Deadlines Are Here / How Can You Comply Fast?

This is a reminder, if your diversion is over 1,000 AF per year, then these deadlines apply:
January 1, 2017 – Installation of a certified flow measurement device, or devices.
April 1, 2017:
  1. REQUEST FOR ADDITIONAL TIME FORM, if your device was not installed by January 1, 2017.  Go to https://public.waterboards.ca.gov/WRInfo/Account/Login? and use the User ID and password that you have been using or that the Water Board gave you in a reminder letter.
  2. Measurement Method – diversions over 100 AF/year have to be certified by a qualified professional, although the deadlines for 100 to 1,000 AF  diversions are July 1/October 1.  You can build it but it has to be certified.
  3. Alternative Compliance Plan – if your device does not comply, or standard devices will not work, but you have a reasonable measurement plan, fill this out.  It will be posted online by the Water Board, and they do not approve or evaluate it.  If nobody (state or federal agency, group, or individual) complains to the Water Board, you’re done.  If the Water Board says it’s not good enough, you may have as few as 30 days to put in a compliant measurement device to avoid fines.
  4. Supplemental Statements Of Diversion And Use for Water Rights Under Applications, Permits, and Licenses.

What Device Can You Put In Quickly, if Your Diversion Is Over 1,000 AF/Year?

          A temporary weir can be put in fast – as little as half a day.  You should be able to say it’ll last a couple of years.  It needs to be sealed up with plastic and/or dirt so it does not leak through or around.
          Whatever you do, it has to be certified…but by whom?  According to http://www.waterboards.ca.gov/waterrights/water_issues/programs/diversion_use/docs/meas_method_instruct.pdf, it can be:  “… A) A California-registered Professional Engineer; or B) A California-licensed contractor authorized by the State License Board for C-57 well drilling or C-61 Limited Specialty/D-21 Machinery and Pumps; or C) A person under the supervision of a California-registered Professional Engineer and employed to install, operate, and maintain water measurement and reporting devices or methods; or D) In the case of a right or a claimed right to divert by an agency of the federal government, a hydrologist or professional engineer experienced and trained in water measurement who is employed by the federal agency in that capacity….”
          The ideal weir, whether suppressed or contracted, needs 2′ available depth upstream and downstream of the weir boards.  That’s enough for an (ideally) 1.5′ high weir, plus 0.45′ static head on top of the weir boards.  The water downstream needs to be at least 0.25′, or 3″ below the top of the weir boards to have a good nappe (air gap between the boards and falling water).
          The 0.45′ static head gives 1 cfs per foot of length of weir.  You can go higher with the special Kindsvater-Carter equations – you’ll use those to develop a rating curve.  You can drop the weir boards down a little, but not so much you drown out (submerge) the weir.  So, ideal parameters can be stretched some if you take great care to use the correct calculations.

         When it comes right down to it, 2 braced T-posts, or 2 lengths of galvanized pipe, with boards and plastic could be certified as compliant for a year. 

     Temporary Weir In Ditch

 I have done that in a pinch when I was a bureaucrat Watermaster.  The important things are the heights and depths.

          One more possibility – use an orifice in your weir box, but you would have to have 2 data collectors per measurement device.  An orifice can have as little as 0.2′, or 2.4 inches of head difference between upstream and downstream; more head is better for accuracy.  If the ditch is really flat, use a weir setup that has exposed weir boards down to the sill of the device, so you can cut a hole in a lower board for your orifice.

What Does A Measurement Device Evaluation And Proposal Look Like?

When you call and ask, “What do I have to do to stay out of trouble with the Water Board?”, my reply is usually, “What’s your diversion or pond like?  How much and what type of water right(s) do you have?  When can I come and take a look at it?”  We’ll figure out a time, and I’ll visit for 2 hours or however long it takes to see how your diversion works, or how your pond fills and empties, and think of a few likely solutions.

Then I will write up an evaluation and proposal.  The proposals are good enough that, if you don’t choose me to install or certify it, then you, another engineer, or a contractor knows how to get the job done can install it and keep you out of trouble.  Of course, I would like the whole job, but you do have choices!

So, what does an evaluation and proposal look like?  Here is an example, just for a single measurement device for one diversion:

 

 

 

 

 

 

 

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Paul Wells, Water Board Main Contact, Has New Job / Diversion Forms Deadlines Delayed

Well, rats, the main contact for (non-Delta) Water Board Enforcement issues, Paul Wells, found a better job at my old agency, DWR.  Hopefully someone will be, or already is, appointed in his place to help Kathy Mrowka.  I missed his auto-reply because it went into the wrong email folder – here it is:

“Wells, Paul@Waterboards Paul.Wells@waterboards.ca.gov via cawaterboards.onmicrosoft.com
Jan 19, 2017

Greetings,

My last day at the Division of Water Rights was January 6, 2017.

If you need assistance regarding the measurement and monitoring requirements, please contact Kathy Mrowka at kathy.mrowka@waterboards.ca.gov.

If you need assisance with any other issue related to the Division of Water Rights, please call 916-341-5300

If you would like to contact me, my new email address at the Department of Water Resources is Paul.Wells@water.ca.gov.

Sincerely,

Paul Wells”

************************************************************************

The Water Board made a slight update to report filing deadlines on February 6.  For the biggest diversions, over 1,000 acre-feet per year, deadlines for forms:

  • Request for Additional Time
  • Measurement Method
  • Alternative Compliance Plan

are pushed back to April 1 for Permits and Licenses, July 1 for Statements.  The device installation deadline is still January 30, BUT, since the Request for Additional Time deadline is later, then the effective device installation deadline must be AFTER April 1.  I don’t know whether pressure from ranchers and farmers made the difference (seems likely), or if the Water Board is just inundated with too much information.

Feb. 6, 2017 Water Board Update on Filing Deadlines

Mccrometer Mc Mag 3000 Saddle Flow Meter, 4″ to 12″ Pipelines; Sontek IQ For Larger

 In this post I am highlighting the McCrometer Mc Mag 3000 flow meter for pipelines.  I don’t have a lot of detail here, so I will update this a couple of times before mid-February.mccrometer_mcmag_3000_webpage

Most of the flow measurement devices I have talked about in this blog are for use in ditches, and include weirs, orifimccrometer_mcmag_3000_webpage_applcnsces, and flumes.  These devices are the standard lower-cost devices that are relatively easy to install.  All of these devices require a separate, specially installed data collector to record stage (water surface elevation) so flow can be computed from the data.

What if your flow already runs through a level length of pipe?  You have many, many options from manufacturers.  There are propellor, magnetic, and acoustic meters, with integrated data collectors, that bolt up or strap on.  Most magnetic and acoustic meters require external power, but some run on batteries, and an increasing number have battery options.  Within a few hours any full pipeline that is straight and level, and has 10 to 20 pipe diameters of straight pipe upstream of the meter, and 10 pipe diameters downstream of the meter, can have one of these devices installed and operating.mccrometer_mcmag_3000_webpage_features

Note the “level and full” restriction – there are meters that can handle sloped and/or partly full pipelines, but they are more expensive.  Usually it is less expensive to insert (or add to the end) a section of level pipeline that will always be full.

What do these cost?  I have not asked about every possible pipe dmccrometer_mcmag_3000_webpage_techspecsiameter, but I think the cost range for 4″ to 12″ pipes is around $1,400 to $3,000, before tax, shipping, and installation costs.  That’s a reasonable price for a quick-to-install device that measure up to about 5 cfs in a 12″ pipe.  McCrometer even has a “how-to” video on their website, for the physical part of the installation.

What if you have a larger pipeline?  The SonTek-IQ may be a better solution – the pipe version of this flow meter and data logger can handle pipes as small as 18 inches in diameter, up to 16 feet (!).  This is an acoustic Doppler meter, rather than magnetic sensing with the McMag 3000.  There is an open channel version of the IQ, too, which installs in the bottom of a canal.

For larger or more irregular channels, Sontek-SL, which is a side-looking acoustic Doppler.  the SonTek acoustic equipment is a costlier solution for small-diameter pipes – the cost range for the SonTek equipment is $8,200 to $9,200.  For a larger pipe, canal, or natural channel up to 66 feet wide, this is a very cost-effective solution.  We’ll talk more about the SonTek equipment in later posts.

Thank God for all the rain and snow!  As of today, California is still having record rainfall and a near-record snowpack, through February 2.  Have a good night, all.

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Thank God, Wettest California EVER, So Far…And Snow Is Deep, Too!

(Take a look in the Table of Contents on the left for past postings on weirs, flumes, orifices, water rights, etc.)

According to DWR’s multi-rain gage measurements today (January 18, 2017), we are getting the MOST RAINFALL EVER!  That is, for the time since man started keeping records.  Our snow is pretty deep, too.  The first graph below shows that snow water content is 151% of normal:

ca_snow_watereq_20170118

The next 3 graphs show DWR’s precipitation totals for combined rain gage stations.  Graphs are shown south to north: Tulare Basin, San Joaquin, and Northern Sierra:

http://cdec.water.ca.gov/cgi-progs/products/PLOT_TSI.pdf
Tulare Basin Precipitation, January 18, 2017
http://cdec.water.ca.gov/cgi-progs/products/PLOT_FSI.pdf
San Joaquin Precipitation, January 18, 2017
http://cdec.water.ca.gov/cgi-progs/products/PLOT_ESI.pdf
Northern California Precipitation, January 18, 2017

The last 2 graphs show something pretty amazing!  Yes, they show the reservoirs filling fast this year, which is fantastic – they are going to fill and not drop as much as during the last few years.  See the little hook at the end of each hydrograph?  That means that USBR is releasing water faster than it is flowing in for Shasta Lake.  Same thing for DWR’s operation of Oroville.  That’s really neat because both agencies are increasing the flood storage reservation so they (hopefully) won’t spill later!

shasta_storage_20170118_for_720_days

oroville_storage_20170118_for_720_days

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Reasoning With Regulators, Benefitting From Bureaucrats – Update

I worked 30 years as a bureaucrat.  That gave me first-hand immersion in working with members of the public, especially water right holders who divert water from various streams in Northern California.  When it comes to property rights, owners are intensely interested in getting problems solved, fast and hopefully permanently.  As a property owner I will get the help of whoever I can and whoever it takes to solve my problem.  On the flip side, when I worked for state government, I sure know what worked to get me to work on someone’s problem!

Whenever you divert water, you deal with people.  Your neighbors are very interested in what you divert.  They want you to use only your water right and hopefully less…and they want every possible law applied against whoever takes more than their legal share.

Laws are made by people.  I’m not talking about God’s Laws which are not in your or my control.  The man-made documents and organizations that establish, make, change, and enforce water laws and rules include:

  • the California Constitution
  • the Legislature
  • the Governor
  • Courts at various levels
  • everyone’s favorite: federal, state, and local agencies

file581310649632Agencies, otherwise known as bureaucracies, all have one thing in common.  To emphasize a very important point: they are all run and staffed by people.  Some folks are easy to deal with, others aren’t.  Some are truly caring human beings, and others hide behind the policies of their employer.

What exactly is a bureaucracy?  Here is a very good explanation:  https://en.wikipedia.org/wiki/Bureaucracy

By the way, corporations are the same as bureaucracies in a lot of ways.  Since we are talking about the diversion of surface water, that means bureaucracies.  And bureaucrats.

There are some money-saving, hassle-saving methods to dealing with bureaucrats.  These are time-tested and have worked for me and many others.  When other people acted this way with me, when I was a bureaucrat, to get me to do something even when I was too busy, it worked!  Hopefully these practices and techniques will aid you in dealing with an agency or a particularly difficult bureaucrat.

  1. Do some research.  “Google It”, as the saying goes, and learn about the agency you are dealing with.  (Actually, I am using Bing and DuckDuckGo as much as Google these days, to get accurate instead of popular results.)  Search for comments by people who had the same problem as you.  How did they handle it, and what was the result?  Did someone have a particularly effective way of getting a problem solved?  It might be worth an hour of your time to use the Internet to find out everything you can first.
  2. Document your problem in writing before contacting a bureaucracy, with text, photos, maps, drawings, contacts, everything you can get on paper.  Scan it if possible so everything you have can be emailed.
  3. Assuming you are calling or talking to the person, write everything down.  E-ver-y single thing.  Date all the entries.  Get each person’s name.  You might buy a cheap spiral bound notebook at a WalMart or Dollar store – or buy a few, and the ones you don’t use when dealing with bureaucrats you can use for a diary, or shopping lists, or dealing with corporations.  Let the person know that you are keeping careful notes.
  4. Always be polite, and especially so during the first few contacts about a problem.  Do not threaten, curse, yell, or any of those things that would be classified as “impolite”.  If the person you are talking to gets unpleasant, just keep a record of it for later, and maintain your calm demeanor.
  5. Explain your problem or need in as few, relevant words as possible.  Boil your problem into one or two specific things that you need done.  That way a helpful person can get you the help you need quickly, without strain on your vocal cords or his or her ear.
  6. Don’t share your life story, complaints about your neighbor’s dog, the hassle you had getting your car repaired, or go into what a rotten, horrible person your neighbor is.  That is wasted time.  Unless what you say bears directly on the problem, it takes away working time from the person listening on the other end of the phone line, or reading your email, or sitting across the table from you.  There may not be enough time left to solve your problem!
  7. Give thanks and credit to the people who help you.  Call their boss, or write the boss a note about the great work they did in helping you.  Let everyone else you talk to about your problem know about those helpful people.
  8. If a bureaucrat says “It’s not my job”, politely explain the person’s statutory/legal/moral or other obligation to help you, and the terrible consequences to you if the person does not carry out his or her agency’s mission.  Give a reasonable estimate of the economic harm or cost involved.
  9. On the other hand, if the answer you get is “I have no idea how”, don’t get frustrated, get more contacts from the person.  You’ll be following a trail, sometimes clear, sometimes through thick brush.
  10. If you are talking to the right person and cannot get the help you need, or an exemption from a rule, or whatever help you are looking for, ask to talk to the bureaucrat’s boss.  Don’t insult the employee to the boss, just explain to the boss that he or she has the great power needed to help you.
  11. If the boss cannot help, ask to talk to his or her boss.  See the pattern here?  Be courageous and go up the line as high as you need to go.
  12. Take a few minutes and search online for the names and contact information of the people on the Board, or the Director, or the Chief, of the bureaucracy you are dealing with.  It can help to let a bureaucrat know that you know who these people are, and while you really don’t want to have to go that far, you will contact them if necessary.
  13. If you are being harassed or threatened by an agency and you are pretty sure they are going above and beyond their authority or normal practice, there are ways to get them to back off or slow down and listen.  Sometimes mentioning that they may be in violation of RICO, the Racketeer Influenced and Corrupt Organizations Act, can give them pause.  Ask them for all communications in writing – that can cut up to half of bureaucratic actions off right at the knees.  Ask bureaucrats to include references to all laws, rules, regulations, codes, court cases, etc., that they are relying on.
  14. Find the agencies, boards, or people to whom you can file a complaint, if you have exhausted all normal ways of getting the help you need and you haven’t been helped.  You may even have to enlist the help of staff at your state legislator’s office, or your congressperson.
  15. Although it is expensive, you may have to hire an attorney.

That’s a long list, but if you are dealing with the State Water Resources Control Board, a lot of those folks are reasonable people.  The main problem at the Board is that these folks have five times the work to do than they can get done.  You’ll probably have to call several times to get someone’s attention.  See Rules 1 and 2 above!

StateWaterBoardHomePage

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1,000 AF + Diversion Measurement Device Install Deadline Passed…Req. For Addl. Time Due 30 Days After Available Online

If you divert over 1,000 acre-feet a year, or over about 4 cfs during the irrigation season, your measurement device deadline at the Water Board was January 1.  However, you can file a Request For Additional Time until 30 DAYS AFTER THE FORM IS AVAILABLE ONLINE.  It is January 18 today, so the filing deadline has to be later than February 17, 2017.  This is a welcome UPDATE from 10 days ago, when the Deadline was January 30.

I am often nervous about just mailing a letter or filling out a form online; the letter could fall off a table and the web-based form does not always work.  You can always send an email to record your intent to make the request.  This also helps in case you are unable to (or forget, with 99 other things on your to-do list) fill it out by the deadline.  You will have a record that you are making the request and intend to fill out the form.  Who should you email?  See the post Update – Who To Call At The Board? for names, phone numbers, and email addresses.

See the second table below for the original deadline table, including approximate equivalent water rights.  Let me know if you need help!

http://www.waterboards.ca.gov/waterrights/water_issues/programs/diversion_use/water_use.shtml
SWRCB Water Rights: Water Use Reports and Measurement webpage, January 18, 2017

SWRCB Measurement and Recording Requirements for 2017 (diverters exempted where Watermaster reports)
SWRCB Measurement and Recording Requirements for 2017 (diverters exempted where Watermaster reports)

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Rotation On 1 Farm; Between Diversions / Farms; And After Subdivision

This post is about individual water rights, not those that are distributed by a water district, irrigation district, water company, or other organization that can sell and assign shares of water.  Side note: if your diversion is 100 AF to 1,000 AF per year, now (January-February) is a great time to get your measuring device installed and certified!  Diversions of ~0.4 to 4 cfs take smaller devices – many can be installed between storms before the busy spring season.  If you live on or farm a parcel that was subdivided from a ranch that had water Williamson_Parcel_Outline_on_DecreeMap_reducedrights, it will take you and your neighbors some planning and work to do to share the water equitably with your neighbors.  This map shows multiple owners on land that used to belong to just one owner, H. Leggett, when the South Cow Creek Decree was issued by the Shasta County Superior Court in 1968.

Originally on the Leggett place, there wasn’t enough water to irrigate the whole ranch at one time.  The water was rotated between one part and another. Maybe it took 10 days of turning the water into one field and then another, and after that there may be a to 10 day pause.Pixabay_water-340468_1280

Rotation also took place by agreement or adjudication between several diverters.  Below is shown the northwest part of Sheet 5 of the South Cow Creek Decree.  The green areas show the decreed irrigated acreage mostly in the correct spots.  You can see that the H. Leggett was neighbors with A. Otten to the north, E. Frisbie and X. Shuffelberger to the northeast, H. Fraley to the southwest…and these diverters may have rotated and combined diversions to get a slug of water to push over a whole field quickly.  One may have had water for 5 days for a larger farm, another for 2 days for a smaller farm, and so on. The rotation would have repeated through the irrigation season, with the time periods usually staying the same. That way, as natural flows decreased through the irrigation season, everyone shared the loss because they each had the same percentage for the individual irrigations.

Shasta Co. Sup. Ct. South Cow Ck. Decree Sht. 5, NW part
  Shasta Co. Sup. Ct. South Cow Ck. Decree Sht. 5, NW part

There is another kind of rotation that happens as land is subdivided over time. An original 800-acre ranch may be split into 10 parcels today. If the ranch originally had 4 main ditches, many of the parcels today don’t touch a ditch. What’s the solution?

When a bunch of smaller, feeder sierra_vly_sht_5_legend-editedditches are put in, then most of the water will soak into the ground before it gets to the parcels it is supposed to irrigate. If instead, landowners agree to get water for, say, 40 parcels

sierra_vly_sht_5_sierraville_area-edited
  Sierra Valley Revised Decree Map, Portion Around Sierraville

 at a time, then a higher volume of water may be pushed across all of the properties before it is sent to the next group of landowners.

Of course, investment in infrastructure, such as lining or piping ditches, might
make water available to most of the people for most of the time. Rotation can be alleviated by more and better plumbing. The monetary cost is higher, sometimes much higher, but getting more water overall can be worth a lot.  Not having to be home on all rotation days is worth something, too.

Hat Creek Shearin Tract
  Hat Creek Shearin Tract, from August 2014 Revised Decree Map

What happens when a subdivision is built on what used to be a farm or ranch?  In some cases, new owners have invested in pipelines to keep rotating the water between the smaller parcels, or supply all parcels at once if the pipelines increase efficiency enough.  In other places, some new owners use water, others don’t, which is fine as long as a new owner doesn’t complain loudly.  The map above is from the revised Hat Creek Decree map, showing one original ranch that subdivided into 60 + parcels.  Some parcels get surface water from the ditch, other, newer owners have put in a few pumps and pipelines to ensure decreed water rights are available to smaller parcels today.

In still other locations, none of the new homeowners wanted to use the water, either because there was a built-in municipal supply of treated, safe water, or

Subdivision - Photo Credit: Pixabay
  Subdivision – Photo Credit: Pixabay

because one or more wells were drilled.  No water is diverted, so none is rotated.  The existence of surface water rights probably was not advertised when the parcels were purchased, and once the new owners were built homes, it became too expensive to arrange pipelines across several neighbors’ properties to get a share of the surface water right.

In summary, rotation has been part of most farms and ranches since the beginning.  Physical rotation of a water right on subdivided parcels takes forethought and planning.  It is least expensive when new ditches or pipelines are installed before the new parcels are built out in houses and businesses. 

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How Do You Record Diversions? Water Level Loggers, Value Vs. All Component Costs – Update

My friend Steve Beall in the far north of the state brought something to my attention, regarding my comparison of four water level loggers (five with the In-Situ Troll 200 added).  I listed only the component costs, and not the data cable, data shuttle (Hobo), software, PVC/galvanaized pipe, or installation.  Good point, and thanks for suggesting that I address all costs, Steve.  The five loggers detailed farther on down in the post are, with component costs only, data transfer, installation, and certification not included:

  1. Vegetronix Aqua-Plumb Water Level Sensor connected with the Logger-8-USB  ($400 per diversion, less if diversions are very close to one another – with tax and shipping, about $500 per diversion)
  2. Onset Hobo U20L-04 Water Level Logger  ($600, less for multiple diversions; with tax and shipping about $700)
  3. Global Water WL-16  ($1,000 per diversion, about $1,100 with tax and shipping)
  4. In-Situ Rugged Troll 200 Data Logger and Tube 300 Telemetry System ($1,200 – less for multiple diversions, plus $1,300 for each telemetered diversion…about $2,500 for one diversion; with tax and shipping about $2,800 per diversion)
  5. PMC Versaline VL4511 – WLS-31 ($1,370 per diversion, about $1,500 with tax and shipping)

The additional components you will need if you want to download and process your own data are:  a customized data cable (or shuttle for the Hobo), and software.  These add $250 to $350.  You also need a laptop, except for the Hobo, unless you temporarily remove the other loggers to download them on your desktop at the house.  Shipping and taxes will add $70 to $350, depending on which equipment and the location where it ships from.  Electronic tools and equipment, and various testers are useful, sometimes necessary, to chase down problems.  Extra connectors and wire might be needed – keep at least a simple kit.  Installation can cost $200 and up, depending on the difficulty, need for vandalism protection, access, and so on.  Certification by a professional, required for all but the smallest diversions, costs $300 to $500 if you have Rights To Water Engineering do the work.

*****  ORIGINAL POST, with a couple of edits:

Recording is the other half of measuring diversions from streams, under California’s new water diversion measurement and reporting regulations.  Diverters are required by law to measure flows at frequencies based on the volume of water diverted in a year.  The flow has to be measured and recorded.  Of course most diverters don’t care about the data – it costs money and it doesn’t add income…unless a farm or ranch is upgrading for efficiency or to increase acreage  What you and I want in all of our purchases is the best value for the money.

This is a long post since it is hard to summarize something this technical so here is the bottom line:  my top recommendation is the last of five in this post – for most diverters.

SWRCB Measurement and Recording Requirements for 2017 (diverters exempted where Watermaster reports)
SWRCB Measurement and Recording Requirements for 2017 (diverters exempted where Watermaster reports)

For very small diversions, flows have to be recorded monthly or weekly.  That is easy to do as long as someone goes to the diversion at least once a week.

WaterLevelLogger_wl300_1
Photo credit: globalw.com

Shawn_Sticking_WeirFor medium-sized diversions, flows must be recorded daily.  This is possible, but
it doesn’t allow for the owner or employees to have time off, travel, and so on.  At this level of recording, an automatic recorder of some type is necessary.  Large diversions must be recorded hourly, and automatic recording is the only practical way to be sure flows are recorded.  That is the subject of today’s post: automatic recording of flows, or what is really done most of the time, recording water levels and using equations to calculate the flow.

About_1.4_cfs_over_weir_edited_smallWe will leave aside the discussion of propeller, acoustic Doppler, magnetic, and other in-line meters.  If you have a diversion that goes through a long length of straight pipe, one of these devices can be bolted in or strapped on.  This post is about open diversions into a ditch, where an instantaneous measurement device (weir, orifice, flume) already exists.  These open devices do not measure flow directly, they measure the water level.  An equation is used to convert levels to flows after data is downloaded.

There are hundreds of devices (ready to go) and components (connected parts) to measure water levels.  There are also hundreds of loggers that collect data.  Here, we will look at 5 water level sensors connected to data loggers, called water level loggers.

 

THE FIRST is a setup that rancher and retiraqua-plumbed aircraft engineer Frank Crowe has been working on.  Frank’s desire is to save him and his neighbors money, so he has been working with the Vegetronix Aqua-Plumb Water Level Sensor connected with the Logger-8-USB.  Together these are $340, which is
the least cost of anything that I have seen.  Add shipping, tax, logger-8-usb
and $60 in other parts and batteries, and for $450 you’ll have the parts you n
eed for moderately durable, reliable, and accurate water level logger.  Not only that, but 
the Logger-8-USB has 8 channels altogether, so a diverter could measure up to 8 water levels at once by adding 7 more sensors at $95 apiece, not including tax and shipping.

Here is Frank’s latest setup with his comments:  “Finally was able to put together a prototype package for the vegetronix_frank_1_p1300077vegetronix_frank_2_p1300078Vegetronix sensor.  The box is a little bigger than needed, but seems to work.  I’m trying to get the data to download into something I can analyze, but it seems to work very stable.

The pipe is 3/4″ mounted to the box, with the sensor wire going down to about an inch from the bottom and then returns up over 12″, therefore doubling the sensitivity.  The end is held by some wire at the moment, but would probably work better with a stainless steel spring.  The top of the pipe is not sealed, but should be to keep the humidity out of the box.  Of course if the data logger were in a separate box, the seal would not be necessary.

To exercise the thing, it is stuck into a 3″ pipe with a water drip going in and a drain at the bottom.  The overflow hole is 13″ above the bottom.”

So, what is the trade-off?  If you are handy, somewhat experienced with electronic components, and willing to spend some hours, you can set this up yourself.  Frank can help a few of his neighbors, but he has his family and ranch requiring his time, too.  Otherwise, it is going to cost a couple hundred dollars or so for someone to set this up for you.  It needs to be checked, maintained, and adjusted more often than the integrated water level loggers, too, so the maintenance and downloading cost can be $50 to $100 per year if everything is working well.

 

SECOND, the Onset Hobo U20L-04 Water Level Logger is $300 before shipping and tax.  The DWR Groundwater folks I worked with for years, use these in groundwater wells.  They are easy to set up – program one and place it in a stilling well.  Take it out once or twice a year to dowonset_hobo_u20l-04-editednload the data.  The battery life is 5 years, maybe more.

Why aren’t these automatically the cheapest option?  They may be the cheapest if a diverter has 3 diversions or more, or several neighbors are using the same Hobo U20L-04.  However, they are not vented, meaning that as atmospheric pressure changes due to low pressure areas and storms, the device’s pressure reading will not be as accurate.  Therefore  Onset recommends having a second U20L-04 set up outside the water to measure the pressure change over time.  The second device can be some miles away, so one outside calibration device could be used for several in the water within a 300-square-mile area.

What I heard from colleagues is that these did not last for 10 years, and sometimes not for five years, although the device is being improved over time.  Durability and reliability of a device are important for uninterrupted data, and therefore compliance with the Water Board’s regulations.  The more often onset_u20l-xx_handhelda device has to be replaced, the more it costs over time.

In summary, the cost of Onset Hobo U20L-04 devices is $600 plus tax and shipping.  This cost may be reduced somewhat if the cost of a calibration device can be shared between several diverters, or several diversions.

 

THE THIRD device discussed here is the Global Water WL-16.  This is an integrated, vented device, designed to program and set in a pipe.  Watermasters have used these for years at various diversions.  They cost about $1,000, before tax and shipping.global_water_wl16-edited

The WL-16 has a stainless steel casing and is fairly tough.  They should last a good 5 years.  The problem is at the sensor end – it is relatively easy to clog up in warm-water conditions, with algae and/or silt.  In cool flowing water, it might operate for the whole irrigation season.  In warmer or still water, it will have to be checked and sprayed clean every 1 to 3 months.  Watermasters have put the sensor ends in distilled water in baby-bottle bags, and rubber-banded the tops of the bags closed to keep the sensors clean for the entire irrigation season.

One other concern which I have not discussed with the manufacturer – the manual for the WL-16globalwater_wl16_in_field was updated in 2009 and refers to Windows XP, not the current Windows 10.  I am sure that a newer manual is sent out with the device when it is purchased.  Overall, with some care to check the sensor end and clean it as necessary, this is a great drop-it-in-and-turn-it-on option.

 

THE FOURTH device, the In-Situ Troll, has the advantage of out-of-the-box options for telemetry.  The Groundwater folks at the Department of Water Resources have used these and a couple recommend these for the right application.  The In-Situ

in-situ_rugged_troll_200_loggerRugged Troll 200 Data Logger and Tube 300 Telemetry System.

The Troll 200 Data Logger ($595) can run independently without telemetry, or be attached to the Tube 300R Telemetry System ($1,320).  The Troll 200 is non-vented, so like the Onset Hobo data loggers mentioned above, an extra unit is needed for air pressure to correct the water level (pressure) recorded by the unit in the water.  The cable and software for the Troll 200 are about $375.

The total unit cost for 2 Troll 200s, a Tube 300R, and accessories, is about $2,900.  Tax, shipping, and installation will add $600 and up, depending on location, elevation, and the length of the dirt road going in; and difficulty at the site and vandalism potential will add costs, too.  $3,500 + for telemetered water level logging is not cheap, but it is a lot less than a full-on gaging station with satellite radio, which costs $12,000 and up for components, and over $2,000 to install in easy locations.  Telemetry is expensive, there is no way of getting around that fact.

The Tube 300R requires a separate phone number for each water in-situ_tube_300r_telemetrylevel logger, and cell service.  In-Situ offers the option of $35/month web hosting, on its HydroVu Cloud Data Services Plan.  This cost is in addition to the Tube 300R, cell phone service, and installation.

 

THE FIFTH and final water level logger discussed here is the PMC Versaline VL2111 – WLS-31 Water Level Datalogger  (replaced by the same-priced, updated model:  PMC Versaline VL4511 – WLS-31).  This looks much like the WL-16, but instead of a silicon bladder at the end of sensor, it has a non-fouling ceramic sensor.  At $1,370 before tax and shipping, it has the highest purchase cost of the 4 listed in this post, but it is my recommendation for durability, reliability, and low maintenance.

pmc_vl2111-with-wls-31-datalogger

The Versaline is made for wastewater; in other words, for sewer lines.  The datalogger end is vented and it is not supposed to be submerged, same as the Vegetronix components and the WL-16.  However, it is made to put inside manholes where it is very warm and humid.  The PMC guys have maintained the sensor end in rough environments with the equipment lasting 8 to 12 years.  If the sensor gets completely covered with algae (or something worse), it still works.  It can be cleaned off with a toothbrush if it seems so clogged it might prevent water from getting to the ceramic end.  The data logger and sensor are fairly new but are improvements on the older, long-lived versions.

The VL2111 – WLS-31 is three times the cost of the least-expensive option.  However, it might be the least expensive in the long run…it sure is the most worry-free of all the options listed here!

*****  From the update post, Update – Recommended Water Level Logger: PMC Versaline VL4511 – WLS-31

The PMC guys had to make a change in the sensor, so now the recommended setup is the PMC Versaline VL4511 – WLS-31 Water Level Datalogger.  It will cost the same and be as durable.  Regarding the reason for the change, pmc_header-editedversaline-vl4511-and-wls-31-water-level-datalogger-specs-editedBob Foster at PMC wrote: “This system will come with our VL4511 level sensor and not the VL2000 that we initially spoke to you about.

The reason for the change is the VL2000 required slightly more power than what is available through the datalogger battery, so we decided to provide an upgraded sensor model, which uses much less power.

This upgraded sensor, our VL4511 also has the advantage of using:

  1. An all-welded Titanium housing, which has a 5-year corrosion warranty
  2. Significantly smaller diameter

Additionally, it still has anti-clog features near the sensing element to ensure reliability.”

 

There are many, many choices for logging water levels.  These are the ones I would install, either because I, my colleagues at DWR, or larger farms or ranches have used them; or because I have checked with other users.  One of these choices can serve you well!

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Photo Credit: Pixabay
Photo Credit: Pixabay