I have 2 oil extractors pumping 300m3 of oil per minute (total 600m3/min) going to 9 oil refineries that require 570m3 per minute. The pipeline is long, and it is flat for the most part until I bring it up to my foundation (pics attached) The 2 extractors merge into 1 MK2 pipeline. My issue is that the extractors will idle because they fill up with oil causing the refineries to be inconsistent (powering on and off). Why are the pipe lines inconsistent? I have 600m3/min but can't consistently fill 9 refineries that only require 570m3/min. The flow rates in the pipes constantly drop, I tried to google it but found nothing helpful so I decided to come here! Someone please help me!

An extractor object is an object with an unapply method. Whereas the apply method is like a constructor which takes arguments and creates an object, the unapply takes an object and tries to give back the arguments. This is most often used in pattern matching and partial functions.


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The sidecar is working, and when i submit logs I can see that they are received at greylog by looking at the in/out metric counter, and they appear in the input stream when searching, as long as I dont add an JSON extractor on the input.

I've found many times the image-package-extractor is unable to extract packages from some images I'm running because the daemon set creates the pods with 50MB of memory request, and the same ammount for it's limits.

kubectl edit ds image-package-extractor --namespace=kube-system

error: daemonsets.apps "image-package-extractor" could not be patched: daemonsets.apps "image-package-extractor" is forbidden: User "jk" cannot patch resource "daemonsets" in API group "apps" in the namespace "kube-system": GKE Warden authz [denied by managed-namespaces-limitation]: the namespace "kube-system" is managed and the request's verb "patch" is denied

kubectl replace -f /tmp/kubectl-edit-751860510.yaml

Error from server (Forbidden): error when replacing "/tmp/kubectl-edit-751860510.yaml": daemonsets.apps "image-package-extractor" is forbidden: User "jk" cannot update resource "daemonsets" in API group "apps" in the namespace "kube-system": GKE Warden authz [denied by managed-namespaces-limitation]: the namespace "kube-system" is managed and the request's verb "update" is denied

I created a field extractor for different fields for an event. Now I would like to search all the events from a source and apply that field extractor to see the fields that I'm interested in. The field extractor seems to appear, but I don't know how to apply that into my search. I've tried REPORT- but no luck. How can I apply a field extractor already created into a search ?

Not a useful answer. The question concerned a field extractor, not a transform. Are you implying that the ONLY way Splunk can use a field-extractor is to first create a transform? Pity, since that seems beyond the scope of an ordinary user.

I have the same issue here. And I cannot access the transforms.conf file (or the server's file system at all) to get the Stanza of my field extractor.

In the Splunk Web-UI in the field extractions overview, the name of my field extractor is like my_sourcetype : EXTRACT-my_new_field.

Is there any other way to derive the Stanza through the Splunk Web-UI?

In breechloading firearms, an extractor is an action component that serves to remove spent casings of previously fired cartridges from the chamber, in order to vacate the chamber for loading a fresh round of ammunition.

In repeating firearms with moving bolts, the extractor is often one or a set of hook-like flanges on the bolt head that grab onto the casing's rim, so when the bolt moves rearwards the casing is pulled out of the chamber. It is typically aided by a protruding ejector in the receiver or the bolt, which provides an opposite counter-push that couples with the extractor pull to expel the casing entirely out of the gun.

In modern dropping block, break-action (e.g. double-barrel shotguns) and revolver firearms, the extractor is a protrusible piece with flanges on the barrel/cylinder side, which pushes rearwards on the casing's rim and slides it out of the chambers. Some such extractors can push hard and far enough that they completely clear the cases out of the gun, thereby also performing the function of an ejector.

Extractors are a hallmark feature of repeating firearms, and can be found on bolt-action, lever-action, pump-action, semi-automatic, and fully automatic firearms. Extractors are also found on revolvers, removing cases either in succession (as in a fixed-cylinder single-action revolver) or simultaneously (as in a double-action revolver with a swing-out or top-break cylinder). For rimmed cases, the protruded rim serves as the grabbing point from which the extractor works. For rimless cases, the groove at the base serves as the grabbing point from which the extractor works.

Not all single-shot firearms have extractors, though many do. Break-action shotguns, double rifles, and combination guns typically have an extractor that push out the casings when the action is flexed open. Most modern extractors are forceful enough to completely eject the casing from the gun (i.e. integrating the function of an ejector), but some require the user to manually remove spent cartridges. In this situation, the extractor loosens and moves the case out of the chamber just far enough to allow the user to grab and pull out the casing, but not far enough to remove the case entirely from the chamber. This situation is encountered on some single-shot rifles, single-shot pistols (such as the break-action Thompson/Center Contender), and on some break-action single- and double-barrel shotguns.

In bolt-action, lever-action, pump-action, semi-automatic, and fully automatic firearms, the extractor typically work in conjunction with a separate ejector to remove completely a fired, empty cartridge case from the weapon. The extractor moves with the bolt to pull the cartridge case rearwards out of the chamber, and at some point the ejector eccentrically exerts a frontal push (from the case's frame of reference), which torques and "flicks" the case out of a side opening on the receiver known as the ejector port.

Another example of extractor exists in the form of a pivoting lever attatched to the bolt head that lacks a separate rammer, but works by ejecting first the rear of the cartridge to exit through the ejection port instead of the case head/bottleneck. This type of component does the job of both extractor/rammer but is mostly found on firearms using simple blowback, lever/tilting bolt locking/delay etc rather than rotating bolts.

Some very early blowback pistols used ammunition with no rim or extractor groove on the cartridge cases (e.g., 5mm Bergmann), and such pistols therefore lacked extractors. The spent case was forced out of the chamber by recoil, and was subsequently ejected. As this system did not provide for easy clearance of misfires, it was not very successful, especially for self-defense handguns needing to be cleared quickly and reloaded in the event of a cartridge primer malfunction. Nonetheless, there are examples of contemporary modern semi-automatic pistols that do not have extractors even to this day, such as the Beretta Bobcat, Beretta Model 21A, and clones of the Beretta designs such as the Taurus PT22 that are successful. These modern pistols typically have flip-up barrels, to permit easy loading without necessarily cycling a slide against a strong recoil spring, making these pistols suitable for use by people with minimal hand strength. The trade off made is that in the event of a cartridge primer malfunction, the gun is rendered useless until the action can be cycled by someone with full hand strength. Still, for someone without the hand strength to handle a semi-automatic firearm with a slide against a strong recoil spring, the trade is often made.

An extractor also performs the function of an ejector in revolvers. When the striking force applied to the ejector rod is hard and fast enough, the extractor will typically eject the empty case(s) from the cylinder. Some break-action shotguns are also designed to eject empty shells completely out of the chamber when the barrel is opened.

The Exact Edge Extractor is manufactured through an EDM process to produce exacting tolerances. The new extractor will not lose its edge under impact such as other extractors made from stamped steel or titanium that will have their edges roll over and actually cause extraction problems after a short period of use. Our extractor features a very precise hook point. It is hardened to a Rc 58-60 to withstand years of use and still maintain its edge. We are able to hold the tolerances to +/-.0001" by utilizing the EDM manufacturing process. The hook is .005" closer to the rim of the cartridge to allow for the most positive extraction available. Made of A2 tool steel.

A box extractor is a portable carpet cleaning machine that typically comes with a drag wand and is designed for cleaning medium to large areas of carpeting. Additional accessories are also available for the cleaning of other surfaces. Box extractors are typically available in either non-heated or heated models. While hot tap water can be used in non-heated models, those with a heater will clean the same carpeted areas faster and more efficiently.

A detailing extractor is typically smaller in size compared to carpet extractors, as it is geared towards cleaning automotive interiors, upholstery, and other similar tasks. These extractors come in both non-heated & heated, where the heated units tend to clean extremely dirty areas more quickly and efficiently.

Starting from beacon version 14.2.0, Data Platform standalone extractors can be executed on beacon to collect data using specific loader configurations (refer to the table below). The data will be imported into IT Visibility.

Existing custom Data Platform extractors can be used with IT Visibility as long as they use loader configurations listed below. If you need to create a new custom extractor for IT Visibility, contact Flexera Services. e24fc04721

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