CN208959915U - High-temperature reactor - Google Patents

High-temperature reactor Download PDF

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Publication number
CN208959915U
CN208959915U CN201821431756.1U CN201821431756U CN208959915U CN 208959915 U CN208959915 U CN 208959915U CN 201821431756 U CN201821431756 U CN 201821431756U CN 208959915 U CN208959915 U CN 208959915U
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China
Prior art keywords
support plate
tube sheet
water
heat exchanger
inlet pipe
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CN201821431756.1U
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Chinese (zh)
Inventor
秦中贤
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Chongqing Mountain Giant Chemical Machinery Ltd By Share Ltd
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Chongqing Mountain Giant Chemical Machinery Ltd By Share Ltd
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Abstract

The utility model belongs to field of chemical equipment, a kind of high-temperature reactor, including reactor body are specifically disclosed, is equipped with tube sheet inside the reactor body, multiple heat exchanger tubes are equipped in the reactor body, multiple heat exchanger tube upper ends pass through tube sheet and are fixedly connected with tube sheet;It further include support plate and water inlet pipe, the support plate is located at below tube sheet, the heat exchanger tube passes through support plate and support plate is fixedly connected with heat exchanger tube, the support plate is circumferentially with baffle, the support plate and baffle form water storage cavity, overflow port is equipped between the baffle and tube sheet, the water inlet pipe passes through reactor body and baffle and water outlet is located in water storage cavity.The high-temperature reactor can be damaged to avoid tube sheet by the temperature difference, extend the service life of high-temperature reactor.

Description

High-temperature reactor
Technical field
The utility model relates to field of chemical equipment, and in particular to a kind of high-temperature reactor.
Background technique
High-temperature reactor is known as miniature high pressure reaction still, catalytic reaction kettle, polymerization reaction kettle, and hydrogenation reaction kettle refers generally to Reactor of the reaction temperature at 400 DEG C or more, high-temperature reactor are suitable for carrying out chemistry, chemical reaction.
High-temperature reactor generally all includes reactor body, heat exchanger tube and tube sheet, and heat exchanger tube passes through tube sheet and and Tubesheet Welding It connects.Existing high-temperature reactor cost is relatively high, generally require it is millions of or even up to ten million, and high-temperature reactor use the longevity Life is but very short, generally only has or so half a year, i.e., every half a year, enterprise will replace the high-temperature reactor of damage, make enterprise Bear heavy financial burden.
Utility model content
The purpose of this utility model is to provide a kind of high-temperature reactor, which can be to avoid tube sheet by temperature Difference and arch upward, extend the service life of high-temperature reactor.
In order to achieve the above objectives, the base case of the utility model is as follows: high-temperature reactor, including reactor body, institute It states and is equipped with tube sheet inside reactor body, multiple heat exchanger tubes are equipped in the reactor body, multiple heat exchanger tube upper ends pass through pipe It plate and is fixedly connected with tube sheet;It further include support plate and water inlet pipe, the support plate is located at below tube sheet, and the heat exchanger tube passes through Support plate and support plate is fixedly connected with heat exchanger tube, the support plate are circumferentially with baffle, and the support plate and baffle, which are formed, to be stored up Water cavity is equipped with overflow port between the baffle and tube sheet, the water inlet pipe passes through reactor body and baffle and water outlet is located at storage In water cavity.
Using having the beneficial effect that for this base case: cooled down by the way that water inlet pipe is arranged to tube sheet in 1. this programme, Tube sheet two sides excessive temperature differentials is avoided, more tube plate deformation is avoided and forms air cavity and contacted with vapor always, improve pipe The service life of plate, and then the service life of high-temperature reactor is improved, making the service life of high-temperature reactor is original 3-4 It is even longer again.2. tube sheet and baffle form water storage cavity in the present solution, the lower section of tube sheet is arranged in support plate, it is ensured that There is water in water storage cavity always, it can cool down the most part of tube sheet can by the water in water storage cavity, it is cooling Effect is more preferable and avoids and contacts always with vapor below tube sheet.3. being equipped with overflow port, water storage between baffle and tube sheet Intracavitary water is flowed out by overflow port, and water inlet pipe is to continue water inlet, water inlet pipe into coolant-temperature gage it is lower, and after being heated Water can be flowed out by overflow port, it is ensured that the coolant-temperature gage in water storage cavity is lower, more preferable to the cooling effect of tube sheet in this way.4. Gasify after the water of overflow port outflow enters in high-temperature reactor, is conducive to the progress of pyroreaction in high-temperature reactor.5. The cooling effect to tube sheet is just only reached by setting support plate, baffle and water inlet pipe in this programme, cost is relatively low.
It further, further include multiple locating pieces, the locating piece is fixedly connected with heat exchanger tube and consolidates with lower end face of support plate Fixed connection.Support plate is fixed on heat exchanger tube by locating piece, easy to operate and good fixing effect.
Further, the quantity of the water inlet pipe is multiple, and multiple water inlet water inlet tube effects are more preferable.
Further, the quantity of the water inlet pipe is four, and four water inlet pipes are circumferentially uniformly arranged along support plate.Four water inlets Pipe is circumferentially uniformly arranged along support plate, not only may insure that the inflow of water inlet pipe can make to have water in water storage cavity always, but also is protected It is uniform water inlet is demonstrate,proved, it is ensured that when cooling to tube sheet also more uniformly, and reduce the quantity of water inlet pipe to the greatest extent, reduce cost.
Further, the sum of flow of inlet water of the water inlet pipe is not less than the sum of the water flow of overflow port.It can protect in this way Demonstrate,prove has cooling water to enter in water storage cavity always is cooled down, and the water temperature in water storage cavity is constantly in a lower state, It is more preferable to the cooling effect of tube sheet.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the utility model high-temperature reactor embodiment;
Fig. 2 is enlarged drawing at A in this Fig. 1;
Fig. 3 is the B of the utility model high-temperature reactor to cross-sectional view;
Fig. 4 is the schematic diagram that heat exchanger tube is connected with support plate;
Schematic diagram when Fig. 5 is tube sheet generation deformation in the prior art.
Specific embodiment
The utility model is described in further detail below by specific embodiment:
Appended drawing reference in Figure of description include: reactor body 1, water inlet pipe 2, tube sheet 3, support plate 4, heat exchanger tube 5, Water storage cavity 6, baffle 7, fixing pipe 8.
Utility model people is studied for many years, and creative having found influences high-temperature reactor service life reason for it. As shown in figure 5, the temperature in high-temperature reactor ontology (a) is very high when high-temperature reactor works, generally all reach 500 DEG C with On, even as high as 1000 DEG C, the position temperature being particularly located in high-temperature reactor below the tube sheet (b) of upper end is very high, and Tube sheet is mostly metal material, i.e., its intensity can reduce after tube sheet is heated, is arched upward upwards in the middle part of tube sheet (b), and solid with tube sheet (b) Surely the heat exchanger tube connected, which also will receive, very big pulls power.After arching upward upwards in the middle part of tube sheet (b), tube sheet (b) and high-temperature reactor It will form an air cavity (c) between ontology (a), generated vapor may build up this gas in high-temperature reactor ontology (a) In chamber (c), contact tube sheet (b) lower part can not with the lower water of the temperature in high-temperature reactor and can only the higher water steaming of temperature Gas contact, more leads to that tube sheet (b) lower part heating temperature is excessively high or even vapor is gathered in air cavity in this way, makes suffered by tube sheet Air pressure increase, it is easier to cause tube sheet (b) to deform, and the deformation of tube sheet (b) can make tube sheet (b) distance high-temperature reactor body (a) distance of the water in is increasing, can not more be cooled to, so as to cause vicious circle.The change that tube sheet (b) arches upward upwards Shape not only affects the service life of tube sheet (b) itself, because exchanger tubes and tubesheets (b) are fixedly connected, tube sheet (b) is becoming Also heat exchanger tube can be made to be pullled power by very big when shape, in turn result in the company of tube sheet (b), heat exchanger tube or exchanger tubes and tubesheets (b) Place's damage is connect, the service life of high-temperature reactor is affected.For this purpose, utility model people devises a kind of high-temperature reactor, to Solve the problems, such as this, the following are the embodiments of the high-temperature reactor.
Embodiment is substantially as shown in Fig. 1: high-temperature reactor, including reactor body 1, and 1 internal upper part of reactor body is set Have a lateral tube sheet 3, be equipped with multiple heat exchanger tubes 5 in reactor body 1, multiple 5 upper ends of heat exchanger tube pass through tube sheet 3 and with tube sheet 3 It is fixedly connected.It further include support plate 4 and water inlet pipe 2 in this programme, support plate 4 is located at below tube sheet 3 and parallel with support tube.It changes Heat pipe 5 passes through support plate 4.As shown in figure 4, further including multiple fixing pipes 8, each fixing pipe 8 is set in a heat exchanger tube 5 Outside, 8 upper surface of fixing pipe is supported support plate 4.As shown in Fig. 2, support plate 4 is circumferentially with baffle 7, support plate 4 and gear Plate 7 forms water storage cavity 6, and overflow port is equipped between baffle 7 and tube sheet 3.2 one end of water inlet pipe is connected to water source, is equipped on water inlet pipe 2 Valve, 2 other end of water inlet pipe pass through the side wall and baffle 7 of reactor body 1, and the water outlet of water inlet pipe is located in water storage cavity 6.Such as Shown in Fig. 3, the quantity of water inlet pipe 2 is four, and four water inlet pipes 2 are circumferentially uniformly arranged along support plate 4.The feed water flow of water inlet pipe 2 The sum of amount is not less than the sum of the water flow of overflow port, and in the present embodiment, the distance of tube sheet 3 to support plate 4 is 50mm;Baffle 7 Distance away from tube sheet 3 is 20mm, and the caliber of water inlet pipe 2 is 32mm.It can guarantee there is cooling water to enter water storage always in this way It is intracavitary to be cooled down, and the water temperature in water storage cavity is constantly in a lower state, it is more preferable to the cooling effect of tube sheet.
When it is implemented, water inlet pipe 2 is connected at water source, valve is opened when high-temperature reactor generates high temperature and reacts , the water in water source will pass through water inlet pipe 2 and enter in water storage cavity 6, and passes through overflow port and flow out.Water in water storage cavity 6 is to pipe Plate 3 is cooled down and is cooled down, and is avoided the deformation of tube sheet 3 and is formed air cavity and contact with vapor always.And because support plate 4 It is parallel with tube sheet 3, so the horizontal plane that the water in water storage cavity 6 is formed is also parallel with tube sheet 3, so that water and tube sheet 3 connect Uniformly, cooling effect is more preferable for touching.Water in water storage cavity 6 is flowed out by overflow port, and water inlet pipe 2 is to continue water inlet, water inlet pipe 2 Into coolant-temperature gage it is lower, and the water after being heated can be flowed out by overflow port, it is ensured that coolant-temperature gage in water storage cavity 6 compared with It is low, it is more preferable to the cooling effect of tube sheet 3 in this way.Gasify after the water of overflow port outflow enters in high-temperature reactor, is conducive to The progress of pyroreaction in high-temperature reactor.
Above-described is only the embodiments of the present invention, and the common sense such as well known specific structure and characteristic are herein in scheme It does not describe excessively.It should be pointed out that for those skilled in the art, in the premise for not departing from the utility model structure Under, several modifications and improvements can also be made, these also should be considered as the protection scope of the utility model, these all will not influence The effect and patent practicability that the utility model is implemented.This application claims protection scope should be with the content of its claim Subject to, the records such as specific embodiment in specification can be used for explaining the content of claim.

Claims (5)

1. high-temperature reactor, including reactor body, the reactor body inside is equipped with tube sheet, sets in the reactor body There are multiple heat exchanger tubes, multiple heat exchanger tube upper ends pass through tube sheet and are fixedly connected with tube sheet;It is characterized by also including support plate and Water inlet pipe, the support plate are located at below tube sheet, and the heat exchanger tube passes through support plate and support plate is fixedly connected with heat exchanger tube, institute It states support plate and is circumferentially with baffle, the support plate and baffle form water storage cavity, overflow port, institute are equipped between the baffle and tube sheet Water inlet pipe is stated across reactor body and baffle and water outlet is located in water storage cavity.
2. high-temperature reactor according to claim 1, it is characterised in that: further include multiple locating pieces, the locating piece with Heat exchanger tube is fixedly connected and is fixedly connected with lower end face of support plate.
3. high-temperature reactor according to claim 2, it is characterised in that: the quantity of the water inlet pipe is multiple.
4. high-temperature reactor according to claim 3, it is characterised in that: the quantity of the water inlet pipe be four, four into Water pipe is circumferentially uniformly arranged along support plate.
5. high-temperature reactor according to claim 3 or 4, it is characterised in that: the sum of flow of inlet water of the water inlet pipe is no Less than the sum of the water flow of overflow port.
CN201821431756.1U 2018-08-31 2018-08-31 High-temperature reactor Active CN208959915U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821431756.1U CN208959915U (en) 2018-08-31 2018-08-31 High-temperature reactor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821431756.1U CN208959915U (en) 2018-08-31 2018-08-31 High-temperature reactor

Publications (1)

Publication Number Publication Date
CN208959915U true CN208959915U (en) 2019-06-11

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821431756.1U Active CN208959915U (en) 2018-08-31 2018-08-31 High-temperature reactor

Country Status (1)

Country Link
CN (1) CN208959915U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109046223A (en) * 2018-08-31 2018-12-21 重庆山巨化工机械股份有限公司 high-temperature reactor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109046223A (en) * 2018-08-31 2018-12-21 重庆山巨化工机械股份有限公司 high-temperature reactor

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