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Dive into the research topics where Vipul P. Patel is active.

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Featured researches published by Vipul P. Patel.


international conference on evolvable systems | 2005

A Novel Repair Technique for the Internal Thermal Control System Dual-Membrane Gas Trap

Thomas O. Leimkuehler; Vipul P. Patel; Daniel R. Reeves; James M. Holt

A dual-membrane gas trap is currently used to remove gas bubbles from the Internal Thermal Control System (ITCS) coolant on board the International Space Station (ISS). The gas trap consists of concentric tube membrane pairs, comprised of outer hydrophilic tubes and inner hydrophobic fibers. Liquid coolant passes through the outer hydrophilic membrane, which traps the gas bubbles. The inner hydrophobic fiber allows the trapped gas bubbles to pass through and vent to the ambient atmosphere in the cabin. The gas trap was designed to last for the entire lifetime of the ISS, and therefore was not designed to be repaired. However, repair of these gas traps is now a necessity due to contamination from the on-orbit ITCS fluid and other sources on the ground as well as a limited supply of flight gas traps. This paper describes a novel repair technique that has been developed that will allow the refurbishment of contaminated gas traps and their return to flight use.


international conference on evolvable systems | 2004

A Selected Operational History of the Internal Thermal Control System (ITCS) for International Space Station (ISS)

Vipul P. Patel; Dale Winton; Thomas H. Ibarra

The Internal Thermal Control System (ITCS) has been developed jointly by Boeing Corporation, Huntsville, Alabama and Honeywell Engines & Systems, Torrance, California to meet the internal thermal control needs for the International Space Station (ISS). The ITCS provides heat removal for the critical life support systems and thermal conditioning for numerous experiment racks. The ITCS will be fitted on a number of modules on the ISS. The first US Element containing the ITCS, Node 1, was launched in December 1998. Since Node 1 does not contain a pump to circulate the fluid it was not filled with ITCS fluid until after the US Laboratory Module was installed. The second US Element module, US Laboratory Module, which contains the pumps and all the major ITCS control hardware, was launched in February 2001. The third US Element containing the ITCS, the US Airlock, was launched in July 2001. The dual loop system of the ITCS is comprised of a low-temperature loop (LTL) and a moderate-temperature loop (MTL). Each loop has a pump package assembly (PPA), a system flow control assembly (SFCA), a three-way mixing valve (TWMV), several rack flow control assemblies (RFCA), cold plates, pressure sensors, temperature sensors, pump bypass assembly (PBA) and a heat exchanger. In addition, the MTL has an additional TWMV, a payload regeneration heat exchanger (P/RHE) and a manual flow control valve (MFCV). The LTL has a service performance and checkout unit (SPCU) heat exchanger. The two loops are linked via one loop crossover assembly (LCA) providing cross loop capabilities and a single PPA, two-loop functionality. One important parameter monitored by the ground stations and on-orbit is the amount of fluid leakage from the ITCS. ISS fluid leakage is of importance since ITCS fluid is costly to re-supply, may be difficult to clean up in zero-g, and if uncontained could lead to equipment failures and potential hazards. This paper examines the nominal leakage observed over period of a year of on-orbit operation and compares this with analysis predictions. This paper also addresses the off-nominal leakage and a fluid transfer event causing significant changes in accumulator quantity.


Archive | 2001

DEPLOYABLE FLEXIBLE AIRLOCK

Vipul P. Patel; Al MacKnight


Archive | 2011

OIL CENTRIFUGE FOR EXTRACTING PARTICULATES FROM A CONTINUOUS FLOW OF FLUID

Vipul P. Patel; Allen MacKnight


Archive | 2005

Spacecraft for interplanetary/lunar travel

Vipul P. Patel; Al MacKnight; A. Lubman


Archive | 2003

Inflatable docking station/garage for Mars rover

Vipul P. Patel; Al MacKnight


Archive | 2007

Oil centrifuge for extracting particulates from a fluid using centrifugal force

Vipul P. Patel; Allen MacKnight; Steven R. Eccles; Leonard Walitt


international conference on evolvable systems | 2001

Development of the Internal Thermal Control System (ITCS) for International Space Station (ISS)

Vipul P. Patel; Richard Barido; Brien Johnson; Thomas H. Ibarra


Archive | 2001

Apparatus and method for measuring mass in a microgravity environment

Jun Isobe; Al MacKnight; Vipul P. Patel


Archive | 2005

Leak detection and isolation for segmented inflatable structures

Thomas O. Leimkuehler; Vipul P. Patel; Patrick J. Hughes

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