Why is HEC Hydroxyethyl Cellulose so Important in Oil Drilling?

πλατφόρµα πετρελαίου σε επισκευή

Hydroxyethyl cellulose is a non-ionic, water-soluble polymer that is now widely used in many industries due to its excellent rheological ability, thickening ability and compatibility with many different formulations.HEC Υδροξυαιθυλοκυτταρίνη in oil drilling can optimize drilling, cementing, hydraulic fracturing and other aspects.

Σημασία της HEC σε εφαρμογές πετρελαιοπηγών

The oilfield industry requires specialized materials that can withstand high pressures, extreme temperatures, and a wide range of chemical conditions. TENESSY® Υδροξυαιθυλοκυτταρίνη HEC can be used as an additive to non-dispersible brine bentonite clay slurries in oil drilling. This reduces water loss and increases viscosity without increasing gel strength.

In addition, using HEC in drilling muds improves clay dispersion in the well and prevents well collapse. HEC’s versatility and environmental benefits make it a key component of modern oilfield technology.

TENESSY® HEC για γεώτρηση πετρελαίου εφαρμογές

HEC για υγρά γεώτρησης

Drilling fluids, also known as drilling muds, are used to cool the drill bit, stabilize the wellbore and transport cuttings to the surface. Ensuring the safety and efficiency of drilling operations requires maintaining the proper balance of fluid properties.

Drillers commonly utilize hydroxyethyl cellulose-containing drilling fluids for hard rock drilling and unique scenario drilling, including high and low shale formations, pressure anomalies, excessive water loss, and circulating water leakage management. Large borehole and open hole drilling operations also benefit from it. Operators can use HEC in drilling mud to chill the iron filings and drill cuttings and bring them to the surface, increasing the mud’s ability to carry rock because of its thickening, suspending, and lubricating qualities. Manufacturers produce hydroxyethylcellulose as a non-ionic, water-soluble polymer. Many industries currently use it due to its excellent rheological properties, thickening ability, and compatibility with various formulations. In the oilfield industry, HEC plays a vital role in optimizing drilling, cementing, and hydraulic fracturing.

Oil-drilling

Drillers can also use hydroxyethyl cellulose in drilling muds as a non-fermentable protective gel for oil well treatments and for assay work at high pressures (20 MPa) and temperatures. Workers use HEC as a thickening and cementing agent in oil well workover fluids. It helps to provide a clarified solution with a low fixed content, which greatly minimizes damage to the well structure.

Χρησιμοποιήθηκε κάποτε ως διάλυμα επέκτασης και μεταφοράς άμμου σε τρύπα πηγαδιού, το οποίο ήταν αποτελεσματικό και εφαρμόστηκε στην πράξη. Η χρήση υδροξυαιθυλοκυτταρίνης μπορεί επίσης να βελτιώσει σημαντικά τις ιδιότητες απώλειας διήθησης της λάσπης και να αυξήσει σημαντικά τη σταθερότητα της λάσπης.

HEC για την ολοκλήρωση φρεατίων και το workover

To finish well construction and prepare the well for production, operators utilize well completion fluids. Workers use workover fluids to repair or maintain wells. Many oilfield activities use high salinity brines as base fluids, and TENESSY® HEC performs well with a variety of brine solutions to provide reliable performance in these high salinity conditions.

HEC is formulated as a low-solids completion fluid that prevents clay particles from clogging reservoir voids as it approaches the formation, and the water-loss-reducing property prevents large quantities of water from entering the formation from the mud to ensure the productivity of the formation.

Το TENESSY® HEC μειώνει την τριβή της λάσπης, η οποία με τη σειρά της μειώνει την πίεση της αντλίας και την κατανάλωση ενέργειας. Η εξαιρετική διαλυτότητά του σε άλατα διασφαλίζει επίσης ότι δεν καθιζάνει καθίζηση κατά την οξίνιση της γεώτρησης.

HEC για υδραυλικό ρευστό ρωγμάτωσης

During hydraulic fracturing, companies inject a high-pressure fracturing fluid into the rock to create fractures. This action allows the proppant to suspend and move deeper into the fracture. Due to its low toxicity and biodegradability, many choose hydroxyethyl cellulose as a more environmentally acceptable alternative to conventional chemical additives in fracking fluids.

 

fracking-zone-scaled

In fracturing fluids, TENESSY® HEC increases viscosity and can fracture oil wells without affecting the formation or clogging fractures. Water-based fracturing fluids made with HEC are essentially residue-free after liquefaction, making them particularly suitable for formations with low permeability where backdraining residue is not possible. 

HEC can avoid viscosity loss and rupture of oil formation due to high downhole temperature, and still have better effect in wells higher than 371°C. HEC does not easily corrupt and deteriorate downhole, has low residue, and will not block the oil circuit or cause downhole pollution. Studies have shown that HEC performs best when comparing the effectiveness of CMC, MC, HPC, and HEC as fracturing fluid components.

TENESSY offers the most suitable product models for the oilfield industry:

Μοντέλο HECΙξώδες (25°C,Brookfield,mpa.s)Ιξώδες (20℃,NDJ-1)                           Εφαρμογή
11TP3Διάλυμα νερού21TP3Διάλυμα νερού
NC100KH3600-500085000-100000Υγρό επισκευής πετρελαιοπηγών, τσιμεντοποίησης πετρελαίου και άλλων πεδίων πετρελαίου, εξωτερικής βαφής τοίχων, βαφής πραγματικής πέτρας, εκτύπωσης και βαφής υφασμάτων, χαρτοποιίας.

Περίληψη

Η υδροξυαιθυλοκυτταρίνη είναι ένα εξαιρετικά αποτελεσματικό και ευέλικτο πρόσθετο για εφαρμογές σε πετρελαιοπηγές και αποτελεί βασικό συστατικό της πετρελαϊκής βιομηχανίας λόγω της ικανότητάς της να αυξάνει το ιξώδες, να ελέγχει την απώλεια ρευστού και να σταθεροποιεί τους σχηματισμούς.

Εικόνα του Tenessy
Tenessy

Μοιραστείτε:

Έρευνα τώρα

Αποκτήστε τις καλύτερες προσφορές και δωρεάν δείγματα.
3K4T8LLtmuFao9a3
普人特福的博客cnzz & 51la για wordpress,cnzz για wordpress,51la για wordpress

Επικοινωνήστε μαζί μας

Συμπληρώστε για να λάβετε ένα δωρεάν δείγμα ή να συμβουλευτείτε για περισσότερες πληροφορίες.