Another crucial step in fluid lifecycle analysis is reviewing fluid application systems. This includes the equipment condition (checking for function, leaks, etc.) as well as how accurately the system is delivering the fluids. Is there excess fluid on parts? Press beds? The floor? Anything that comes into contact with MWF should be checked for fluid waste. This step is important for later determining the right fluid to use for your application, but it can also be a site of issues and inefficiencies that, when rectified, can use MWF more optimally. Download our FREE Fluid Optimization Checklist >> https://bit.ly/4dkrhqa #metalworkingfluids #fluidmanagement #industrialfluid
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Next up in our process for fluid optimization analysis is fluid selection and compatibility. There are 3 major factors in this evaluation: 1. Reviewing MWFs currently in use for performance and suitability for the application. 2. Collecting feedback from operators on their observations of fluid performance and issues. 3. Assessing fluid compatibility with equipment, checking for issues like corrosion and residue build-up. If you've never analyzed your MWF efficiency and performance, it's time for a Fluid Optimization Analysis. Get started with the checklist here: https://lnkd.in/gTDPT_Qv #metalworkingfluids #fluidmanagement #industrialfluids
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Suggestions on optimizing fluid management during IV fluid shortage: https://bit.ly/48sjOUN
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Heat pumps have come a long way, especially in cold-weather performance. However, system sizing and selection practices have not always kept up with the wide range of applications commonly found in cold climates. Join us this Thursday to explore the ways sizing does matter. States will share how they utilize the NEEP ccASHP Sizing Tool V2.0 to support proper system sizing and selection. This latest version of the sizing tool can be leveraged by various stakeholders to ensure quality ASHP installations. Register here: https://lnkd.in/eMmk6aM6
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Our MBW ™ MODEL 473™ Dew Point Chilled Mirror Analyzer is our most cost-effective dew point instrument. It features cable-mounted dew point measuring heads that allow the user to measure directly within the application environment and includes a temperature probe as standard. Easily measure Humidity & Temperature Reference Dew Point Chilled Mirror up to 125°C. Provides fast response times, with a typical response time of 5 minutes for a 90% step change in humidity. This allows for real-time monitoring and control of humidity levels in various applications. Learn more https://lnkd.in/g9HUGxhp #processinsights #caibrationstandard #gasmeasurement #chilledmirror #gasanalysis #humiditymonitoring
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Are ALL your Magetic Flow Meters treated with e9 Treatments? A typical site may have many mag meters...all of which need to measure produced water accurately and efficiently. Here, transfer pump mag meters at the Central Tank Battery (CTB) pump into a main line leading to the Salt Water Disposal (SWD) site. Barrel counts from the CTB transfer pump mag meters are compared to the SWD’s inlet mags to ensure there are no leaks in the system and that everything works properly. Once the water coming in past the inlet mag meters fill these SWD holding tanks to a certain point the pumps turn on and water pumps through additional mag meters directly down into the well. Here, the inlet meter and transfer pump meters are compared once again to ensure variances are within tolerance. Treating your mag meters with e9 Treatments can help keep your mag meters operating efficiently and within spec to minimize variances! Call us today to start treating your mag meters with e9 treatments! 201-742-1051 or Insidesales@e9treatments.com. #CTB #SWD #MagneticFlowMeters #Oilandgas #Operatingefficiency #paraffin #Nanoscalesurfacetreatment
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Our MBW CALIBRATION™ MODEL 473™ Dew Point Chilled Mirror Analyzer is our most cost-effective dew point instrument. It features cable-mounted dew point measuring heads that allow the user to measure directly within the application environment and includes a temperature probe as standard. Easily measure Humidity & Temperature Reference Dew Point Chilled Mirror up to 125°C. Provides fast response times, with a typical response time of 5 minutes for a 90% step change in humidity. This allows for real-time monitoring and control of humidity levels in various applications. Learn more https://lnkd.in/g9HUGxhp #processinsights #caibrationstandard #gasmeasurement #chilledmirror #gasanalysis #humiditymonitoring
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Our MBW CALIBRATION™ MODEL 473™ Dew Point Chilled Mirror Analyzer is our most cost-effective dew point instrument. It features cable-mounted dew point measuring heads that allow the user to measure directly within the application environment and includes a temperature probe as standard. Easily measure Humidity & Temperature Reference Dew Point Chilled Mirror up to 125°C. Provides fast response times, with a typical response time of 5 minutes for a 90% step change in humidity. This allows for real-time monitoring and control of humidity levels in various applications. Learn more https://lnkd.in/g9HUGxhp #processinsights #caibrationstandard #gasmeasurement #chilledmirror #gasanalysis #humiditymonitoring
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#DYK Our original flow meter calibration facility, the Hooper facility, was constructed over 100 years ago and still operates today. Flow is supplied from a 150-acre reservoir through a 40-inch penstock, which means that flow can be provided without the use of pumps—for clients with sensitive electronic meters, this is very beneficial. Water temperature varies seasonally from 32° to 75°F. Because of the low noise gravity feed available in the Hooper facility, we can ensure low differential pressure measurements for low Reynolds number testing. The maximum flow of the Hooper facility is approximately 35,000 GPM, depending on meter style and pipe size, with a minimum flow of 0.05 GPM. The facility uncertainty is 0.25% using weigh tanks and 0.50% for flows above 8000 gpm using a secondary standard. Start here to learn more about how we replicate real-world conditions to meet your needs: https://lnkd.in/eMQV6fjS #flowmeter #calibration #since1894 #throwbackthursday
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Ro Membrane Flux Rate Is defined as the amount of permeate produced per unit of area per unit of time. Generally expressed as gallon per feet square per day (GFD). Flux Rate (GFD)= Permeate Flow GPD (No.of vessel)*( No.of element per vessel )*(active membrane area) ft^2 Silt Density Index (SDI ) The is SDI a popular method for determining feed water quality in RO applications. It is based on the time required to filter a volume of feedwater through a 0.45 μm filter pad at a feed pressure of 30 psig. There is inverse relationship between Flux Rate and SDI , such high levels of SDI can increase the potential for membrane fouling, there for we need to optimise the Flux Rate to avoid fouling
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#ESSOutdoorApplication. We installed two C&I ESS, CESS 1500 and CESS 200, in our Zero-carbon factory. Recently we've been encountering hottest wheather in a year. The outdoor temperature can reach above 40℃. In this hottest summer, we will also encounter rainstorm. But our system runs well and steady. A question we've been asked frequently is, "Your IP rating is IP54, why can your C&I ESS be installed outdoor?" This is a good question. Here is why: ①IP54 is considered for system ventilation and heat dissipation. So you will find lots of holes somethere on the enclosure. Then you may worry that the rain or water may enter into the the system from the holes. Yes, rain and water will enter into the system but we have well designed drain hole, drain slot and drain tube in the system, which means everything insidel won't be impacted because all the water entered will go out in the drain at bottom. ②We will do all-round spray test (see at the end of the video clip) for every unit before shipping out to make it more reliable. #CommercialandIndustrialESS #HighQualityESS
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