LOGISTIC MONORAIL TRANSPORTATION SYSTEM
20210323583 · 2021-10-21
Inventors
Cpc classification
E01B25/30
FIXED CONSTRUCTIONS
B61L23/002
PERFORMING OPERATIONS; TRANSPORTING
B61L23/00
PERFORMING OPERATIONS; TRANSPORTING
B61B1/005
PERFORMING OPERATIONS; TRANSPORTING
B61L2210/04
PERFORMING OPERATIONS; TRANSPORTING
E01B25/08
FIXED CONSTRUCTIONS
E01B25/22
FIXED CONSTRUCTIONS
International classification
B61L23/00
PERFORMING OPERATIONS; TRANSPORTING
E01B25/08
FIXED CONSTRUCTIONS
E01B25/22
FIXED CONSTRUCTIONS
Abstract
A logistic monorail transportation system. The logistic monorail transportation system comprises a logistic track beam system, a logistic vehicle system, a logistic turnout system, a logistic handling system, and a logistic signal system. The logistic track beam system is set up on the road, in the field, or in the streets in the form of single-column pier studs or frame-type pier shads. The technical solution of the present application solves the problems of short distance, high costs, and low speed of existing transportation systems, and the purpose of long-distance, low-cost, and high-speed logistic monorail transportation is achieved.
Claims
1. A logistic monorail transportation system comprising: a logistic track beam system; a logistic vehicle system; a logistic turnout system; a logistic handling system; and a logistic signal system; wherein, the logistic track beam system is in a form of single-column pier studs or frame-type pier shads, setting up on highways, fields or urban streets.
2. The logistic monorail transportation system of claim 1, wherein the system comprises a maglev logistic transportation system, a straddle monorail logistic transportation system, or a suspended monorail logistic transportation system.
3. The logistic monorail transportation system of claim 1, wherein an open structure is adopted in the logistic vehicle system for transporting cargo containers; the logistic vehicle system is provided with a cargo container in the vehicle.
4. The logistic monorail transportation system of claim 3, wherein a centralized power system or a distributed power system are adopted in the logistic vehicle system.
5. The logistic monorail transportation system of claim 1, wherein a frame structure is adopted in the logistic turnout system to realize line switching in the air.
6. The logistic monorail transportation system of claim 5, wherein the logistic turnout system comprises a pier column, a frame and a turnout beam; a joint in the turnout can be a flexible beam or shifting beam or pivot beam.
7. The logistic monorail transportation system of claim 1, wherein cranes or lifting trucks are adopted in the logistic handling system to load and unload containers on logistic vehicles.
8. The logistic monorail transportation system of claim 1, wherein the logistic signal system comprises an unmanned driving system for controlling a logistic monorail vehicle and a turnout control signal system for controlling a monorail turnout to change lines.
9. The logistic monorail transportation system of claim 2, wherein a single-mode monorail or double-mode monorail are provided on a same column pier stud; or a single-mode monorail or double-mode monorail transportation are provided on a same frame-type pier shad.
10. The logistic monorail transportation system of claim 9, wherein an upper level of the double-mode monorail transportation is a straddle monorail system or a maglev system; a lower level of the double-mode monorail transportation is a suspended monorail system.
11. The logistic monorail transportation system of claim 10, wherein guideways of a straddle monorail system in the double-mode monorail system are steel box guideways or concrete guideways.
12. The logistic monorail transportation system of claim 10, wherein guideways of a maglev system in the double-mode monorail system are steel box guideways, I-shaped steel guideways or concrete guideways.
13. The logistic monorail transportation system of claim 10, wherein guideways of a suspended monorail system in the double-mode monorail system are a steel box guideway with an opening at the bottom, an I-shaped guideway or a concrete guideway with an opening at the bottom.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0083] It is not difficult for the experts in the field to understand the features shown by the numbers in the figures in combination with the following embodiments, and therefore no more will be repeated.
DETAILED DESCRIPTION OF PREFERRED EMBODIMENT
[0084] The principle of this patent will be explained below.
[0085] The working principle of the maglev logistic monorail transportation system is explained in the following with reference to
[0086] First, the principle of the maglev logistic monorail transportation system based on this patent will be demonstrated with reference to
[0087] For the maglev logistic monorail transportation system, the construction cost needs to consider the following factors:
[0088] where W.sub.1 is the material and construction cost; W.sub.2 is the increased cost for high vehicle speed requirements; and W.sub.3 is the increased cost of in-car and distribution station construction requirements.
[0089] Because it is cargo transportation, the vehicle comfort requirements, the structure's impact on surrounding noise and the construction costs will be relatively reduced.
[0090] At present, the existing monorail system is all single-mode monorail system. For example, only the lower space of the pier cover beam is used in the suspended monorail traffic and upper space of the pier cover beam is discarded, while in the straddle monorail traffic and maglev traffic, only the upper space is used and the lower space of the pier cover beam is discarded. Therefore, for this single-mode monorail transportation, the biggest problem is that the space utilization rate is too low. From the point of view of traffic level, only one level is used. The passenger flow of the traffic section is Q=q.sub.0, and q.sub.0 is the cross-section single-mode traffic passenger flow per unit time. The logistic flow of the traffic of the cross-section is W=w.sub.0.Math.w.sub.0 is single-mode traffic volume per unit time.
[0091] In response to the above problems, combined with the actual situation and characteristics of monorail transportation, a lot of research and simulation has been conducted. Based on the existing theories and practical experience, this patent is proposed which considering the advantages of monorail transportation and the concept of elevated three-dimensional space.
[0092] The double-mode monorail system is proposed in this patent. The working principle of the double-mode monorail system is explained in the following texts with reference to the accompanying figures. But before that, it should be pointed out that the embodiments described in the figures are only for demonstration of the principle and cannot be understood as the limitation for the present invention.
[0093] First, the principle of the double-mode monorail system based on this patent will be demonstrated with reference to
[0094] The principle of the double-mode monorail system based on this patent will be demonstrated with reference to
[0095] The space is divided into two levels by a bridge pier cover beam structure, K1 and K2, the lower and upper levels of the cover beam. The lower and upper traffic levels are used to increase the cross-section passenger flow or logistic flow, and the cross-section passenger flow or logistic transportation capacity is improved.
[0096] In terms of passenger flow, the total passenger flow of a certain section is calculated as follows:
[0097] where q.sub.1 is the monorail traffic passenger flow in level K1; and q.sub.2 is the monorail traffic passenger flow in level K2.
[0098] Compared with the existing single-mode transportation system, the passenger transportation capacity of this patent has increased to the two-level space passenger transportation capacity, which is double the passenger flow transportation capacity of the existing single-mode transportation system.
[0099] In terms of logistics, the total logistic flow of a certain section is calculated as follows:
[0100] where w.sub.1 is the monorail traffic volume in level K1; and w.sub.2 is the monorail traffic volume in level K2.
[0101] Compared with the existing single-mode transportation system, the logistic transportation capacity of this patent has increased to a two-level spatial logistic transportation capacity, which is doubled compared to the existing single-mode transportation system. The double-mode monorail transportation can be operated in a same three-dimensional space, in which the problems of low space utilization rate and less level in current single-mode monorail system will be solved, and the goal of improving the double-mode monorail level will be truly achieved. The burden of ground transportation will be obviously reduced.
[0102] The double-mode monorail system is proposed in this patent, in which the double-mode monorail system can be adopted on the bridge pier line and integrated construction. The two monorails operate independently without mutual interference, in which the space utilization can be improved. This patent will be further explained with embodiments.
Embodiment 1. A Maglev Logistic Monorail Transportation System on the Central Zone of the Highway with Decentralized Power Logistic Vehicles
[0103] It is known that a section of maglev logistic monorail transportation system has been built on the central zone of the highway, comprising a maglev logistic track beam system, a maglev logistic vehicle system, a maglev logistic turnout system, a maglev logistic handling system and a maglev logistic signal system. Power logistic vehicles are used in the maglev logistic vehicle system, and the specific implementation is as follows:
[0104] The maglev logistic monorail transportation system based on this patent will be demonstrated with reference to
[0105] The maglev logistic track beam system comprises a single-column pier stud form and a frame-type pier shad form. The single-column pier stud form is set on the green belt in the center of a highway, that is, between the highway G1 and the highway G2, as shown in
[0106] In the single-column pier stud form of the maglev logistic track beam system, the single-column pier stud structure of the maglev logistic track beam system comprises bridge piers 1a, 2a, maglev guideways 3a, 4a, and a maglev logistic vehicle 5a. The maglev guideway 3a is installed on the top of cover beams 10a and 11a through the bearings 6a and 7a; the maglev guideway 4a is installed on the top of the cover beams 10a and 11a through bearings 8a and 9a. The unmanned maglev logistic vehicle 5a runs on the maglev guideway 4a straddling.
[0107] In some complex lines, the frame-type pier shad form of the maglev logistic track beam system is adopted. The frame-type pier shad structure of the maglev logistic track beam system comprises the piers 1-1b, 1-2b, 2-1b, 2-2b, the maglev guideways 3b, 4b, and a maglev logistic vehicle 5b. The maglev guideway 3b is installed on the top of cover beams 10b and 11b through bearings 6b and 7b; the maglev guideway 4b is installed on the top of cover beams 10b and 11b through bearings 8b and 9b. An unmanned maglev logistic vehicle 5b runs on the maglev guideway 4b straddling. It should be pointed out that the adoption of the single-column pier stud form or the frame-type pier shad form of the maglev logistic track beam system should depend on the specific conditions of the route. Only one form of single-column pier stud, or frame-type pier shad can be adopted in the maglev logistic track beam system. The form of single-column pier stud and frame-type pier shad can also be adopted at the same time.
[0108] The vehicle structure used in the maglev logistic vehicle system comprises the car bodies 5-11, 5-31, maglev bogies 5-14, 5-34 and a connecting piece 5-2. The car body 5-11 and 5-31 are open structure, and cargo containers 5-12 and 5-13 are installed on 5-11. Cargo containers 5-32 and 5-33 are installed on 5-31. The maglev bogie 5-14 is installed at the bottom of the car body 5-11, and comprises an electromagnet 5-15 and a linear motor 5-16. The electromagnet 5-15 is used for the suspension and guide of the car body 5-11. The linear motor 5-16 is used for front and rear driving of the car body 5-11. The maglev bogie 5-34 is installed at the bottom of the car body 5-31, and comprises an electromagnet 5-35 and a linear motor 5-36. The electromagnet 5-35 is used for the suspension and guide of the car body 5-31. The linear motor 5-36 is used for the front and rear driving of the car body 5-31. The car body 5-11 and 5-31 are connected through the connection system 5-2. It should be pointed out that the number of logistic vehicles in the maglev logistic vehicle system is not only two. The number of logistic vehicles depends on the specific logistic transportation conditions.
[0109] In the maglev logistic turnout system, the switch structure is composed of a single pillar 1c, frames 2c, 3c, 4c and a maglev turnout beam 5c. The maglev turnout beam with 5c is a track beam with three flexible joints, which can be rotated at the top area of the frame 2c and 3c. A rail trolley 9c is arranged on a track 6c on the top of the frame 2c, which is used to drive the rotation of the maglev turnout beam 5c; the rail trolley 10c is arranged on a rail 7c on the top of the frame 3c, which is used to drive the rotation of the maglev turnout beam 5c; a rail trolley 11c is arranged on track 8c on the top of the frame 4c, which is used to drive the rotation of the maglev turnout beam 5c. The coordinated work of the rail trolley 9c, 10c, and 11c makes the maglev turnout beam 5c rotate to the suitable position to achieve the goal of the maglev logistic turnout system.
[0110] In the maglev type logistic handling system, the maglev type logistic loading and unloading structure is composed of a distribution station 1d, an overhead traveling crane 2d, an overhead traveling crane 3d and an overhead traveling crane 4d. When loading, cargo 5d, cargo 6d, cargo 7d, cargo 8d, cargo 9d and cargo 10d are loaded by crane 2d, crane 3d and crane 4d into the logistic vehicle from the upper part. When unloading, cargos 5d, 6d, 7d, 8d, 9d and 10d are taken by crane 2d and crane 3d and the crane 4d from the logistic vehicle and then sent to a suitable storage place. It should be noted that the above is only the implementation mode. In the actual distribution station, the number of cranes is not only three. The specific number of cranes should be considered comprehensively according to the scale of the distribution station.
[0111] In the signal systems of the maglev logistics, the maglev logistic signal system comprises an unmanned driving system and a turnout control signal system. Maglev logistic vehicles are controlled by the unmanned driving system to run according to the route conditions, and the maglev logistic switch is controlled by the turnout control signal system to switch line according to the operation of the maglev logistic vehicles to make the maglev logistic vehicles travel along the target line.
Embodiment 2. A Maglev Type Logistic Monorail Transportation System in the Filed with Decentralized Power Logistic Vehicles
[0112] It is known that a section of maglev logistic monorail transportation system is constructed in a field, comprising the maglev logistic track beam system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system. The distributed power logistic vehicles are used in the maglev logistic vehicle system, and the specific implementation is as follows:
[0113] With reference to
[0114] The maglev logistic track beam system comprises a single-column pier stud form and the frame-type pier shad form. The single-column pier stud form is set on the planned route of the field T1, as shown in
[0115] In this embodiment 2, the principle and structure of the single-column pier stud form and frame-type pier shad form of the maglev logistic track beam system of the maglev logistic monorail transportation system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev-type logistic signal system are the same as those in the embodiment 1, and will not be repeated here.
Embodiment 3. A Maglev Type Logistic Monorail Transportation System in Urban Streets with Decentralized Power Logistic Vehicles
[0116] It is known that a section of the maglev logistic monorail transportation system has been built in an urban street, comprising the maglev logistic track beam system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system. The distributed power logistic vehicles are adopted in the logistic vehicle system, and the specific implementation is as follows:
[0117] A maglev-type logistic monorail transportation system based on this patent will be demonstrated with reference to
[0118] The maglev logistic track beam system comprises the single-column pier stud form and the frame-type pier shad form. The single-column pier stud form is set on the green belt, the region between an urban street C1 and an urban street C2, in the center of urban streets, as shown as in
[0119] In this embodiment 3, the principle and structure of the single-column pier stud form and frame-type pier shad form of the maglev logistic track beam system of the maglev logistic monorail transportation system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev-type logistic signal system are the same as those in the embodiment 1, and will not be repeated here.
Embodiment 4. A Maglev-Type Logistic Monorail Transportation System on the Central Reservation of the Highway with Centralized Power Logistic Vehicles
[0120] It is known that a section of maglev-type logistic monorail transportation system has been built on the central reservation of a certain highway, comprising the maglev logistic track beam system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system. Centralized power logistic vehicles are adopted in the maglev logistic vehicle system, and the specific implementation is as follows:
[0121] A maglev-type logistic monorail transportation system based on this patent will be demonstrated with reference to
[0122] The maglev logistic track beam system comprises the single-column pier stud form and the frame-type pier shad form. The single-column pier stud form is set on the green belt in the center of the highway, the space between the highway G1 and the highway G2, as shown in
[0123] In this embodiment 4, the principle and structure of a single-column pier stud form and a frame-type pier shad form of the maglev logistic track beam system of the maglev logistic monorail transportation system, the maglev logistic turnout system, the maglev logistic handling system, and the maglev logistic signal system are the same as the above embodiments 1 and won't be repeated here. The following text focuses on the maglev logistic vehicle system in this embodiment.
[0124] In the maglev type logistic vehicle system in embodiment 4, the structure of the maglev logistic vehicle comprises a car body 5-41, a car body 5-61, a maglev bogie 5-44, a maglev bogie 5-64 and a connecting piece 5-5. The car body 5-41 and the car body 5-61 are open-type structures. A cargo container 5-42 and a cargo container 5-43 are installed on the car body 5-41; a cargo container 5-62 and a cargo container 5-63 are installed on the car body 5-61. The maglev bogie 5-44 is installed at the bottom of the car body 5-41. The maglev bogie 5-44 comprises an electromagnet 5-45 and a linear motor 5-46. The electromagnet 5-45 is used for the suspension and guidance of the car body 5-41; the linear motor 5-46 is used for the front and rear driving of the car body 5-41; the bottom of the car body 5-61 is equipped with the maglev bogie 5-64, which comprises a electromagnet 5-65; the electromagnet 5-65 is used for the suspension and guidance of the car body 5-61, and the car body 5-41 and the car body 5-61 are connected by the connecting system 5-5. It should be pointed out that the number of logistic vehicles in the maglev logistic vehicle system is not only two. The number of specific logistic vehicles depends on the specific logistic and transportation conditions. The position of the bogie 5-44 with linear motor 5-46 can be grouped at the head of the logistic vehicle, and it can also be at the rear of the marshalling logistic vehicle or in the middle of the marshalling logistic vehicle.
Embodiment 5. A Maglev Logistic Monorail Transportation System in the Filed with Centralized Powered Logistic Vehicles
[0125] It is known that a section of maglev-type logistic monorail transportation system has been constructed in a field, comprising the maglev logistic track beam system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system, and the maglev logistic signal system. The centralized power logistic vehicles are used in the maglev-type logistic vehicle system, and the specific implementation is as follows:
[0126] A maglev type logistic monorail transportation system based on this patent will be demonstrated with reference to
[0127] The maglev logistic track beam system comprises the single-column pier stud form and the frame-type pier shad form. The single-column pier stud form is set on the planned route of the field T1, as shown in
[0128] In this embodiment 5, the principle and structure of the single-column pier stud form and frame-type pier shad form of the maglev logistic track beam system of the maglev logistic monorail transportation system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system, and the maglev logistic signal system are the same as the above-mentioned embodiment 4, and will not be repeated here.
Embodiment 6. A Maglev Logistic Monorail Transportation System in Urban Streets with Centralized Powered Logistic Vehicles
[0129] It is known that a section of maglev logistic monorail transportation system has been built in an urban street, comprising the maglev logistic track beam system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system. The centralized power logistic vehicles are used in the integrated logistic vehicle system, and the specific implementation is as follows:
[0130] A maglev-type logistic monorail transportation system based on this patent will be demonstrated with reference to
[0131] The maglev logistic track beam system comprises the single-column pier stud form and the frame-type pier shad form. The single-column pier stud form is set on the green belt in the center of urban streets, the space between an urban street C1 and an urban street C2, as shown in
[0132] In the embodiment 6, the principle and structure of the single-column pier stud form and frame-type pier shad form of the maglev logistic track beam system of the maglev logistic monorail transportation system, the maglev logistic vehicle system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system are the same as those in the above-mentioned embodiment 4, and will not be repeated here.
[0133] In the above description, the maglev type logistic monorail transportation system is taken as an example to describe the logistic monorail transportation system according to the present invention. The logistic monorail transportation system according to the present invention may also comprise a straddle-type logistic monorail transportation system or a suspended logistic monorail transportation system. The differences will be described below with reference to the drawings.
Embodiment 7. Straddle Logistic Monorail Transportation System
[0134] The straddle logistic monorail transportation system according to the present invention has basically the same structure as the above-mentioned maglev logistic monorail transportation system, and the difference lies in the use of straddle-type monorail guideways and straddle-type logistic monorail vehicles.
[0135] The straddle logistic monorail vehicle system in this embodiment 7 will be described below, known as
[0136] In the embodiment 7, the single-column pier stud form and frame-type pier shad form of the straddle logistic monorail bridge guideway system of a straddle logistic monorail transportation system, a straddle logistic single turnout beam with system, and a straddle logistic monorail handling system and a straddle logistic monorail signal system are respectively the same as the single-column pier stud form and frame-type pier shad form of the maglev logistic track beam system of the above-mentioned maglev logistic monorail transportation system, the maglev logistic turnout system, the maglev logistic handling system and the maglev logistic signal system, so they won't be repeated here. The straddle logistic monorail transportation system with decentralized power logistic vehicles or the straddle logistic monorail transportation system with centralized power logistic vehicles according to the present invention can be installed on the highway, in the field, or in the urban area. In the street, the setting method is the same as that of the maglev-type logistic monorail transportation system, and will not be repeated here.
Embodiment 8. Suspended Logistic Monorail Transportation System
[0137] The suspended monorail system according to the present invention has basically the same structure as the above-mentioned maglev monorail system, the only difference lies in the use of suspended monorail guideways and suspended logistic monorail vehicles.
[0138] The following text describes the suspended logistic monorail vehicle system in this embodiment 8, referring to
[0139] In some complex lines, the frame-type pier shad form of the suspended logistic monorail track beam system is adopted. The frame-type pier shad structure of the suspended logistic monorail track beam system comprises piers 1-1b″, piers 1-2b″, pier 2-1b″, pier 2-2b″, suspended monorail guideway 3b″, suspended monorail guideway 4b″, suspended logistic monorail vehicle 5b″. The suspended monorail guideway 3b″ is installed on the bottom of a cover beam 10b″ and a cover beam 11b″ through a steel cable 12b″. Bearings 6b″ and 7b″, and the suspended monorail guideway 4b″ are installed at the bottom of the cover beam 10b″ and the cover beam 11b″ through a steel cable 13b″. Bearings 8b″ and 9b″, and the unmanned suspended logistic monorail vehicle 5b″ are suspended on the suspended monorail guideway 4b″ for operation. It should be pointed out that the single-column pier stud form of the suspended logistic monorail track beam system and the frame-type pier shad form of the suspended logistic monorail track beam system should be determined according to the specific conditions of the line. It can use only one single-column pier stud form of the suspended logistic monorail track beam system; or only the frame-type pier shad form of the suspended logistic monorail track beam system. The suspended logistic monorail track beam, the single-column pier stud form of the system and the frame-type pier shad form of the suspended logistic monorail track beam system can also be used at the same time.
[0140] In the above-mentioned suspended logistic monorail vehicle system, the suspended logistic monorail vehicle structure comprises a car body 5-11″, a car body 5-31″, a suspended monorail bogie 5-14″, a suspended monorail vehicle bogie 5-34″ and a connecting piece 5-2″. Car body 5-11″ and car body 5-31″ are open-bottom structures; cargo containers 5-12″ and cargo containers 5-13″ are installed under car body 5-11″; cargo containers 5-32″ and cargo container 5-33″ are installed under the car body 5-31″; the top of the car body 5-11″ is installed with the suspended monorail bogie 5-14″. Each side of the suspended monorail bogie 5-14″ comprises walking wheels 5-15″, walking wheels 5-16″, walking wheels 5-17″ and guide wheels 5-18″, while walking wheels 5-15″, walking wheels 5-16″ and walking wheels 5-17″ are used for the support and traction of the car body 5-11″, and the guide wheels 5-18″ are used for the guidance of the car body 5-11″; the suspended monorail bogie 5-34″ is installed on the top of the car body 5-31″; each side of the suspended monorail bogie 5-34″ comprises walking wheels 5-35″, walking wheels 5-36″ and walking wheels 5-37″ and guide wheels 5-38″, while walking wheels 5-35″, walking wheels 5-36″ and walking wheels 5-37″ are used for the support and traction of the car body 5-31″. Guide wheels 5-38″ are used to guide the car body 5-31″; the car body 5-11″ and the car body 5-31″ are connected by the connecting system 5-2″. It should be pointed out that the number of logistic vehicles in the suspended logistic monorail vehicle system is not only two. The number of specific logistic vehicles depends on the specific logistic and transportation conditions.
[0141] In the suspended logistic monorail turnout system, the suspended logistic monorail turnout structure is composed of a single pillar 1c″, a frame 2c″, a frame 3c″, a frame 4c″, and a suspended monorail switch beam 5c″. The suspended monorail turnout beam 5c″ is a guideway with three flexible joints. The suspended monorail turnout beam 5c″ can be rotated at the bottom area of the frame 2c″ and the bottom area of the frame 3c″. A rail trolley 9c″ is installed at a rail 6c″ at the bottom of the frame 2c″, which is used to drive the rotation of the suspended monorail turnout beam 5c″, and a rail trolley 10c″ is arranged on a rail 7c″ at the bottom of the frame 3c″ for driving the rotation of the suspended monorail turnout beam 5c″. The rail trolley 11c″ is arranged on the track 8c″ at the bottom of the frame 4c″, and is used to drive the rotation of the suspended monorail turnout beam 5c″. The suspended monorail turnout beam 5c″ is rotated by the coordinated work of the rail trolley 9c″, the rail trolley 10c″, and a rail trolley 11c″ to a suitable position to achieve the steering goal of the suspended logistic monorail turnout system.
[0142] In the suspended logistic monorail handling system, the suspended logistic monorail handling structure comprises a distribution station 1d″, a forklift 2d″ and a forklift 3d″. When loading, cargo 4d″, cargo 5d″, cargo 6d″, cargo 7d″, cargo 8d″, and cargo 9d″ are loaded by forklift 2d″ and forklift 3d″ into the logistic vehicle from the bottom. When unloading, the cargo 4d″, cargo 5d″, cargo 6d″, cargo 7d″, cargo 8d″ and cargo 9d″ are taken by forklift 2d″ and the forklift 3d″ from the logistic vehicle and transport them to the appropriate depository. It should be pointed out that the above is only the implementation mode. In the actual distribution station, the number of cranes is not only three, and the number of forklifts is not only two. The specific number of cranes and forklifts should be considered comprehensively according to the scale of the distribution station. In the suspended logistic monorail signal system, the suspended logistic monorail signal system comprises an unmanned driving system and a turnout control signal system. The suspended logistic monorail vehicle is controlled by the unmanned driving system to run according to the line conditions, and the suspended logistic monorail switch is controlled by the turnout control signal system to convert line according to the operation of the suspended logistic monorail vehicle to make the suspended logistic monorail vehicle travel along the target line.
[0143] The embodiment 8 has been described by setting up a suspended logistic monorail transportation system with distributed power logistic vehicles on the central reservation of highway, in the fields or in the urban streets. The suspended logistic monorail transportation system according to the present invention can also comprise the centralized power logistic vehicle, which can also perform the above three setting methods. In the following text, the centralized power logistic vehicle will be described.
[0144] As shown in
[0145] According to the present invention, the suspended logistic monorail transportation system with decentralized power logistic vehicles or the suspended logistic monorail transportation system with centralized power logistic vehicles can be installed on the central reservation of highway, in the field, or in the urban streets, which is the same as the maglev logistic monorail transportation system, and won't be repeated here.
Embodiment 9. A Double-Mode Monorail System with Upper Maglev Steel Box Guideways and Lower Suspended Monorail I-Shaped Steel Guideways
[0146] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 10. A Double-Mode Monorail System with Upper Maglev Steel Box Guideways and Lower Suspended Monorail Bottom Opening Steel Box Guideways
[0147] A double-mode monorail system based on this patent is demonstrated in conjunction with reference to
Embodiment 11. A Double-Mode Monorail System with Upper Maglev I-Shaped Steel Guideways and Lower Suspended Monorail I-Shaped Steel Guideways
[0148] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 12. A Double-Mode Monorail System with Upper Maglev I-Shaped Steel Guideways and Lower Suspended Monorail with Steel Box Guideways with Bottom Opening
[0149] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 13. A Double-Mode Monorail System with Upper Straddle Monorail Steel Box Guideways and Lower Suspended Monorail I-Shaped Steel Guideways
[0150] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 14. A Double-Mode Monorail System with Upper Straddle Monorail Steel Box Guideways and Lower Suspended Monorail Steel Box Guideways with Bottom Opening
[0151] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 15. A Double-Mode Monorail System with Upper Maglev Concrete Guideways and Lower Suspended Monorail Concrete Guideways with Bottom Opening
[0152] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 16. A Double-Mode Monorail System with Upper Straddle Monorail Concrete Guideways and Lower Suspended Monorail Concrete Guideways with Opening at the Bottom
[0153] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 17. A Double-Mode Monorail System with Upper Maglev Concrete Guideways and Lower Suspended Monorail I-Shaped Steel Guideways
[0154] An example of a double-mode monorail system based on this patent will be described with reference to
Embodiment 18. A Double-Mode Monorail System with the Upper Straddle Monorail Concrete Guideway and the Lower Suspended Monorail I-Shaped Steel Guideway
[0155] An example of a dual-standard monorail system based on this patent will be described with reference to
[0156] The purpose, technical solutions and beneficial effects of this patent are explained in the specific implementation methods described above. It should be emphasized that the above are only specific embodiments of this patent, and can't be used to limit the scope of this patent. Any modification, equivalent replacement or improvement made within the spirit and principle of this patent shall be included in the protection scope of this patent.