Configuration for vertical take-off and landing system for aerial vehicles

US11148801B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11148801-B2
Application numberUS-201816020116-A
CountryUS
Kind codeB2
Filing dateJun 27, 2018
Priority dateJun 27, 2017
Publication dateOct 19, 2021
Grant dateOct 19, 2021

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  1. Title

    What the patent document calls the invention.

  2. Abstract

    A short plain-language summary of the technical disclosure.

  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

    The legal scope of protection — read this for what is actually claimed.

  6. CPC / IPC classifications

    Technology tags used to group this patent with similar filings.

  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A vehicle, includes a main body. A fluid generator is coupled to the main body and produces a fluid stream. At least one tail conduit is fluidly coupled to the generator. First and second fore ejectors are coupled to the main body and respectively coupled to a starboard side and port side of the vehicle. The fore ejectors respectively comprise an outlet structure out of which fluid flows. At least one tail ejector is fluidly coupled to the tail conduit. The tail ejector comprises an outlet structure out of which fluid flows. A primary airfoil element includes a closed wing having a leading edge and a trailing edge. The leading and trailing edges of the closed wing define an interior region. The at least one propulsion device is at least partially disposed within the interior region.

First claim

Opening claim text (preview).

What is claimed is: 1. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and second fore ejectors coupled to the fore portion and respectively coupled to the starboard side and port side, the fore ejectors respectively comprising an outlet structure out of which fluid flows at a predetermined adjustable velocity; at least one tail ejector fluidly coupled to the at least one tail conduit and coupled to the tail portion, the at least one tail ejector comprising an outlet structure out of which fluid from the at least one tail conduit flows at a predetermined adjustable velocity; a primary airfoil element coupled to the tail portion and comprising a closed wing having a leading edge and a trailing edge, the leading and trailing edges of the closed wing defining an interior region, the at least one tail ejector being at least partially disposed within the interior region; and first and second canard wings coupled to the fore portion and respectively coupled to the starboard side and port side, the canard wings configured to develop boundary layers of ambient air flowing over the canard wings when the vehicle is in motion, the canard wings being respectively located directly upstream of the first and second fore ejectors such that the first and second fore ejectors are fluidly coupled to the boundary layers. 2. The vehicle of claim 1 , wherein the first and second canard wings each have a leading edge, and the entirety of each of the first and second canard wings is rotatable about an axis oriented parallel to the leading edge. 3. The vehicle of claim 1 , wherein the first and second fore ejectors respectively comprise first and second inlet portions, and the first and second fore ejectors are positioned such that the boundary layers are ingested by the inlet portions. 4. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and second fore ejectors coupled to the fore portion and respectively coupled to the starboard side and port side, the fore ejectors respectively comprising an outlet structure out of which fluid flows at a predetermined adjustable velocity; at least one tail ejector fluidly coupled to the at least one tail conduit and coupled to the tail portion, the at least one tail ejector comprising an outlet structure out of which fluid from the at least one tail conduit flows at a predetermined adjustable velocity; a primary airfoil element coupled to the tail portion and comprising a closed wing having a leading edge and a trailing edge, the leading and trailing edges of the closed wing defining an interior region, the at least one tail ejector being at least partially disposed within the interior region; second and third fluid generators coupled to the main body and respectively producing a second fluid stream and a third fluid stream; and first and second fore conduits respectively fluidly coupled to the second and third generators, wherein the first and second fore ejectors are respectively fluidly coupled to the first and second fore conduits and respectively receive the second and third fluid streams. 5. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and second fore ejectors coupled to the fore portion and respectively coupled to the starboard side and port side, the fore ejectors respectively comprising an outlet structure out of which fluid flows at a predetermined adjustable velocity; at least one tail ejector fluidly coupled to the at least one tail conduit and coupled to the tail portion, the at least one tail ejector comprising an outlet structure out of which fluid from the at least one tail conduit flows at a predetermined adjustable velocity; and a primary airfoil element coupled to the tail portion and comprising a closed wing having a leading edge and a trailing edge, the leading and trailing edges of the closed wing defining an interior region, the at least one tail ejector being at least partially disposed within the interior region, wherein the first fluid stream produced by the first generator is the sole means of propulsion of the vehicle. 6. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and second fore ejectors coupled to the fore portion and respectively coupled to the starboard side and port side, the fore ejectors respectively comprising an outlet structure out of which fluid flows at a predetermined adjustable velocity; at least one tail ejector fluidly coupled to the at least one tail conduit and coupled to the tail portion, the at least one tail ejector comprising an outlet structure out of which fluid from the at least one tail conduit flows at a predetermined adjustable velocity; and a primary airfoil element coupled to the tail portion and comprising a closed wing having a leading edge and a trailing edge, the leading and trailing edges of the closed wing defining an interior region, the at least one tail ejector being at least partially disposed within the interior region, wherein the first and second fore ejectors each have a leading edge, and the entirety of each of the first and second fore ejectors is rotatable about an axis oriented parallel to the leading edge. 7. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and second fore ejectors coupled to the fore portion and respectively coupled to the starboard side and port side, the fore ejectors respectively comprising an outlet structure out of which fluid flows at a predetermined adjustable velocity; at least one tail ejector fluidly coupled to the at least one tail conduit and coupled to the tail portion, the at least one tail ejector comprising an outlet structure out of which fluid from the at least one tail conduit flows at a predetermined adjustable velocity; and a primary airfoil element coupled to the tail portion and comprising a closed wing having a leading edge and a trailing edge, the leading and trailing edges of the closed wing defining an interior region, the at least one tail ejector being at least partially disposed within the interior region, wherein the first and second fore ejectors are retractable into the main body during a cruise condition of the vehicle. 8. A vehicle, comprising: a main body having a fore portion, a tail portion, a starboard side, a port side and a cockpit formed therein to accommodate a human pilot; a first fluid generator coupled to the main body and producing a first fluid stream; at least one tail conduit fluidly coupled to the first generator; first and

Assignees

Inventors

Classifications

  • the power plant being tiltable · CPC title

  • having channel wings · CPC title

  • Shape of wings · CPC title

  • of exhaust outlets or jet pipes · CPC title

  • B64C29/04Primary

    characterised by jet-reaction propulsion · CPC title

Patent family

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What does patent US11148801B2 cover?
A vehicle, includes a main body. A fluid generator is coupled to the main body and produces a fluid stream. At least one tail conduit is fluidly coupled to the generator. First and second fore ejectors are coupled to the main body and respectively coupled to a starboard side and port side of the vehicle. The fore ejectors respectively comprise an outlet structure out of which fluid flows. At le…
Who is the assignee on this patent?
Jetoptera Inc
What technology area does this patent fall under?
Primary CPC classification B64C29/04. Mapped technology areas include Operations & Transport.
When was this patent published?
Publication date Tue Oct 19 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 12 related publications on this page (citations in our corpus or others sharing the same primary CPC).