry backLecture 96 Economic boilers - Three-pass, wet backLecture 97 Packaged boilersLecture 98 Reverse flameLecture 99 Shell boiler summaryLecture 100 Water tube boilersLecture 101 Alternative water tube boiler layoutsLecture 102 Steam generatorsLecture 103 EconomizersLecture 104 SuperheatersLecture 105 Before you proceed to the next sectionSection 14: Boiler ratingsLecture 106 IntroductionLecture 107 "From and at" ratingLecture 108 "From and at" rating - Worked exampleLecture 109 kW ratingLecture 110 kW rating - Worked exampleLecture 111 Before you proceed to the next sectionSection 15: Boiler efficiency and combustionLecture 112 IntroductionLecture 113 Heat exported in steamLecture 114 Heat provided by the fuelLecture 115 Heat lossesLecture 116 BurnersLecture 117 Oil burnersLecture 118 Gas burnersLecture 119 Burner control systemsLecture 120 SafetyLecture 121 Before you proceed to the next sectionSection 16: Boiler fittings and mountingsLecture 122 IntroductionLecture 123 Boiler name-plateLecture 124 Safety valvesLecture 125 Stop valvesLecture 126 Feedwater check valveLecture 127 Boiler water quality controlLecture 128 Pressure gaugeLecture 129 Gauge glassesLecture 130 Maintenance of gauge glassesLecture 131 Water level controlLecture 132 Air ventsLecture 133 Vacuum breakersLecture 134 Before you proceed to the next sectionSection 17: Steam headers and off-takesLecture 135 Introduction to steam headersLecture 136 Steam off-takesLecture 137 Water carryoverLecture 138 Warm-upLecture 139 Preventing one boiler pressurizing anotherLecture 140 Ensuring proper steam distributionLecture 141 Steam header characteristicsLecture 142 Before you proceed to the next sectionSection 18: Water propertiesLecture 143 IntroductionLecture 144 Hardness and saltsLecture 145 pH valueLecture 146 Before you proceed to the next sectionSection 19: Water for the boilerLecture 147 IntroductionLecture 148 Good quality steamLecture 149 CarryoverLecture 150 External water treatmentLecture 151 Ion exchangeLecture 152 Base exchange softeningLecture 153 DealkalisationLecture 154 DemineralisationLecture 155 Water quality vs treatment processLecture 156 Before you proceed to the next sectionSection 20: Feedtank and feedwater conditioningLecture 157 IntroductionLecture 158 Worked exampleLecture 159 Feedtank designLecture 160 Feedtank constructionLecture 161 Condensate returnLecture 162 Flash steamLecture 163 Steam injectionLecture 164 Feedtank ventLecture 165 Feedtank take-offLecture 166 MiscellaniousLecture 167 Water level controlLecture 168 DeaeratorsLecture 169 Summary of feedtank componentsLecture 170 Before you proceed to the next sectionSection 21: Controlling TDS in the boiler waterLecture 171 IntroductionLecture 172 Boiler water samplingLecture 173 Conductivity measurement in the boilerLecture 174 Deciding on the required boiler water TDSLecture 175 The blowdown rateLecture 176 Controlling the blowdown rateLecture 177 "Closed loop" TDS control systemsLecture 178 Before you proceed to the next sectionSection 22: Heat recovery from boiler blowdownLecture 179 Introduction to heat recoveryLecture 180 Energy flowrate in blowdownLecture 181 Flash steamLecture 182 Recovering and using flash steamLecture 183 Heat recovery from residual blowdownLecture 184 Design considerationsLecture 185 Summary - Total energy savingLecture 186 More about heat exchangers: Plate typeLecture 187 More about heat exchangers: Shell and tube typeLecture 188 Before you proceed to the next sectionSection 23: Water levels in steam boilersLecture 189 IntroductionLecture 190 Boiler water levelLecture 191 Methods for detecting water levels in steam boilersLecture 192 Level gauge glassLecture 193 MagneticLecture 194 Switch contactLecture 195 Reed contactLecture 196 Optoelectronic switchLecture 197 Hydrostatic pressureLecture 198 Capillary systemsLecture 199 RadarsLecture 200 Radiometric sensorsLecture 201 Before you proceed to the next sectionSection 24: Automatic levels control systemsLecture 202 ON / OFF controlLecture 203 Modulating controlLecture 204 Variable speed feedwater pumpLecture 205 Single element water level controlLecture 206 Two element water level controlLecture 207 Summary of modulating level controlLecture 208 Before you proceed to the next sectionSection 25: Water level alarmsLecture 209 Introduction to water level alarmsLecture 210 LOW water alarmLecture 211 HIGH water alarmLecture 212 Before you proceed to the next sectionSection 26: Installation of level controlsLecture 213 IntroductionLecture 214 External chambersLecture 215 Internal protection tubesLecture 216 Before you proceed to the next sectionSection 27: Pipe sizing for steam distributionLecture 217 IntroductionLecture 218 The working pressureLecture 219 Pressure reductionLecture 220 Standards and wall thicknessLecture 221 Pipe materialLecture 222 Pipe sizingLecture 223 Worked example using the Moody chartLecture 224 Oversized steam pipesLecture 225 Undersized steam pipesLecture 226 Sizing a steam pipe: Pressure factor methodLecture 227 Sizing a steam pipe: Steam pipeline sizing chartLecture 228 Sizing steam pipes on velocity: PrinciplesLecture 229 Sizing steam pipes on velocity: Worked exampleLecture 230 Sizing superheated steam pipesLecture 231 Sizing a steam pipe: Using formulae and equationsLecture 232 Before you proceed to the next sectionSection 28: Steam mains and drainageLecture 233 Introduction to steam mains and drainageLecture 234 Piping layoutLecture 235 Waterhammer (reminder)Lecture 236 Branch linesLecture 237 Drop legLecture 238 How to drain steam mainsLecture 239 Steam leaksLecture 240 Before you proceed to the next sectionSection 29: Steam pipe expansion and supportLecture 241 Allowance for expansionLecture 242 Piping flexibilityLecture 243 Expansion fittingsLecture 244 Pipe support spacingsLecture 245 Before you proceed to the next sectionSection 30: Steam trapsLecture 246 Overview of steam trapsLecture 247 Float trapsLecture 248 Thermostatic trapsLecture 249 Thermodynamic trapsLecture 250 Inverted bucket trapsLecture 251 Testing of steam trapsLecture 252 Maintenance of steam trapsLecture 253 Energy losses in steam trapsLecture 254 Before you proceed to the next sectionSection 31: StrainersLecture 255 Overview of strainersLecture 256 Wye strainersLecture 257 Basket strainersLecture 258 Strainer screensSection 32: Hazards of steamLecture 259 Introduction to hazards of steamLecture 260 Purging with steamLecture 261 Blanketing with steamLecture 262 Hazards from condensing steamLecture 263 Water from steamLecture 264 Thermal expansionLecture 265 Stresses in equipmentLecture 266 Before you proceed to the next sectionSection 33: Condensate recoveryLecture 267 Introduction to condensate recoveryLecture 268 Calculating the amount of flash steam from condensateLecture 269 Live steam / Flash steamLecture 270 Why return condensate and reuse it ?Lecture 271 The financial value or returning condensateLecture 272 Before you proceed to the next sectionSection 34: Layout of condensate return linesLecture 273 Introduction to layout of condensate return linesLecture 274 Drain lines to steam traps (1/3)Lecture 275 Sizing a drain line to a thermostatic trapLecture 276 Drain lines to steam traps (2/3)Lecture 277 Drain lines to steam traps (3/3)Lecture 278 Discharge lines from trapsLecture 279 Common return linesLecture 280 Draining into flooded linesLecture 281 Discharge lines at different pressuresLecture 282 Before you proceed to the next sectionSection 35: Sizing condensate return linesLecture 283 IntroductionLecture 284 Sizing drain lines to trapsLecture 285 Sizing drain lines to traps - Worked exampleLecture 286 Sizing discharge lines from trapsLecture 287 Factors affecting the two-phase flowLecture 288 Condensate pipe sizing chartLecture 289 Sizing for falling discharge lines - Worked exampleLecture 290 Sizing for rising discharge lines - Worked exampleLecture 291 Sizing for vented discharge lines - Worked exampleLecture 292 Common return lines - Falling linesLecture 293 Common return lines - Rising linesLecture 294 Falling common line - Apply your knowledgeLecture 295 Rising common line - Apply your knowledgeLecture 296 Before you proceed to the next sectionSection 36: Pumping condensate from vented receiversLecture 297 Introduction to pumping condensate from vented receiversLecture 298 Pumping terminologyLecture 299 Cavitation in centrifugal pumps experimentLecture 300 Head exercise with a positive displacement pumpLecture 301 Centrifugal condensate pumpsLecture 302 Sizing a condensate recovery unitLecture 303 Sizing the discharge pipe for a condensate recovery unitLecture 304 Positive displacement condensate pumpsLecture 305 More on positive displacement condensate pumpsLecture 306 Pump applicationLecture 307 Sizing a mechanical condensate pumpLecture 308 Condensate pump sizing exerciseLecture 309 Sizing the discharge pipe for a mechanical condensate pumpLecture 310 Sizing the discharge pipe for a mechanical condensate pump - Worked exampleLecture 311 Sizing the discharge pipe for a mechanical condensate pump - Worked example 2Lecture 312 Assessing a larger pump and a smaller delivery lineLecture 313 Condensate velocitiesLecture 314 Best practices for long delivery linesLecture 315 Before you proceed to the next sectionSection 37: Lifting condensateLecture 316 Lifting condensate from a steam mainLecture 317 Contaminated condensateLecture 318 Before you proceed to the next sectionSection 38: Downloadable resourcesLecture 319 Download meThis masterclass is ideal for a wide range of professionals looking to deepen their understanding of steam systems, boilers, and condensate recovery. You will find the course content valuable if you are:,Engineers and Technicians working in process plants, power generation, petrochemicals, or any industrial sector that relies on steam systems for energy and production,Plant Managers and Operators responsible for the operation, maintenance, and optimization of steam and condensate systems and looking to improve plant efficiency and reduce operational costs,Maintenance Personnel tasked with troubleshooting and maintaining steam boilers and condensate systems, ensuring their reliable and safe operation,Energy Efficiency Specialists focused on maximizing energy recovery and minimizing waste through effective condensate recovery and steam system optimization,New Engineers or Graduates looking to build a strong foundation in steam and condensate systems, preparing for a career in industries like refining, chemical processing, or power generation,Anyone Seeking Practical Knowledge in steam, boiler, and condensate systems, even without prior experience, to boost their technical skills and understanding of industrial energy systems,Whether you're a beginner aiming to grasp the fundamentals or an experienced professional seeking advanced insights, this course offers valuable knowledge and real-world applications that will elevate your skills and enhance your careerHomepagehttps://www.udemy.com/course/steam-boilers-steam-condensate-systems-16hour-masterclass/Download ( Rapidgator )https://rg.to/file/0e6c192677560329d64b430b8d1b3c01/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part2.rar.htmlhttps://rg.to/file/4e32d87703a890f1e9c595cd5aee0a9a/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part1.rar.htmlhttps://rg.to/file/5bd15f898ca4a4f46b0d59d8dd97653e/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part7.rar.htmlhttps://rg.to/file/6c5aeea73ef46f129fa695626389f67e/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part8.rar.htmlhttps://rg.to/file/6f1473d3bcf2443821f701b37bfd64c3/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part5.rar.htmlhttps://rg.to/file/b6ebaf124b46ae022a0b773549fa4d72/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part6.rar.htmlhttps://rg.to/file/e1b8de76c0ea87b0f2907a63f86118f8/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part3.rar.htmlhttps://rg.to/file/febfac93faab2cd01e598f92bd9bafea/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part4.rar.htmlFikperhttps://fikper.com/494JV0y93z/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part3.rar.htmlhttps://fikper.com/7MD4v4U92M/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part7.rar.htmlhttps://fikper.com/8RzFFKzkqW/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part1.rar.htmlhttps://fikper.com/Eu7Q7GxGzb/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part2.rar.htmlhttps://fikper.com/NiQ6cbwG0K/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part4.rar.htmlhttps://fikper.com/PtJFAn4fJ8/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part8.rar.htmlhttps://fikper.com/l0pHh5QDJv/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part5.rar.htmlhttps://fikper.com/lVfexeUknd/duykp.Steam.Boilers.Steam..Condensate.Systems.16Hour.Masterclass.part6.rar.htmlNo Password - Links are Interchangeable Link to comment Share on other sites More sharing options...
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