Online monitoring device and method for fouling and slagging based on capacitance principle differential measurement
12092599 ยท 2024-09-17
Assignee
Inventors
- Jiajie Zhang (Taiyuan, CN)
- Jiansheng Zhang (Taiyuan, CN)
- Yanwei Chen (Taiyuan, CN)
- Suxia Ma (Taiyuan, CN)
- Dapeng Bi (Taiyuan, CN)
Cpc classification
G01K7/00
PHYSICS
F23G2900/55005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23J2700/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
An online monitoring device for fouling and slagging based on capacitance principle differential measurement includes multiple measuring devices arranged at the same height of the boiler heating surface. Each measuring device includes a fixed sleeve and a sensor, one end of the fixed sleeve is fixed on the boiler heating surface, the sensor is connected with the fixed sleeve through screw threads, the end of the sensor near the boiler is equipped with a measuring probe. When measuring the thickness of ash residue on the monitoring surface, three sets of the measuring devices are at the same height of the monitoring surface. Each sensor is adjusted at a different position in the corresponding fixed sleeve to realize the differential measuring on ash residue thickness. Thus, the thickness of ash residue on the monitoring surface can be calculated based on the measured capacitance by applying the capacitance formula of planar capacitor.
Claims
1. An online monitoring device for fouling and slagging based on capacitance principle differential measurement, comprising three measuring devices being arranged at the same height of a boiler heating surface of a boiler, wherein each measuring device among the three measuring devices includes a fixed sleeve and a sensor, one end of the fixed sleeve is fixed on the boiler heating surface, the sensor is nested in the fixed sleeve and connected with the fixed sleeve through screw threads, the end of the sensor near the boiler is equipped with a measuring probe; the measuring probe includes a central electrode, a ring electrode, a insulating ceramic and a thermometric element, the central electrode has a circular cross section, the ring electrode is arranged around the central electrode, the insulating ceramic is arranged on the outside of the ring electrode and also between the ring electrode and the central electrode, the thermometric element is arranged in the insulating ceramic to measure the temperature of the measuring probe; and the distances between the end of sensor and the end of fixed sleeve are different for each measuring device.
2. The online monitoring device according to claim 1, wherein the fixed sleeve comprises a sleeve and a fixed flange, and an inner wall of the sleeve is arranged with an internal thread; and the sensor comprises a measuring rod and a meter case, the measuring rod is provided with a external thread which is matched with the internal thread of the sleeve, the meter case is connected with one end of the measuring rod, the measuring probe is arranged in the other end of the measuring rod, the measuring probe is connected with a electrocircuit in the meter case by a lead wire through the measuring rod, the periphery of the measuring rod is connected with a threaded flange and a lock nut through screw threads, the threaded flange is used to connect the fixed flange and the lock nut is used to lock the threaded flange.
3. The online monitoring device according to claim 2, wherein the sleeve is made of a refractory metal.
4. An online monitoring method for fouling and slagging based on capacitance principle differential measurement, using an online monitoring device comprising multiple measuring devices being arranged at the same height of a boiler heating surface of a boiler, wherein each measuring device among the multiple measuring devices includes a fixed sleeve and a sensor, one end of the fixed sleeve is fixed on the boiler heating surface, the sensor is nested in the fixed sleeve and connected with the fixed sleeve through screw threads, the end of the sensor near the boiler is equipped with a measuring probe, the measuring probe includes a central electrode, a ring electrode, a insulating ceramic and a thermometric element, the central electrode has a circular cross section, the ring electrode is arranged around the central electrode, the insulating ceramic is arranged on the outside of the ring electrode and also between the ring electrode and the central electrode, the thermometric element is arranged in the insulating ceramic to measure the temperature of the measuring probe, the method comprising: adjusting a distance between the end of measuring probe and the end of fixed sleeve so that the distances for each measuring device are different, and recording each distance value; installing the measuring devices on the monitoring surface of the boiler, with the end of fixed sleeve being flush with the monitoring surface, and filling the high thermal conductivity material between the fixed sleeve and the monitoring surface; and recording a capacitance value C of each sensor, substituting the capacitance value C and the corresponding distance value into the calculation formulas of ring capacitance, and then obtaining a thickness of ash residue ?, calculation formulas are as follows:
5. The online monitoring method according to claim 4, wherein the number of measuring devices is no less than three.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
REFERENCE SIGNS LIST
(9) (1) measuring device (2) fixed sleeve (3) sensor (4) monitoring surface (5) high thermal conductivity material (6) ash residue (7) water wall (8) waste heat boiler (21) fixed flange (22) sleeve (23) internal thread (30) meter case (31) measuring rod (32) threaded flange (33) lock nut (34) external thread (35) measuring probe (36) central electrode (37) ring electrode (38) insulating ceramic (39) thermometric element
DETAILED DESCRIPTION OF EMBODIMENTS
(10) The present invention is explained below in detail with reference to the accompanying drawings. It is important to point out that the present invention is not limited to the following embodiment. The constituent elements disclosed in the following embodiment include those that can be easily assumed by persons skilled in the art, that are substantially identical, and that are within so-called equivalents.
(11) The embodiment of the present invention provides an online monitoring device for fouling and slagging based on capacitance principle differential measurement, which comprises three measuring devices (1). These measuring devices are arranged at the same height of the heating surface in a boiler.
(12) As shown in
(13) As shown in
(14) As shown in
(15) When measuring the thickness of ash residue on the boiler heating surface, three measuring devices (1) are jointly installed at the same height of monitoring surface. In order to realize the differential measuring on ash residue thickness, among three measuring devices, each sensor (3) is adjusted at a different position in the corresponding fixed sleeve (2). Thus, the thickness of ash residue on the monitoring surface can be calculated based on the measured capacitance.
(16) Further, in the present embodiment, the sleeve (22) is made of the refractory metal.
(17) Combined with
(18)
Where, C means the capacitance with the unit as F. ?.sub.1, ?.sub.2 are the dielectric constants of the gas and ash residue, respectively. a is the radius of the central electrode (36). b is the width of the ring electrode (37). d is the distance between the central electrode (36) and the ring electrode (37). ? is the thickness of the ash residue.
(19) In the actual application, due to the composition of coal category and the combustion condition in the furnace being complicated and changeable, it is hard to predict accurately the composition of the ash residue and the gas. Thus, the dielectric constants of ash residue and gas are unknown, and then the relationship between the measured capacitance and the ash residue thickness cannot be obtained. To solve this problem, the present invention adopts a differential measurement method to eliminate the influence of unknown dielectric constants. Since the heating surface in the boiler is usually arranged symmetrically, when the fouling and slagging occurs, the thicknesses of ash residue at the same height of heating surface are equal. Based on these, the present invention realizes a differential measuring on ash residue thickness by adjusting the position of the sensor in the fixed sleeve of the measuring device.
(20) Combined with
(21) Combined with
(22) In addition, in the embodiment of the present invention, the number of measuring devices (1) may be more than three. Thus, multiple sets of parameters (Distance, Capacitances) can be measured, and the ash residue thickness ? can be obtained by substituting Eqs. (i) and (ii) and applying the least square method.
(23) Refer to
(24) Furthermore, the present invention also provides an online monitoring method for fouling and slagging based on capacitance principle differential measurement, which is realized by adopting the above monitoring device, specifically including the following steps: S1. adjusting the distance between the end of measuring probe (35) and the end of fixed sleeve (2) so that the distances for each measuring device (1) are different, and recording each distance value; S2. installing the measuring devices (1) on the monitoring surface (4) of the boiler, with the end of fixed sleeve (2) being flush with the monitoring surface (4), and filling the high thermal conductivity material (5) between the fixed sleeve (2) and the monitoring surface (4); S3. recording the capacitance value C of each sensor (3), substituting the capacitance value C and the corresponding distance value into the calculation formulas of ring capacitance, and then obtaining the thickness of ash residue ?.